地址:武汉市洪山区光谷大道35号光谷总部国际时代 二期1栋1301
电话:18327026838
传真:18771997407
邮箱:sales@amyjet.com

Sterlitech是世界上最大的实验室无机膜产品生产公司之一。其产品包括纯银膜、PCTE膜、PETE膜等产品,以及HP4750等膜过滤设备。在很多著名的化学实验室、生物实验室有广泛应用。
美国Stetlitech公司是世界上最大的实验室用无机膜生产商之一。出品纯银金属膜(Silver Metal Filter Membranes);醋酸纤维素滤膜(Cellulose Acetate membrane filters);陶瓷膜(ceramic membrane);玻璃纤维滤膜(glass fiber filters),硝化纤维素滤膜(Nitrocellulose Mixed Esters);尼龙膜(Nylon membrane);聚碳酸酯径迹蚀刻膜(Polycarbonate Track Etch (PCTE) membrane);聚醚砜膜(PES(Polyethersulfone) membrane),聚酯膜(Polyester PETE membrane);聚丙烯滤膜(polypropylene membrane filters);特氟隆膜(PTFE Teflon ®))。
更多详情请联系
艾美捷科技有限公司
全国服务热线:400-6800-868
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网站:www.amyjet.com
" data-original="http://bioauxilium.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="Sterlitech"> Sterlitech
艾美捷科技代理IHC World品牌。
IHC World公司的产品与服务包括:
(1)抗体:提供多种一抗和二抗,适用于不同靶标和物种。
(2)试剂盒:包括染色试剂盒、检测试剂盒等,简化实验流程。
(3)仪器与设备:提供染色机、切片机等实验室设备。
(4)耗材:如玻片、盖玻片、封片剂等。
(5)定制服务:根据客户需求提供定制抗体开发和优化服务。
IHC World公司的产品应用领域:
(1)癌症研究:用于肿瘤标志物检测和癌症分型。
(2)神经科学:研究神经系统疾病和神经标记物。
(3)传染病研究:检测病原体及其在组织中的分布。
(4)药物开发:评估药物对组织的影响。
" data-original="http://bioauxilium.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="艾美捷科技代理IHC World品牌"> 艾美捷科技代理IHC World品牌
<艾美捷科技代理GenTegra品牌全系列产品
GenTegra 凭借专业的研发团队和深厚的技术积累,GenTegra 在生物样本保护领域处于领先地位,其产品广泛应用于科研、医疗、法医等多个领域。GenTegra 开发的产品包括适用于多种应用场景的样本采集装置,例如:用于基因组学和转录组学分析的 RNASeq 样本采集;对犯罪现场法医样本进行 DNA 分析的样本采集;来自患者自采样设备的全血样本采集。GenTegra公司的产品包括GenTegra RNA、GenTegra DNA。

▍GenTegra公司的产品
● GenTegra RNA 相关产品
①GenTegra RNA Advantage:使用 RIN 值作为 RNA 质量的衡量标准,能为组织中的 RNA 提供更好保护。相比 RNAlater 等产品,它始终产生 RIN 分数更好(≥1)的 RNA,且使用时 RIN 值等于或高于所需的 RIN 值≥7,确保出色的 RNAseq 结果,可替代 RNAlater 而无需更改当前方案。
②GenTegra RNA:是在实验室工作或运输 RNA 时为 RNA 提供的最佳保护产品。作为水溶性活性化学保护剂,添加到 RNA 中会形成保护基质,在干燥状态和液态下都能保存和保护 RNA。在 -80°C 至 +72°C 的极端温度下保护近乎完美,是唯一一种在干燥前立即提供 RNase 活性保护的干式储存产品,允许使用所有标准缓冲系统。在室温下储存保质期超过 3 年,有多种包装形式,如 100/0.5ml 螺旋盖管、96 孔微孔板或 96 管架格式、足够数量的散装基质,还提供三管评估套件。
③GenTegra RNAssure™:为 RNA 纯化和 RNAseq 的人员提供新水平的保护。其专有的活性化学保护™ ACP 配方可在洗脱纯化柱时立即保护 RNA,提供更彻底的保护,能保护样品完整性,可无缝融入每个标准 RNA 纯化试剂盒中,在室温(RT)下保护 RNA 至少 3 天,在 4°C 下保护 RNA 2 周,还可以保护 RNA 在 37°C 的较高温度下进行 DNase 处理期间免受损伤,能灭活纯化过程或环境污染遗留的所有残留 RNase 活性,保护 DNase 免受氧化损伤等。
● GenTegra - DNA 相关产品
①GenTegra - DNA:在运输和储存过程中的极端温度(-80°C 至 +72°C)下都能对 DNA 进行保护,基于加速研究在环境温度下保护 DNA 超过 20 年,无需特殊环境控制即可保护 DNA,经过多次干燥和补水循环。
②GenTegraDNA dry BULK:是法医实验室的首选产品,干散货是自动化系统的理想选择,支持直接用于 STR、qPCR 等,在需要时支持 DNA 样品浓缩,干燥的 DNA 样品可以在环境温度下安全运输,在室温下储存的保质期超过 3 年,提供三管评估套件。
● GenSolve DNA 提取和纯化试剂盒
①GenSolve Complete提取和纯化试剂盒:经过优化的提取和纯化方法,可提供最高质量的干血斑结果,能从任何可用的DNA采集卡中提取和纯化DNA,基于柱的纯化过程可有效将DNA与细胞碎片和外来化学成分分离。
②GenSolve DNA 提取试剂盒:可灵活地利用GenTegra 行业领先的DNA 提取技术来检测干血斑,并提供任何可用的DNA纯化试剂盒。来自任何采集卡的干血斑的 DNA 数量无与伦比,与GenTegra GenSaver卡或GenPlates结合使用时,产量为 95%,可与所需的任何DNA纯化方法配对。
▍GenTegra产品列表
| 产品名称 | 产品描述 |
| GenTegra RNAdvantage™ | 为新鲜组织样本中的 RNA 提供更优保护。 |
| GenTegra RNAssure™ | 对直接来源于 RNA 纯化试剂盒的 RNA 提供即时且完全的保护。 |
| GentegraRNA | 为运输用于 RNA 测序 (RNAseq) 的 RNA 提供即时且完全的保护。 |
| GenTegraDNA | 为生命科学和法医实验室应用提供卓越的 DNA 保护 |
| GenSolve COMPLETE 提取与纯化试剂盒 | 能够从干血斑中提取出最高质量、长度 >35 kb且高产量的 DNA。 |
| GenSolve 经典提取试剂盒 | 干血斑(DBS)DNA 提取技术可与任何 DNA 纯化试剂盒结合使用。 |
| GenTegra 快速干燥仪 | 可用于将生物样品施加到 GenTegra-RNA、GenTegra-DNA 或 GenPlate 之后进行干燥处理。 |
| enSaver DNA 卡 | 有 1 点、2 点和 4 点格式可供选择。变色格式适用于收集唾液等透明样本。 |
| GenSaver 2.0 法医 DNA 卡 | 该卡有 1 点、2 点和 4 点格式可供选择,其中变色格式适用于收集唾液等透明样本。 |

艾美捷科技代理Gene Tools品牌
Gene Tools是一家生产和销售Morpholino Anti-sense oligos(反义寡核苷酸)的公司,其产品专门用于基因调控的科学研究和药物开发。Gene Tools公司由多位资深科学家组成,为全球客户提供免费的技术咨询和Morpholino 序列设计服务。 Morpholino作为基因调控研究的最佳工具,已被广泛用于:阻断靶mRNA 翻译 (下调基因);诱导RNA选择性剪接 (下调或上调基因);阻断 miRNA;阻断病毒 RNA;阻断 non-coding RNA。
▍Morpholino介绍
Morpholino属于第三代反义寡核苷酸,主要通过阻断蛋白质翻译过程而达到抑制目标基因功能的作用,目前已经广泛用于发育生物学和细胞学实验中,并取得了非常好的实验效果。
Morpholino以吗啉环类似物为基本骨架,这种独特的结构特性使得Morpholino 具有以下几个特点:
● 与其他类型的反义寡核苷酸相比,Morpholino 能更好地抵抗核酸酶的作用;
● Morpholino 与靶序列结合后通过空间位阻效应发挥作用, 不激活RNaseH,不引起目标基因mRNA 的降解 ;
● 针对翻译起始位点区设计的Morpholino 用于抑制蛋白质的翻译,针对 pre-mRNA 剪切位点区设计的Morpholino 可影响mRNA 剪切,得到不 同的转录本,可以方便地用于目标基因结构域的突变研究;
● 与靶序列结合能力强,可以渗入mRNA 的二级结构, 并且特异性好。
配合Morpholino 的使用,Gene Tools公司开发了相应的递送系统,可以安全、高效地将Morpholino 输送至胞内,因此,Morpholino 也可以用于遗传学研究和新药靶标的发现以及验证。此外,Morpholino 可以标上荧光基团、亲和标签以及活性反应基团,以供不同的研究需要。

▍Gene Tools公司产品介绍
● Custom Morpholino:可以根据目标基因序列定制设计并合成Morpholino,用于体外细胞实验或某些直接显微注射的模型(如斑马鱼、非洲爪蟾胚胎)。
● Vivo-Morpholino:适用于活体动物模型(小鼠,大鼠,狗,灵长类等),细胞培养,器官培养等。通过特殊的末端修饰,提高了其穿透细胞膜进入组织细胞的能力,使得在成年动物(主要是小鼠、大鼠)中进行系统性基因功能研究成为可能。
● Prepared Control Oligos:根据特定需求合成细胞穿透肽偶联的 Morpholino。适用于活体动物模型(小鼠,大鼠,狗,灵长类等),细胞培养,器官培养等。
| 产品名称 | Short Description | Oligo sequence | SKU |
| Standard Control Oligo | Negative control oligo | CCTCTTACCTCAGTTACAATTTATA | PCO-StandardControl-100 |
| Vivo-Morpholino Standard Control Oligo | Negative Vivo-Morpholino control oligo | CCTCTTACCTCAGTTACAATTTATA | PCO-VivoStandardControl-100 |
| Random Control Oligo 25-N | 25-base random sequence mixture | NNNNNNNNNNNNNNNNNNNNNNNNN | PCO-RandomControl-25N-100 |
| Zebrafish p53 oligo | Danio rerio apoptosis suppression oligo | GCGCCATTGCTTTGCAAGAATTG | PCO-ZebrafishP53-100 |
| Zebrafish Chordin Positive Control Oligo | Danio rerio Chordin positive control oligo | ATCCACAGCAGCCCCTCCATCATCC | PCO-ZebrafishChordin-100-F |
| Clawed Frog Beta Catenin Positive Control Oligo | Xenopus laevis Beta Catenin antisense oligo | TTTCAACCGTTTCCAAAGAACCAGG | PCO-BetaCatenin-100-F |
| Green Fluorescent Protein Positive Control | Translation blocker for GFP target | ACAGCTCCTCGCCCTTGCTCACCAT | PCO-GFPControl-100 |
| Vivo-Morpholino GFP Positive Control | Translation blocker for GFP target (Vivo-Morpholino) | ACAGCTCCTCGCCCTTGCTCACCAT | PCO-VivoGFPControl-100 |
| Fluoresceinated Vivo-Morpholino Std Control | Negative Vivo-Morpholino control oligo with 5'Fluorescein | CCTCTTACCTCAGTTACAATTTATA | PCO-FluorVivoStandardControl-100-F |
● Endo-Porter:为了解决Morpholino在体外培养细胞中摄取效率低的问题,Gene Tools 开发了 Endo-Porter 这种特殊的转染试剂。它通过温和的内吞体逃逸机制帮助Morpholino进入细胞质。
http://www.amyjet.com/Index/lists/catid/99/kid/56.html
| 产品名称 | 规格 |
| Ammonia/Iron Standard Kit (Verichem Laboratories; CAT#9040) | 5x15mL |
| Ammonia/Iron Standard Level F (Verichem Laboratories; CAT#9046) | 1x15mL |
| Bilirubin Standard Kit (Verichem Laboratories; CAT#9450) | 10x5mL |
| Bilirubin Standard, Level F (Verichem Laboratories; CAT#9436) | 2x5mL |
| Tru-Zero™ Bilirubin Standard (Verichem Laboratories; CAT#9456) | 2x5mL |
| Br2 Bilirubin Calibrator (Verichem Laboratories; CAT#9459) | 2x5mL |
| Carbon Dioxide Standard Kit (Verichem Laboratories; CAT#9210) | 5x15mL |
| Carbon Dioxide Standard, Level F (Verichem Laboratories; CAT#9216) | 1x15mL |
| Electrolyte Standard Kit (Verichem Laboratories; CAT#9200) | 5x15mL |
| Enzyme Er™ Verifier Kit (Verichem Laboratories; CAT#9410) | 6x5mL |
| Enzyme Er™ Verifier, Level G (Verichem Laboratories; CAT#9417) | 1x5mL |
| Ethanol Standard Kit (Verichem Laboratories; CAT#9670) | 6x5mL |
| Hdl Cholesterol Verifier Kit (Verichem Laboratories; CAT#9560) | 6x5mL |
| Matrix Plus™ Chemistry Reference Kit (Verichem Laboratories; CAT#9500) | 5x15mL |
| Matrix Plus™ Chemistry Reference, Level F (Verichem Laboratories; CAT#9506) | 1x15mL |
| Matrix Plus™ Cholesterol Reference Kit (Verichem Laboratories; CAT#9550) | 5x15mL |
| Matrix Plus™ Cholesterol Reference, Level F (Verichem Laboratories; CAT#9556) | 1x15mL |
| Microprotein Standard Kit (Verichem Laboratories; CAT#9480) | 5x15mL |
| Serum Ise Standard Kit (Verichem Laboratories; CAT#9240) | 5x15mL |
| Total Protein / Albumin Standard Kit (Verichem Laboratories; CAT#9460) | 5x15mL |
| Total Protein / Albumin Standard, Level F (Verichem Laboratories; CAT#9466) | 1x15mL |
| Urine Chemistry Standard Kit (Verichem Laboratories; CAT#9000) | 5x15mL |
| Urine Uric Acid Standard Kit (Verichem Laboratories; CAT#9020) | 5x5mL |

更多详情请联系
艾美捷科技有限公司
全国服务热线:400-6800-868
邮箱:sales@amyjet.com
网站:www.amyjet.com
" data-original="http://bioauxilium.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="Verichem Laboratories"> Verichem Laboratories
<艾美捷科技代理AxisPharm品牌全系列产品
AxisPharm是一家专业的分析服务提供商,致力于为科学研究界和工业界提供高质量的分析服务。凭借先进的仪器设备和专业的技术团队,AxisPharm在生物分析、化学分析和质量控制领域树立了良好的声誉。AxisPharm公司的产品线包括:PEG 连接子、用于药物递送的脂质、荧光染料、单击化学试剂、聚聚乙二醇,共聚物、可裂解的连接子、抗体和抗体药物偶联物ADC、ADC 有效载荷、细胞生物学试剂、脱氧核糖核酸、修饰语、探针、合成肽、目标特定链接器、硫醇反应性接头、酸反应性连接子、胺反应性连接子、羰基反应性连接子、探针、修饰符。

▍AxisPharm产品线
● PEG连接子:聚合物聚乙二醇是多分散聚乙二醇 (PEG) 聚合物,是一种从石油中提取的聚醚化合物,具有从工业制造到医药的许多应用。
● 用于药物递送的脂质:在药物递送系统中起着至关重要的作用,特别是在脂质体、脂质纳米颗粒或脂质胶束等脂质制剂中。脂质提供结构稳定性,增强药物溶解度,实现控释,并促进靶向药物递送。
● 荧光染料:也称为荧光团或荧光探针,是吸收一种波长的光并以更高波长发射的化合物,从而产生可见荧光。它们是生物学研究中的重要工具,用于标记和检测蛋白质、核酸和细胞等生物分子,从而在显微镜、流式细胞术和实时荧光定量 PCR 等应用中实现灵敏和精确的可视化。
● 点击化学试剂:具有高特异性和最少的副产物,简化了复杂的合成过程。因此,它们在分子生物学、材料科学和药物化学中发挥着至关重要的作用。
● 聚合物聚乙二醇:多分散聚乙二醇 (PEG) 聚合物,是一种从石油中提取的聚醚化合物,具有从工业制造到医药的许多应用。
● 可裂解连接子:一类重要的分子,广泛应用于药物发现、化学生物学和材料科学等各个领域。这些连接子充当两个或多个分子实体之间的连接桥,可以在特定条件下选择性地裂解,从而释放附着的分子。这一特性使它们成为生物活性化合物靶向药物递送、成像和控释的有吸引力的工具。
● 抗体及抗体-药物偶联物及细胞生物学试剂:种类丰富可选择。
● ADC有效载荷:作为 ADC 的三个主要成分之一,有效载荷是高活性和有毒的药物分子,通过化学连接子附着在抗体上。有效载荷可以是小分子、蛋白质毒素、生物活性肽、酶,甚至放射性核素。通过适当的接头与适当的载体系统耦合的有效载荷可能会显示出靶向药物递送的特异性和有效性的提高。
● 脱氧核糖核酸:DNA 是脱氧核糖核酸的缩写,是一种包含所有生物体发育和功能的遗传指令的分子。DNA 由四个基本组成部分组成,称为核苷酸,由糖、磷酸基团和含氮碱基组成。
● 改性剂:改变其他分子或材料特性的化合物。在药物研发领域,改性剂在新型药物递送系统和生物医学设备的设计和优化中发挥着至关重要的作用。一种常见的改性剂类型是官能团,它是赋予分子特定化学和物理性质的原子的特定排列。
● 探针:AxisPharm 提供各种靶标特异性探针,例如叶酸 PEG、生物素 PEG、PROTAC PEG、荧光染料探针和图像探针。探针是一类含有官能团的化合物,旨在选择性地与生物分子(如酶、受体和核酸)相互作用。这些官能团包括荧光染料、生物素和亲和标签等,可以检测和定量复杂生物系统中的特定分子。
| Different Types of Polyethylene Glycol PEG Linkers in Stock | ||||
| Acid PEG | Diketone PEG | Non-PEG linker | PFP ester PEG | Sugar PEG β-Glucuronide Linker |
| Aldehyde PEG | DNP PEG | PEG-t-butyl ester | Phosphonate PEG | Sulfonic acid PEG |
| Alkyne PEG | DBCO PEG | PEG-X-PEG | Polymer PEG | TCO PEG |
| Amino PEG | DSPE PEG | Peptide Linkers | Propargyl PEG | Tetrazine PEG |
| Aminooxy PEG | Fluorescent PEG | Lipid PEG | PROTAC Linker | Homobifunctional PEG |
| Azide PEG | Fmoc PEG | M-PEG | Silane PEG | Bromo PEG |
| BCN-PEG | Folate PEG | Maleimide PEG | SPDP PEG | Tosylate PEG |
| Benzyl-PEG | Thiol PEG | MeNH-PEG | Branched PEG | Bis-Sulfone PEG |
| Biotin PEG | Hydrazide PEG | NHS ester PEG | HyNic PEG | DOTA Reagent DOTA PEG |
| Bis-PEG-acid | Hydroxy PEG | Boc-PEG | Bis-PEG-NHS | Iodo PEG |
| Bis-PEG-NHS | Cleavable Linkers | |||
| Lipids for Drug Delivery | ||||
| Biotinyl Cap PE | Dodecanyl PE | Other Lipid | Phosphatidylcholine | Phosphatidylethanolamine |
| Biotinyl PE | Glutaryl PE | PDP PE | Phosphoglycerol | Ptd Thioethanol |
| Caproylamine PE | Ionizable Lipid | PE MCC | Phosphoserine | Succinyl PE |
| Cationic Lipid | Lipid PEG | Cyanur PE | MPB PE | |
| Fluorescent Dye | ||||
| AF Dyes | Cyanine Dyes | MB Dyes | Rhodamine Dye | Rox (carboxy-X-rhodamine) Dye |
| APDye Fluors | DNP PEG | JOE | R6G | Peptide Labeling Reagents |
| Bodipy Probes | Fluorescein (FAM) | Pyrene Probes | TAMRA Dye | Classic Fluorescent Dyes |
| IR Fluors | Quenchers | Coumarin 343 | ||
| Click Chemistry Tools & Reagents | ||||
| Alkyne PEG | BCN-PEG | PTAD Linker | Tetrazine PEG | Click Chemistry Auxiliary Reagents |
| Azide PEG | DBCO PEG | TCO PEG | Methylcyclopropene Linkers | |
| Polymer PEG | ||||
| Acrylate | Biotin | Fmoc | Lipoamide | Silane |
| Active ester | Boc | Folate | Maleimide | Stearic acid |
| Aldehyde | Carboxylic acid | guanlian1010 | MW 2000 | TCO |
| Amine | Cholesterol | Hydrazide | MW 5000 | Thiol |
| Azide | DBCO | Hydroxyl | Polysarcosine | |
| Cleavable Linkers | ||||
| -S-S-Cleavable | PC Cleavable | Disulfide Linkers | Dde Cleavable Linkers | β-Glucuronide Linkers |
| Cleavable Peptide | diazo biotin probes | DTSSP crosslinker | Photocleavable Biotin | |
| Antibody and Antibody Drug Conjugate (ADC) | ||||
| Inotuzumab | Trastuzumab | Enfortumab | Labetuzumab govitecan | Mirvetuximab soravtansine (solution) |
| Vobramitamab | Disitamab | Mirzotamab | Loncastuximab tesirine | Trastuzumab deruxtecan (solution) |
| Polatuzumab | Ozuriftamab | Brentuximab | Trastuzumab deruxtecan | ADC Control Human IgG1-Deruxtecan (DAR 8) |
| Gemtuzumab | Inebilizumab | Datopotamab | Cofetuzumab pelidotin | Glembatumumab vedotin |
| Daratumumab (PBS) | Denintuzumab | Sacituzumab govitecan | Belantamab mafodotin | Trastuzumab duocarmazine |
| Praluzatamab | Naratuximab | Tisotumab | Enfortumab vedotin-ejfv | Trastuzumab emtansine (solution) |
| Lorvotuzumab | Rolinsatamab | Trastuzumab emtansine | Telisotuzumab vedotin | Enfortumab vedotin-ejfv (solution) |
| Izeltabart | Mipasetamab | Datopotamab deruxtecan | Gemtuzumab ozogamicin | Brentuximab vedotin (solution) |
| Lupartumab | Iladatuzumab | ORM-5029 | Cantuzumab ravtansine | Depatuxizumab mafodotin |
| Cantuzumab | Briobacept | Ifinatamab deruxtecan | Tusamitamab ravtansine | ADC Control Human IgG1-Deruxtecan (DAR 4) |
| Lonigutamab | Tamrintamab | Tisotumab vedotin | Zilovertamab vedotin | Depatuxizumab MMAE |
| Moxetumomab | Sacituzumab | Disitamab vedotin | Polatuzumab vedotin | ADC Control Human IgG1-vcMMAF |
| Azintuxizumab | Upifitamab | Belantamab | Pivekimab | Sacituzumab govitecan (solution) |
| Lifastuzumab | Glembatumumab | Patritumab deruxtecan | Farletuzumab ecteribulin | |
| Payloads and Linker modified Payloads | ||||
| Exatecan | Belotecan HCl | SGD-1882 | Dolastatin 10 | MC-Val-Cit-PAB-Doxorubicin |
| SN 38 | Gimatecan | MMAF | Calicheamicin | Gly3-Val-Cit-PAB-MMAE |
| Amrubicin | Taltobulin | Auristatin E | Eribulin Mesylate | SuO-Glu-Val-Cit-PAB-MMAE |
| Mitomycin C | Dxd | Chlorambucil | Soblidotin (Auristatin PE) | Fmoc-G-amino-CH2O acetyl-Exetecan |
| Deruxtecan analog | Lurtotecan | PF-06380101 | Deruxtecan analog 2 | DM1-MCC-PEG3-Biotin |
| sulfo-SPDB-DM4 | Exatecan mesylate | Auristatin F | Paclitaxel | GGFG-amino-CH2O-acetyl Exetecan |
| Rubitecan | MC-DM1 | MMAF-methyl ester | MC-MMD10 | Mal-PEG8-Val-Cit-PAB-MMAE |
| (4-NH2)-Exatecan | Irinotecan | Doxorubicin-SMCC | SPDB-DM4 | DBCO-PEG4-Val-Cit-PAB MMAF |
| Topotecan | PNU-159682 | MMAD | 10-Hydroxycamptothecin | Topotecan Hydrochloride |
| CL2A-SN38 | DM4 | 7-Ethylcamptothecin | ||
| Cell Biology Reagents | ||||
| Neuro-DiO, lipophilic tracer | VU (5-Vinyl-uridine) | CM-DiI, lipophilic tracer | LumiTracker ER Green | ER-Tracker Red (BODIPY TR Glibenclamide) |
| Annexin V-AF 647 conjugate | DAPI, blue fluorescent nucleic acid stain | Propidium Iodide | Deep-Red Fluorescent Nissl Stain | MitoCLox, mitochondrial lipid peroxidation probe |
| Annexin V-AF 488 conjugate | LumiTracker Mito Rhodamine 123 | LumiTracker Mito Green FM | RAPID DiI, lipophilic tracer | Laurdan (6-Dodecanoyl-2-dimethylaminonaphthalene) |
| Annexin V, His Tag | Thiazole Orange | SynaptoProbe® Red | LumiTracker ER Red | Linear Polyacrylamide for Nucleic Acid Precipitation |
| DiD, lipophilic tracer | RH 237, potentiometric probe | SynaptoProbe® Green | RAPID DiO, lipophilic tracer | Fluo-4 AM, green fluorescent calcium indicator |
| DiR, lipophilic tracer | Hoechst 33342, blue fluorescent nucleic acid stain | LumiTracker® Mito Red FM | DiI, lipophilic tracer | YODi-1, green fluorescent nucleic acid stain |
| DNA | ||||
| CPG solid supports | DNA Stains | Modified Triphosphates | phosphoramidite | |
| Probes | ||||
| Biotin PEG | Folate PEG | Image Probes | PROTAC Linker | |
| Amine reactive Linkers | ||||
| Acid PEG | Aldehyde PEG | Bromo PEG | Maleimide PEG | NHS ester PEG |
▍AxisPharm提供的服务
● 蛋白质组学服务:提供质谱分析、蛋白质鉴定和定量服务。专注于生物标志物分析,帮助客户在复杂的生物样本中发现和验证潜在的生物标志物。
● 代谢组学服务:利用先进的LC-MS/MS技术进行代谢物分析,提供通路洞察,帮助客户理解代谢途径和生物过程。
● 高级LC-MS/MS服务:用于PK分析和HPLC分离,确保高精度和高效率的研究结果,提供PK/PD研究,支持药物开发和临床前研究。
▍AxisPharm部分产品列表
| Cat# | Name | M.W. | Purity |
| AP15197 | Exatecan | 435.45 | ≥98% |
| AP15072 | SN 38 | 392.4 | ≥95% |
| AP15226 | Amrubicin | 483.47 | ≥98% |
| AP15664 | Mitomycin C | 334.3 | ≥98% |
| AP15203 | 10-Hydroxycamptothecin | 364.35 | ≥95% |
| AP15204 | 7-Ethylcamptothecin | 376.41 | ≥95% |
| AP15210 | Rubitecan | 393.35 | ≥95% |
| AP15211 | (4-NH2)-Exatecan | 403.43 | ≥95% |
| AP15206 | Topotecan | 421.5 | ≥95% |
| AP15207 | Topotecan Hydrochloride | 425.5 | ≥95% |
| AP15202 | Belotecan HCl | 433.5 | ≥95% |
| AP15208 | Gimatecan | 447.5 | ≥95% |
| AP15227 | Taltobulin | 473.65 | ≥99% |
| AP15201 | Dxd | 493.48 | ≥95% |
| AP15209 | Lurtotecan | 518.56 | ≥95% |
| AP15196 | Exatecan mesylate | 531.55 | ≥98% |
| AP15200 | Deruxtecan analog 2 | 579.58 | ≥95% |
| AP15205 | Irinotecan | 586.68 | ≥95% |
| AP15224 | PNU-159682 | 641.62 | ≥98.24% |
| AP15220 | Soblidotin (Auristatin PE) | 701.98 | ≥95% |
| AP15225 | SGD-1882 | 725.8 | ≥98% |
| AP15213 | MMAF | 732 | ≥95% |
| AP15216 | Auristatin E | 732 | ≥95% |
| AP15311 | Chlorambucil | 304.21 | ≥98 |
| AP15219 | PF-06380101 | 743.01 | ≥95% |
| AP15214 | Auristatin F | 746 | ≥95% |
| AP15215 | MMAF-methyl ester | 745.99 | ≥98% |
| AP15187 | Doxorubicin-SMCC | 762.8 | ≥98% |
| AP15217 | MMAD | 771.06 | ≥98% |

艾美捷科技代理Celscientific品牌。
Celscientific是一家专注于细胞培养和生物试剂的公司,提供高质量的细胞培养产品、生物试剂和实验室耗材,支持生命科学研究和生物技术开发。Celscientific采用先进的生产和质控技术,确保产品的高质量和一致性;产品广泛应用于细胞生物学、分子生物学和生物技术研究。提供灵活的定制细胞培养和生物试剂开发服务,满足客户需求。
Celscientific公司主要产品与服务包括:
(1)细胞培养产品:提供多种细胞培养基、血清、生长因子和细胞培养试剂盒。
(2)生物试剂:提供多种生物试剂,包括抗体、酶、蛋白质和核酸。
(3)实验室耗材:提供高质量的实验室耗材,如培养皿、离心管、移液器等。
(4)定制服务:根据客户需求,提供定制化的细胞培养和生物试剂开发服务。
< " data-original="http://bioauxilium.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="艾美捷科技代理Celscientific品牌"> 艾美捷科技代理Celscientific品牌

艾美捷科技代理艾美捷科技代理Apollo Scientific化学试剂。
Apollo Scientific Ltd 是一家总部位于英国的公司,专注于为全球的研究和开发(R&D)市场提供高质量的化学试剂和中间体。公司成立于1996年,致力于为制药、生物技术、农业化学和材料科学等领域的研究人员提供化学产品。化学试剂和中间体:提供超过10万种化学试剂和中间体,涵盖有机化学、无机化学和材料科学等领域。包括杂环化合物、氨基酸衍生物、手性化合物和催化剂等。Apollo Scientific公司特色产品包括:氟化、杂环、有机物、无机物等化学产品,如:HEPES、毛地黄皂甙、DTE 二硫代赤藓醇等。
" data-original="http://bioauxilium.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="艾美捷科技代理Apollo Scientific化学试剂"> 艾美捷科技代理Apollo Scientific化学试剂

艾美捷科技有限公司代理SIRIUS FINE CHEMICALS SICHEM GMBH公司产品。
SIRIUS FINE CHEMICALS SICHEM GMBH公司,主要提供:
点击化学工具(Si-CLICK (Click Chemistry))
PEG试剂(Si-PEGs)
脂质及其衍生物(Si-LIPs (Lipids & Derivatives))
磷酸肌醇试剂(Inositol Phosphates & Phosphoinositides)
核酸及其衍生物(Nucleotides & Derivatives)
API标准品及代谢底物(API Standards & Metabolites)
稳定的同位素(Stable Isotopes)
磷酸化及亚磷酸化试剂(Phosphorylation / Phosphitylation)
精细化学试剂(Fine Chemicals)
更多详情请联系
艾美捷科技有限公司
全国服务热线:400-6800-868
邮箱:sales@amyjet.com
网站:www.amyjet.com
产品列表
| 产品名称 | 产品编号 | 分子式 |
| Click Amino Acid / trans-Cyclooct-4-en – L - Lysine (TCO4/EQ) / EQUATORIAL isomer | SC-8060 | C15H26N2O4 |
| bifunctional Cross-Linking-Amino-Acid / PrDiAzK | SC-8028 | C13H20N4O5 |
| Click Amino Acid / exo-BCN – Fmoc – L - Lysine (BCN) | SC-8038 | C32H36N2O6 |
| Cross-Linking-Amino-Acid / DiAzK | SC-8034 | C11H20N4O4 |
| Click-Amino-Acid / N3-Lys | SC-8027 | C9H17N5O4 |
| Click Amino Acid / cyclopropene – L - Lysine (CP) | SC-8017 | C12H20N2O4 |
| Click Amino Acid / endo-BCN – Fmoc – L - Lysine (BCN) | SC-8015 | C32H36N2O6 |
| Click Amino Acid / trans-Cyclooct-2-en – L - Lysine (TCO*A) | SC-8008 | C15H26N2O4 |
| Click Amino Acid / exo BCN - L - Lysine | SC-8016 | C17H26N2O4 |
| Click Amino Acid / Norbonene-CH2 – L - Lysine (NBO) | SC-8006 | C15 H24 N2 O4 * HCl |
| Click Amino Acid / rac BCN - L - Lysine | SC-8003 | C17H26N2O4 |
| Click Amino Acid / trans-Cyclooct-4-en – L - Lysine (TCO4) / AXIAL isomer | SC-8004 | C15H26N2O4 |
| Click Amino Acid / endo BCN - L - Lysine | SC-8014 | C17H26N2O4 |
| Click-Amino-Acid / PrK - HCl-salt | SC-8002 | C10H16N2O4 * HCl |
| Click Amino Acid (99%) / SCO - L - Lysine - HCO2H-salt | SC-8001 | C15H24N2O4* HCO2H |
| Click Amino Acid (95%) / SCO - L - Lysine - HCO2H-salt | SC-8000 | C15H24N2O4 * HCO2H |
| SCO-NHS carbonate | SC-8076 | C13H15NO5 |
| exo-BCN-NHS carbonate | SC-8075 | C15H17NO5 |
| endo-BCN-NHS carbonate | SC-8074 | C15H17NO5 |
| SCO-PEG7-Maleimide | SC-8305 | C32H51N3O12 |
| SCO-PEG3-Maleimide | SC-8304 | C24H35N3O8 |
| SCO-PEG2-Maleimide | SC-8303 | C22H31N3O7 |
| BCN-exo-PEG7-Maleimide | SC-8205 | C34H53N3O12 |
| BCN-exo-PEG3-Maleimide | SC-8204 | C24H33N3O7 |
| BCN-exo-PEG2-Maleimide | SC-8203 | C24H33N3O7 |
| BCN-endo-PEG7-Maleimide | SC-8105 | C34H53N3O12 |
| BCN-endo-PEG3-Maleimide | SC-8104 | C24H33N3O7 |
| BCN-endo-PEG2-Maleimide | SC-8103 | C24H33N3O7 |
| BCN-exo-PEG8-COOH | SC-8211 | C30H51NO12 |
| BCN-exo-PEG4-COOH | SC-8210 | C22H35NO8 |
| BCN-exo-PEG3-COOH | SC-8209 | C20H31NO7 |
| BCN-exo-PEG8-NHS | SC-8208 | C34H54N2O14 |
| BCN-exo-PEG4-NHS | SC-8207 | C26H38N2O10 |
| BCN-exo-PEG3-NHS | SC-8206 | C24H34N2O9 |
| BCN-endo-PEG3-NHS | SC-8106 | C24H34N2O9 |
| BCN-endo-PEG4-NHS | SC-8107 | C26H38N2O10 |
| BCN-endo-PEG8-NHS | SC-8108 | C34H54N2O14 |
| BCN-endo-PEG8-COOH | SC-8111 | C30H51NO12 |
| BCN-endo-PEG4-COOH | SC-8110 | C22H35NO8 |
| BCN-endo-PEG3-COOH | SC-8109 | C20H31NO7 |
| SCO-PEG3-COOH | SC-8309 | C18H29NO7 |
| SCO-PEG4-COOH | SC-8310 | C20H33NO8 |
| SCO-PEG8-COOH | SC-8311 | C28H49NO12 |
| SCO-PEG8-NHS | SC-8308 | C32H52N2O14 |
| SCO-PEG4-NHS | SC-8307 | C24H36N2O10 |
| SCO-PEG3-NHS | SC-8306 | C22H32N2O9 |
| SCO-PEG7-NH2 | SC-8302 | C25H46N2O9 |
| SCO-PEG3-NH2 | SC-8301 | C17H30N2O5 |
| SCO-PEG2-NH2 | SC-8300 | C15H26N2O4 |
| BCN-exo-PEG2-NH2 | SC-8200 | C17H28N2O4 |
| BCN-exo-PEG3-NH2 | SC-8201 | C19H32N2O5 |
| BCN-exo-PEG7-NH2 | SC-8202 | C27H48N2O9 |
| BCN-endo-PEG7-NH2 | SC-8102 | C27H48N2O9 |
| BCN-endo-PEG3-NH2 | SC-8101 | C19H32N2O5 |
| BCN-endo-PEG2-NH2 | SC-8100 | C17H28N2O4 |
| exo BCN - OH | SC-8033 | C10 H14 O |
| SCO - active ester (p-NPE) | SC-8032 | C15H15NO5 |
| SCO - OH | SC-8030 | C8H12O |
| endo BCN - OH | SC-8029 | C10 H14 O |
| exo BCN - active ester (p-NPE) | SC-8010 | C17H17NO5 |
| TCO4 - NHS carbonate / EQUATORIAL isomer | SC-8073 | C13H17NO5 |
| TCO4 - NHS carbonate / AXIAL isomer | SC-8072 | C13H17NO5 |
| (E)-cyclooct-4-enol / axial - TCO4 / A | SC-8018 | C8H14O |
| TCO4-PEG8-COOH | SC-8411 | C28H51NO12 |
| TCO*-PEG8-COOH | SC-8511 | C28H51NO12 |
| TCO*-PEG4-COOH | SC-8510 | C20H35NO8 |
| TCO4-PEG4-COOH | SC-8410 | C20H35NO8 |
| TCO4-PEG3-COOH | SC-8409 | C18H31NO7 |
| TCO*-PEG3-COOH | SC-8509 | C20H31NO7 |
| TCO*-PEG8-NHS | SC-8508 | C32H54N2O14 |
| TCO4-PEG8-NHS | SC-8408 | C32H54N2O14 |
| TCO4-PEG4-NHS | SC-8407 | C24H38N2O10 |
| TCO*-PEG4-NHS | SC-8507 | C24H38N2O10 |
| TCO*-PEG3-NHS | SC-8506 | C22H34N2O9 |
| TCO4-PEG3-NHS | SC-8406 | C22H34N2O9 |
| TCO*-PEG7-Maleimide | SC-8505 | C32H53N3O12 |
| TCO*-PEG3-Maleimide | SC-8504 | C24H37N3O8 |
| TCO*-PEG2-Maleimide | SC-8503 | C22H33N3O7 |
| TCO4-PEG7-Maleimide | SC-8405 | C32H53N3O12 |
| TCO4-PEG3-Maleimide | SC-8404 | C24H37N3O8 |
| TCO4-PEG2-Maleimide | SC-8403 | C22H33N3O7 |
| TCO*-PEG2-NH2 | SC-8500 | C15H28N2O4 |
| TCO*-PEG3-NH2 | SC-8501 | C17H32N2O5 |
| TCO*-PEG7-NH2 | SC-8502 | C25H48N2O9 |
| TCO4-PEG7-NH2 | SC-8402 | C25H48N2O9 |
| TCO4-PEG3-NH2 | SC-8401 | C17H32N2O5 |
| TCO4-PEG2-NH2 | SC-8400 | C15H28N2O4 |
| (E)-cyclooct-4-en active ester / TCO/E- active ester (p-NPE) / equatorial | SC-8024 | C15H17NO5 |
| (E)-cyclooct-4-en active ester / TCO4 / A- active ester (p-NPE) / axial | SC-8019 | C15H17NO5 |
| TCO*A - active ester (p-NPE) | SC-8007 | C15H17NO5 |
| Fluorescent-PEG8-Me-Tet | SC-8817 | C54H68N8O13 |
| Fluorescent-PEG4-Me-Tet | SC-8816 | C46H52N8O9 |
| Fluorescent-PEG3-Me-Tet | SC-8815 | C44H48N8O8 |
| Me-Tet-PEG8-NHBoc | SC-8820 | C34H56N6O11 |
| Me-Tet-PEG4-NHBoc | SC-8819 | C26H40N6O7 |
| Me-Tet-PEG3-NHBoc | SC-8818 | C24H36N6O6 |
| Biotin-PEG8-Me-Tet | SC-8814 | C39H62N8O11S |
| Biotin-PEG4-Me-Tet | SC-8813 | C31H46N8O7S |
| Biotin-PEG3-Me-Tet | SC-8812 | C29H42N8O6S |
| Me-Tet-PEG9-COOH | SC-8811 | C32H51N5O12 |
| Me-Tet-PEG5-COOH | SC-8810 | C24H35N5O8 |
| Me-Tet-PEG4-COOH | SC-8809 | C22H31N5O7 |
| Me-Tet-PEG9-NHS | SC-8808 | C36H54N6O14 |
| Me-Tet-PEG5-NHS | SC-8807 | C28H38N6O10 |
| Me-Tet-PEG4-NHS | SC-8806 | C26H34N6O9 |
| Me-Tet-PEG8-Maleimide | SC-8805 | C36H53N7O12 |
| Me-Tet-PEG4-Maleimide | SC-8804 | C28H37N7O8 |
| Me-Tet-PEG3-Maleimide | SC-8803 | C26H33N7O7 |
| Me-Tet-PEG8-NH2 - HCl salt | SC-8802 | C29H48N6O9 + HCl |
| Me-Tet-PEG4-NH2 | SC-8801 | C21H32N6O5 |
| Me-Tet-PEG3-NH2 | SC-8800 | C19H28N6O4 |
| Aminopentyl - Tetrazine - HCl-salt | SC-1193 | C18H20N8O * HCl |
| Tetrazine active ester (Tetrazine-NHS) | SC-1194 | C17H11N7O4 |
| Aminopropyl - Tetrazine - HCl-salt | SC-1192 | C16H16N8O * HCl |
| Methyl-Tetrazine - Amine- HCO2H-salt | SC-1191 | C10H11N5* HCO2H |
| Tetrazine - Amine - HCO2H-salt | SC-1190 | C9H9N5 * HCO2H |
| N3-PEG8-t-butyl ester | SC-8923 | C23H45N3O10 |
| N3-PEG5-t-butyl ester | SC-8922 | C17H33N3O7 |
| N3-PEG4-t-butyl ester | SC-8921 | C15H29N3O6 |
| N3-PEG3-t-butyl ester | SC-8920 | C13H25N3O5 |
| Boc-N-Amido-PEG7-N3 | SC-8912 | C21H42N4O9 |
| Boc-N-Amido-PEG3-N3 | SC-8911 | C13H26N4O5 |
| Boc-N-Amido-PEG2-N3 | SC-8910 | C11H22N4O4 |
| Boc-N-Amido-PEG4-Alkyne | SC-8900 | C16H29NO6 |
| Boc-N-Amido-PEG3-Alkyne | SC-8039 | C14H25NO5 |
| TAMRA-PEG8-Alkyne | SC-8717 | C44H57N3O12 |
| TAMRA-PEG4-Alkyne | SC-8716 | C36H41N3O8 |
| TAMRA-PEG3-Alkyne | SC-8715 | C34H37N3O7 |
| TAMRA-PEG7-N3 | SC-8714 | C41H54N6O11 |
| TAMRA-PEG3-N3 | SC-8713 | C33H38N6O7 |
| TAMRA-PEG2-N3 | SC-8712 | C31H34N6O6 |
| Biotin-PEG8-Alkyne | SC-8617 | C29H51N3O10S |
| Biotin-PEG4-Alkyne | SC-8616 | C21H35N3O6S |
| Biotin-PEG3-Alkyne | SC-8615 | C19H31N3O5S |
| Biotin-PEG7-N3 | SC-8614 | C26H48N6O9S |
| Biotin-PEG3-N3 | SC-8613 | C18H32N6O5S |
| Biotin-PEG2-N3 | SC-8612 | C16H28N6O4S |
| Click-Amino-Acid / PrK - HCl-salt | SC-8002 | C10H16N2O4 * HCl |
| Alkyne - PEG2 | SC-0063 | C7H12O3 |
| Azido - PEG1 | SC-0062 | C4H9N3O2 |
| Biotin-PEG8-Alkyne | SC-8617 | C29H51N3O10S |
| Biotin-PEG4-Alkyne | SC-8616 | C21H35N3O6S |
| Biotin-PEG3-Alkyne | SC-8615 | C19H31N3O5S |
| Alkyne - PEG2 - TCA | SC-0067 | C9H12Cl3NO3 |
| Alkyne - PEG2 - CM | SC-0065 | C8H13ClO3 |
| Alkyne - PEG2 | SC-0063 | C7H12O3 |
| TAMRA-PEG7-N3 | SC-8714 | C41H54N6O11 |
| TAMRA-PEG3-N3 | SC-8713 | C33H38N6O7 |
| TAMRA-PEG2-N3 | SC-8712 | C31H34N6O6 |
| Biotin-PEG7-N3 | SC-8614 | C26H48N6O9S |
| Biotin-PEG3-N3 | SC-8613 | C18H32N6O5S |
| Biotin-PEG3-CoenzymeA | SC-8618 | C46H75N12O24P3S2+3NH3 |
| Bis-Cyano-PEG9 | SC-8932 | C22H40N2O9 |
| Bis-Cyano-PEG5 | SC-8931 | C14H24N2O5 |
| Bis-Cyano-PEG4 | SC-8930 | C12H20N2O4 |
| N3-PEG8-t-butyl ester | SC-8923 | C23H45N3O10 |
| N3-PEG5-t-butyl ester | SC-8922 | C17H33N3O7 |
| N3-PEG4-t-butyl ester | SC-8921 | C15H29N3O6 |
| N3-PEG3-t-butyl ester | SC-8920 | C13H25N3O5 |
| Boc-N-Amido-PEG7-N3 | SC-8912 | C21H42N4O9 |
| Boc-N-Amido-PEG3-N3 | SC-8911 | C13H26N4O5 |
| Boc-N-Amido-PEG2-N3 | SC-8910 | C11H22N4O4 |
| Boc-N-Amido-PEG4-Alkyne | SC-8900 | C16H29NO6 |
| Boc-N-Amido-PEG3-Alkyne | SC-8039 | C14H25NO5 |
| Fluorescent-PEG8-Me-Tet | SC-8817 | C54H68N8O13 |
| Fluorescent-PEG4-Me-Tet | SC-8816 | C46H52N8O9 |
| Fluorescent-PEG3-Me-Tet | SC-8815 | C44H48N8O8 |
| TAMRA-PEG8-Alkyne | SC-8717 | C44H57N3O12 |
| TAMRA-PEG4-Alkyne | SC-8716 | C36H41N3O8 |
| TAMRA-PEG3-Alkyne | SC-8715 | C34H37N3O7 |
| TAMRA-PEG7-N3 | SC-8714 | C41H54N6O11 |
| TAMRA-PEG3-N3 | SC-8713 | C33H38N6O7 |
| TAMRA-PEG2-N3 | SC-8712 | C31H34N6O6 |
| TAMRA-PEG8-COOH | SC-8711 | C44H59N3O14 |
| TAMRA-PEG4-COOH | SC-8710 | C36H43N3O10 |
| TAMRA-PEG3-COOH | SC-8709 | C34H39N3O9 |
| TAMRA-PEG8-NHS | SC-8708 | C48H62N4O16 |
| TAMRA-PEG4-NHS | SC-8707 | C40H46N4O12 |
| TAMRA-PEG3-NHS | SC-8706 | C38H42N4O11 |
| TAMRA-PEG7-Maleimide | SC-8705 | C48H61N5O14 |
| TAMRA-PEG3-Maleimide | SC-8704 | C40H45N5O10 |
| TAMRA-PEG2-Maleimide | SC-8703 | C38H41N5O9 |
| TAMRA-PEG7-NH2 | SC-8702 | C41H56N4O11 |
| TAMRA-PEG3-NH2 | SC-8701 | C33H40N4O7 |
| TAMRA-PEG2-NH2 | SC-8700 | C31H36N4O6 |
| Me-Tet-PEG8-NHBoc | SC-8820 | C34H56N6O11 |
| Me-Tet-PEG4-NHBoc | SC-8819 | C26H40N6O7 |
| Me-Tet-PEG3-NHBoc | SC-8818 | C24H36N6O6 |
| Biotin-PEG8-Me-Tet | SC-8814 | C39H62N8O11S |
| Biotin-PEG4-Me-Tet | SC-8813 | C31H46N8O7S |
| Biotin-PEG3-Me-Tet | SC-8812 | C29H42N8O6S |
| Me-Tet-PEG9-COOH | SC-8811 | C32H51N5O12 |
| Me-Tet-PEG5-COOH | SC-8810 | C24H35N5O8 |
| Me-Tet-PEG4-COOH | SC-8809 | C22H31N5O7 |
| Me-Tet-PEG9-NHS | SC-8808 | C36H54N6O14 |
| Me-Tet-PEG5-NHS | SC-8807 | C28H38N6O10 |
| Me-Tet-PEG4-NHS | SC-8806 | C26H34N6O9 |
| Me-Tet-PEG8-Maleimide | SC-8805 | C36H53N7O12 |
| Me-Tet-PEG4-Maleimide | SC-8804 | C28H37N7O8 |
| Me-Tet-PEG3-Maleimide | SC-8803 | C26H33N7O7 |
| Me-Tet-PEG8-NH2 - HCl salt | SC-8802 | C29H48N6O9 + HCl |
| Me-Tet-PEG4-NH2 | SC-8801 | C21H32N6O5 |
| Me-Tet-PEG3-NH2 | SC-8800 | C19H28N6O4 |
| Biotin-PEG8-Alkyne | SC-8617 | C29H51N3O10S |
| Biotin-PEG4-Alkyne | SC-8616 | C21H35N3O6S |
| Biotin-PEG3-Alkyne | SC-8615 | C19H31N3O5S |
| Biotin-PEG7-N3 | SC-8614 | C26H48N6O9S |
| Biotin-PEG3-N3 | SC-8613 | C18H32N6O5S |
| Biotin-PEG2-N3 | SC-8612 | C16H28N6O4S |
| Biotin-PEG8-COOH | SC-8611 | C29H53N3O12S |
| Biotin-PEG4-COOH | SC-8610 | C19H33N3O7S |
| Biotin-PEG3-COOH | SC-8609 | C19H33N3O7S |
| Biotin-PEG8-NHS | SC-8608 | C33H56N4O14S |
| Biotin-PEG4-NHS | SC-8607 | C25H40N4O10S |
| Biotin-PEG3-NHS | SC-8606 | C23H36N4O9S |
| Biotin-PEG7-Maleimide | SC-8605 | C33H55N5O12S |
| Biotin-PEG3-Maleimide | SC-8604 | C25H39N5O8S |
| Biotin-PEG2-Maleimide | SC-8603 | C23H35N5O7S |
| Biotin-PEG7-NH2 | SC-8602 | C26H50N4O9S |
| Biotin-PEG3-NH2 | SC-8601 | C18H34N4O5S |
| Biotin-PEG2-NH2 | SC-8600 | C16H30N4O4S |
| TCO4-PEG8-COOH | SC-8411 | C28H51NO12 |
| TCO*-PEG8-COOH | SC-8511 | C28H51NO12 |
| TCO*-PEG4-COOH | SC-8510 | C20H35NO8 |
| TCO4-PEG4-COOH | SC-8410 | C20H35NO8 |
| TCO4-PEG3-COOH | SC-8409 | C18H31NO7 |
| TCO*-PEG3-COOH | SC-8509 | C20H31NO7 |
| TCO*-PEG8-NHS | SC-8508 | C32H54N2O14 |
| TCO4-PEG8-NHS | SC-8408 | C32H54N2O14 |
| TCO4-PEG4-NHS | SC-8407 | C24H38N2O10 |
| TCO*-PEG4-NHS | SC-8507 | C24H38N2O10 |
| TCO*-PEG3-NHS | SC-8506 | C22H34N2O9 |
| TCO4-PEG3-NHS | SC-8406 | C22H34N2O9 |
| TCO*-PEG7-Maleimide | SC-8505 | C32H53N3O12 |
| TCO*-PEG3-Maleimide | SC-8504 | C24H37N3O8 |
| TCO*-PEG2-Maleimide | SC-8503 | C22H33N3O7 |
| TCO4-PEG7-Maleimide | SC-8405 | C32H53N3O12 |
| TCO4-PEG3-Maleimide | SC-8404 | C24H37N3O8 |
| TCO4-PEG2-Maleimide | SC-8403 | C22H33N3O7 |
| TCO*-PEG2-NH2 | SC-8500 | C15H28N2O4 |
| TCO*-PEG3-NH2 | SC-8501 | C17H32N2O5 |
| TCO*-PEG7-NH2 | SC-8502 | C25H48N2O9 |
| TCO4-PEG7-NH2 | SC-8402 | C25H48N2O9 |
| TCO4-PEG3-NH2 | SC-8401 | C17H32N2O5 |
| TCO4-PEG2-NH2 | SC-8400 | C15H28N2O4 |
| SCO-PEG7-Maleimide | SC-8305 | C32H51N3O12 |
| SCO-PEG3-Maleimide | SC-8304 | C24H35N3O8 |
| SCO-PEG2-Maleimide | SC-8303 | C22H31N3O7 |
| BCN-exo-PEG7-Maleimide | SC-8205 | C34H53N3O12 |
| BCN-exo-PEG3-Maleimide | SC-8204 | C24H33N3O7 |
| BCN-exo-PEG2-Maleimide | SC-8203 | C24H33N3O7 |
| BCN-endo-PEG7-Maleimide | SC-8105 | C34H53N3O12 |
| BCN-endo-PEG3-Maleimide | SC-8104 | C24H33N3O7 |
| BCN-endo-PEG2-Maleimide | SC-8103 | C24H33N3O7 |
| BCN-exo-PEG8-COOH | SC-8211 | C30H51NO12 |
| BCN-exo-PEG4-COOH | SC-8210 | C22H35NO8 |
| BCN-exo-PEG3-COOH | SC-8209 | C20H31NO7 |
| BCN-exo-PEG8-NHS | SC-8208 | C34H54N2O14 |
| BCN-exo-PEG4-NHS | SC-8207 | C26H38N2O10 |
| BCN-exo-PEG3-NHS | SC-8206 | C24H34N2O9 |
| BCN-endo-PEG3-NHS | SC-8106 | C24H34N2O9 |
| BCN-endo-PEG4-NHS | SC-8107 | C26H38N2O10 |
| BCN-endo-PEG8-NHS | SC-8108 | C34H54N2O14 |
| BCN-endo-PEG8-COOH | SC-8111 | C30H51NO12 |
| BCN-endo-PEG4-COOH | SC-8110 | C22H35NO8 |
| BCN-endo-PEG3-COOH | SC-8109 | C20H31NO7 |
| SCO-PEG3-COOH | SC-8309 | C18H29NO7 |
| SCO-PEG4-COOH | SC-8310 | C20H33NO8 |
| SCO-PEG8-COOH | SC-8311 | C28H49NO12 |
| SCO-PEG8-NHS | SC-8308 | C32H52N2O14 |
| SCO-PEG4-NHS | SC-8307 | C24H36N2O10 |
| SCO-PEG3-NHS | SC-8306 | C22H32N2O9 |
| SCO-PEG7-NH2 | SC-8302 | C25H46N2O9 |
| SCO-PEG3-NH2 | SC-8301 | C17H30N2O5 |
| SCO-PEG2-NH2 | SC-8300 | C15H26N2O4 |
| BCN-exo-PEG2-NH2 | SC-8200 | C17H28N2O4 |
| BCN-exo-PEG3-NH2 | SC-8201 | C19H32N2O5 |
| BCN-exo-PEG7-NH2 | SC-8202 | C27H48N2O9 |
| BCN-endo-PEG7-NH2 | SC-8102 | C27H48N2O9 |
| BCN-endo-PEG3-NH2 | SC-8101 | C19H32N2O5 |
| BCN-endo-PEG2-NH2 | SC-8100 | C17H28N2O4 |
| PEG-12 | SC-1512 | C24H50O13 |
| PEG-11 | SC-1511 | C22H46O12 |
| PEG-10 | SC-1510 | C20H42O11 |
| PEG-9 | SC-1509 | C18H38O10 |
| PEG-8 | SC-1508 | C16H34O9 |
| Alkyne - PEG2 - TCA | SC-0067 | C9H12Cl3NO3 |
| Azido - PEG2 - TCA | SC-0066 | C6H9Cl3N4O2 |
| Alkyne - PEG2 - CM | SC-0065 | C8H13ClO3 |
| Azido - PEG2 - CM | SC-0064 | C5H10ClN3O |
| Alkyne - PEG2 | SC-0063 | C7H12O3 |
| Azido - PEG1 | SC-0062 | C4H9N3O2 |
| 2-Methyl-Glycerol | SC-0006 | C4H10O3 |
| 2-Stearoyl glycerol | SC-1171 | C21H42O4 |
| 2-Palmitoyl glycerol | SC-1170 | C19H38O4 |
| 2-Myristoyl glycerol | SC-1169 | C17H34O4 |
| 2-Lauroyl glycerol | SC-1168 | C15H30O4 |
| 2-Linoleoyl glycerol | SC-1167 | C21H38O4 |
| 2-Oleoyl-glycerol | SC-1162 | C21H40O4 |
| SH-6 | SC-0045 | C28H57O9P |
| SH-5 | SC-0044 | C29H59O10P |
| Ins(345)P3*3Na | 3-0-345-Na | C6H12Na3O15P3 |
| Ins(1)P*2K | 1-0-1-2K | C6H11K2O9P |
| myo-Inositol – trispyrophosphate | Pyro-Ins-Na | C6H8Na4O21P6 |
| Ins(123456)P6 | 6-0-123456-Na | C6H18O24P6 * xNa*yH2O |
| Ins(23456)P5*10Na | 5-0-23456-Na | C6H7Na10O21P5 |
| Ins(13456)P5*10Na | 5-0-13456-Na | C6H7Na10O21P5 |
| Ins(12456)P5*10Na | 5-0-12456-Na | C6H7Na10O21P5 |
| Ins(12356)P5*10Na | 5-0-12356-Na | C6H7Na10O21P5 |
| Ins(12345)P5*10Na | 5-0-12345-Na | C6H7Na10O21P5 |
| Ins(1345)P4*8Na | 4-0-1345-Na | C6H8Na8O18P4 |
| Ins(136)P3*6Na | 3-0-136-Na | C6H9Na6O15P3 |
| Ins(134)P3*6K | 3-0-134-K | C6H9K6O15P3 |
| Ins(345)P3*3K | 3-0-345-K | C6H12K3O15P3 |
| Ins(145)P3*6K | 3-0-145-K | C6H9K6O15P3 |
| Ins(145)P3*3Li | 3-0-145-Li | C6H12Li3O15P3 |
| Ins(145)P3*6Na | 3-0-145-Na | C6H9Na6O15P3 |
| Ins(135)P3*6Na | 3-0-135-6Na | C6H9Na6O15P3 |
| Ins(1245)P4*8Na | 4-0-1245-Na | C6H8Na8O18P4 |
| INO-4995 | INO-4995 | C50H86O35P4 |
| Bt3-Ins(356)P3 / PM | 3-2-356 | C42H69O30P3 |
| Bt3-Ins(346)P3 / PM | 3-2-346 | C42H69O30P3 |
| Bt3-Ins(146)P3 / PM | 3-2-146 | C42H69O30P3 |
| Bt3-Ins(135)P3 / PM | 3-2-135 | C42H69O30P3 |
| caged-Ins(145)P3 / PM | cag-iso-2-145-10 | C42H64NO31P3 |
| caged-Ins(145)P3 / PM | cag-iso-2-145-100 | C42H64NO31P3 |
| Bt2-Ins(3456)P4 / PM | 4-2-3456 | C46H76O36P4 |
| Bt2-Ins(1456)P4 / PM | 4-2-1456 | C46H76O36P4 |
| Bt2-Ins(1345)P4 / PM | 4-2-1345 | C46H76O36P4 |
| Bt2-Ins(1356)P4 / AM | 4-1-1356 | C38H60O36P4 |
| Bt3-Ins(356)P3 / AM | 3-1-356 | C36H57O30P3 |
| Bt3-Ins(346)P3 / AM | 3-1-346 | C36H57O30P3 |
| Bt3-Ins(146)P3 / AM | 3-1-146 | C36H57O30P3 |
| Bt3-Ins(134)P3 / AM | 3-1-134 | C36H57O30P3 |
| Bt3-Ins(136)P3 / AM | 3-1-136 | C36H57O30P3 |
| Bt3-Ins(135)P3 / AM | 3-1-135 | C36H57O30P3 |
| Bt3-Ins(145)P3 / AM | 3-1-145 | C36H57O30P3 |
| caged-Ins(145)P3 / PM | cag-iso-2-145-10 | C42H64NO31P3 |
| caged-Ins(145)P3 / PM | cag-iso-2-145-100 | C42H64NO31P3 |
| caged-Ins(145)P3O6 | cag-6-145 | C15H18NO19P3Na6 |
| caged-Ins(145)P3 P4 | cag-0-145 | C14H19NO17P3Na3 |
| PtdIns(345)P3 | Ptd-0-345-16 | C41H82O22P4 |
| PtdIns(45)P2 | Ptd-0-45-16 | C41H81O19P3 |
| PtdIns(34)P2 | Ptd-0-34-16 | C41H81O19P3 |
| PtdIns(5)P | Ptd-0-5-16 | C41H80O16P2 |
| PtdIns(4)P | Ptd-0-4-16 | C41H80O16P2 |
| PtdIns(3)P | Ptd-0-3-16 | C41H80O16P2 |
| PtdIns(1)P | Ptd-0-1-16 | C41H79O13P |
| D-myo-Inositol-1,2-O-cyclohexylidene | SC-0088 | C12H20O6 |
| 23:45- diisopropylidene-myo-Inositol | SC-0079 | C12H20O6 |
| 12:56- diisopropylidene-myo-Inositol | SC-0078 | C12H20O6 |
| D-myo-Inositol-2,3-O-cyclohexylidene | SC-0077 | C12H20O6 |
| 1,4-Di-butyryl-23:56-diisopropylidene-myo-Inositol | SC-0076 | C20H32O8 |
| 3,6-Di-butyryl-12:45-diisopropylidene-myo-Inositol | SC-0075 | C20H32O8 |
| 2,3:4,5-Di-O-Iso-1,6-Di-O-Benzyl-Ins | IOB-Ins-2345 | C26H32O6 |
| 1,2:5,6-Di-O-Iso-3,4-Di-O-Benzyl-Ins | IOB-Ins-1256 | C26H32O6 |
| 3,4,5,6-Tetra-O-Benzyl-Ins | TOB-Ins-3456 | C34H36O6 |
| 1,4,5,6-Tetra-O-Benzyl-Ins | TOB-Ins-1456 | C34H36O6 |
| DEAC-dUTP | SC-9002 | C26H31N4O17P3 |
| 35-PAPS-TEA | SC-9000-TEA | C10H15N5O13P2S x 4 C6 H15 N |
| ACPPS-TEA | SC-0068 | C10H13N5O12P2S + C6H5N |
| 25-PAPS-Li | SC-9001-Li | C10H11Li4N5O13P2S |
| 35-PAPS-Li (CAS: 102029-54-9) | SC-9000-Li | C10H11Li4N5O13P2S |
| EdU | SC-0040 | C11H12N2O5 |
| EdUTP-TEA | SC-0039 | C11H15N2O14P3 * 4(C6H15N) |
| EdUTP | SC-0038 | C11H15N2O14P3 |
| 2'-PAP | SC-0037 | C10H17N5O10P2 |
| 2'-PAP-Na | SC-0036 | C10H15N5Na2O10P2 |
| 3'-PAP-Na | SC-0034 | C10H15N5Na2O10P2 |
| 3'-PAP | SC-0035 | C10H17N5O10P2 |
| Vancomycin hexapeptide | SC-1606 | C59H62Cl2N8O23 |
| Didechloro Vancomycin | SC-1605 | C66H77N9O24 |
| Vancomycin Impurity A | SC-1601 | C65H73Cl2N9O24 |
| Vancomycin Impurity D | SC-1604 | C59H62Cl2N8O22 |
| Vancomycin Impurity C | SC-1603 | C53H52Cl2N8O17 |
| Vancomycin Impurity B | SC-1602 | C66H74Cl2N8O25 |
| INO-4995 | INO-4995 | C50H86O35P4 |
| Fidaxomicin - d7 | SC-1157 | C52H67D7Cl2O18 |
| Podophyllotoxin Derivate | SC-0025 | C21H20O8 |
| Podophyllotoxin Derivate | SC-0026 | C21H21NO7 |
| Clopidogrel Impurity 4 | SC-0099 | C16H16ClNO2S * H2SO4 |
| Gestodene Impurity E | SC-0028 | C21H24O3 |
| Fidaxomicin Metabolite OP-1118 | SC-1158 | C48H68Cl2O17 |
| Prasugrel metabolite M6-d3 (stabilzed) | SC-0093 | C27H25D3FNO5S * HCl |
| Prasugrel metabolite M6 | SC-0092 | C19H22FNO3S |
| Clopidogrel Impurity C | SC-0087 | C16H18ClNO2S |
| Clopidogrel Impurity 3 | SC-0086 | C15H17Cl2NO2S |
| Prasugrel active metabolite M3-d3 (stabilzed) | SC-0033 | C27H25D3FNO5S * HCl |
| Prasugrel active metabolite M3 HCl (stabilized) | SC-0029 | C27H28FNO5S * HCl |
| Fidaxomicin - d7 | SC-1157 | C52H67D7Cl2O18 |
| Methyl 4-(2-hydroxyethyl)benzoate-13C6,2D (Ring-13C6,Ethyl-1,2-D2) | SC-0080 | C4 13C6 H10 D2 O3 |
| Anthracene 13C6 | SC-0074 | 13C6C8H8 |
| Phenanthrene 13C6 | SC-0073 | 13C6C8H8 |
| Naphthalene 13C10 | SC-0072 | 13C10H8 |
| Naphthalene 13C6 | SC-0071 | 13C6C4H8 |
| Prasugrel active metabolite M3-d3 (stabilzed) | SC-0033 | C27H25D3FNO5S * HCl |
| 2-Cyanoethyl N,N-diisopropylchlorophosphoramidite | SC-0091 | C9H18ClN2OP |
| Phosphoramidous acid. N.N-bis(1-methylethyl)-. bis(2-cyanoethyl) ester | SC-0061 | C12H22N3O2P |
| Phosphoramidous acid, N,N-bis(1-methylethyl)-, bis(phenylmethyl) ester | SC-1165 | C20 H28 N O2 P |
| Phosphorodiamidous acid. N.N.N'.N'-tetrakis(1-methylethyl)-. phenylmethyl ester | SC-0060 | C19 H35 N2 O P |
| Phosphoramidous acid. N.N-bis(1-methylethyl)-. 2-cyanoethyl [1-(2-nitrophenyl)ethyl] ester) | SC-0059 | C17 H26 N3 O4 P |
| Dichloro N,N-Diisopropylphosphoramidite | SC-0058 | C6 H14 Cl2 N P |
| Phosphoramidous acid. N.N-bis(1-methylethyl)-. bis(9H-fluoren-9-ylmethyl) ester | SC-0057 | C34 H36 N O2 P |
| Di-tert-butyl chloromethyl phosphate | SC-0011 | C9H20ClO4P |
| Di-benzyl chloromethyl phosphate | SC-0010 | C15H16ClO4P |
| TMe-OHB-DAZA | SC-0300 | C29H37N3O6 |
| TEt-OHB-DAZA | SC-0301 | C32H43N3O6 |
| NEmo2E | SC-0201 | C96H138KN18O30S |
| NEmo1 | SC-0200 | C96H138KN18O30S |
| D-Serine-O-phosphate | SC-1810 | C3H8NO6P |
| Ph-CCA-NH2 | SC-1400 | C16H12N2O |
| Menaquinone 8 / MK 8:8 | SC-1230 | C51H72O2 |
| Allyl-Maleimide | SC-1121 | C7H7NO2 |
| Nor-cisapride Derivative | SC-1161 | C17H25Cl2N3O3 |
| AlK - L - Lysine - HCl-salt | SC-8012 | C10H18N2O4* HCl |
| 4-methyl-2,2-bis(trifluoromethyl)oxazolidin-5-one | SC-0098 | C6H5F6NO2 |
| 3-(5-oxo-2,2-bis(trifluoromethyl)oxazolidin-4-yl)propanoic acid | SC-0097 | C8H7F6NO4 |
| 7-(diethylamino)-4-(hydroxymethyl)-coumarin / DEACM | SC-0096 | C14H17NO3 |
| 3-bromo-4-methyl-7-(diethylamino)-coumarin | SC-0095 | C14H16BrNO2 |
| Xanthohumol | SC-0094 | C21H22O5 |
| IEPOX 4 | SC-0090 | C5H10O3 |
| IEPOX 3 | SC-0089 | C5H10O3 |
| 2-C-Methyl-L-Threitol | SC-0085 | C5H12O4 |
| 2-C-Methyl-D-Threitol | SC-0084 | C5H12O4 |
| 2-C-Methyl-L-Erythritol | SC-0083 | C5H12O4 |
| 2-C-Methyl-D-Erythritol | SC-0082 | C5H12O4 |
| 3-Amino-7-(diethylamino)-coumarine | SC-0081 | C13 H16 N2 O2 |
| Chloromethylpropionate | SC-1164 | C4H7ClO2 |
| 2-(2-fluoro-2-methylpropoxy)-2-methylpropan-1-ol | SC-1163 | C8H17FO2 |
| 1,4-Di-butyryl-23:56-diisopropylidene-myo-Inositol | SC-0076 | C20H32O8 |
| 3,6-Di-butyryl-12:45-diisopropylidene-myo-Inositol | SC-0075 | C20H32O8 |
| Y-27632 | SC-0048 | C14H21N3O *2HCl |
| H-1152 | SC-0053 | C16H21N3O2S*2HCl |
| 3,4,5,6-Tetra-O-Benzyl-Ins | TOB-Ins-3456 | C34H36O6 |
| 1,4,5,6-Tetra-O-Benzyl-Ins | TOB-Ins-1456 | C34H36O6 |
| Biotin-PEG3-CoenzymeA | SC-8618 | C46H75N12O24P3S2+3NH3 |
| TMe-OHB-DAZA | SC-0300 | C29H37N3O6 |
| TEt-OHB-DAZA | SC-0301 | C32H43N3O6 |
| SCO-NHS carbonate | SC-8076 | C13H15NO5 |
| endo-BCN-NHS carbonate | SC-8074 | C15H17NO5 |
| TCO4 - NHS carbonate / EQUATORIAL isomer | SC-8073 | C13H17NO5 |
| TCO4 - NHS carbonate / AXIAL isomer | SC-8072 | C13H17NO5 |
| TCO* - NHS carbonate / EQUATORIAL isomer | SC-8071 | C13H17NO5 |
| TCO* - NHS carbonate / AXIAL isomer | SC-8070 | C13H17NO5 |
| NEmo2E | SC-0201 | C96H138KN18O30S |
| NEmo1 | SC-0200 | C96H138KN18O30S |
| bifunctional Cross-Linking-Amino-Acid / PrDiAzK | SC-8028 | C13H20N4O5 |
| Vancomycin hexapeptide | SC-1606 | C59H62Cl2N8O23 |
| Ph-CCA-NH2 | SC-1400 | C16H12N2O |
| Cross-Linking-Amino-Acid / DiAzK | SC-8034 | C11H20N4O4 |
| PEG-9 | SC-1509 | C18H38O10 |
| PEG-8 | SC-1508 | C16H34O9 |
| Click Amino Acid / cyclopropene – L - Lysine (CP) | SC-8017 | C12H20N2O4 |
<艾美捷科技代理MicroFIT品牌全系列产品
MicroFIT是一家在生物/医疗领域具有显著影响力的企业,专注于基于模拟人体环境和组织的平台技术,致力于为生物医疗领域提供创新的产品和服务。公司以成为“基于Bio-Convergence技术的仿生平台领先企业”为目标,不断探索和研发,旨在成长为一家提供个性化医疗所需仿生平台的全球性公司。

▍MicroFIT产品线
● StemFIT 3D-Plastic系列
StemFIT 3D-Plastic系列产品采用PS(聚苯乙烯)材料设计,融合了多种实用功能,旨在使大规模3D细胞培养变得更加容易、高效和经济。能广泛应用于再生医学、精准医疗、疾病建模、发育生物学、毒物学、宿主-微生物组相互作用、药物发现和基因编辑等多个领域。
| 型号 | H389600P-6 孔 | H389600P-单人 |
| 材料 | 聚苯乙烯 | 聚苯乙烯 |
| 特征 | 大规模培养, 经济实惠,易于移液, 疏水性 | 大众培养, 经济实惠,易于移液, 疏水性 |
| 井数量 | 每个 2,334 | 389 个 |
| 井径 | 600 微米 | 600 微米 |
| 单元格数量 | ≥ 1.2 x 106 | ≥ 1.2 x 106 |
| 细胞接种培养基的体积 | 1 毫升 | 1 毫升 |
| 细胞培养基体积 | 3 ~ 8 毫升 | 3 毫升 |
| 包装 | 3 包/箱 | 20 个 EA/CS,40 个 EA/CS |
● StemFIT 3D®
StemFIT 3D®是一款创新性的三维细胞培养板,带有凹形微孔的微孔板,其核心原理在于利用这些微孔将孔内的细胞浓缩,进而培养细胞聚集体。使细胞能够在三维空间内相互作用,更好地模拟了体内细胞的生长环境。StemFIT 3D®在三个维度上形成细胞聚集体,允许细胞向各个方向生长并与周围环境相互作用,通过扩散和传递为细胞提供营养、氧气和药物,从而提供更接近生物体真实情况的仿生环境。
| 型号 | 井型 | 井数 | 井径 | 细胞数量 | 播种培养基体积 | 总培养基体积 |
| H1613200 | Hexagon | 1613 | 200 μm | ≥ 6.0 x 105 | 500 μl | 1 ml |
| H853400 | Hexagon | 853 | 400 μm | ≥ 1.2 x 106 | 1 ml | 1.5 ml |
| H389600L/H389600H | Hexagon | 389 | 600 μm | ≥ 1.2 x 106 | 1 ml | H389600L-1.3 ml;H389600H-1.7 ml |
| H449800 | Hexagon | 449 | 800 μm | ≥ 2.4 x 106 | 1 ml | 4 ml |
| H2951000 | Hexagon | 295 | 1000 μm | ≥ 2.4 x 106 | 2 ml | 4 ml |
| C100600 | Circle | 100 | 600 μm | ≥ 6.0 x 105 | 2 ml | 700 μl |
| C163000 | Circle | 16 | 3,000 μm | 2.5 x 105 / well | 20 μl / well | 5 ml |
| C253000 | Circle | 25 | 3,000 μm | 2.5 x 105 / well | 20 μl / well | 3 ml |
● NanoFIT 3D®系列
NanoFIT 3D®系列细胞培养板通过实现线或柱结构的均匀纳米图案来提供仿生界面。这种独特的纳米拓扑结构能够模拟细胞外环境,允许科研人员通过诱导细胞调整其形态和排列,从而更精准地控制和分析特定细胞的反应。它有可能基于纳米图案最大限度地维持和分化细胞,在体内提供类似于ECM(细胞外基质)的环境,使细胞的形态和功能更接近体内真实状态。能维持细胞干性与分化;调节特定细胞靶向;多样化培养形式并且拥有专利技术保障。
| Type | Pattern | Size | Cat. No. |
| Sheet (Polydimethylsiloxane) | Line | 250 nm | N-Line250S |
| Sheet (Polydimethylsiloxane) | Line | 400 nm | N-Line400S |
| Sheet (Polydimethylsiloxane) | Post | 250 nm | N-Post250S |
| Sheet (Polydimethylsiloxane) | Post | 400 nm | N-Post400S |
| Sheet (Polydimethylsiloxane) | Flat | 250 nm | N-Flat250S |
| Sheet (Polydimethylsiloxane) | Flat | 400 nm | N-Flat400S |
| Dish (Polystyrene) | Line | 400 nm | N-Line400P |
● 微珠芯片
微珠芯片是一种专为大规模生产微型珠子而设计的微流控装置。它采用先进的材料和工艺制造,旨在利用胶原蛋白、PEGDA、PLGA等多种水凝胶材料,实现高效、精准的大规模微粒生产。具有卓越的耐化学性;精密的珠子生产能力;材料坚固耐用且可重用。
● PDMS膜
PDMS膜,即聚二甲基硅氧烷膜,作为应用最为广泛的硅基有机聚合物之一,、PDMS膜具有柔软弹性,能够轻松实现大幅度的拉伸变形,且在拉伸过程中仍能保持较好的物理性能和稳定性;具备超薄膜的结构特点,厚度可以做到极薄,在保证基本功能的前提下,最大程度地减少材料的使用和空间的占用;拥有良好的透气性,它允许气体分子自由通过,在生物相容性应用中,能为细胞提供适宜的气体交换环境,促进细胞的生长和代谢;在微流体装置等应用里,也能保证气体的顺畅流通,维持系统的稳定运行;拥有优异的光学透明性,几乎不会对光线的传播产生干扰;对生物组织无毒无害,不会引发明显的免疫反应,可安全地应用于生物医学领域。
<| Material | Diameter | Thickness |
| PDMS | 50 mm / 1.97 inch | 10 μm |
| PDMS | 50 mm / 1.97 inch | 30 μm |
| PDMS | 50 mm / 1.97 inch | 50 μm |
● PDMS定位
PDMS(聚二甲基硅氧烷)作为一种硅基弹性体,拥有高光学透明度,能让研究人员清晰地观察芯片内发生的微观反应和现象;化学稳定性极佳,可在各种化学环境下保持性能稳定;出色的变形性使其能够适应不同的实验需求和操作条件;优异的生物相容性则为生物样本的研究提供了安全可靠的环境。PDMS片上实验室采用了世界领先的PDMS LOC(Lab - on - a - Chip)技术。这项技术实现了在微米尺度上构建具有卓越成型性的纳米·微结构,将复杂的实验室功能集成到一个小小的芯片之上。
● SU-8微型模具
SU-8微型模具是一种感光聚合物模具,专门用于芯片实验室的微图案铸造。它采用环氧树脂基负光刻胶SU-8作为主要材料,通过精密的光刻工艺在晶圆上制造出微图案。相较于其他模具材料,SU-8微型模具的生产速度更快。该模具的高度可高达1,000μm,能够满足制造具有较大高度微结构的需求。这种模具在微流控芯片、生物传感器、微机电系统(MEMS)等领域的生产制造中发挥着重要作用。
| 通道高度 | 晶圆尺寸 | 层 |
| 100 μm 以下 | 4英寸 | 1层 |
| 100 μm 以下 | 6英寸 | 1层 |
| 110 - 200 微米 | 4英寸 | 1层 |
| 110 - 200 微米 | 6英寸 | 1层 |
| 210 - 300 微米 | 4英寸 | 2 层 |
| 310 - 500 微米 | 4英寸 | 超过 2 层 |
| 510 - 800 微米 | 4英寸 | 超过 3 层 |
● 晶圆厂工艺
在半导体产业飞速发展的今天,高效、精准且可靠的制造服务至关重要。MicroFIT凭借其专业的技术和丰富的经验,提供一站式的半导体制造服务,采用分布式外包流程,为客户解决各种制造难题。包括以下服务:
● 光刻:将精心设计的图案精准转移到晶圆上,这是半导体制造的关键起始步骤,为后续的工艺奠定基础,确保图案的高精度和准确性。
● 镀膜:通过各种工艺使金属、聚合物等材料以薄膜形式均匀沉积在硅衬底上,为芯片提供必要的功能层和保护层,增强芯片的性能和稳定性。
● 蚀刻:精确去除必要电路图案外的其余部分,可选择干蚀刻或湿蚀刻方法,以实现对材料的精细加工,塑造出所需的微纳结构。
● 粘接:在半导体制造中,用于将芯片与基板牢固粘合;在微流控器件制造里,用于通道形成后的处理,确保器件各部分之间的可靠连接和密封性。
● 切割:把在半导体晶片加工中制造的器件在图案形成后分离成一定的尺寸,为后续的封装和测试等步骤做准备。
● CMP(化学机械抛光):通过化学和物理过程的结合,对晶圆或玻璃基板进行抛光压平,使表面达到极高的平整度,满足半导体器件制造的严格要求。
" data-original="http://bioauxilium.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="艾美捷科技代理MicroFIT品牌全系列产品"> 艾美捷科技代理MicroFIT品牌全系列产品地址:武汉市洪山区光谷大道35号光谷总部国际时代 二期1栋1301
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