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:15172469628
传真:18372041646
邮箱:sales@amyjet.com

ReliaTech全称为受体配体技术有限公司 (Receptor Ligand Technologies GmbH)位于德国不伦瑞克,是一家后基因组生物技术公司。公司运用独特技术专注于受体和配体的发现与研究。除其他研究试剂,ReliaTech也开发应用于血管与淋巴管生成研究的相关高品质试剂。产品主要包括重组蛋白(细胞因子、生长因子、可溶性受体)、抗体、ELISA试剂盒等。
ReliaTech GmbH (short for Receptor Ligand Technologies GmbH) is a post-genomic German biotechnology company founded in 1999. Besides other research products the company develops, produces and sells high quality research reagents for angiogenic and lymphangiogenic research.
As a company with own in-house reagent production ReliaTech GmbH also offers solutions for customer specific reagent production. Our profound experiences in protein purification and our practical knowledge in daily laboratory business also flow into our customer based projects - making us a competent partner for projects requiring individual production solutions.
Reliatech的主要产品包括:
Recombinant Proteins
Antibodies
ELISA Kits
Specialities
<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
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艾美捷科技代理MegaZyme品牌
Megazyme 成立于1988年,位于爱尔兰,是一家全球知名的酶及酶法分析试剂盒的生产厂家,专注于制造和供应高品质和创新的检测试剂盒和生化分析试剂。Megazyme 产品线以其卓越的高纯度酶制剂而闻名,是全球多种碳水化合物及酶底物产品的核心供应商。该公司目前提供了超过70种诊断试剂盒和超过300种其他试剂和底物。
Megazyme产品广泛应用的领域:
1)食品和饮料:用于检测和分析食品中的成分和添加剂。
2)生物燃料:用于生物燃料的开发和生产过程中的质量控制。
3)动物饲料:确保饲料成分的安全和营养价值。
4)葡萄酒和酿造:用于葡萄酒的发酵和质量控制。
5)乳制品和谷类食品:用于乳制品和谷类食品的营养成分分析。

Megazyme产品线包括:
● 检测试剂盒:涵盖膳食纤维、淀粉、糖类、醇类、有机酸、酶活性等领域;
● 高纯度酶制剂与生化底物:生产供应种类繁多的高纯度酶,包括:碳水化合物水解酶、氧化还原酶、蛋白酶 & 脂肪酶以及其他特异性酶。此外,Megazyme还提供各种高纯度的酶作用底物,特别是碳水化合物底物;
● 分析标准品与参比物质:提供与检测试剂盒配套或独立的高纯度、认证的分析标准品,包括分析标准缓冲液,辅助因子与染色剂等;
● 配套仪器与自动化解决方案:Megazyme 也开发或整合了部分专用仪器,用于高通量处理特定检测 (如膳食纤维) 中的复杂步骤。

艾美捷科技代理Scripps Laboratories 品牌。
Scripps Laboratories 是一家专注于生物化学试剂和免疫分析产品的公司,提供高质量的抗体、酶、蛋白质和免疫分析试剂盒,支持生命科学研究和临床诊断。Scripps Laboratories公司采用先进的生产和质控技术,确保产品的高质量和一致性;用于免疫学、细胞生物学和分子生物学研究;疾病诊断、生物标志物检测和健康监测;药物筛选、药效评估和毒性测试;生物制药、疫苗开发和生物材料研究。
Scripps Laboratories主要产品与服务包括:
(1)抗体:提供多种高特异性和高灵敏度的抗体,用于免疫学研究和诊断。
(2)酶和蛋白质:提供多种高纯度的酶和蛋白质,用于生物化学和分子生物学研究。
(3)免疫分析试剂盒:提供多种免疫分析试剂盒,包括 ELISA 试剂盒、蛋白质印迹试剂和细胞分析试剂。
(4)定制服务:根据客户需求,提供定制化的抗体和免疫分析试剂开发服务。

艾美捷科技代理Exocell品牌。
Exocell公司是一家专注于糖尿病及其并发症研究相关的产品与服务的生物制品公司。Exocell公司由Margo Cohen于1988年创立,致力于开发与糖尿病及其并发症相关的诊断产品。随着公司的不断发展,Exocell迅速成为该领域的重要供应商,拥有15项专利和2000多项研究引用。目前,Exocell产品已成为Ethos Biosciences(Ott Scientific的一部分)的一部分,继续为全球的学术、生物技术和制药研究团队提供服务。
Exocell产品与服务包括:
(1)临床诊断产品:
Albuwell:用于检测微白蛋白尿,是早期糖尿病性肾功能紊乱的明确标志物。
Creatinine:用于检测尿中的肌酐。
Glycaben:用于监测糖化白蛋白(中期的控糖指标)。
Glycacor:用于检测糖化LDL(短期控糖指标及心血管疾病风险指标)。
Hemoglobin A1c参照标准:长期控糖指标。
(2)临床研发类检测试剂与试剂盒:
Apo B Test:用于检测人血浆中的apolipoprotein B。
Collagen IV H:用于检测样本中的IV型胶原。
hFibronectin ELISA试剂盒:用于检测人血浆中的fibronectin。
Nephrin ELISA试剂盒:用于检测尿液中的nephrin等。
(3)实验室研究相关产品:
Albuwell M:用于检测小鼠样本中的微白蛋白尿。
Nephrat II:用于检测大鼠样本中的微白蛋白尿。
Glyco-Albumin R:用于检测大鼠血清中的糖化白蛋白等。
(4)糖尿病及其并发症研究相关的试剂及标准参照品:
A717:抗糖化白蛋白单克隆抗体。
E85:抗糖化血红素的单克隆抗体。
ES12:抗糖化LDL的单克隆抗体等。

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://prospec.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Nanosoftpolymers品牌全系列产品
Nanosoft Polymers(NSP)是一家专注于提供用于治疗、设备和诊断的即用型功能化聚合物和共聚物的企业,旨在弥合聚合物和药物递送之间的差距。NSP生产和销售一系列独特的功能性聚合物、共聚物和聚合物偶联物,其聚合物目录丰富多样,涵盖功能性PLGA - PEG、PLA - PEG、PCL - PEG、脂质PEG、聚(L - 赖氨酸)- PEG、聚(L - 谷氨酸)- PEG和聚乙二醇化试剂等。这些产品可应用于药物/基因递送、封装、细胞粘附和表面修饰等多个研究领域。除了销售现有产品,NSP还专门从事聚合物合成和功能化、纳米颗粒制造、表面改性以及具有广泛分子量范围的反应性低聚物和聚合物的定制合成,能够满足客户多样化的需求。

▍Nanosoftpolymers产品线
● 多糖:是由长链单糖单元通过糖苷键连接而成的高分子碳水化合物,具有良好的生物相容性、无毒性和非免疫原性。
● 抗癌试剂与原料药:提供种类丰富的高品质抗癌试剂与原料药,用于药物研发。
● 脂质:NSP的功能性脂质用于制备脂质体或纳米颗粒,这些脂质体或纳米颗粒可通过脂质头部的官能团进一步进行生物偶联修饰。
● PEI-PEGs:NSP 的 PEI-PEG 聚合物包括 PEG 接枝的支链 PEI和 PEG 偶联的线性PEI,可用于体外和体内将寡核苷酸递送至细胞和组织。
● 聚氨基酸:可提高药物结合物的溶解度和稳定性、药物包封、药物靶向、绕过多药耐药因素、对免疫系统的刺激极小、低毒性以及生物可降解性。
● 脂质 - 聚乙二醇(Lipid-PEGs):提供多样化的脂质及磷脂PEG衍生物,广泛应用于药物递送、脂质体 / 胶束形成、小分子和大分子药物制剂以及表面修饰等领域。
● Poly(amino acid)-PEGs:NSP 的 PEG-PAA 包括聚(L - 赖氨酸)-PEG、聚(L - 谷氨酸)-PEG、聚(L - 天冬氨酸)-PEG 及其功能化共聚物。
● 功能性聚乙二醇:提供多种高品质 PEG 试剂,用于聚乙二醇化、药物递送、生物偶联和表面修饰。NSP 的功能性聚乙二醇包括单线性聚乙二醇、同源双功能聚乙二醇、异源双功能聚乙二醇和多臂聚乙二醇。
● 单体:是一种可通过化学方式或超分子方式与其他分子结合,从而形成(超分子)聚合物的分子。
● 聚酯 - 聚乙二醇(Polyester-PEGs):提供基于聚酯的功能性两亲性嵌段共聚物,如聚乳酸 - 聚乙二醇(PLA-PEG)、聚乳酸 - 羟基乙酸共聚物 - 聚乙二醇(PLGA-PEG)、聚己内酯 - 聚乙二醇(PCL-PEG),用于药物递送研究。
● 按官能团分类的聚合物:包括但不限于:胺基、Boc 或 Fmoc 保护的胺基、羧基、马来酰亚胺基、生物素、叠氮基、巯基、酰肼基、炔基、邻吡啶二硫基(OPSS)、活性琥珀酸酯基、乙烯基砜基(VS)、丙烯酸酯基、硝基苯基碳酸酯基(NPC)、二苯并环辛炔基(DBCO)、叶酸基等。
● 荧光聚合物:提供 “即开即用型” 荧光聚合物,研究人员可借助显微镜或 IVIS 成像技术对聚合物及纳米药物进行追踪。NSP的荧光染料包括罗丹明、荧光素、Cy3、Cy5.0、Cy5.5 及 Cy7 等。
▍Nanosoftpolymers部分产品列表
| 品名 | 货号 | 分子量 | 规格 |
| Hyaluronate Amine | 13390 | 5K, 10K, 50 K, 100 K, 1000 K, 1500 K | 100mg, 1g |
| Hyaluronate Thiol | 24656 | 5K, 10K, 50 K, 100 K, 1000 K, 1500 K | 100mg, 1g |
| Hyaluronic Acid Tetrabutylammonium | 13378 | 50 K, 100 K, 1000 K, 1500 K | 100mg, 1g |
| Methacrylated Hyaluronic Acid (HA-MA) | 13204 | 50 K, 100 K, 1000 K, 1500 K | 100mg, 1g |
| 10-Hydroxycamptothecin | 11999 | 364.35 | 100mg, 500mg, 1g, 5g, 10g |
| 7-Ethyl-10-hydroxycamptothecin | 12007 | 392.4 | 20mg, 100mg, 500mg, 1g |
| Abarelix Acetate | 12014 | 1416.08 | 1mg, 5mg, 10mg, 25mg, 50mg, 100mg |
| Camptothecin | 11992 | 348.35 | 250mg, 500mg, 1g, 5g |
| Cisplatin | 12032 | 300.05 | 100mg, 200mg, 500mg, 1g |
| Cucurbitacin B | 11964 | 558.712 | 5mg, 10mg, 20mg, 50mg, 100mg |
| Cucurbitacin E | 12024 | 556.696 | 1mg, 5mg, 10mg, 25mg |
| Cyclosporine A | 12086 | 1202.61124 | 100mg, 500mg, 1g, 5g, 10g |
| Doxorubicin hydrochloride | 11947 | 579.98 | 50mg, 100mg, 500mg, 1g |
| Irinotecan HCl | 11985 | 677.18 | 20mg, 50mg, 100mg, 500mg |
| Paclitaxel | 11955 | 853.33096 | 50mg, 100mg, 1g, 10g, bulk |
| Topotecan Hydrochloride | 11977 | 457.91 | 20mg, 50mg, 100mg, 500mg |
| β-Lapachone | 12048 | 242.09429 | 10mg, 25mg, 100mg |
| ALC-0315 | 28068 | 766.290 | 50mg, 100mg, 200mg, 1g |
| DLin-KC2-DMA | 27581 | 642.11 | 5mg, 10mg, 25mg, 50mg, 100mg, 200mg |
| DLin-MC3-DMA | 25325 | 642.11 | 50mg, 100mg, 1g, 5g |
| DODAP (18:1) | 26495 | 648.05 | 100mg, 500mg, 1g |
| DODMA | 27967 | 620.104 | 50mg, 100mg, 1g |
| DOTAP (18:1) | 25396 | 698.555 | 100mg, 500mg, 1g |
| DOTMA | 25335 | 670.575 | 50mg, 100mg, 1g |
| DSTAP (18:0) | 26129 | 702.57 | 100mg, 500mg, 1g |
| SM-102 | 27852 | 709.66 | 50mg, 100mg, 200mg, 1g |
| ALC-0315 | 28068 | 766.290 | 50mg, 100mg, 200mg, 1g |
| DLin-KC2-DMA | 27581 | 642.11 | 5mg, 10mg, 25mg, 50mg, 100mg, 200mg |
| DSPC (18:0 PC) | 26737 | 790.145 | 500mg, 1g, 5g |
| DSPE | 13903 | 748.07 | 100mg, 200mg, 500mg, 1g |
| DSPE-Maleimide/DSPE-MAL | 10791 | 898.19 | 50mg, 100mg, 500mg |
| DSTAP (18:0) | 26129 | 702.57 | 100mg, 500mg, 1g |
| SM-102 | 28527 | 709.66 | 50mg, 100mg, 200mg, 1g |

艾美捷科技代理InSCREENeX品牌全系列产品
InSCREENeX GmbH成立于2009年,位于德国布伦瑞克亥姆霍兹感染研究中心内,是一家专注于开发细胞筛选技术的德国生物技术公司,InSCREENeX生产用于药物开发的细胞系统。InSCREENeX在该领域拥有超过15年的哺乳动物细胞基因修饰专业知识,在此期间成功开发了SCREENflex和CI-SCREEN这两项高度创新的技术。
利用SCREENflex技术,可以根据客户需求创建稳定的重组哺乳动物细胞。这种方法具有以下优势:快速建立所需的测试系统、目标基因的稳定表达,以及能够以不同水平调控该基因的表达。SCREENflex 技术具有普适性,已成功应用于建立多种蛋白质类别,例如 GPCRs(G蛋白偶联受体)、离子通道、抗体和细胞因子。InSCREENeX公司的产品包括稳定表达细胞系、永生化细胞系以及细胞培养试剂。

▍InSCREENeX产品线
● 稳定表达细胞系:包括离子通道、GPCRs、整合素及其他受体的稳定过表达细胞系
| 品名 | 货号 | Target | Cell background |
| CHO-Nav1.8 | INS-SF-1003 | human Nav1.8 plus beta subunit 1 | CHO |
| CHO-Nav1.7 | INS-SF-1037 | human Nav1.7 | CHO |
| CHO-PD-L1 | INS-SF-1028 | human PD-L1 | CHO |
| CHO-EpCAM | INS-SF-1027 | human EpCAM | CHO |
| CHO-PDCD1 | INS-SF-1026 | human PDCD1 | CHO |
| CHO-BCMA | INS-SF-1025 | human BCMA | CHO |
| CHO-B7H3 | INS-SF-1019 | B7H3 | CHO |
| HEK293-CTLA4 | INS-SF-1014 | CTLA4 | HEK293 |
| CHO-CTLA4 | INS-SF-1013 | CTLA4 | CHO |
| HEK293-CXCR4 | INS-SF-1006 | CXCR4 | HEK293 |
| CHO-CXCR4 | INS-SF-1004-L | CXCR4 | CHO |
| CHO-CXCR4 | INS-SF-1004-MH | CXCR4 | CHO |
| HEK293-CXCR7 | INS-SF-1009 | CXCR7 | HEK293 |
| CHO-CXCR7 | INS-SF-1007-L | CXCR7 | CHO |
| CHO-CXCR7 | INS-SF-1007-MH | CXCR7 | CHO |
| HEK293-FOLR1 | INS-SF-1018 | FOLR1 | HEK293 |
| CHO-FOLR1 | INS-SF-1017 | FOLR1 | CHO |
| HEK293-HER2 | INS-SF-1012 | HER2 | HEK293 |
| CHO-HER2 | INS-SF-1010-MH | HER2 | CHO |
| CHO-HER2 | INS-SF-1010-H | HER2 | CHO |
| HEK293-TACD2 | INS-SF-1016 | TACD2 | HEK293 |
| CHO-TACD2 | INS-SF-1015 | TACD2 | CHO |
| HEK293-FAP | INS-SF-1001 | FAP | HEK293 |
| HEK293-CCR8 | INS-SF-1024 | CCR8 | HEK293 |
| CHO-CCR8 | INS-SF-1023 | CCR8 | CHO |
● 永生化细胞系:来自不同物种的功能性永生化细胞系。
| 品名 | 货号 | Species | Organ/Tissue |
| CI-pNaEC | INS-CI-1029 | porcine | Nasal epithel |
| CI-muMEC | INS-CI-1004 | murine | Vascular endothel |
| CI-muHepa | INS-CI-1012 | murine | Liver, hepatocytes |
| CI-muINTEPI | INS-CI-1007 | murine | Intestinal epithel (fetal) |
| CI-muADINTESTI | INS-CI-1018 | murine | Intestinal epithel (adult) |
| CI-huThyrEC | INS-CI-1017 | human | Thyroid epithel |
| CI-huVEC | INS-CI-1002 | human | Endothel, Umbilical vein |
| CI-huOB | INS-CI-1005 | human | Osteoblasts |
| CI-huMEC | INS-CI-1008 | human | Microvascular endothel |
| CI-huFIB | INS-CI-1010 | human | Fibroblasts |
| CI-huEGC | INS-CI-1030 | human | Enteric glial cells (intestine) |
| CI-huBroBEC | INS-CI-1025 | human | Lung, bronchial epithel |
| CI-hAELVi | INS-CI-1015 | human | Lung, Alveoli |
| CI-huArlo | INS-CI-1031 | human | Lung, Alveoli |
● Reagents and Consumables产品
| 分类 | 品名 | 货号 | 规格 |
| Culture Media | CHO Growth Medium A | INS-ME-1039 | 500 ml |
| Culture Media | CHO Growth Medium B | INS-ME-1040 | 500 ml |
| Culture Media | FasTEER Medium | INS-ME-1032-100 | 100 ml |
| Culture Media | HEK293 Growth Medium A | INS-ME-1041 | 500 ml |
| Culture Media | huAEC Medium | INS-ME-1013-100 | 100 ml |
| Culture Media | huAEC Medium | INS-ME-1013-500 | 500 ml |
| Culture Media | huBroBEC Medium | INS-ME-1033 | 500 ml |
| Culture Media | huEGC Medium | INS-ME-1027 | 500 ml |
| Culture Media | huFIB Medium | INS-ME-1001 | 500 ml |
| Culture Media | huMEC Medium | INS-ME-1012 | 500 ml |
| Culture Media | huOB Differentiation Medium | INS-ME-1007 | 100 ml |
| Culture Media | huOB Maintenance Medium | INS-ME-1006 | 500 ml |
| Culture Media | huThyrEC Medium | INS-ME-1017 | 500 ml |
| Culture Media | huVEC Medium | INS-ME-1011 | 500 ml |
| Culture Media | muADINTESTI Medium | INS-ME-1023 | 500 ml |
| Culture Media | muINTEPI Medium | INS-ME-1005 | 500 ml |
| Culture Media | muMEC Medium | INS-ME-1004 | 500 ml |
| Culture Media | pNaEC Medium | INS-ME-1038 | 500 ml |
| Coating Solutions | Coating Solution | INS-SU-1026 | 50ml;100ml;300ml |
| Freezing Media | Cell Freezing Medium | INS-SU-1027 | 30 ml |
▍InSCREENeX提供的服务
● Landing Pad Cells:将目标单拷贝整合到CHO、HEK293 和 Llama主细胞系中,快速生成细胞系并进行变体库整合。
● Random Integration:通过病毒或非病毒方法将目标基因随机整合到任何细胞系中。
● Cell culture services:高度定制化的细胞系服务,包括细胞库构建、细胞存储、制备:细胞沉淀(Pellets)、细胞裂解液(Lysates)、DNA、RNA、培养基优化,原代细胞分离与分选等。
● Assay services:建立并运行检测方法,包含检测方法建立与优化,代运行检测服务等。
● Molecular biology services:包含克隆构建,质粒制备,DNA/RNA分离提取与制备,慢病毒生产等服务。
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艾美捷科技代理HMGBiotech品牌产品。
高迁移率族蛋白B1(HMGB1)是一种高度保守的核蛋白,广泛分布于哺乳动物细胞。随着其晚期促炎作用的发现,HMGB1成为近年来研究的热点之一。HMGBiotech是
一家专注于为HMGB领域的研究人员和公司提供试剂、服务的公司;值得注意的是,HMGBiotech公司,是目前位数不多的,生产HMGB1蛋白氧化还原变体的供应商。
HMGB1在基因组的组织和表达中具有多种功能:当细胞因损伤(病毒、机械或化学创伤、中毒)而死亡时,HMGB1 被释放并被附近细胞中的受体吸收。此外,处于严重
压力下的细胞甚至在死亡前会分泌HMGB1;存活的细胞会发出一系列反应 - 炎症 - 并试图替换死细胞并重建受损组织。HMGB1能够促进恢复和再生,;然而,过多的
HMGB1与脓毒症、关节炎、动脉粥样硬化和癌症转移有关。HMGBiotech主要产品包括:
(1)细胞
来自 Hmgb1 野生型和 Hmgb1 敲除细胞的对照细胞裂解物
Hmgb1敲除小鼠胚胎成纤维细胞
Hmgb2敲除小鼠胚胎成纤维细胞
(2)质粒
HMGB1 质粒
RAGE 质粒
(3)蛋白质试剂盒
HMGB1亚型试剂盒
(4)不含LPS的HMGB1重组蛋白
(5)稳定标记的蛋白质
HMGB1 15N 标记用于质谱和 NMR
用于核磁共振的 SDF-1 15N 和 13C
SDF-1 15N 用于质谱和 NMR
(6)抗体
ANTI HMGB1单克隆抗体
< " data-original="http://prospec.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="艾美捷科技代理HMGBiotech品牌"> 艾美捷科技代理HMGBiotech品牌
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SICGEN Antibodies品牌全系列抗体产品。
SICGEN Antibodies是一家专注于研发、生产和销售高质量抗体的生物技术公司,总部位于葡萄牙。SICGEN Antibodies公司开发了针对多种靶标的抗体,涵盖蛋白质、细胞标记物、信号通路分子等,被广泛应用于免疫学、神经科学、癌症研究、干细胞研究和诊断领域。SICGEN Antibodies主要产品类别包括:
(1)一抗(Primary Antibodies)
蛋白质研究抗体,针对多种蛋白质靶标,包括细胞骨架蛋白、酶、受体等。
信号通路抗体,用于研究 MAPK、PI3K/AKT、Wnt 等信号通路。
癌症研究抗体,针对肿瘤标志物(如 EGFR、HER2、p53)和癌症相关蛋白。
神经科学抗体,用于研究神经元标记物(如 GFAP、NeuN)和神经递质受体。
干细胞研究抗体,针对干细胞标记物(如 Oct4、Nanog、Sox2)。
(2)二抗(Secondary Antibodies)
偶联二抗,提供 HRP、荧光染料(如 FITC、Cy3、Cy5)和生物素偶联的二抗。
种属特异性二抗,针对小鼠、兔、大鼠、山羊等种属的一抗。
(3)免疫检测试剂
ELISA 试剂盒,用于定量检测特定蛋白质或生物标志物。
Western Blot 试剂,提供高灵敏度的检测试剂,如 ECL 底物和封闭缓冲液。
免疫组化(IHC)试剂,用于组织切片中靶标蛋白的定位和检测。
(4)定制抗体服务
多克隆抗体开发,根据客户提供的抗原开发定制多克隆抗体。
单克隆抗体开发,提供杂交瘤技术和单克隆抗体制备服务。
抗体标记和纯化,提供抗体偶联(如荧光标记、生物素标记)和纯化服务。
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:18372041646
传真:15172431432
邮箱:sales@amyjet.com
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