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TiterMax®佐剂被用于增强免疫反应。TiterMax®佐剂有着跟弗氏佐剂相同的功效,但具有更安全、更易用的特点,是弗氏佐剂的理想代替产品。
TiterMax® adjuvants are used to produce cell mediated and humoral responses in research animals. TiterMax® adjuvants were developed to meet the specific needs of investigators for immunoadjuvants that are at least as effective as Freund's Complete Adjuvant, safer and easier to use. They are an attractive alternative to Freund's Complete Adjuvant for use by researchers in inducing antibody to diverse antigens. The key to the potency of TiterMax® adjuvants lies both in the immunostimulatory activity of their components and in the fact that they form a stable water-in-oil emulsion. TiterMax® adjuvants contain three essential ingredients: Proprietary block copolymers, squalene, a metabolizable oil, and a unique microparticulate stabilizer. Like Freund's Complete Adjuvant, TiterMax® adjuvants can be used with a wide variety of antigens because they can entrap any antigen in a water-in-oil emulsion. TiterMax® adjuvants aid in the antigens effective presentation to the immune system without the toxic effects of Freund's Complete Adjuvant.
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艾美捷科技代理Tatua大拓品牌。
▌公司介绍
大拓位于新西兰畜牧中心地带,是新西兰历史最悠久的乳制品公司,创立于1914年。大拓研发生产专业蛋白胨,用于诊断培养基、发酵培养基、益生菌、生物制药和细胞培养行业,其蛋白胨都符合清真和犹太洁食标准。

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全国免费热线:400-6800-868
直拨专线:+86-027-59626688;18771997407
客服QQ一:17754422825;
客服QQ二:18771149750
▌产品系列
大拓能够提供多样化的蛋白胨组合,以适应全球发酵和益生菌培养基细分市场的一系列应用需求。我司代理的产品类别包括乳糖蛋白胨及植物蛋白胨。
| 乳糖蛋白胨 |
大拓 (Tatua) 提供一系列源自新西兰、无BSE/TSE风险的纯净奶源的乳蛋白胨产品。
● 酪蛋白胨(清真胰蛋白胨):其化学组成、成分和物理特性均经过精心设计,以匹配更传统的胰蛋白酶消化酪蛋白(胰蛋白胨)产品的规格。
● 乳清蛋白胨(乳白蛋白酶解物):能够支持苛养菌的生长,常用于需要特定氨基酸谱的益生菌应用领域。
大拓 (Tatua) 的乳蛋白胨产品组合涵盖广泛的优势,包括:
● 过滤级产品:提供澄清度与热稳定性
● 非过滤级产品:更具成本效益
● 清真 (Halal) 与洁食 (Kosher) 认证
● 多种游离氨基酸谱 (FAA profiles):以支持最佳生长性能
| Product | Protein Source | Filtered | pH | Total Nitrogen | Amino Nitrogen | AN/TN | Ash | Features / Benefits |
| EHCK | Casein | No | 6.6 | 13.80% | 5.50% | 39.90% | 3.50% | ● Cost effective nitrogen source |
| HCP275 | Casein | Yes | 6.9 | 13.60% | 4.30% | 31.80% | 5.50% | ● Halal alternative to tryptone ● Meets pancreatic digest of casein USP criteria |
| HCP321 | Casein | Yes | 6.8 | 13.60% | 5.80% | 42.50% | 4.50% | ● Halal alternative to tryptone ● Good source of free amino acids |
| HCP512 | Casein | Yes | 6.8 | 14.30% | 2.60% | 18.20% | 4.00% | ● Specially designed for use in biopharma fermentations |
| Tatua 2400 | Casein | Yes | 6.9 | 13.40% | 4.40% | 32.90% | 5.80% | ● Supports growth of fastidious bacteria ● Halal alternative to tryptone |
| Tatua 2016 | Whey | Yes | 6.4 | 12.20% | 4.90% | 40.40% | 4.50% | ● Supports growth of fastidious bacteria |
| 植物蛋白胨 |
大拓 (Tatua)将酶解技术和下游加工技术应用于非乳制品蛋白原料,提供无动物成分和/或无过敏原特性的蛋白胨解决方案,作为传统(动物源)蛋白胨的替代品。
● Tatua大豆蛋白胨:是某些诊断培养基配方(如 TSA 和 TSB)的重要组成部分,并且在益生菌发酵应用中表现成熟可靠。
● Tatua豌豆蛋白胨:旨在解决大豆蛋白胨可能引起的大豆过敏原问题而开发,适用于益生菌应用。
<| Product | Protein Source | Filtered | pH | Total Nitrogen | Amino Nitrogen | AN/TN | Ash | Features / Benefits |
| HSP320 | Soy | Yes | 6.9 | 9.20% | 2.50% | 26.90% | 7.10% | ● Good source of free amino acids |
| HSP348 | Soy | No | 7 | 9.10% | 1.70% | 18.60% | 7.80% | ● Cost effective nitrogen and carbohydrate source |
| HSP349 | Soy | Yes | 7 | 9.60% | 1.80% | 19.00% | 7.40% | ● Meets papaic digest of soy USP criteria |
| HSP429 | Soy | Yes | 7.1 | 9.80% | 2.70% | 27.00% | 8.80% | ● Supports growth of fastidious bacteria ● Stable in buffered solutions |
| Tatua 5260 | Pea | Yes | 6.4 | 13.60% | 4.40% | 32.30% | 4.80% | ● Good source of free amino acids ● Dairy-free ● Soy-free |
▌产品优势
大拓微生物营养解决方案具有以下优势:
● 大拓用于生产蛋白胨的乳蛋白原料(酪蛋白和乳清蛋白)都是直接来源于新西兰自有农场的奶源,是唯一一家能够全方位供应乳蛋白原料的蛋白胨生产商
● 新西兰来源的乳蛋白原料符合无BSE/TSE要求
● 植物蛋白为非转基因来源
● 大批量生产(高达8MT)降低单位成本
● FSSC 22000-Q 认证确保满足最高水平的质量要求
● 专业的研发团队能够根据不同培养基的需求提供定制化解决方案
● 出厂保质期为60个月
▌大拓蛋白胨的促生长性能



<艾美捷科技代理Innovative Biochips品牌全系列产品
Innovative Biochips是休斯顿德克萨斯医学中心(TMC)的衍生公司,专注于开发先进的微流控技术,以尖端的灵敏度和高通量解决传统生物技术面临的难题。科研团队和工程师在为各类生物和生物医学应用开发新型微流体技术方面积累了的经验。通过不断创新和优化技术,Innovative Biochips为生命科学研究提供了更精准的工具,推动生物医学领域的进步。主要产品包括单细胞克隆分析、单细胞成像和配对、球状细胞培养等。
▍Innovative Biochips公司产品线
● 单细胞PCR与测序技术:本系列产品融合标准设备制式与创新微流控设计,提供多种简易、快速、经济的单细胞分离方案:实现单细胞向超微量液体环境的高效转移;完美适配单细胞裂解、PCR及测序等遗传分析流程。
● 单细胞克隆:在重组蛋白生产、基因功能研究与药物筛选中应用广泛。1CellPlate®-96孔超微量微流控板采用标准96孔板规格,结合独特的"孔中孔"微流控设计,为癌细胞、杂交瘤细胞、CHO细胞、CRISPR编辑细胞及干细胞等稳定细胞株开发,提供前所未有的简易单细胞分离方案。
● 单细胞检测:1CellPlate®-Assay 超低体积 96 孔微流控微孔板结合了超小孔和微流控网络,满足了单细胞细胞因子检测的需求。单细胞分泌的细胞因子可被收集并通过质谱进行深度分析。此外,具有显著高细胞因子分泌量的单细胞,也能通过常规移液器轻松回收,用于包括克隆或 PCR 测序在内的下游分析。
● 自动化寿命检测:自动解剖芯片 (AD-Chip) 结合延时显微技术,可在 3 天内对 20 种不同菌株的逾万个单酵母细胞进行自动化全寿命追踪。该芯片能够在整个衰老过程中对单细胞进行高分辨率荧光成像。

▍Innovative Biochips产品列表
| 品名 | 货号 | 目录 | 规格 |
| 1CellDish-60mm | H2-SCD-5PK | Single-Cell Cloning and Analysis, Single-Cell Devices, Single-Cell PCR & Sequencing | 5 Petri Dishes |
| 1CellDish-Glass Bottom | H6-SGB-5PK | Glass Bottom Devices, Single-Cell Cloning and Analysis, Single-Cell Devices, Single-Cell PCR & Sequencing | 5 Petri Dishes |
| 1CellPlate-mini | P2-SCPM-5PK | Single-Cell Cloning and Analysis, Single-Cell Devices, Single-Cell PCR & Sequencing | 5 Plates |
| 1CellPlate-Glass Bottom | P2-SCPM-5PK | Single-Cell Cloning and Analysis, Single-Cell Devices, Single-Cell PCR & Sequencing | 5 Plates |
| 1CellPlate-96well | P2-SCPM-5PK | Single-Cell Cloning and Analysis, Single-Cell Devices, Single-Cell PCR & Sequencing | 5 Plates |
| 1CellPlate-96Well Low Evaporation | P2-SCPM-5PK | Single-Cell Cloning and Analysis, Single-Cell Devices, Single-Cell PCR & Sequencing | 5 Plates |
| 1CellAssay-Chamber Slide | H7-SCS-5PK | Glass Bottom Devices, Single-Cell Cloning and Analysis | 5 Chamber Slides |
| 1CellAssay Lysis Kit | K1-SCLS-KIT | Single-Cell Cloning and Analysis, Single-Cell Kits, Single-Cell PCR & Sequencing | - |
| 1CellArray-Glass Bottom | H5-GBD-5PK | Glass Bottom Devices, Single-Cell Devices, Single-Cell Imaging and Pairing | 5 Petri Dishes |
| Cell Pairing Plate | P6-CPP-5PK | Cell Pairing Devices, Single-Cell Imaging and Pairing | 5 Plates |
| Gridded Polystyrene Dish for Super Resolution Imaging-70um Wells | H11-SPD-10PK | Single-Cell Imaging and Pairing | 10 Petri Dishes |
| Gridded Polystyrene Dish for Super Resolution Imaging-50um Wells | H12-SPD-10PK | Single-Cell Imaging and Pairing | 10 Petri Dishes |
| Gridded Polystyrene Dish for Super Resolution Imaging-30um Wells | H13-SPD-10PK | Single-Cell Imaging and Pairing | 10 Petri Dishes |
| PicoWell Dish-72K Wells | H8-PWD-10PK | Single-Cell Devices, Spheroid Cell Culture | 10 Petri Dishes |
| PicoWell Dish-160K Wells | H9-PWD-10PK | Single-Cell Devices, Spheroid Cell Culture | 10 Petri Dishes |
| PicoWell Dish-300K Wells | H10-PWD-10PK | Single-Cell Devices, Spheroid Cell Culture | 10 Petri Dishes |
| 1CellAssay 3D Culture Kit | K2-SCTD-KIT | Single-Cell Culture, Single-Cell Kits, Spheroid Cell Culture | - |
| Million Microwell Device | H4-MMD-5PK | High-Throughput RNA-Sequencing, Single-Cell Devices, Single-Cell PCR & Sequencing | 5 MMDs |
| PicoWells In 6-Well Plate | H8-PWP-5PK | Glass Bottom Devices, High-Throughput RNA-Sequencing | 5 Plates |
| PicoWells In Chamber Slide | H9-PCS-5PK | Glass Bottom Devices, High-Throughput RNA-Sequencing | 5 Chamber Slides |
| Hole Array-1536 | S1-SHA-1536-10PK | High-Density Cell Culture and Imaging, Standard Hole Array | 10 Plates |
| Hole Array-384 | S2-SHA-384-10PK | High-Density Cell Culture and Imaging, Standard Hole Array | 10 Plates |
| Hole Array-6well | S3-SHA-900-10PK | High-Density Cell Culture and Imaging, Standard Hole Array | 10 Plates |
| Hole Array-60mm | S4-SHA-350-10PK | High-Density Cell Culture and Imaging, Standard Hole Array | 10 Petri Dishes |
| Hole Array-Glass Bottom | S5-SHA-75-10PK | High-Density Cell Culture and Imaging, Standard Hole Array | 10 Petri Dishes |
| Hole Array-Slide | S6-SHA-240-10PK | High-Density Cell Culture and Imaging, Standard Hole Array | 10 Slides |
| Hole Array-Coverslip | S7-SHA-240-10PK | High-Density Cell Culture and Imaging, Standard Hole Array | 10 Coverslips |
| Hole Array-Chamber | S8-SHA-160-12PK | High-Density Cell Culture and Imaging, Standard Hole Array | 12 Chamber Slides |
| Automated Dissection Chip | A1-AD-5PK-1 | Yeast Aging Assays | 5 Chips |
| Automated Dissection Screening Chip | A3-ADS-5PK | Yeast Aging Assays | 5 Chips |

艾美捷科技代理SWISSCI品牌。
SWISSCI为科学家提供创新的实验室解决方,涉及领域包括晶体学(Crystallography)、冷冻电镜(Cryo EM)、细胞培养(Cell Culture)、数据收集(Data Collection)、PCR 耗材、超滤(Ultrafiltration)、透析(Dialysis)、晶体成像系统(Crystal Imaging Systems)以及其他独特的定制化解决方案。热门产品包括48 孔坐滴结晶板、96 孔坐滴结晶板、96 孔悬滴结晶板、封板膜,冷冻电镜,Grid Box,渗析, 超滤装置等。
核心专业领域:
(1)晶体学(Crystallography):提供用于蛋白质晶体学研究的耗材和设备,支持晶体生长、成像和分析。产品包括晶体板、晶体成像系统和相关配件。
(2)冷冻电镜(Cryo EM):为冷冻电镜样品制备提供高质量的耗材,如载网、样品支架和冷冻保护剂。这些产品有助于提高样品制备的效率和成像质量。
(3)细胞培养(Cell Culture):提供用于细胞培养的耗材和设备,包括培养板、培养瓶和培养基。支持细胞生长、分化和功能研究。
(4)数据收集(Data Collection):提供用于实验数据收集的设备和工具,支持高效、精确的数据记录和分析。
(5)PCR 耗材:提供高质量的 PCR 板、管和密封膜,适用于基因扩增和分子生物学研究。
(6)超滤(Ultrafiltration)和透析(Dialysis):提供用于蛋白质纯化、浓缩和缓冲液交换的超滤和透析设备。
(7)晶体成像系统(Crystal Imaging Systems):提供高分辨率的晶体成像设备,支持晶体生长过程的实时监测和分析。

Neuromab是一家由NIH资助成立的单克隆抗体库。
The UC Davis/NIH NeuroMab Facility is a national monoclonal antibody-generating resource funded by the National Institutes of Health (NIH). The mission of the UC Davis/NIH NeuroMab Facility is to provide a unique neuroscience-based approach to generating mouse monoclonal antibodies optimized for use in mammalian brain (NeuroMabs). NeuroMabs are generated from mice immunized with synthetic and recombinant immunogens corresponding to components of the neuronal proteome as predicted from genomic and other large-scale cloning efforts. Comprehensive biochemical and immunohistochemical analyses of human, primate and non-primate mammalian brain are incorporated into the UC Davis/NIH NeuroMab Facility screening procedure. This yields a subset of mouse mAbs that are optimized for use in brain (i.e., NeuroMabs): for immunohistochemical- based imaging studies of protein localization in adult, developing and pathological brain samples, for biochemical analyses of subunit composition and post-translational modifications of native brain proteins, and for proteomic analyses of native brain protein networks.
Neuromab的主要产品包括:
Array Tomography
Model Organisms
Disease Targets
产品列表:
| 抗体名称 |
| Anti-5-formylcytidine, NeuroMab clone N358/68 |
| Anti-5-hydroxymethylcytidine, NeuroMab clone N297/59 |
| Anti-6xHis, NeuroMab clone N144/14 |
| Anti-ADAM11, NeuroMab clone N441/35 |
| Anti-ADAM22-cytoplasmic, NeuroMab clone N46/30 |
| Anti-ADAM22-extracellular, NeuroMab clone N57/2 |
| Anti-AGPS neo-epitope, NeuroMab clone N444/63 |
| Anti-Aldh1L1 (Aldehyde dehydrogenase family 1 member L1), NeuroMab clone N103/39 |
| Anti-Aldh1L1 (Aldehyde dehydrogenase family 1 member L1), NeuroMab clone N103/31 |
| Anti-Alg13, NeuroMab clone N442/28 |
| Anti-Alpha-2C adrenergic receptor, NeuroMab clone N330A/80 |
| Anti-Alpha-2C adrenergic receptor, NeuroMab clone N330A/51 |
| Anti-AMIGO-1, NeuroMab clone L86/33 |
| Anti-AMIGO-1, NeuroMab clone L86/36 |
| Anti-AMIGO-1, NeuroMab clone L86A/37 |
| Anti-Ankyrin-B, NeuroMab clone N105/13 |
| Anti-Ankyrin-B, NeuroMab clone N105/17 |
| Anti-Ankyrin-G, NeuroMab clone N106/20 |
| Anti-Ankyrin-G, NeuroMab clone N106/36 |
| Anti-Ankyrin-G, NeuroMab clone N106/65 |
| Anti-Ankyrin-G, NeuroMab clone N106/43 |
| Anti-Ankyrin-R, NeuroMab clone N388A/10 |
| Anti-Ankyrin-R/G, NeuroMab clone N388A/27 |
| Anti-ANO3/TMEM16C, NeuroMab clone N454/91 |
| Anti-ANO5/TMEM16E, NeuroMab clone N421A/85 |
| Anti-ANO6/TMEM16F, NeuroMab clone N429/19 |
| Anti-ARHGAP4, NeuroMab clone N290B/25 |
| Anti-Arl13b, NeuroMab clone N295B/66 |
| Anti-Arx, NeuroMab clone N411/51 |
| Anti-ASIC1, NeuroMab clone N271/44 |
| Anti-ATAT1, NeuroMab clone N347/42 |
| Anti-Ataxin-1 11NQ, NeuroMab clone N76/8 |
| Anti-Ataxin-1 11NQ, NeuroMab clone N76/3 |
| Anti-Ataxin-1 wild-type, NeuroMab clone N65/37 |
| Anti-ATF4, NeuroMab clone N360A/24 |
| Anti-BAF53a, NeuroMab clone N336B/83 |
| Anti-BAF53b, NeuroMab clone N332B/15 |
| Anti-Bassoon, NeuroMab clone L124/59 |
| Anti-BBS3/Arl6, NeuroMab clone N302/10 |
| Anti-BBS5, NeuroMab clone N304B/115 |
| Anti-BDNF, NeuroMab clone N450/53 |
| Anti-Beta1-spectrin, NeuroMab clone N385/21 |
| Anti-Beta4-spectrin, NeuroMab clone N393/2 |
| Anti-Beta4-spectrin, NeuroMab clone N393/76 |
| Anti-BKBeta2 potassium channel subunit, NeuroMab clone N53/32 |
| Anti-BKBeta3a potassium channel subunit, NeuroMab clone N40B/18 |
| Anti-BKBeta4 potassium channel, NeuroMab clone L18A/3 |
| Anti-Botch1/Chac1, NeuroMab clone N116/14 |
| Anti-Bral1, NeuroMab clone N364/10 |
| Anti-Bral1, NeuroMab clone N364/42 |
| Anti-Brevican, NeuroMab clone N294A/6 |
| Anti-Brevican, NeuroMab clone N294A/10 |
| Anti-CALB1/calbindin, NeuroMab clone L109/39 |
| Anti-CALB1/calbindin, NeuroMab clone L109/57 |
| Anti-CALB2/calretinin, NeuroMab clone L122/6 |
| Anti-CALB2/calretinin, NeuroMab clone L122/68 |
| Anti-CASK scaffolding protein, NeuroMab clone K56A/50 |
| Anti-Caspr/paranodin/neurexin IV, NeuroMab clone K65/35 |
| Anti-Caspr2/paranodin, NeuroMab clone K67/25 |
| Anti-Cav1.2 calcium channel, NeuroMab clone L57/46 |
| Anti-Cav1.2, NeuroMab clone N263/31 |
| Anti-Cav1.3 calcium channel, NeuroMab clone L48A/9 |
| Anti-Cav1.3 calcium channel, NeuroMab clone N38/8 |
| Anti-Cav3.1 Ca2+ channel, NeuroMab clone N178A/9 |
| Anti-Cav3.2 calcium channel, NeuroMab clone N55/10 |
| Anti-Cav1 calcium channel, NeuroMab clone N7/18 |
| Anti-Cav尾2 calcium channel subunit, NeuroMab clone N8b/1 |
| Anti-Cav3 calcium channel, NeuroMab clone N473/36 |
| Anti-Cav尾4 calcium channel, NeuroMab clone N10/7 |
| Anti-Cdkl5, NeuroMab clone EA7 |
| Anti-CDY1/2, NeuroMab clone N143/38 |
| Anti-CDY1/2/L1/L2, NeuroMab clone N143/36 |
| Anti-Celf4/Brunol4, NeuroMab clone N446/80 |
| Anti-FOS, NeuroMab clone N486/32 |
| Anti-FOS, NeuroMab clone N486/76 |
| Anti-Clcn3, NeuroMab clone N258/5 |
| Anti-Clcn4, NeuroMab clone N222/6 |
| Anti-Clcn5, NeuroMab clone N406/47 |
| Anti-CLN3, NeuroMab clone N380/87 |
| Anti-CLN6, NeuroMab clone N400/24 |
| Anti-CNGA1/3 cyclic nucleotide-gated channel, NeuroMab clone L36/12 |
| Anti-Collybistin, NeuroMab clone L120/12 |
| Anti-Collybistin, NeuroMab clone L120/30 |
| Anti-Contactin/F3 scaffold protein, NeuroMab clone K73/20 |
| Anti-Copper-transporting ATPase 1, NeuroMab clone L60/4 |
| Anti-Copper-transporting ATPase 2 (Copper pump 2, Wilsons disease-associated protein, NeuroMab clone L62/29 |
| Anti-Co-Rest/RCOR1 Transcriptional Co-Repressor, NeuroMab clone K72/8 |
| Anti-DEPDC5, NeuroMab clone N463/52 |
| Anti-Dicer, NeuroMab clone N167/7 |
| Anti-DLX1 transcription factor, NeuroMab clone L43/40 |
| Anti-DNAH1, NeuroMab clone N251/14 |
| Anti-DNAH7, NeuroMab clone N250/21 |
| Anti-DNAIC1, NeuroMab clone UNC 65.56.18.11 |
| Anti-DNMT3L, NeuroMab clone N117/9 |
| Anti-Doc2b, NeuroMab clone N150/21 |
| Anti-Dopamine D2 receptor, NeuroMab clone N186/29 |
| Anti-Dopamine D3 receptor, NeuroMab clone N331/19 |
| Anti-EAAC1, NeuroMab clone N420/24 |
| Anti-FGF11 (Fibroblast growth factor 11), NeuroMab clone N92/14 |
| Anti-FGF12/FHF1, NeuroMab clone N94/17 |
| Anti-FGF13 (Fibroblast growth factor 13), NeuroMab clone N91/27 |
| Anti-FGF13B/FHF2B, NeuroMab clone N225A/10 |
| Anti-FGF14/FHF4, NeuroMab clone N56/21 |
| Anti-Fig4/Sac3, NeuroMab clone N202/7 |
| Anti-Flrt3, NeuroMab clone N353/13 |
| Anti-Foxi2, NeuroMab clone N349/96 |
| Anti-Foxi3, NeuroMab clone N359/28 |
| Anti-Frataxin, NeuroMab clone N191/7 |
| Anti-GABA-A-R-Alpha1, NeuroMab clone N95/35 |
| Anti-GABA-A-R-Alpha2, NeuroMab clone N399/19 |
| Anti-GABA-A-R-Alpha4, NeuroMab clone N398A/34 |
| Anti-GABA-A-R-Alpha5, NeuroMab clone N415/24 |
| Anti-GABA-A-R-Alpha6, NeuroMab clone N229A/32 |
| Anti-GABA-A-R-Beta1, NeuroMab clone N96/55 |
| Anti-GABA-A-R-Beta2/3, NeuroMab clone 62-3G1 |
| Anti-GABA-A-R-Beta3, NeuroMab clone N87/25 |
| Anti-Delta GABA-A receptor, NeuroMab clone N151/3 |
| Anti-GABA-A-R-Epsilon, NeuroMab clone N413/67 |
| Anti-GABA-A-R-Gamma2L, NeuroMab clone N452/69 |
| Anti-GABA-A-R-Gamma2L/S, NeuroMab clone N452/73 |
| Anti-GABA-A-R-Gamma2L/S, NeuroMab clone N452/30 |
| Anti-GABA-A-R-Pi, NeuroMab clone N431/64 |
| Anti- GABA-A-R-Theta, NeuroMab clone L123/109 |
| Anti-GABABR1 GABA-B receptor, NeuroMab clone N93A/49 |
| Anti-GABABR2 GABA-B receptor, NeuroMab clone N81/2 |
| Anti-GABABR2 GABA-B receptor, NeuroMab clone N81/37 |
| Anti-GAD65/67, NeuroMab clone L127/12 |
| Anti-GAD67, NeuroMab clone L127/8 |
| Anti-Gamma-protocadherin-A3, NeuroMab clone N144/17 |
| Anti-Gamma-protocadherin-B2, NeuroMab clone N148/30 |
| Anti-Gamma-protocadherin-C3, NeuroMab clone N174B/27 |
| Anti-Gamma-protocadherin-C4, NeuroMab clone N193A/13 |
| Anti-Gephyrin, NeuroMab clone L106/83 |
| Anti-Gephyrin, NeuroMab clone L106/93 |
| Anti-Gephyrin, NeuroMab clone L106/4 |
| Anti-GFAP, NeuroMab clone N206A/8 |
| Anti-GFAP-R416WT, NeuroMab clone N206B/9 |
| Anti-GFP (Green fluorescent protein), NeuroMab clone N86/8 |
| Anti-GFP (Green fluorescent protein), NeuroMab clone N86/38 |
| Anti-GFP (green fluorescent protein), NeuroMab clone N86/20 |
| Anti-GFP (green fluorescent protein), NeuroMab clone N86/44 |
| Anti-GIT1 scaffold protein, NeuroMab clone N39B/8 |
| Anti-GIT2 scaffold protein, NeuroMab clone N83/48 |
| Anti-GluA1/GluR1 glutamate receptor, NeuroMab clone N355/1 |
| Anti-GluA2/GluR2 glutamate receptor, NeuroMab clone L21/32 |
| Anti-KA2 kainate receptor, NeuroMab clone N279B/27 |
| Anti-GluN1/NR1 glutamate receptor, NeuroMab clone N308/48 |
| Anti-NR2A glutamate receptor, NeuroMab clone N327A/38 |
| Anti-GluN2A/NR2A glutamate receptor, NeuroMab clone N327/95 |
| Anti-GluN2B/NR2B glutamate receptor, NeuroMab clone N59/20 |
| Anti-GluN2B/NR2B glutamate receptor, NeuroMab clone N59/36 |
| Anti-GluN2C/NR2C, NeuroMab clone N422/18 |
| Anti- GluN3A/NR3A, NeuroMab clone N416/40 |
| Anti-Glycine receptor Alpha3, NeuroMab clone N424/45 |
| Anti-Glycine receptor Alpha3L, NeuroMab clone N424/48 |
| Anti-GRK6A/B, NeuroMab clone N142/28 |
| Anti-Gs protein alpha subunit, NeuroMab clone N192/12 |
| Anti-GST (Glutathione S-transferase), NeuroMab clone N100/13 |
| Anti-Haspin/GSG2, NeuroMab clone N128A/2 |
| Anti-HCN1 cyclic nucleotide-gated channel, NeuroMab clone N70/28 |
| Anti-HCN2 cyclic nucleotide-gated channel, NeuroMab clone N71/37 |
| Anti-HCN3 cyclic nucleotide-gated channel, NeuroMab clone N141/28 |
| Anti-HCN4 cyclic nucleotide-gated channel, NeuroMab clone N114/10 |
| Anti-Histone H2A.Z/V, NeuroMab clone N310/21 |
| Anti-Histone H2A.Z acetyl-Lys4/7/11, NeuroMab clone N299/39 |
| Anti-Histone H3.3, NeuroMab clone N158/28 |
| Anti-Histone H3 acetyl-Lys56, NeuroMab clone N307/12 |
| Anti-Histone H3-dimethyl-Arg8, NeuroMab clone N293/50 |
| Anti-Histone H3 pThr11, NeuroMab clone N123/19 |
| Anti-Histone H3 pThr11, NeuroMab clone N123/48 |
| Anti-Histone H4-dimethyl-Arg3, NeuroMab clone N309A/21 |
| Anti-Homer1L, NeuroMab clone L113/27 |
| Anti-Homer1L, NeuroMab clone L113/13 |
| Anti-Homer1, NeuroMab clone L113/130 |
| Anti-ICK, NeuroMab clone N451/73 |
| Anti-Iduna/RNF146, NeuroMab clone N201/35 |
| Anti-INPP4b, NeuroMab clone N171/17 |
| Anti IP3 receptor type 1 NeuroMab clone L24/18 |
| Anti-IRSp53/BAIAP2, NeuroMab clone L117/1 |
| Anti-JIP-2/IB-2, NeuroMab clone N135/37 |
| Anti-JMJD2A, NeuroMab clone N154/32 |
| Anti-KCC2 transporter, NeuroMab clone N1/66 |
| Anti-KCC2 transporter, NeuroMab clone N1/12 |
| Anti-KChIP1 potassium channel, NeuroMab clone K55/7 |
| Anti-KChIP2 potassium channel subunit, NeuroMab clone K60/73 |
| Anti-KChIP3 potassium channel, NeuroMab clone K66/38 |
| Anti-KChIP4 K+ channel, NeuroMab clone N423/75 |
| Anti-KCNT1/Slo2.2/Slack K+ channel, NeuroMab clone N3/26 |
| Anti-KCNT2/Slo2.1/Slick sodium- and chloride-activated ATP sensitive potassium channel, NeuroMab clone N11/33 |
| Anti-KCNU1/Slo3 pH-sensitive maxi potassium channel, NeuroMab clone N2/16 |
| Anti-Keyhole limpet hemocyanin, NeuroMab clone N132A/12 |
| Anti-Kir2.1 potassium channel, NeuroMab clone N112B/14 |
| Anti-Kir2.2 potassium channel, NeuroMab clone N124B/38 |
| Anti-Kir2.3 potassium channel, NeuroMab clone N25/35 |
| Anti-Kir2.4 potassium channel, NeuroMab clone N465/11 |
| Anti-Kir3.3 potassium channel, NeuroMab clone N455/15 |
| Anti-Kir6.1 potassium channel, NeuroMab clone N366/60 |
| Anti-Kir6.2 potassium channel, NeuroMab clone N363/71 |
| Anti-Kirrel3 short and long, NeuroMab clone N321C/49 |
| Anti-Kirrel3 short isoform 3, NeuroMab clone N320/48 |
| Anti-Kv1.1 potassium channel subunit, NeuroMab clone K20/78 |
| Anti-Kv1.1 potassium channel (external), NeuroMab clone K36/15 |
| Anti-Kv1.2 potassium channel subunit, NeuroMab clone K14/16 |
| Anti-Kv1.2 potassium channel subunit, NeuroMab clone L76/36 |
| Anti-Kv1.3 potassium channel, NeuroMab clone L23/27 |
| Anti-Kv1.4 potassium channel subunit, NeuroMab clone K13/31 |
| Anti-Kv1.4 potassium channel (extracellular), NeuroMab clone L71/5 |
| Anti-Kv1.5 potassium channel, NeuroMab clone K7/45 |
| Anti-Kv1.6 potassium channel subunit, NeuroMab clone K19/36 |
| Anti-Kv1.7 potassium channel, NeuroMab clone N471/27 |
| Anti-Kv11.3 potassium channel, NeuroMab clone N447/24 |
| Anti-Kv2.1 potassium channel subunit, NeuroMab clone L83/11 |
| Anti-Kv2.1 potassium channel subunit, NeuroMab clone K89/34 |
| Anti-Kv2.1 potassium channel subunit, NeuroMab clone L80/21 |
| Anti-Kv2.1 potassium channel (external), NeuroMab clone K39/25 |
| Anti-Kv2.2 potassium channel, NeuroMab clone K37/89 |
| Anti-Kv2.2 potassium channel, NeuroMab clone N372C/51 |
| Anti-Kv2.2 potassium channel, NeuroMab clone N372B/60 |
| Anti-Kv2.2 potassium channel, NeuroMab clone N372B/1 |
| Anti-Kv3.1b potassium channel, NeuroMab clone N16b/8 |
| Anti-Kv3.2 potassium channel, NeuroMab clone N410/17 |
| Anti-Kv3.3 potassium channel, NeuroMab clone N375/67 |
| Anti-Kv3.4 potassium channel, NeuroMab clone N72/16 |
| Anti-Kv4.2 potassium channel subunit, NeuroMab clone L28/4 |
| Anti-Kv4.2 potassium channel (external), NeuroMab clone K57/1 |
| Anti-Kv4.3 potassium channel subunit, NeuroMab clone K75/41 |
| Anti-Kv4.3 potassium channel subunit, NeuroMab clone K75/30 |
| Anti-Kv6.1 potassium channel, NeuroMab clone N474/27 |
| Anti-Kv6.4 potassium channel, NeuroMab clone N458/10 |
| Anti-KCNQ1 potassium channel, NeuroMab clone N37A/10 |
| Anti-KCNQ2 potassium channel, NeuroMab clone N26A/23 |
| Anti-KCNQ4 potassium channel, NeuroMab clone N43/6 |
| Anti-Kv8.2 potassium channel, NeuroMab clone N448/88 |
| Anti-Kv8.2 potassium channel, NeuroMab clone N448/50 |
| Anti-Kv9.1 potassium channel, NeuroMab clone N461/19 |
| Anti-Kv9.2 potassium channel, NeuroMab clone N460/19 |
| Anti-Kvβ1.1 potassium channel subunit, NeuroMab clone K9/40 |
| Anti-Kv1.2 potassium channel subunit, NeuroMab clone K47/42 |
| Anti-Kv尾2 potassium channel, NeuroMab clone K17/70 |
| Anti-Laforin, NeuroMab clone N84/37 |
| Anti-LAR/PTPRF, NeuroMab clone N165/38 |
| Anti-Lgi1, NeuroMab clone N283/7 |
| Anti-Lhx6.1, NeuroMab clone N228A/16 |
| Anti-LRP4 (cytoplasmic), NeuroMab clone N164/6 |
| Anti-LRP4 (extracellular), NeuroMab clone N207/27 |
| Anti-LRRK1, NeuroMab clone N341/37 |
| Anti-LRRK1, NeuroMab clone N341/12 |
| Anti-LRRK2/Dardarin, NeuroMab clone N241A/34 |
| Anti-LRRK2/Dardarin, NeuroMab clone N231B/34 |
| Anti-LRRK2/Dardarin, NeuroMab clone 8G10 |
| Anti-LRRK2/Dardarin, NeuroMab clone N138/6 |
| Anti-LRRK2/Dardarin-pSer910, NeuroMab clone 1D8 |
| Anti-LRRTM2, NeuroMab clone N209C/35 |
| Anti-LRRTM4, NeuroMab clone N205B/22 |
| Anti-Mad3, NeuroMab clone N129A/6 |
| Anti-Mad3, NeuroMab clone N129/15 |
| Anti-Malin, NeuroMab clone N85/18 |
| Anti-MBP (Maltose-binding protein), NeuroMab clone N128A/4 |
| Anti-MAP3K12, NeuroMab clone N377/20 |
| Anti-MAP3K12, NeuroMab clone N377/83 |
| Anti-MECP2, NeuroMab clone N227/21 |
| Anti-MESD, NeuroMab clone N88/12 |
| Anti-MFF, NeuroMab clone N382/14 |
| Anti-MFF (exon 1), NeuroMab clone N382/69 |
| Anti-MGL, NeuroMab clone N90/20 |
| Anti-mGluR1/5 (group I) glutamate receptor, NeuroMab clone N75/3 |
| Anti- mGluR1/5 (group I) glutamate receptor, NeuroMab clone N75/33 |
| Anti-Miro2, NeuroMab clone N384/63 |
| Anti-MiRP4 potassium channel, NeuroMab clone N472/88 |
| Anti-Mitofusin-1 (Mfn1), NeuroMab clone N111/24 |
| Anti-Mitofusin-2 (Mfn2), NeuroMab clone N153/5 |
| Anti-MMACHC, NeuroMab clone N230/21 |
| Anti-MMP9 metalloproteinase, NeuroMab clone L51/82 |
| Anti-MOG, NeuroMab clone L94/54 |
| Anti-Mortalin/GRP75, NeuroMab clone N52A/42 |
| Anti-MPP8, NeuroMab clone N119/44 |
| Anti-NALCN, NeuroMab clone N185/7 |
| Anti-Nav1.1 sodium channel, NeuroMab clone K74/71 |
| Anti-Nav1.2 sodium channel, NeuroMab clone K69/3 |
| Anti-Nav1.4 sodium channel, NeuroMab clone N255/38 |
| Anti-Nav1.5 sodium channel, NeuroMab clone N397/19 |
| Anti-Nav1.6 sodium channel, NeuroMab clone K87A/10 |
| Anti-Nav1.7 sodium channel, NeuroMab clone N68/6 |
| Anti-Nav1.8 sodium channel, NeuroMab clone N134/12 |
| Anti-Navbeta1 Na+ channel, NeuroMab clone N405/74 |
| Anti-Navbeta2 Na+ channel, NeuroMab clone N395/68 |
| Anti-Navbeta3 Na+ channel, NeuroMab clone N396/29 |
| Anti-Navbeta4 sodium channel, NeuroMab clone N168/6 |
| Anti-NCKX4, NeuroMab clone N414/25 |
| Anti-Neuregulin-CRD (Cysteine-rich domain, Type III), NeuroMab clone N126B/31 |
| Anti-Neuregulin-HBD (Heparin-binding domain, Type I/II), NeuroMab clone N120A/9 |
| Anti-Neurexin-1-Beta, NeuroMab clone N170A/1 |
| Anti-Neurexin-1-Beta, NeuroMab clone N170A/26 |
| Anti-Neuroligin-1, NeuroMab clone N97A/31 |
| Anti-Neuroligin-2, NeuroMab clone L107/39 |
| Anti-Neuroligin-3, NeuroMab clone N110/29 |
| Anti-Neuroligin-4*, NeuroMab clone N98/47 |
| Anti-Neuroligin-4*, NeuroMab clone N98/7 |
| Anti-NGL-1 (Netrin-G1 ligand), NeuroMab clone N49A/21 |
| Anti-NGL-2 (Netrin-G2 ligand) NeuroMab clone N50/36 |
| Anti-NGL-3 (Netrin-G3 ligand), NeuroMab clone N51/6 |
| Anti-NKCC1, NeuroMab clone N161/20 |
| Anti-NOS1/nNOS, NeuroMab clone L121/25 |
| Anti-NOS1/nNOS, NeuroMab clone L121/42 |
| Anti-Notch1, NeuroMab clone N253/32 |
| Anti-Npas4, NeuroMab clone N408/62 |
| Anti-Npas4, NeuroMab clone N408/79 |
| Anti-Neuropeptide Y, NeuroMab clone L115/13 |
| Anti-NPY2R, NeuroMab clone L119/106 |
| Anti-NrCAM, NeuroMab clone N343/26 |
| Anti-NSD1, NeuroMab clone N312/10 |
| Anti-NSD3, NeuroMab clone N348/82 |
| Anti-OCRL/INPP5b, NeuroMab clone N166A/26 |
| Anti-Olig1, NeuroMab clone N149/25 |
| Anti-Pan-Ankyrin, NeuroMab clone N388A/60 |
| Anti-Pancortin, NeuroMab clone K96/7 |
| Anti-Pan-FHF-A, NeuroMab clone N235/22 |
| Anti-Pan-Gamma-protocadherin-A, NeuroMab clone N144/32 |
| Anti-Pan-Gamma-protocadherin, NeuroMab clone N159/5 |
| Anti-Pan-GRK, NeuroMab clone N145/20 |
| Anti-Pan-KChIP potassium channel, NeuroMab clone K55/82 |
| Anti-Pan-Kv potassium channel, NeuroMab clone K40/17 |
| Anti-Pan-Kvbeta potassium channel, NeuroMab clone K25/73 |
| Anti-Pan-MAGUK scaffold proteins, NeuroMab clone K28/86 |
| Anti-Pan-Nav1 sodium channel, NeuroMab clone N419/40 |
| Anti-Pan-Nav1 sodium channel, NeuroMab clone N419/78 |
| Anti-pan-Neurofascin, NeuroMab clone L11A/41 |
| Anti-Pan-Neurofascin (external), NeuroMab clone A12/18 |
| Anti-Pannexin-2, NeuroMab clone N121A/1 |
| Anti-Pannexin-2, NeuroMab clone N121A/31 |
| Anti-Pan-PTPR, NeuroMab clone N165/43 |
| Anti-Pan-QKI, NeuroMab clone N147/6 |
| Anti-Pan-SAPAP, NeuroMab clone N127/31 |
| Anti-pan-Shank (SH3 and multiple ankyrin repeat domains protein) scaffold protein, NeuroMab clone N23B/49 |
| Anti-Pan-Synapsin, NeuroMab clone L125/129 |
| Anti-Pan-Thyroid hormone receptor, NeuroMab clone N403/63 |
| Anti-PARIS/ZNF746, NeuroMab clone N196/16 |
| Anti-Parvalbumin, NeuroMab clone L114/3 |
| Anti-Parvalbumin, NeuroMab clone L114/81 |
| Anti-PEX6, NeuroMab clone N233/8 |
| Anti-PEX7, NeuroMab clone N232/9 |
| Anti-Phosphoserine-2-OEt, NeuroMab clone N257/25 |
| Anti-Phosphoserine-2-OH, NeuroMab clone N259/48 |
| Anti-Phosphoserine-2-OMe, NeuroMab clone N262/16 |
| Anti-PhyH/PAHX, NeuroMab clone N210/5 |
| Anti-PICK1 scaffold, NeuroMab clone L20/8 |
| Anti-PINK1, NeuroMab clone N4/15 |
| Anti-PINK1, NeuroMab clone N4/49 |
| Anti-PINK1, NeuroMab clone N4/19 |
| Anti-PINK1, NeuroMab clone N357/6 |
| Anti-Proser1, NeuroMab clone N456/39 |
| Anti-Prrt2, NeuroMab clone N485/22 |
| Anti-PSD-93/Chapsyn-110 scaffold protein, NeuroMab clone N18/30 |
| Anti-PSD-93/Chapsyn-110 scaffold protein, NeuroMab clone N18/28 |
| Anti-PSD-95 MAGUK scaffold protein, NeuroMab clone K28/43 |
| Anti-PSD-95 MAGUK scaffold protein, NeuroMab clone K28/74 |
| Anti-QKI-5-NLS, NeuroMab clone N195A/16 |
| Anti-QKI-6, NeuroMab clone N182/17 |
| Anti-QKI-7, NeuroMab clone N183/15 |
| Anti-QKI-7b, NeuroMab clone N194/11 |
| Anti-RBM17/SPF45, NeuroMab clone N219/5 |
| Anti-REEP, NeuroMab clone N326D/13 |
| Anti-REEP1, NeuroMab clone N345/51 |
| Anti-REEP1/2, NeuroMab clone N326D/29 |
| Anti-REEP2, NeuroMab clone N326D/2 |
| Anti-Rem2, NeuroMab clone N324/2 |
| Anti-RGS14, NeuroMab clone N133/21 |
| Anti-RGS14, NeuroMab clone N133/35 |
| Anti-Rufy3, NeuroMab clone N483/84 |
| Anti-Rufy3, NeuroMab clone N483/126 |
| Anti-Rufy3, NeuroMab clone N483/26 |
| Anti-S100A5, NeuroMab clone N176A/35 |
| Anti-SALM2 synaptic adhesion-like molecule, NeuroMab clone N52B/27 |
| Anti-SALM5/LRFN5, NeuroMab clone N140A/12 |
| Anti-SAP102 MAGUK scaffold protein, NeuroMab clone N19/2 |
| Anti-SAP97 scaffold protein, NeuroMab clone K64/15 |
| Anti-SAPAP1, NeuroMab clone N238/29 |
| Anti-SAPAP1, NeuroMab clone N238/30 |
| Anti-SAPAP1/2, NeuroMab clone N238/31 |
| Anti-SAPAP2, NeuroMab clone N459/84 |
| Anti-SAPAP3, NeuroMab clone L126/93 |
| Anti-SCG10/stathmin-2, NeuroMab clone L5/1 |
| Anti-SH3GL1, NeuroMab clone K51/1 |
| Anti-Shank1/ SPANK-1/Synamon/SSTRIP scaffold protein, NeuroMab clone N22/21 |
| Anti-Shank1 and Shank3, NeuroMab clone N367/51 |
| Anti-Shank2/ProSAP1/Spank-3/CortBP1 scaffold protein,NeuroMab clone N23B/6 |
| Anti-Shank3 scaffold protein, NeuroMab clone N69/46 |
| Anti-Shank3, NeuroMab clone N367/62 |
| Anti-SK2 potassium channel, NeuroMab clone K78/29 |
| Anti-Slo1/BKAlpha potassium channel, NeuroMab clone L6/23 |
| Anti-Slo1/BKAlpha potassium channel, NeuroMab clone L6/48 |
| Anti-Slo1/BKAlpha potassium channel, NeuroMab clone L6/60 |
| Anti-Snapin (SNAP25 binding protein), NeuroMab clone L8/15 |
| Anti-SNAT1 Neurotransmitter Transporter NeuroMab clone N104/37 |
| Anti-SNAT1 Neurotransmitter Transporter NeuroMab clone N104/32 |
| Anti-SST/Somatostatin, NeuroMab clone L111/118 |
| Anti-S-tag, NeuroMab clone N56/9 |
| Anti-Stonin-2, NeuroMab clone N346/9 |
| Anti-SUR1, NeuroMab clone N289/16 |
| Anti-SUR1 and SUR2B, NeuroMab clone N323A/31 |
| Anti-SUR2A, NeuroMab clone N319A/14 |
| Anti-SUR2B, NeuroMab clone N323B/20 |
| Anti-SVOP, NeuroMab clone N356/9 |
| Anti-SVOP, NeuroMab clone N356/23 |
| Anti-Synapsin-III, NeuroMab clone L125/121 |
| Anti-Synaptotagmin-10, NeuroMab clone N269/73 |
| Anti-Synaptotagmin-12, NeuroMab clone N277/7 |
| Anti-Synaptotagmin-3, NeuroMab clone N278/19 |
| Anti-Synaptotagmin-5, NeuroMab clone N274/8 |
| Anti-Synaptotagmin-6, NeuroMab clone N270/47 |
| Anti-Synaptotagmin-7, NeuroMab clone N275/14 |
| Anti-Synaptotagmin-9, NeuroMab clone N276A/15 |
| Anti-SynCAM1 cell adhesion molecule, NeuroMab clone L45/30 |
| Anti-SynCAM4, NeuroMab clone N244/5 |
| Anti-SynDIG1/Tmem90b, NeuroMab clone L42/17 |
| Anti-SynDIG3/Tmem91, NeuroMab clone N160/21 |
| Anti-SynDIG4, NeuroMab clone L102/45 |
| Anti-Tafazzin, NeuroMab clone N173B/13 |
| Anti-TALK1 potassium channel, NeuroMab clone N466/14 |
| Anti-TARPGamma2/Stargazin, NeuroMab clone N245/1 |
| Anti-TARPGamma2/4/8, NeuroMab clone N245/36 |
| Anti-TASK1 potassium channel, NeuroMab clone N374/48 |
| Anti-Tauro-GM2, NeuroMab clone N175/9 |
| Anti-THAP1, NeuroMab clone N325B/65 |
| Anti-THIK-2 potassium channel, NeuroMab clone N468/37 |
| Anti-Thioredoxin, NeuroMab clone N245/44 |
| Anti-Thorase (Atad1), NeuroMab clone N125/10 |
| Anti-Thyroid hormone receptor beta1, NeuroMab clone N402/13 |
| Anti-Thyroid hormone receptor beta1, NeuroMab clone N402/46 |
| Anti- TRAAK potassium channel, NeuroMab clone N445/27 |
| Anti-TRAK1, NeuroMab clone N389/9 |
| Anti-TRAK2, NeuroMab clone N390/43 |
| Anti-TRESK potassium channel, NeuroMab clone N467/1 |
| Anti-TRIP8b (constant), NeuroMab clone N212/7 |
| Anti-TRIP8b (constant), NeuroMab clone N212/17 |
| Anti-TRIP8b (exon 1a/5 junction), NeuroMab clone N291C/22 |
| Anti-TRIP8b (exon 1b), NeuroMab clone N212A/34 |
| Anti-TRIP8b (exon 4), NeuroMab clone N212/3 |
| Anti-TrpC1 calcium channel, NeuroMab clone 1F1 |
| Anti-TrpC4 calcium channel, NeuroMab clone N77/15 |
| Anti-TrpC5 calcium channel, NeuroMab clone N67/15 |
| Anti-TrpC7 calcium channel, NeuroMab clone N64A/36 |
| Anti-TrpM4, NeuroMab clone L88/86 |
| Anti-TrpM6, NeuroMab clone N470/22 |
| Anti-TrpM7 ion channel and Ser/Thr kinase, NeuroMab clone N74/25 |
| Anti-TRPML3/Mucolipin-3, NeuroMab clone N268/19 |
| Anti-TrpV1, NeuroMab clone N221/17 |
| Anti-TrpV1, NeuroMab clone N221/12 |
| Anti-TrpV3 cation channel, NeuroMab clone N15/4 |
| Anti-TrpV3 cation channel, NeuroMab clone N15/39 |
| Anti-TWIK-2 potassium channel, NeuroMab clone N469/28 |
| Anti-Uncx, NeuroMab clone N155/9 |
| Anti-VAChT vesicular acetylcholine transporter, NeuroMab clone N6/38 |
| Anti-VAChT, NeuroMab clone N425/45 |
| Anti-VAPA, NeuroMab clone N479/12 |
| Anti-VAPA, NeuroMab clone N479/22 |
| Anti-VAPA/B, NeuroMab clone N479/107 |
| Anti-VDAC1, NeuroMab clone N152B/23 |
| Anti-Versican, NeuroMab clone N351/23 |
| Anti-Versican, NeuroMab clone N351/24 |
| Anti-VGAT, NeuroMab clone L118/80 |
| Anti-VGAT, NeuroMab clone L118/66 |
| Anti-VGlut1, NeuroMab clone N28/9 |
| Anti-VGlut2, NeuroMab clone N29/29 |
| Anti-VGlut3, NeuroMab clone N34/34 |
| Anti-VIP, NeuroMab clone L108/92 |
| Anti-VMAT1, NeuroMab clone N440/21 |
| Anti-VMAT1, NeuroMab clone N440/61 |
| Anti-Slc18a2/VMAT2, NeuroMab clone N449/73 |
| Anti-Zebrafish VSP/TPTE, NeuroMab clone N432/21 |
| Anti-Zebrafish VSP/TPTE, NeuroMab clone N432/63 |
| Anti-WAVE1/SCAR, NeuroMab clone K91/36 |
| Anti-WNK1, NeuroMab clone N391/68 |
| Anti-WRN, NeuroMab clone N428/12 |
| Zebrafish PSD Marker, NeuroMab clone N286/74 |
| Anti-Zinedin/Striatin-4, NeuroMab clone K88/64 |
| Anti-ZIP3, NeuroMab clone N476/9 |
| Anti-ZNF423, NeuroMab clone N328B/37 |
<艾美捷科技代理Gelomics品牌全系列产品
Gelomics专注于实现体外人体组织模型的生长,核心在于创新的3D细胞培养解决方案。这种技术模拟了人体组织的真实生长环境,相较于传统的细胞培养方式更为先进和贴近人体实际情况。团队由经验丰富的专业人士组成,他们具备深厚的专业知识和多年的行业经验,致力于推动公司通过3D细胞培养技术实现改变药物发现的愿景,为公司的技术研发和战略发展提供有力支持。所研究的高纯度、可调谐的 GelMA 提供了生物活性和机械控制的最佳平衡,使其成为生物医学研究和再生医学的绝佳选择。甲基丙烯酰明胶 (GelMA) – 冷水鱼皮,具有以下特征:
● 高度可调:能够精确控制刚度、孔隙率和退化等关键参数。GelMA可以根据不同的研究或应用需求进行定制化调整,满足多样化的实验和生产要求。
● 支持细胞活力和功能:为细胞的附着、增殖和分化提供了符合生物学要求的微环境。这对于细胞的生长和功能表达至关重要,有助于模拟体内真实的细胞生长环境,提高细胞培养的效果和质量。
● 与3D生物打印兼容:既可以单独使用,也能与其他生物材料一起使用,用于创建定制的细胞外基质(ECM),应用于生物制造和组织工程领域。

▍Gelomics产品列表
| 分类 | 品名 | 货号 |
| Gelatin Methacryloyl (GelMA) | Gelatin Methacryloyl (GelMA) – Bovine Bone | SKU0013 |
| Gelatin Methacryloyl (GelMA) | Gelatin Methacryloyl (GelMA) – Bovine Skin | SKU0024 |
| Gelatin Methacryloyl (GelMA) | Gelatin Methacryloyl (GelMA) – Bovine Bone | SKU0013 |
| Gelatin Methacryloyl (GelMA) | Gelatin Methacryloyl (GelMA) – Porcine Skin | SKU0010 |
| LAP - Photoinitiator Powder | Visible Light Photoinitiator | SKU0021 |
| LunaCrosslinker™ | LunaCrosslinker™ – Visible Light Crosslinking | - |
| LunaGel™ - Cell Recovery Kit | LunaGel™ - Cell Recovery Kit | SKU0015 |
| LunaGel™ System | LunaCrosslinker™ – Visible Light Crosslinking | - |
| LunaGel™ System | LunaGel™ Ultrapure GelMA – Photocrosslinkable Extracellular Matrix | SKU0018 |
| LunaGel™ System | LunaGel™ Bovine Bone – Photocrosslinkable Extracellular Matrix | SKU0009 |
| LunaGel™ System | LunaGel™ Bovine Skin – Photocrosslinkable Extracellular Matrix | SKU0020 |
| LunaGel™ System | LunaGel™ Cold Water Fish Skin – Photocrosslinkable Extracellular Matrix | SKU0011 |
| LunaGel™ System | LunaGel™ Porcine Skin – Photocrosslinkable Extracellular Matrix | SKU0012 |
<艾美捷科技代理Amid Biosciences品牌全系列产品
Amid Biosciences是一家专注于生命科学研究和相关产品开发与制造的品牌,在蛋白质工程和酶开发、蛋白质表达和纯化等领域具备核心优势,尤其擅长利用细菌(如大肠杆菌、枯草芽孢杆菌)、酵母系统以及克隆试剂,为学术、工业和政府实体提供蛋白质表达工具。Amid Biosciences公司致力于帮助生物医学研究人员节省时间和成本,以实现研究目标,并以具有竞争力的价格提供高质量产品。公司产品线包括:生物素化工具和链霉亲和素、RAS 蛋白、鞘脂激活蛋白、噬菌体展示感受态细胞、感受态大肠杆菌细胞、炎症反应蛋白、磁性纳米颗粒、改性琼脂糖树脂、核酸染料和蛋白质可视化、质粒、聚合酶和PCR、蛋白酶、蛋白质表达载体、重组蛋白、RNA合成与修饰。

▍Amid Biosciences产品线
● 生物素化工具和链霉亲和素:提供高质量的重组BirA生物素连接酶、链霉亲和素和链霉亲和素荧光偶联物,以及用于蛋白质表达和体内生物素化的BL21 (λDE3) pBirA菌株。
● RAS蛋白:Amid Biosciences提供广泛的重组生物素化和非生物素化KRAS蛋白,以及参与KRAS调节的关键生物分子,支持药物发现和医学研究。
● 感受态大肠杆菌细胞:用于分子克隆、DNA文库构建、噬菌体展示、重组蛋白表达和诱变的必要工具。Amid Biosciences提供多种用于体内生物素化的菌株,以及高效化学感受态和电感受态大肠杆菌细胞。
● 噬菌体展示感受态细胞:用于高通量文库筛选的噬菌体展示技术,适用于克隆、亚克隆和蛋白质表达。Amid Biosciences提供化学和电化学两种形式的高效噬菌体展示大肠杆菌细胞。
● 鞘脂激活蛋白/皂苷:皂苷或鞘脂激活蛋白(SAP)是存在于溶酶体中的小非酶糖蛋白,具有多种应用,包括脂质代谢研究、药物输送系统、癌症治疗等。
● 炎症反应蛋白:炎症反应涉及复杂的细胞和介质网络,包括细胞因子和可溶性受体。了解炎症反应途径和分子机制对预防和治疗炎症性疾病非常重要。
● 磁性纳米颗粒:用于捕获、分离或纯化细胞、蛋白质、抗体和核酸等靶标。Amid Biosciences提供多种功能化磁性颗粒和配体。
● 改性琼脂糖树脂:用于酶和抗体的亲和纯化,Amid Biosciences提供高容量醛琼脂糖珠和链霉亲和素琼脂糖珠。
● 核酸染料和蛋白质可视化:提供ZicherGreen和ZicherRed核酸安全凝胶染色剂,作为致突变溴化乙锭的替代品。这些染色剂是高灵敏度且环保的荧光核酸染料,用于检测琼脂糖和聚丙烯酰胺凝胶中的DNA和RNA。
● 质粒:提供一系列常见质粒,用于克隆实验和应用,例如蛋白质表达和基因表达。pUC18和pUC19质粒提供了克隆限制性内切酶产生的DNA片段的选项,由于体积小,能够成功克隆大DNA片段。
● 蛋白酶:提供重组TEV、HRV 3C、SenP2蛋白酶,用于在蛋白质纯化过程中去除亲和标签和融合伙伴。
● 蛋白质表达载体:细菌表达载体允许在大肠杆菌中快速表达和随后大规模、经济高效地生产重组蛋白。拥有许多专有的表达载体,用于有效的高水平重组蛋白表达。
● 重组蛋白:使用专有的表达和纯化技术来生产高纯度的高产量重组蛋白和酶。蛋白质集合包括链霉亲和素、BirA生物素连接酶、Lambda蛋白磷酸酶、HRV 3C蛋白酶、TEV蛋白酶等。
● RNA合成与修饰:提供一系列用于RNA研究的产品,包括用于合成和修饰的试剂。产品包括T7 RNA聚合酶、大肠杆菌聚(A)聚合酶、T4 RNA连接酶1和2、鼠RNA酶抑制剂。
▍Amid Biosciences部分产品列表
| 品名 | 规格 | 货号 |
| BL21(λDE3)pBirA Chemically Competent E.coli Cells for in vivo Biotinylation | 10x0.1 ml (20 reactions) | BLB-201 |
| BirA Biotin Protein Ligase, Recombinant | 100 ug | BBL-301 |
| High Capacity Streptavidin Agarose Beads | 1 mL | SA-101-1 |
| BirA Biotin Ligase, MBP-tag, Recombinant | 0.1 mg | MBBL-301 |
| BirA Biotin Ligase, GST-tag | 0.1 mg | BBL-G-301 |
| G12C KRAS(1-166), Biotinylated at the C-terminus | 0.1 mg | KRAS12C-B-C-301 |
| G12D KRAS (1-166), Biotinylated at the C-terminus | 0.1 mg | KRAS12D-B-C-301 |
| G12V KRAS(1-166), Biotinylated at the C-terminus | 0.1 mg | KRAS12V-B-C-301 |
| KRAS G12C Protein, Human, Recombinant, AviTag | 0.1 mg | KRAS12C-301 |
| KRAS G12D Protein, Human, Recombinant, AviTag | 0.1 mg | KRAS12D-301 |
| KRAS G12R Protein, Human, Recombinant, AviTag | 0.1 mg | KRAS12R-301 |
| KRAS G12R Protein, Human, Recombinant, Biotinylated | 0.1 mg | KRAS12R-B-301 |
| KRAS G12V Protein, Human, Biotinylated, Without a His-tag | 0.1 mg | KRAS12V-B-302 |
| KRAS G12V Protein, Human, Recombinant, AviTag | 0.1 mg | KRAS12V-301 |
| KRAS G13D Protein, Human, Recombinant, AviTag | 0.1 mg | KRAS13D-301 |
| KRAS Y96D Protein, Human, Recombinant, AviTag | 0.1 mg | KRAS96D-301 |
| KRAS Y96D Protein, Human, Recombinant, Biotinylated | 0.1 mg | KRAS96D-B-301 |
| MEK1 Protein, Human, Recombinant, Biotinylated | 0.05 mg | MEK1-B-301 |
| MEK2 Protein, Human, Recombinant, Biotinylated | 0.05 mg | MEK2-B-301 |
| Neurofibromin (NF1), Human, Recombinant | 0.05 mg | NF1-301 |
| PI3Kα-RBD Protein, Human, Biotinylated | 0.05 mg | PIK3A-B-301 |
| Raf1 RBD Protein, Human, Recombinant, Biotinylated | 0.1 mg | RAF1-B-301 |
| RalA Protein, Human, Recombinant, Biotinylated | 0.1 mg | RALA-B-301 |
| RalB Protein, Human, Recombinant, Biotinylated | 0.1 mg | RALB-B-301 |
| Rheb Protein, Human, Recombinant, Biotinylated | 0.1 mg | RHEB-B-301 |
| Wild Type KRAS (1-166) Protein, Biotinylated at the C-terminus | 0.1 mg | KRAS-B-C-301 |
| Wild Type KRAS Protein, Human, Biotinylated, Without a His-tag | 0.1 mg | KRAS-B-302 |
| Wild Type KRAS Protein, Human, Recombinant, AviTag | 0.1 mg | KRAS-301-1 |
| Saposin D, Human, Recombinant | 0.1 mg | SAPD-301-1 |
| Saposin C, Human, Recombinant | 0.1 mg | SAPC-302-1 |
| Phage Display SS320 Chemically Competent E. coli Cells | 10 X 0.1 ml (20 reactions) | SS320-201 |
| Phage Display ER2738 Chemically Competent E. coli Cells | 10 X 0.1 ml (20 reactions) | EREC-201 |
| Phage Display TG1 Chemically Competent E. coli Cells | 10 X 0.1 ml (20 reactions) | TG1-201 |
| Phage Display ER2738 Electrocompetent E. coli Cells | 10 X 0.05 ml (20 reactions) | EREC-201 |
| Phage Display TG1 Electrocompetent E. coli Cells | 10 X 0.05 ml (20 reactions) | ETG1-201 |
| Phage Display SS320 Electrocompetent E. coli Cells | 10 X 0.05 ml (20 reactions) | SS320EC-201 |

艾美捷科技代理FormuMax品牌。
FormuMax Scientific公司专注于药物递送领域,基于脂质体和其他新型纳米递送技术,开发了一些列产品。包括:
Mikosome™(外泌体模拟脂质体)
脂质纳米粒子(LNPs)
Clophosome®-氯膦酸脂质体
Doxoves®-脂质体盐酸阿霉素
用于药物装载的脂质体
阳离子脂质体
Trans-Hi™DNA转染试剂
荧光脂质体
预成型脂质体
载药脂质体
特色产品:
聚乙二醇化免疫球蛋白™(生物素化)脂质体,荧光(DiR)标记的Mikosome™(2毫升),荧光(DiO)标记的Mikosome™ (2mL)等等
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<艾美捷科技代理Vectorbiolabs品牌全系列产品
Vector Biolabs是一家专注于提供高质量AAV(腺相关病毒)和腺病毒产品的生物科技公司,总部位于宾夕法尼亚州费城。Vector Biolabs公司提供包括定制病毒载体生产、载体设计、克隆、扩增、包装、纯化和滴度测定在内的服务,并且拥有一个包含超过90,000种针对人类、小鼠和大鼠基因组定制的AAV产品目录,服务于包括生物制药公司和研究机构在内的全球客户。此外,Vector Biolabs 为研究界提供与基因表达、基因编辑和基因沉默相关的服务。

▍Vectorbiolabs公司的产品与服务
● AAV定制生产:根据客户需求,定制生产AAV载体,以满足特定的研究或治疗需求。
● AAV控制产品:提供一系列用于AAV基因治疗的控制产品,确保实验的准确性和可靠性。
● 腺病毒建设与扩增:提供腺病毒的构建和扩增服务,支持客户的病毒载体研究。
● shRNA筛选/验证与产品目录:提供shRNA筛选和验证服务,以及相关的产品目录,帮助客户进行基因沉默研究。
使用AAV进行基因治疗的好处:
①低免疫反应:AAV载体引发免疫反应的可能性较低,适合敏感应用。
②稳定的基因递送:提供非整合基因递送,降低诱变风险。
③可扩展的生产:确保从小规模到大规模的研究和临床试验的可靠供应。
④广泛的治疗应用:多功能性使其成为靶向大脑、肝脏和视网膜等器官的理想选择。
| 特性 | AAV | 腺病毒 (Adenovirus) |
| 基因表达 | 长期、稳定表达 | 快速、瞬时表达 |
| 免疫原性 | 低 | 高 |
| 装载容量 | ~4.7 kb | ~8 kb - 38 kb (大得多) |
| 趋向性/靶向能力 | 高 - 可通过不同衣壳定制 | 广泛,可靶向多种组织 |
| 最佳应用场景 | 体内研究,长期表达 | 体外 & 体内研究,癌症 & 疫苗研究 |
▍Vectorbiolabs部分产品列表
| 品名 | 货号 | AAV Serotype | AAV ITR | Promoter | Reporter | Storage Buffer | Titer | Viral Backbone | Volume (µL) |
| AAV1-LacZ | 7001 | AAV1 | AAV2 | CMV (ubiquitous) | LacZ | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV1-GFP | 7002 | AAV1 | AAV2 | CMV (ubiquitous) | eGFP | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV2-LacZ | 7003 | AAV2 | AAV2 | CMV (ubiquitous) | LacZ | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV2-GFP | 7004 | AAV2 | AAV2 | CMV (ubiquitous) | eGFP | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV5-LacZ | 7005 | AAV5 | AAV2 | CMV (ubiquitous) | LacZ | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV5-GFP | 7006 | AAV5 | AAV2 | CMV (ubiquitous) | eGFP | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV9-GFP | 7007 | AAV9 | AAV2 | CMV (ubiquitous) | eGFP | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV6-GFP | 7008 | AAV6 | AAV2 | CMV (ubiquitous) | eGFP | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV1-Cre | 7010 | AAV1 | AAV2 | CMV (ubiquitous) | - | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV2-Cre | 7011 | AAV2 | AAV2 | CMV (ubiquitous) | - | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV5-Cre | 7012 | AAV5 | AAV2 | CMV (ubiquitous) | - | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
| AAV6-Cre | 7013 | AAV6 | AAV2 | CMV (ubiquitous) | - | PBS/5% Glycerol | 1x10^13 GC/ml | Recombinant AAV | 20 |
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:17754422825
传真:18995651644
邮箱:sales@amyjet.com
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