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:18771997407
传真:18327026838
邮箱:sales@amyjet.com

艾美捷科技代理代理MYOCEA品牌产品。
MYOCEA是一家专注于肌肉生物学和细胞培养技术的公司,致力于为科研和工业应用提供创新的肌肉细胞模型和相关产品。MYOCEA 以其独特的MyoCells™技术平台而闻名,该平台能够生成高度功能化的肌肉细胞,广泛应用于药物开发、毒理学测试、食品科学和再生医学等领域。MyoCells™技术平台能够生成与体内肌肉细胞高度相似的体外模型,为研究肌肉生物学和相关疾病提供了强大的工具。MYOCEA主要产品和技术包括:
(1)MyoCells™ 平台
MyoCells™ 肌肉细胞,高度功能化的肌肉细胞,具有与体内肌肉相似的生理特性。
MyoCells™ 培养基,专为肌肉细胞优化,支持细胞生长和功能维持。
MyoCells™ 试剂盒,包含细胞、培养基和实验指南,方便用户快速开展实验。
(2)药物开发工具
肌肉毒性测试,用于评估药物对肌肉细胞的毒性。
肌肉功能分析,提供高灵敏度的收缩性和代谢活性检测工具。
个性化药物筛选,基于患者来源的肌肉细胞模型,支持个性化医疗研究。
(3)食品科学应用
细胞培养肉研究,提供高质量的肌肉细胞,用于细胞培养肉开发。
食品添加剂测试,用于评估食品添加剂对肌肉细胞的影响。
(4)再生医学工具
肌肉再生研究,提供肌肉细胞模型,用于研究肌肉再生和修复机制。
组织工程,支持肌肉组织工程和生物材料开发。
(5)定制服务
定制肌肉细胞模型,根据客户需求开发特定的肌肉细胞模型。
合同研究服务(CRO),提供从实验设计到数据分析的全流程服务。

艾美捷科技特约代理Aquatic Diagnostics全系列产品。
Aquatic Diagnostics依托于Stirling大学,为世界范围内的客户提供渔业健康管理产品。Aquatic Diagnostics公司主要研发和生产单抗试剂、抗体偶联试剂、快速检测试剂盒,主要应用方向为病原体检测(检测经济鱼类的致病原,如AquaMab-P和Rapid Kits)和鱼类免疫力筛查(AquaMab-F和AquaMab-C)。
Aquatic Diagnostics is an international biotechnology company operating within the Institute of Aquaculture at the University of Stirling. Aquatic Diagnostics develops and markets reagents (monoclonal antibodies and antibody conjugates) and Rapid Kits that can be used to improve fish health management. These products identify pathogens causing disease and enable screening of fish immunity.
Our Fish Health Management Products Detect:
1) Economically important fish pathogens (AquaMab-P and Rapid Kits)
2) Fish antibodies to monitor immune response in a variety of fish species (AquaMab-F and AquaMab-C)
To ensure ease of use, all fish health management products are supplied with standard protocols. Animations of the procedures are available on the website for each product, to enable customers to choose the most suitable method for successful results.
" data-original="http://aviva.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="Aquatic Diagnostics"> Aquatic Diagnostics
BioVision公司是世界顶尖的细胞凋亡和信号传导产品生产商,产品包括检测试剂盒,抗体及重组蛋白,涵盖了细胞凋亡、细胞信号传导和细胞因子研究的各个方面。凋亡产品包括Annexin V 试剂盒、半胱天冬氨酸蛋白酶(Caspases)试剂盒及底物和抑制剂、线粒体膜电位试剂盒、梯状DNA 电泳和TUNEL 试剂盒、凋亡诱导剂、凋亡相关抗体和化学品、细胞增殖检测试剂盒等。
BioVision, Inc., is a privately held Life Science company headquartered in the beautiful San Francisco Bay Area. BioVision develops and offers a wide variety of products including assay kits, antibodies, recombinant proteins & enzymes, and other innovative research tools for studying Apoptosis, Metabolism, Cell Proliferation, Cellular Stress, Cell Damage and Repair, Diabetes, Obesity and Metabolic Syndrome, Stem Cell Biology, Gene Regulation, Signal Transduction, etc. BioVision's products are currently being sold in more than 60 countries worldwide.
BioVision公司的主要产品包括:
Antibodies & Supporting Tools
Biochemicals
Cytokines & Growth Factors
ELISA Kits
Enzyme Inhibitors
EZSolution™ Ready-to-Use Products
Fluorescent Proteins
Laboratory accessories
Metabolism Assay Kits
Molecular Biology
Protein A,G,L & Affinity Conjugates
Proteins & Enzymes
Protein Extraction & Purification
Signaling Pathways
按研究领域细分
Apoptosis
Autophagy
Cardiovascular
Cancer
Cell Damage & Oxidative Stress
Cell Proliferation, Viability & Cytotoxicity
Diabetes, Obesity & Metabolic Syndrome
Drug Metabolism & Disposition
Epigenetics
Exosomes
Infectious Diseases
Metabolism
Neuroscience
Proteostasis
Signal Transduction
" data-original="http://aviva.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="BioVision"> BioVision
瑞士Kinematica AG是分散仪器设备中占主导地位的供应商之一,用户已遍布全世界的实验室、试验工厂以及生产应用中。Kinematica AG公司的产品包括运行容量小于0.1毫升的实验室分散单元,也有吞吐量达到300000升/小时的生产机器。所有这一切都是在直径3毫米到450毫米的定转子系统运转下完成的。这些单位最高可以达到的速度为50米/秒,这是当前市场上的最快速度,其剪切速率高达每秒300000次。除了定转子乳化机,Kinematica AG还提供切割打磨机,搅拌机,粘度计,温度和压力监测装置,以及执行所需应用程序所必要的附件。
Since our company’s founding in 1962, innovation has been a cornerstone of Kinematica’s development strategy.
Ever since our company’s founder, Professor Willems, revolutionized the industry with his rotor / stator invention, Kinematica has continued perfecting the technique by customizing and engineering its solutions to fit the most demanding applications. Our commitment to state-of-the-art technology has remained intact and been renewed decade after decade by achieving a de facto standard in several industries today, where our products are helping thousands of end users around the world.
«Homogenizing perfected» has been and will continue to be the focus of our efforts, in addition to the deeper integration of the technologies for a «connected world» where quality and performance without compromise will continue to represent the commitment to our customers. We look forward to having you be part of this exciting journey and sharing a bright future of mutual success.
主要产品系列:
POLYTRON® Immersion Dispersers
MEGATRON® Inline Dispersers for Production
MEGATRON® Inline Dispersers for Pilot Plants
REACTRON® Highly Scalable Reactors
BIOTRONA® Highly Turbulent Mixers
POLYMIX® Mills and Stirrers
MICROTRON® Mixers and Blenders
<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://aviva.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="Kinematica AG"> Kinematica AG
<艾美捷科技代理Boneslices品牌全系列产品
Boneslices是一家来自丹麦的公司,专注于生产牛皮质骨片。Boneslices公司提供用于200um, 400um厚度破骨细胞骨吸收功能检测Boneslice骨切片,适用于96孔板检测。

▍Boneslices产品介绍
在开始陷窝实验前,需用培养基对骨切片进行复水处理。由外周血单核细胞(PBMC)或共培养体系生成的成熟/未成熟破骨细胞,均可接种于骨切片表面。根据破骨细胞的成熟状态及存在因子的差异,吸收陷窝将在3-14天内形成。通过抗酒石酸酸性磷酸酶(TRAcP)活性检测可观察破骨细胞数量,而甲苯胺蓝染色则可显现吸收陷窝与吸收沟的形成(见图2)。

▍产品参数
产品描述:本品为用于破骨细胞骨吸收实验的皮质骨切片。
规格参数:直径:6mm(适配96孔板)
厚度:0.2mm(最适用免疫荧光、共聚焦显微镜及延时记录);0.4mm(最适用下游分析)
运输条件:骨切片在室温环境下运输。
用途说明:牛皮质骨切片专为96孔板中的破骨细胞陷窝/骨吸收实验设计。
| 产品名称 | 型号 | 规格 |
| Bone Slices | 0.4 mm | 50 pcs;100 pcs;300 pcs;500 pcs |
| Bone Slices | 0.2 mm | 50 pcs;100 pcs;300 pcs;500 pcs |

LI-COR Biosciences分为三大业务板块:环境科学产品、生物技术产品、临床试验产品。
LI-COR technology enables scientists around the world to improve lives by advancing discovery. From the first low-cost light sensor filtered for the waveband absorbed by plants, to pioneering the development of near-infrared fluorescence detection systems for DNA sequencing, LI-COR strives to provide innovative solutions for researchers.
Today, LI-COR Biosciences is a leading innovator in systems for plant research, gas analysis, drug discovery, protein research, and small animal imaging.
LI-COR Biosciences的主要产品包括:
(1)Environmental Product Line
Eddy Covariance (CH4 " data-original="http://aviva.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="LI-COR Biosciences">
LI-COR Biosciences
<| 产品名称 | 货号 | 化学式 | 分子量 | CAS# |
| 2,5-Anhydro-6-azido-6-deoxy-1,3-O-isopropylidene-D-glucitol | S20031 | C9H15N3O4 | 229,23 | N/A |
| 4-Azido-4-deoxy-1,6:2,3-dianhydro-β-D-mannopyranose | S97085 | C7H9N3O2 | 167,17 | N/A |
| Methyl-3,6-anhydro-7-azido-2,7-dideoxy-4,5-O-isopropylidene-D-alloheptonate | S10191 | C11H17H3O5 | 271,27 | N/A |
| 1,4-Anhydro-3-azido-2-O-benzoyl-3-deoxy-D-xylitol | S10192 | C12H13N3O4 | 263,25 | N/A |
| 1,4-Anhydro-2-azido-3-O-benzoyl-2-deoxy-D-arabitol | S10189 | C12H13N3O4 | 263,25 | N/A |
| 2-Azido-2-deoxy-1,4;3,6-dianhydro-D-glucitol | S03293 | C6H9N3O3 | 171,15 | N/A |
| 6-Azido-6-deoxy-1,2,3,4-tetra-O-acetyl-α,β-D-galactopyranose | S05174 | C14H19N3O9 | 373,32 | N/A |
| 6-Azido-6-deoxy-1,2,3,4-tetra-O-acetyl-α,β-L-galactopyranose | S02174 | C14H19N3O9 | 373,32 | N/A |
| DIBMA free acid | D-20054 | N/A | N/A | N/A |
| DIBMA monosodium salt | D-20055 | N/A | N/A | N/A |
| Glyco-DIBMA | D-20056 | N/A | N/A | N/A |
| n-Octyl α-D-glucopyranoside (aOG) > 99% highly purified | D97011 | C14H28O6 | 292,38 | 29781-80-4 |
| Methyl 6-O-(-n-heptylcarbamoyl)-α-D-glucopyranoside (HECAMEG) | D20034 | C15H29NO7 | 335,4 | 115457-83-5 |
| n-Hexyl β-D-glucopyranoside > 99% highly purified | D99014 | C12H24O6 | 264,4 | 59080-45-4 |
| n-Heptyl β-D-glucopyranoside (HeptG) > 99% highly purified | D07033 | C13H26O6 | 278,4 | 78617-12-6 |
| n-Octyl β-D-glucopyranoside (OG) > 99% highly purified | D97001 | C14H28O6 | 292,38 | 29836-26-8 |
| n-Octyl β-D-glucopyranoside (OG-C) > 99,5% for crystallography | D97001-C | C14H28O6 | 292,38 | 29836-26-8 |
| n-Nonyl β-D-glucopyranoside (NG) > 99% highly purified | D99011 | C15H30O6 | 306,40 | 69984-73-2 |
| n-Nonyl β-D-glucopyranoside (NG-C) > 99,5% for crystallography | D99011-C | C15H30O6 | 306,40 | 69984-73-2 |
| n-Decyl β-D-glucopyranoside (DG) > 99% highly purified | D99006 | C16H32O6 | 320,43 | 58846-77-8 |
| n-Undecyl β-D-glucopyranoside (UDG) > 99% highly purified | D11023 | C17H34O6 | 334,4 | 70005-86-6 |
| n-Dodecyl β-D-glucopyranoside (DDG) > 99% highly purified | D99007 | C18H36O6 | 348,5 | 59122-55-3 |
| 4-trans-(4-trans-Propylcyclohexyl)-cyclohexyl α-maltoside > 99% (t-PCCαM) | D99019-C | C27H47O11 | 547,67 | N/A |
| n-Dodecyl α-maltoside (αDDM) > 99% highly purified | D99020 | C24H46O11 | 510,63 | 116183-64-3 |
| n-Hexyl β-maltoside (HexM) > 99% highly purified | D20018 | C18H34O11 | 426,4 | 870287-95-9 |
| n-Heptyl β-maltoside (HeptM) > 99% highly purified | D14001 | C19H36O11 | 440,48 | N/A |
| n-Octyl β-maltoside (OM) > 99% highly purified | D20020 | C20H38O11 | 454,4 | 82494-08-4 |
| n-Nonyl β-maltoside (NM) > 99% highly purified | D20015 | C21H40O11 | 468,41 | 106402-05-5 |
| n-Nonyl β-maltoside (NM-C) > 99,5% for crystallography | D20015-C | C21H40O11 | 468,41 | 106402-05-5 |
| n-Decyl β-maltoside (DM) > 99% highly purified | D99003 | C22H42O11 | 482,6 | 82494-09-5 |
| n-Decyl β-maltoside (DM-C) > 99,5% for crystallography | D99003-C | C22H42O11 | 482,6 | 82494-09-5 |
| n-Undecyl β-maltoside (UDM) > 99% highly purified | D99012 | C23H44O11 | 496,6 | 253678-67-0 |
| n-Undecyl β-maltoside (UDM-C) > 99,5% for crystallography | D99012-C | C23H44O11 | 496,6 | 253678-67-0 |
| n-Dodecyl β-maltoside (DDM-C) > 99,5% for crystallography | D97002-C | C24H46O11 | 510,63 | 69227-93-6 |
| n-Tridecyl β-maltoside (TDM) > 99% | D20016 | C25H48O11 | 524,6 | 93911-12-7 |
| n-Tridecyl β-maltoside (TDM-C) > 99,5% for crystallography | D20016-C | C25H48O11 | 524,6 | 93911-12-7 |
| n-Tetradecyl β-maltoside (TeDM-C) > 99,5% for crystallography | D20028-C | C26H50O11 | 538,6 | 18449-82-6 |
| n-Pentadecyl β-maltoside (PDM-C) > 99,5% for crystallography | D20040-C | C27H52O11 | 552,35 | N/A |
| n-Hexadecyl β-maltoside (HeDM) > 99,5% | D20029-C | C28H54O11 | 566,72 | 98064-96-1 |
| n-Dodecyl β-maltoside (DDM) > 99% highly purified | D97002 | C24H46O11 | 510,63 | 69227-93-6 |
| Isopropyl 1-thio-β-D-galactopyranoside (IPTG) | S02122 | C9H18O5 | 238,30 | 367-93-1 |
| n-Heptyl 1-thio-β-D-glucopyranoside (HTG) > 99% highly purified | D99013 | C13H26O5S | 294,4 | 85618-20-8 |
| n-Octyl 1-thio-β-D-glucopyranoside (OTG) > 99% highly purified | D20014 | C14H28O5S | 308,44 | 85618-21-9 |
| n-Nonyl 1-thio-β-D-glucopyranoside (NTG-C) > 99,5% highly purified | D14038-C | C15H30O5S | 322,4 | 98854-15-0 |
| n-Decyl 1-thio-β-D-glucopyranoside (DTG) > 99% highly purified | D20021 | C16H32O5S | 336,4 | 98854-16-1 |
| n-Dodecyl 1-thio-β-maltoside (DDTM-C) > 99,5% highly purified | D20022-C | C24H46O10S | 526,6 | 148565-58-6 |
| n-Heptyl 1-thio-β-D-glucopyranoside (HTG-C) > 99,5% highly purified | D99013-C | C13H26O5S | 294,4 | 85618-20-8 |
| n-Octyl 1-thio-β-D-glucopyranoside (OTG-C) > 99,5% highly purified | D20014-C | C14H28O5S | 308,44 | 85618-21-9 |
| MEGA-8 (N-Octanoyl-N-methylglucamin) | D98004 | C15H31NO6 | 321,4 | 85316-98-9 |
| MEGA-9 (N-Nonanoyl-N-methylglucamin) | D99005 | C16H33NO6 | 335,4 | 85261-19-4 |
| MEGA-10 (N-Decanoyl-N-methylglucamin) | D99008 | C16H33NO6 | 335,4 | 85261-19-4 |
| 1-O-(n-Octyl)-tetraethyleneglycol (C8E4) | D20038 | C16H34O5 | 306,44 | 19327-39-0 |
| 1-O-(n-Decyl)-hexaethyleneglycol (C10E6) | D20041 | C22H46O7 | 422,60 | 5168-89-8 |
| 1-O-(n-Decyl)-nonaethyleneglycol (C10E9) | D20033 | C28H58O10 | 554,75 | 26183-52-81 |
| 1-O-(n-Dodecyl)-tetraethyleneglycol (C12E4) | D20035 | C20H42O5 | 362,54 | 5274-68-0 |
| 1-O-(n-Dodecyl)-octaethyleneglycol (C12E8) | D20039 | C28H58O9 | 538,75 | 3055-98-9 |
| 1-O-(n-Dodecyl)-nonaethyleneglycol (C12E9) | D20032 | C30H62O10 | 582,81 | 3055-99-0 |
| 1-O-(n-Dodecyl)-decaethyleneglycol (C12E10) | D20031 | C32H66O11 | 626,86 | 6540-99-4 |
| 1-O-(n-Tridecyl)-octaethyleneglycol (C13E8) | D20030 | C29H60O9 | 552,78 | 9043-30-5 |
| N,N-Dimethyl-n-dodecylamine-N-oxide (LDAO) | D71111 | C14H31NO | 229,4 | 1643-20-5 |
| Sucrose monolaurate (SUMOL) | S98001 | C24H44NO12 | 524,6 | 25339-99-5 |
| Monoolein (1-O-Oleoyl-rac-glycerol) | D20036 | C21H40O4 | 356,5 | 111-03-5 |
| 3-[(3-Cholamidopropyl)-dimethylammonio]-1-propane sulfonate | D99009 | C32H58N2O7S | 614,89 | 75621-03-3 |
| 3-[(3-Cholamidopropyl)-dimethylammonio]-2-hydroxy-1-propane sulfonate | D99010 | C32H58N2O8S | 630,87 | 82473-24-3 |
| n-Nonyl-phosphocholine (C9-PC) Purity > 99% | S10197 | C14H32NO4P | 309,38 | 253678-64-7 |
| n-Decyl-phosphocholine (C10-PC) Purity > 99% | S10195 | C15H34NO4P | 323,41 | 70504-28-8 |
| n-Undecyl-phosphocholine (C11-PC) Purity > 99% | S10196 | C16H36NO4P | 337,4 | 253678-65-8 |
| n-Dodecyl-phosphocholine (C12-PC) Purity > 99% | S10190 | C17H38NO4P | 351,46 | 29557-51-5 |
| n-Tridecyl-phosphocholine (C13-PC) Purity > 99% | S10198 | C18H40NO4P | 365,49 | 85775-42-4 |
| n-Tetradecyl-phosphocholine (C14-PC) Purity > 99% | S10194 | C19H42NO4P | 379,51 | 77733-28-9 |
| n-Pentadecyl-phosphocholine (C15-PC) Purity > 99% | S10199 | C20H44NO4P | 393,54 | 146801-07-2 |
| n-Hexadecyl-phosphocholine (C16-PC) Purity > 99% | S01241 | C21H46NO4P | 407,57 | 58066-85-6 |
| α-D-Galactopyranose-phosphate di-potassium salt dihydrate | P0001 | C6H11K2O9P. 2H2O | 372,36 | 19046-60-7 |
| α-D-Glucopyranose-phosphate di-potassium salt dihydrate | P0002 | C6H11K2O9P. 2H2O | 372,36 | 5996-14-5 |
| α-D-Mannopyranose-phosphate di-potassium salt dihydrate | P0003 | C6H11K2O9P. 2H2O | 372,36 | 71888-67-0 |
| N-Acetyl-D-galactosamine (2-Acetamido-2-deoxy-D-galactose, GalNAc) | S96001 | C8H15NO6 | 221,21 | 1811-31-0 |
| N-Acetyl-D-glucosamine (2-Acetamido-2-deoxy-D-glucose, GlcNAc) | S93002 | C8H15NO6 | 221,21 | 7512-17-6 |
| 2-Acetamido-2-deoxy-β-D-glucopyranosylamin | S98003 | C8H16N2O5 | 220,21 | 18615-50-4 |
| N-Acetyl-D-mannosamine x H2O (2-Acetamido-2-deoxy-D-mannose monohydrate, D-ManAc x H2O) | S94004 | C8H17NO7 | 239,23 | 7772-94-3 |
| 1,3,4,6-tetra-O-acetyl-β-D-GlcNAc (2-Acetamido-2-deoxy-1,3,4,6-tetra-O-acetyl-β-D-glucopyranose) | S94005 | C16H23NO10 | 389.36 | 7772-79-4 |
| 3,4,6-tri-O-acetyl-β-D-GlcNAc azide (2-Acetamido-3,4,6-tri-O-acetyl-2-deoxy-β-D-glucopyranosyl azide) | S96006 | C14H20N4O8 | 372,34 | 6205-69-2 |
| 3,4,6-tri-O-acetyl-α-D-GlcNAc chlorid (2-Acetamido-2-deoxy-3,4,6-tri-O-acetyl-2-deoxy-α-D-glucopyranosyl chlorid) | S97007 | C14H20CINO8 | 366,80 | 3068-34-6 |
| 1,3,4,6-tetra-O-acetyl-α-D-glucosamine x HCl (2-Amino-2-deoxy-1,3,4,6-tetra-O-acetyl-α-D-glucopyranose HCl) | S00116 | C14H22CINO9 | 383,79 | N/A |
| Allyl 2-acetamido-2-deoxy-α-D-glucopyranoside | S96008 | C11H19NO6 | 261,28 | 54400-75-8 |
| Allyl 2-acetamido-2-deoxy-β-D-glucopyranoside | S96009 | C11H19NO6 | 261,28 | 54400-77-0 |
| Allyl α-D-galactopyranoside | S96010 | C9H16O6 | 220,22 | 48149-72-0 |
| Allyl α-D-glucopyranoside | S98011 | C9H16O6 | 220,22 | 7464-56-4 |
| Allyl β-D-glucopyranoside | S98012 | C9H16O6 | 220,22 | 34384-797 |
| Allyl α-D-mannopyranoside | S11118 | C9H16O6 | 220,22 | 41308-76-3 |
| Allyl 2,3,4-tri-O-benzyl-α-D-glucopyranoside | S98013 | C30H34O6 | 490,60 | N/A |
| 1-Amino-1-deoxy-β-D-galactose (β-D-Galactopyranosylamine) | S99102 | C6H13NO5 | 179,17 | 50444-86-5 |
| 1,6-Anhydro-β-D-galactopyranose | S93014 | C6H10O5 | 162,14 | 644-76-8 |
| 1,6:3,4-Dianhydro-2-O-tosyl-β-D-galactopyranose | S97016 | C13H14O6s | 234,25 | 6167-32-4 |
| D-Arabinose | S93017 | C5H10O5 | 150,13 | 28697-53-2 |
| Arbutin (4-Hydroxyphenyl b-D-glucopyranoside, synthetic) | S96018 | C12H16O7 | 272,25 | 497-76-7 |
| 2-Azido-2-deoxy-1,3,4,6-tetra-O-acetyl-α-D-galactopyranose | S96021 | C14H19N3O9 | 373,32 | N/A |
| 2-Azido-2-deoxy-1,3,4,6-tetra-O-acetyl-α,β-D-galactopyranose | S97022 | C14H19N3O9 | 373,32 | N/A |
| 2-Azido-2-deoxy-1,3,4,6-tetra-O-acetyl-β-D-glucopyranose | S96024 | C14H19N3O9 | 373,32 | N/A |
| 2-Azido-2-deoxy-1,2‘,3,3‘,4‘,6,6‘-hepta-O-acetyl-α,β-lactose 2-Azido-2-deoxy-4-O-(2,3,4,6-tetra-O-acetyl-β-D-galactopyranosyl)-1,3,6-tri-O-acetyl-α,β-D-glucopyranose | S96025 | C26H35N3O17 | 661,58 | N/A |
| 2-Azido-2-deoxy-1,3,4,6-tetra-O-acetyl-α-D-mannopyranose | S97026 | C14H19N3O9 | 373,32 | N/A |
| Benzyl 4,6-O-benzylidene-α-D-GlcNAc | S97027 | C22H25NO6 | 399,45 | 13343-63-0 |
| Benzyl α-D-GlcNAc (Benzyl 2-acetamido-2-deoxy-α-D-glucopyranoside) | S97028 | C15H21NO6 | 311,34 | 13343-62-9 |
| Benzyl α-D-mannopyranoside | S97029 | C13H18O6 | 270,28 | 155548-45-5 |
| Cellobiose | S96030 | C12H22O11 | 342,30 | 528-50-7 |
| 6-Deoxy-1,2:3,4-di-O-isopropylidene-α-D-galactopyranose | S96032 | C12H20O5 | 244,29 | 4026-27-1 |
| 3,4-Di-O-acetyl-L-rhamnal (3,4-Di-O-acetyl-6-deoxy-L-glucal) | S94035 | C10H14O5 | 214.22 | 34819-86-8 |
| 1,4:3,6-Dianhydro-D-mannitol | S97037 | C6H10O4 | 146,15 | 641-74-7 |
| 1,2,3,4-Di-O-isopropylidene-α-D-galactopyranose | S95038 | C12H20O6 | 260.29 | 4064-06-6 |
| 1,2:5,6-Di-O-isopropylidene-α-D-glucofuranose | S00112 | C12H20O6 | 260,29 | 582-52-5 |
| 1,2:5,6-Di-O-isopropylidene-D-mannitol | S95039 | C12H22O6 | 262,31 | 1707-77-3 |
| 2,3:5,6-Di-O-isopropylidene-α-D-mannofuranose | S93040 | C12H20O6 | 260.29 | 14131-84-1 |
| 1,2:3,5-Di-O-isopropylidene-α-D-xylofuranose | S00110 | C11H18O5 | 230,26 | 20881-04-3 |
| D-Fucose (6-Deoxy-D-galactose) | S96042 | C6H12O6 | 164,16 [3615-37-0] | 3615-37-0 |
| L-Fucose (6-Deoxy-L-galactose) | S96043 | C6H12O6 | 164,16 | 2438-80-4 |
| D-Galactosamine x HCl | S95044 | C6H13NO5 x HCl | 215.64 | 1172-03-8 |
| D-Glucosamine x HCl | S93045 | C6H13NO5 x HCl | 215.64 | 66-84-2 |
| L-Glucose | S94046 | C6H12O6 | 180.16 | 921-60-8 |
| 2,3,3’,4,6,6’-Hexa-O-acetyl-lactal | S97036 | N/A | N/A | |
| 1,2-O-Isopropylidene-α-D-glucofuranose | S00113 | C9H16O6 | 220,22 | 18549-40-1 |
| Isopropyl-β-D-thiogalactoside IPTG (lactose based) | S02122-L | C9H18O5S | 238,31 | 367-93-1 |
| Isopropyl-β-D-thiogalactoside IPTG (on plant based) | S02122-P | C9H18O5S | 238,31 | 367-93-1 |
| 3,4-O-Isopropylidene-D-mannitol | S94048 | C9H18O6 | 222,22 | 369-84-4 |
| 1,2-O-Isopropylidene-α-D-xylofuranose | S00111 | C8H14O5 | 190,20 | 20031-21-4 |
| D-Lyxose | S96051 | C5H10O5 | 150,13 | 1114-34-7 |
| L-Lyxose | S96052 | C5H10O5 | 150,13 | 1949-78-6 |
| Maltose monohydrate | S98053 | C12H22O11H2O | 360,32 | 6363-53-7 |
| β-Maltose octaacetate | S98054 | C28H38O19 | 678,63 | 22352-19-8 |
| D-Mannose | S93057 | C6H12O6 | 180.16 | 3458-28-4 |
| L-Mannose | S94058 | C6H12O6 | 180.16 | 10030-80-5 |
| Methyl 4,6-O-benzylidene-β-D-galactopyranoside | S96060 | C14H18O6 | 282,30 | 6988-39-2 |
| Methyl 4,6-O-benzylidene-α-D-glucopyranoside | S97061 | C14H18O6 | 282,30 | 3162-96-7 |
| Methyl 4,6-O-benzylidene-β-D-glucopyranoside | S98062 | C14H18O6 | 282,30 | 6988-39-2 |
| Methyl 6-deoxy-α-L-mannopyranoside (Methyl a-L-rhamnopyranoside) | S96063 | C7H14O5 | 178,19 | 15814-59-2 |
| Methyl α-D-fucopyranoside | S96064 | C7H14O5 | 178,19 | 1128-40-1 |
| Methyl α-L-fucopyranoside | S96065 | C7H14O5 | 178,19 | 14687-15-1 |
| Methyl β-D-galactopyranoside | S96066 | C7H14O6 | 194,18 | 1824-94-8 |
| Methyl β-D-glucopyranoside hemihydrate | S96067 | C7H14O6 | 194,18 | 7000-27-3 |
| Methyl β-D-ribopyranoside | S97068 | C6H12O5 | 164,16 | 17289-61-1 |
| Methyl 2,3,5-tri-O-benzoyl-α-D-arabinofuranoside | S98069 | C27H24O8 | 476,49 | N/A |
| 1,2,3,4,6-Penta-O-acetyl-β-D-galactopyranose | S95072 | C16H22O11 | 390,35 | 4163-60-4 |
| 1,2,3,4,6-Penta-O-acetyl-α-D-mannopyranose | S99070 | C16H22O11 | 390,35 | 4163-65-9 |
| D-Raffinose pentahydrate | S96074 | C18H32O16 5H2O | 594,53 | 17629-30-0 |
| L-Rhamnose monohydrate | S94075 | C6H14O6 | 182.17 | 10030-85-0 |
| D-Ribose | S93076 | C5H10O5 | 150.13 | 50-69-1 |
| L-Ribose | S93077 | C5H10O5 | 150.13 | 24259-59-4 |
| D-Tagatose | S93079 | C6H12O6 | 180.16 | 87-81-0 |
| α-D-Talose | S93080 | C6H12O6 | 180.16 | 2595-98-4 |
| 2,3,4,6-Tetra-O-acetyl-β-D-galactopyranosyl azide | S96081 | C14H19N3O9 | 373,32 | 13992-26-2 |
| 2,3,4,6-Tetra-O-acetyl-α-D-galactopyranosyl bromide | S96082 | C14H19BrO9 | 411.21 | 3068-32-4 |
| 2,3,4,6-Tetra-O-acetyl-β-D-glucopyranosyl azide | S96083 | C14H19N3O9 | 373,32 | 13992-25-1 |
| 2,3,4,6-Tetra-O-acetyl-α-D-glucopyranosyl bromide | S94084 | C14H19BrO9 | 411.21 | 572-09-8 |
| 1,3,4,6-Tetra-O-acetyl-β-D-mannopyranose | S97086 | C14H20O10 | 348,31 | 18968-05-3 |
| 2,3,4,6-Tetra-O-acetyl-α-D-mannopyranose | S97087 | C14H20O10 | 348,31 | N/A |
| 1,2,3,5-Tetra-O-acetyl-β-D-ribofuranose | S94088 | C13H18O9 | 318.28 | 13035-61-5 |
| 2,3,4,6-Tetra-O-acetyl-1-thio-β-D-galactopyranose | S94089 | C14H20O9S | 364.37 | N/A |
| 2,3,4,6-Tetra-O-acetyl-1-thio-β-D-glucopyranose | S94090 | C14H20O9S | 364.37 | 19879-84-6 |
| 2,3,4,6-Tetra-O-benzyl-α-D-galactopyranose | S96091 | C34H3606 | 540.66 | 5308-25-7 |
| 2,3,4,6-Tetra-O-benzyl-α-D-glucopyranose | S93092 | C34H3606 | 540.66 | 4132-28-9 |
| 2,3,4,6-Tetra-O-benzyl-α-D-mannopyranose | S96093 | C34H3606 | 540.66 | 61330-61-8 |
| 1-Thio-β-D-galactose sodium salt | S96094 | C6H11NaO5S | 218,21 | 42891-22-5 |
| 1-Thio-β-D-glucose sodium salt dihydrate | S94095 | C6H11NaO5S x 2 H2O | 254.24 | 10593-29-0 |
| 3,4,6-Tri-O-acetyl-D-galactal | S94097 | C12H16O7 | 272.26 | 4098-06-0 |
| D-Turanose (α-D-Glcp(1-3)-D-fructose) | S93100 | C12H22O11 | 342.30 | 547-25-1 |
| D-Xylose | S93101 | C5H10O5 | 150.13 | 58-86-6 |
| 1,6-Anhydro-β-D-glucopyranose (Levoglucosan) | S93015 | C6H10O5 | 162,14 | 498-07-7 |
| 2-Azido-2-deoxy-1,3,4,6-tetra-O-acetyl-α-D-glucopyranose | S96023 | C14H19N3O9 | 373,32 | N/A |
我们承诺:
(1)专业的服务:为您提供包括购买咨询、技术支持及实验方案制定在内的全方位服务;
(2)迅捷的货期:利用国际化的物流平台,大大缩短产品从厂家到最终用户的时间;
(3)过硬的品质:确保正品、质量和售后,多年客户积累,口碑保证。
公司简介:
艾美捷科技有限公司经营范围涵盖分子生物学试剂、免疫学试剂、细胞生物学试剂、蛋白质研究试剂、微生物学试剂、化学及生化试剂、材料学试剂、天然提取物、仪器设备等9大门类,累计约10万余种产品,充分满足不同客户的个性化需求;公司代理国外50余种一线品牌试剂,以“高性价比、迅捷的物流速度、专业的技术支持”,让客户充分享受全球化带来的便利;公司还增加了基因编辑、蛋白表达、细胞鉴定等定制项目,大大提升了为客户服务能力。“不忘初心,方得始终”,艾美捷科技将继续秉持“专心、专业、为您”的宗旨,以客户为根本,以诚信为基础,持续地为各界客户提供更加优质的产品和服务。
Glycon Biochemicals GmbH; Glycon Biochem; Glycon; S20031; S97085; S10191; S10192; S10189; S03293; S05174; S02174; D-20054; D-20055; D-20056; D97011; D20034; D99014; D07033; D97001; D97001-C; D99011; D99011-C; D99006; D11023; D99007; D99019-C; D99020; D20018; D14001; D20020; D20015; D20015-C; D99003; D99003-C; D99012; D99012-C; D97002-C; D20016; D20016-C; D20028-C; D20040-C; D20029-C; D97002; S02122; D99013; D20014; D14038-C; D20021; D20022-C; D99013-C; D20014-C; D98004; D99005; D99008; D20038; D20041; D20033; D20035; D20039; D20032; D20031; D20030; D71111; S98001; D20036; D99009; D99010; S10197; S10195; S10196; S10190; S10198; S10194; S10199; S01241; P0001; P0002; P0003; S96001; S93002; S98003; S94004; S94005; S96006; S97007; S00116; S96008; S96009; S96010; S98011; S98012; S11118; S98013; S99102; S93014; S97016; S93017; S96018; S96021; S97022; S96024; S96025; S97026; S97027; S97028; S97029; S96030; S96032; S94035; S97037; S95038; S00112; S95039; S93040; S00110; S96042; S96043; S95044; S93045; S94046; S97036; S00113; S02122-L; S02122-P; S94048; S00111; S96051; S96052; S98053; S98054; S93057; S94058; S96060; S97061; S98062; S96063; S96064; S96065; S96066; S96067; S97068; S98069; S95072; S99070; S96074; S94075; S93076; S93077; S93079; S93080; S96081; S96082; S96083; S94084; S97086; S97087; S94088; S94089; S94090; S96091; S93092; S96093; S96094; S94095; S94097; S93100; S93101; S93015; S96023; 10030-80-5; 10030-85-0; 10593-29-0; 106402-05-5; 106402-05-5; 111-03-5; 1114-34-7; 1128-40-1; 115457-83-5; 116183-64-3; 1172-03-8; 13035-61-5; 13343-62-9; 13343-63-0; 13992-25-1; 13992-26-2; 14131-84-1; 146801-07-2; 14687-15-1; 148565-58-6; 155548-45-5; 15814-59-2; 1643-20-5; 1707-77-3; 17289-61-1; 17629-30-0; 1811-31-0; 1824-94-8; 18449-82-6; 18549-40-1; 18615-50-4; 18968-05-3; 19046-60-7; 19327-39-0; 1949-78-6; 19879-84-6; 20031-21-4; 20881-04-3; 22352-19-8; 24259-59-4; 2438-80-4; 25339-99-5; 253678-64-7; 253678-65-8; 253678-67-0; 253678-67-0; 2595-98-4; 26183-52-81; 28697-53-2; 29557-51-5; 29781-80-4; 29836-26-8; 29836-26-8; 3055-98-9; 3055-99-0; 3068-32-4; 3068-34-6; 3162-96-7; 34384-797; 3458-28-4; 34819-86-8; 3615-37-0; 367-93-1; 367-93-1; 367-93-1; 369-84-4; 4026-27-1; 4064-06-6; 4098-06-0; 41308-76-3; 4132-28-9; 4163-60-4; 4163-65-9; 48149-72-0; 497-76-7; 498-07-7; 50444-86-5; 50-69-1; 5168-89-8; 5274-68-0; 528-50-7; 5308-25-7; 54400-75-8; 54400-77-0; 547-25-1; 572-09-8; 58066-85-6; 582-52-5; 58846-77-8; 58-86-6; 59080-45-4; 59122-55-3; 5996-14-5; 61330-61-8; 6167-32-4; 6205-69-2; 6363-53-7; 641-74-7; 644-76-8; 6540-99-4; 66-84-2; 69227-93-6; 69227-93-6; 6988-39-2; 6988-39-2; 69984-73-2; 69984-73-2; 7000-27-3; 70005-86-6; 70504-28-8; 71888-67-0; 7464-56-4; 7512-17-6; 75621-03-3; 7772-79-4; 7772-94-3; 77733-28-9; 78617-12-6; 82473-24-3; 82494-08-4; 82494-09-5; 82494-09-5; 85261-19-4; 85261-19-4; 85316-98-9; 85618-20-8; 85618-20-8; 85618-21-9; 85618-21-9; 85775-42-4; 870287-95-9; 87-81-0; 9043-30-5; 921-60-8; 93911-12-7; 93911-12-7; 98064-96-1; 98854-15-0; 98854-16-1

BroadPharm位于美国加州圣迭戈市,致力于为世界范围内的客户提供高纯度的PEG Linkers,Click Chemistry Tools及生物标记试剂,如染料标记、生物素标记等。
BroadPharm is a leading customer-focused biotech company in San Diego, California. We are dedicated to manufacturing and supplying high purity PEG Linkers, Click Chemistry Tools and advanced Bio-labeling reagents such as Dye Labeling and Biotin Labeling compounds to our clients worldwide.
主要产品包括:
(1)PEG Linkers (in stock)
Alkyne PEG、Cleavable PEG、PEG Acid、PEG Tosylate、PEG-X-PEG、Amino PEG、DBCO PEG、PEG Aldehyde、Poly PEG、Aminooxy PEG、DNP-PEG、PEG Azide、Propargyl PEG、BCN-PEG、DOTA PEG、PEG Maleimide、Sugar PEG、Benzyl-PEG、DSPE PEG、PEG NHS ester、TCO-PEG、Biotin PEG、Fluorescent PEG、PEG Peptide、Tetrazine-PEG、Bis-PEG-acid、Fmoc PEG、PEG PFP ester、Thiol PEG、Bis-PEG-NHS、Hydroxy PEG、PEG Phosphonate、Boc-PEG、m-PEG、PEG Silane、Branched PEG、MeNH-PEG、PEG Sulfonic acid、Bromo PEG、Non-PEG linker
(2)Click Chemistry Tools
Azide, Alkyne, DBCO, TCO, Tetrazine, BCN
(3)Dye Labeling
Cyanine, Fluorescein, Rhodamine, BDP and Pyrene dyes
(4)Biotin Labeling
Amine reactive, carboxyl reactive, carbonyl reactive, water-soluble, cleavable
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艾美捷科技代理Hello Bio 品牌。
Roboscreen Diagnostics公司,正式名称为ROBOSCREEN GmbH,是一家专注于研发和生产高质量诊断工具的公司,在qPCR应用开发、单克隆抗体的产生以及它们在免疫化学测试构建中的应用方面具有高水平的专业知识。
Hello Bio由一群经验丰富的科学家和化学家组成,他们真诚地希望支持生命科学研究。目标是制造和供应一系列高性价比的生命科学生化制品、抗体和试剂,以便尽可能多的研究人员能够负担得起。
Hello Bio Ltd的产品线非常丰富,涵盖了多个生命科学领域的关键试剂和工具,包括:
(1)激动剂、拮抗剂、抑制剂和激活剂:这些产品被广泛用于信号转导系统研究,以及药物筛选和开发等领域。
(2)酶抑制剂和激活剂:用于调节酶的活性,是研究细胞代谢和信号传导的重要工具。
(3)信号通路研究工具:包括各种信号分子和信号通路调节剂,有助于揭示细胞间的通讯机制。
(4)受体配体:用于研究受体与配体之间的相互作用,以及药物与受体的结合特性。
(5)离子通道调节器:用于调节离子通道的活性,是研究神经传导、肌肉收缩等生理过程的重要工具。
(6)表观遗传工具:用于研究表观遗传机制,如DNA甲基化、组蛋白修饰等,对于理解基因表达和疾病发生具有重要意义。
(7)干细胞调节剂:用于调节干细胞的增殖和分化,是研究干细胞生物学和再生医学的重要工具。
此外,Hello Bio Ltd还提供定制合成服务,可以根据客户的具体需求合成特定的化合物或试剂。

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.
<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://aviva.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="TiterMax"> TiterMax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:13212737804
传真:18327026838
邮箱:sales@amyjet.com
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