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:18771149750
传真:17754422825
邮箱:sales@amyjet.com

Lunginnov公司位于法国里尔市,主要产品线包括生命科学试剂和体外诊断医疗器械。Lunginnov公司最大的特色是为研究者提供Endocan和CG-Cleaved Endocan检测产品(包括抗体、ELISA试剂盒、重组蛋白等),这两个分子已经被证明是肺部感染/损伤的标志分子。
Lunginnov develops innovative solutions for respiratory diseases that enable earlier therapeutic decision to be helpful for patients. Lunginnov markets 2 product lines:
A range of unique reagents for research in Life Sciences
A range of original medical devices for In Vitro Diagnostic
Lunginnov is declared manufacturer to the french regulatory agency ANSM. The company devotes a significant part of its budget to its internal R&D and to set up collaborative projects with Research Centers in France and abroad. Lunginnov is specialized on endocan and CG-cleaved endocan as markers of lung infection/injury, by proposing specific tools of high quality researchers and clinicians.
<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

艾美捷科技代理Chemtrade品牌佐剂产品。
Chemtrade专业生产氢氧化铝胶佐剂,用于细菌疫苗、狂犬病疫苗、HPV疫苗、肺炎球菌疫苗、流感疫苗产品等。Chemtrade氢氧化铝胶佐剂主要用于动物疫苗的生产中,作为佐剂与疫苗抗原混合使用。其使用方法通常是将佐剂与抗原以一定比例混合均匀,然后注入动物体内以产生免疫效果。
Chemtrade佐剂特点包括:
(1)粒径小:Chemtrade氢氧化铝胶佐剂的粒径较小,这使得其具有更大的表面积和更强的吸附能力。这一特点使得佐剂能够更有效地与疫苗抗原结合,提高疫苗的免疫效果。
(2)高吸附能力:由于粒径小和表面积大,Chemtrade氢氧化铝胶佐剂能够吸附更多的抗原,从而增强疫苗的免疫原性和稳定性。
(3)低副反应:Chemtrade氢氧化铝胶佐剂在使用过程中表现出较低的副反应,对动物体更为友好,减少了疫苗接种后的不良反应。
(4)品质保障:作为进口佐剂,Chemtrade氢氧化铝胶佐剂经过严格的质检和认证,确保其符合国际标准和要求。同时,国内代理商如河南通商等也提供了稳定的产品供应和优质的服务。

艾美捷科技代理ALZET品牌渗透泵产品。
GroPep专注于生产用于细胞培养、蛋白质研究和药物开发领域的高质量生物活性肽、重组蛋白和相关试剂。GroPep公司的产品广泛应用于细胞生物学、干细胞研究、癌症研究和再生医学等领域。GroPep公司的主要产品类别是:
1. 生物活性肽
IGF-1(胰岛素样生长因子-1):促进细胞生长、分化和存活,广泛应用于细胞培养和组织工程。
IGF-2(胰岛素样生长因子-2):支持细胞增殖和组织修复。
Long™R3 IGF-1:IGF-1 的类似物,具有更长的半衰期和更高的生物活性。
Des(1-3)IGF-1:截短形式的 IGF-1,具有增强的生物活性。
2. 重组蛋白
重组人 IGF-1:高纯度重组蛋白,用于细胞培养和生物医学研究。
重组人 IGF-2:支持细胞生长和组织再生。
重组人 FGF(成纤维细胞生长因子):用于干细胞研究和组织工程。
3. 细胞培养添加剂
GROVT™ 细胞培养基添加剂:用于优化无血清细胞培养基,支持细胞生长和增殖。
Recombination™ 细胞培养因子:包括 IGF 和 FGF 等,用于干细胞和原代细胞培养。
4. 抗体和检测试剂
抗 IGF-1 抗体:用于 ELISA、Western Blot 和免疫组化实验。
抗 IGF-2 抗体:高特异性抗体,用于检测 IGF-2 表达。
IGF 结合蛋白(IGFBP)检测试剂:用于研究 IGF 信号通路。
5. 干细胞研究试剂
干细胞培养基添加剂:用于支持干细胞的自我更新和分化。
干细胞生长因子:包括 IGF、FGF 和 EGF 等,用于优化干细胞培养条件。
6. 药物开发工具
IGF 受体抑制剂:用于研究 IGF 信号通路在癌症中的作用。
肽类药物开发工具:提供高纯度肽类分子,用于药物筛选和开发。
7. 定制服务
定制肽合成:根据客户需求合成特定序列的肽。
重组蛋白表达和纯化:提供高质量的重组蛋白定制服务。

艾美捷科技代理SERVA Electrophoresis GmbH公司产品。
SERVA Electrophoresis GmbH专业生产生化试剂,两性电解质、等电聚焦蛋白 Marker 等电泳试剂,IEF 预制胶、上样梳等电泳耗材,高性能等电聚焦电泳系统设备等产品。SERVA Electrophoresis GmbH总部位于德国海德堡。该公司在生命科学领域,特别是蛋白质研究、分子生物学和生物化学方面,提供高质量的电泳设备和试剂。
主要产品和服务
(1)电泳设备:SERVA 提供各种电泳设备,包括垂直和水平电泳系统,适用于蛋白质和核酸的分离和分析。
(2)电泳试剂:公司生产各种电泳试剂,如预制胶、缓冲液、染色剂和分子量标记物,广泛应用于蛋白质和核酸的电泳分析。
(3)蛋白质研究工具:SERVA 提供多种用于蛋白质研究的工具,包括蛋白质标记试剂、抗体和蛋白质纯化产品。
(4)定制服务:SERVA 还提供定制服务,根据客户的具体需求开发和生产特定的电泳产品和试剂。
SERVA 的产品广泛应用于生命科学研究的各个领域,包括:
(1)蛋白质组学:用于蛋白质的分离、鉴定和定量分析。
(2)分子生物学:用于核酸的分离和分析,如 DNA 和 RNA 的电泳
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艾美捷科技代理Canopy Biosciences品牌。
Canopy Biosciences 是一家专注于为生命科学研究和药物开发领域提供先进的多组学分析和细胞成像解决方案的公司。公司成立于 2016 年,总部位于美国密苏里州圣路易斯市,凭借其创新的技术平台、高质量的产品和对客户需求的深刻理解,已成为多组学和空间生物学领域的重要供应商之一。Canopy Biosciences 的产品和服务广泛应用于免疫学、癌症研究、药物开发和基础科学研究等领域。Canopy Biosciences专业生产宿主细胞蛋白检测试剂盒,包括:CHO 宿主细胞检测试剂盒、HEK293宿主细胞检测试剂盒、E. coli 宿主残留检测试剂盒等。
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艾美捷科技代理EastCoast Bio品牌诊断原料。
EastCoast Bio公司,主要生产诊断试剂行业抗原和抗体,在药物滥用、传染病、动物诊断领域独具特色。EastCoast Bio公司成立于1995年,总部位于美国。该公司致力于提供高质量的抗原、抗体和用于诊断试剂生产的免疫分析试剂。其产品在胶体金和ELISA等免疫测定法中得到了广泛应用,为全球大小型制造商开发自己的免疫测定法提供了有力支持。EastCoast Bio公司提供多种心肌类、肿瘤类、激素类、传染病类等抗原抗体产品。这些产品具有高灵敏度、高特异性和高稳定性等特点,能够满足不同领域的检测需求。例如,心肌类抗原抗体可用于心脏疾病的诊断;肿瘤类抗原抗体可用于肿瘤的早期筛查和疗效监测;传染病类抗原抗体则可用于传染病的诊断和防控。除了抗原和抗体产品外,EastCoast Bio公司还提供一系列用于免疫分析的试剂,如海洋阻断剂、药物滥用抗原抗体(DOA)、血浆蛋白等。这些试剂在免疫测定法中发挥着重要作用,有助于提高检测的准确性和可靠性。EastCoast Bio公司的产品线还包括mRNA疫苗相关产品、化合物、修饰酶以及其他PCR相关试剂等。这些产品为生命科学研究和临床诊断提供了更多的选择和可能性。
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<艾美捷科技代理Terracebiotech品牌全系列产品
Terracebiotech的专业技术源于加州大学旧金山分校医学中心的肺研究小组,该小组曾助力明确肺表面活性物质的特性,随后研发出其合成形式,用于治疗患有呼吸窘迫综合征的早产儿。凭借在肺细胞生物学领域超过 25 年的实践研究经验,Terracebiotech将其专业技术应用于推动医学研究的进一步创新,以改善人类健康。
Terracebiotech的抗体(在人体肺部中特异性靶向肺泡上皮1型或2型细胞)经验证,可高效、可靠地用于以下应用:免疫组织化学 (IHC);蛋白质印迹法 (Western Blotting);通过流式细胞分选技术 (FACS) 进行细胞分离;半定量斑点印迹 (Semi-Quantitative Dot Blots);磁性细胞分选 (Magnetic Cell Sorting);冷冻免疫电镜 (TEM Cryo-Immunohistochemistry)。

▍Terracebiotech产品列表
| 品名 | 货号 | Validated For | Production Host | Isotype | 规格 |
| Anti HT1-56 | TB-29AHT1-56 | IHC, Western Blots, FACS, magnetic Cell Sorting, Dot blots, and TEM | Mouse hybridoma cells | Mouse IgG1 | 1ml |
| Anti HT2-280 | TB-27AHT2-280 | IHC, Western Blots, FACS, magnetic Cell Sorting, Dot blots, and TEM | Mouse hybridoma cells | Mouse IgM | 1ml |
| Anti RT1-40 | TB-11ART1-40 | IHC, Western Blots, FACS, magnetic sell sorting, and dot blots. | Mouse hybridoma cells | Mouse IgG1 | 1ml |
| Anti RT2-70 | TB-44ART2-70 | IHC, FACS, magnetic Cell Sorting, and dot blots. | Mouse hybridoma cells | Mouse IgG3 | 1ml |
<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 |

<| 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 |
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艾美捷科技代理Molecular Dimensions品牌。
Molecular Dimensions 是一家专注于为X射线晶体学和结构生物学领域提供高质量试剂、耗材和设备的公司。公司致力于支持科学家在蛋白质晶体学、小分子晶体学和材料科学等领域的研究,提供从晶体生长到数据收集的全流程解决方案。Molecular Dimensions 以其创新的产品、严格的质量控制和卓越的客户服务而闻名,已成为全球晶体学研究领域的重要供应商之一。Molecular Dimensions核心业务领域:
(1)晶体生长试剂:Molecular Dimensions 提供多种用于蛋白质和小分子晶体生长的试剂,包括结晶筛选试剂盒、缓冲液、沉淀剂和添加剂。
(2)结晶筛选试剂盒:提供多种结晶筛选试剂盒,如 JCSG+、Morpheus 和 PACT,适用于不同类型的晶体生长实验。
(3)晶体学耗材:提供用于晶体学研究的耗材,如结晶板、密封膜、样品支架和低温冷冻工具。
(4)自动化晶体成像系统:Molecular Dimensions 提供自动化晶体成像系统(如 Rock Imager),用于实时监测晶体生长过程,帮助科学家优化晶体生长条件。
(5)蛋白质纯化和结晶工具:公司提供用于蛋白质纯化和结晶的工具,如蛋白质浓缩器、透析设备和结晶板。
(6)软件和数据分析工具:Molecular Dimensions 提供用于晶体学数据分析和结构解析的软件工具,如 AceDRG 和 xia2。
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