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大量
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北京诺博莱德科技有限公司
Molecular Innovations成立于1990年,是一家提供科研抗体、纯化蛋白及ELISA 试剂盒产品的生产厂家。
Molecular Innovations公司在凝血酶及溶栓剂研究领域有着独特的优势,主要产品包括:纤溶酶原激活物抑制因子1(PAI-1),玻连蛋白,纤维蛋白,纤维连接蛋白,凝血因子,肾素原/肾素,白蛋白和免疫球蛋白等。
Molecular Innovations公司的客户遍布全球,主要有制药厂家、生物公司和科研院校等。
厂家生产的所有产品均遵守严格的质量标准,便于客户方便快捷的操作,检测结果准确,产品稳定性好
我们北京诺博莱德科技有限公司作为Moss公司的经销商为客户提供,正规进口,保证原装正品,货期稳定,折扣好的服务标准。
Molecular Innovations品牌部分产品货号:
| 产品品牌 | 产品货号 | 产品名称 | 产品规格 |
| Molecular Innovations | Molecular Innovations_VWF25E9 | Anti Human Factor vWF, Clone 25E9 | 0.1 mg |
| Molecular Innovations | Molecular Innovations_VWF31F5 | Anti Human Factor vWF, Clone 31F5 | 0.1 mg |
| Molecular Innovations | Molecular Innovations_WASH | Wash Buffer, 10X Concentrate | 1000 ml |
| Molecular Innovations | Molecular Innovations_XCL1 | Human XCL1 | 0.025 mg |
| Molecular Innovations | Molecular Innovations_UPA-PLATE | Urokinase Coated Plate | 25 plates |
| Molecular Innovations | Molecular Innovations_XCL2 | Human XCL2 | 0.1 mg |
| Molecular Innovations | Molecular Innovations_UPA-LMW | Human LMW urokinase, HRP conjugate | 1.0 mg |
| Molecular Innovations | Molecular Innovations_RPAIKT | Active rat PAI-1 functional assay ELISA kit | 5 Kits |
| Molecular Innovations | Molecular Innovations_UPA-LMW-HRP | Human LMW urokinase, HRP conjugate | 0.1 mg |
| Molecular Innovations | Molecular Innovations_UPA-LMW-FITC | Human LMW urokinase, fluorescein labeled | 1.0 mg |
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文献和实验Molecular docking is a key tool in structural molecular biology and computer-assisted drug design. The goal of ligand—protein docking is to predict the predominant binding mode(s) of a ligand with a protein of known three-dimensional
Molecular dynamics (MD) simulation holds the promise of revealing the mechanisms of biological processes in their ultimate detail. It is carried out by computing the interaction forces acting on each atom and then propagating the velocities
. These difficulties have been greatly reduced through the development of molecular cloning techniques. These methods, which are also referred to as genetic engineering and recombinant DNA technology, deserve much of the credit for the enormous progress in biochemistry
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