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- 详细信息
- 文献和实验
- 技术资料
- 保存条件:
-70℃
- 保质期:
See instructions
- 英文名:
Virus-Like Particle (VLP)
- 库存:
表达系统:Human Cells
- 供应商:
上海经科化学科技有限公司
- 规格:
10ug/50ug/500ug/1mg
| 规格: | 10ug | 产品价格: | ¥840.0 |
|---|---|---|---|
| 规格: | 50ug | 产品价格: | ¥2520.0 |
| 规格: | 500ug | 产品价格: | ¥12320.0 |
| 规格: | 1mg | 产品价格: | ¥17600.0 |
- The product is shipped on dry ice/polar packs.
- Upon receipt, store it immediately at the temperature listed below.
- Store at ≤-70°C, stable for 6 months after receipt.
- Store at ≤-70°C, stable for 3 months under sterile conditions after opening.
- Please minimize freeze-thaw cycles.
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文献和实验Virus-like particles (VLPs) are virus-derived structures made up of one or more different molecules with the ability to self-assemble, mimicking the form and size of a virus particle but lacking the genetic material so they are not capable of infecting the host cell. Expression and self-assembly of the viral structural proteins can take place in various living or cell-free expression systems after which the viral structures can be assembled and reconstructed. VLPs are gaining in popularity in the field of preventive medicine and to date, a wide range of VLP-based candidate vaccines have been developed for immunization against various infectious agents, the efficacy of which is being evaluated. VLPs are highly immunogenic and are able to elicit both the antibody- and cell-mediated immune responses by pathways different from those elicited by conventional inactivated viral vaccines.
The JC Virus-Like Particle Overlay Assay
1, and a virus-like particle (VLP) consisting of recombinant VP1 made from Escherichia coli exhibit a virion-like structure and physiological functions (cellular attachment and intracytoplasmic trafficking) similar to those of JCV virions. To examine
Lentivirus-Based Virus-Like Particles as a New Protein Delivery Tool
/proteins renders VLPs attractive candidates for vaccine strategies, as well as for protein delivery for basic science. Among the wide number of VLP types, our expertise focused on both retro- and lentivirus based VLPs as protein delivery tools
Edible vaccines must survive digestive process and preserve the specific structure of the antigenic peptide to elicit effective immune response. The stability of a protein to digestive process can be predicted by subjecting it to the in vitro
技术资料







