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- 详细信息
- 文献和实验
- 技术资料
- 保存条件:
不适用
- 保质期:
不适用
- 英文名:
Wilson Wolf G-Rex
- 库存:
999
- 供应商:
北京泽平
- CAS号:
不适用
- 规格:
1个
g-rex培养系统
Wilson Wolf G-Rex底透气型细胞培养瓶
——封闭式免疫细胞培养,CAR-T、CAR-NK、TCR-T、TIL细胞GMP生产
北京泽平代理的美国Wilson Wolf G-Rex底透气型细胞培养瓶,针对悬浮细胞培养设计,实现细胞快速扩增和封闭条件下收获,特别适用于免疫细胞的实验室研究和大规模GMP生产,目前已成功用于包括CAR-T、CAR-NK、TCR-T在内的多种工程细胞的封闭式培养中:
①免疫细胞培养
嵌合抗原受体T细胞(CAR-T,chimeric antigen receptor T cells)
嵌合抗原受体NK细胞(CAR-NK,chimeric antigen receptor natural killer cells)
T细胞受体嵌合型T细胞(TCR-T,T cell receptor-engineered T cells)
EB病毒特异性细胞毒性T淋巴细胞(EBV-CTL)
肿瘤浸润淋巴细胞(TIL细胞,tumor infiltrating lymphocytes)
自然杀伤细胞(NK细胞,natural killer cells)
调节性T细胞(Treg细胞,regulatory T cells)
造血干细胞(HSC,hematopoietic stem cell)
淋巴母细胞系(LCL,lymphoblastoid cell line)
抗原特异性T细胞(CTL)
人慢性骨髓性白血病细胞系(K562细胞系)
②杂交瘤、CHO、293等单克隆抗体和重组抗体生产
③多至40001E/cm2的膜岛运输








参考文献
1. Optimlzation of therapeutic T cell expansion in G-Rex device and applicabillty to large-scale production for clinical use. Gotti, et al. Cytotherapy, 1/19/2022
2. Rapid Transduction and Expansion of Transduced T Cells with Maintenance of Central Memory Populations. Mary Pampusch, Kumudhini Haran, Geoffrey Hart, et al. Molecular Therapy Methods & Clinical Development, 3/1/2020
3. Innovative Development of Closed CAR T Platform(Poster). Gil Joseph, et al. WuXi Advanced Therapies, 1/1/2020
4. A serum-free protocol for the ex vivo expanslon of Cytokine-Induced Killer cells using gas-permeable static culture flasks. Palmerini, et al. Cytotherapy, 9/1/2020
5. Streamlined production of genetically modified T cells with activation, transduction and expanslon in closed-system G-Rex bloreactors. Christine Gagliardi, et al. Cytotherapy, 10/16/2019
6. Enhanced clinical-scale manufacturing of TCR transduced T-cells using closed culture system modules. Jianjian Jin, et al. Journal of Translational Medicine, 1/1/2018
7. Tumor-infiltrating lymphocytes: Streamlining a complex manufacturing process. Emily Hopewell, et al. Cryotherapy, 11/4/2018
8. Large-scale expansion ofVγ9Vδ2T cells with engineered K562 feeder cells in G-Rex vessels and their use as chimerlc antigen receptor-modified effector cells. Lin Xiao, et al. Cytotherapy, 12/17/2017
9. Large-Scale Culture and Genetic Modification of Human Natural Killer Cells for Cellular Therapy. Natalia Lapteva, et al. Methods in Microbiology, 1/1/2016
10. The beneficlal effects of a gas-permeableflask for expansion of Tumor-Infiltrating lymphocytes as reflected in their mitochondrlal function and respiration capacity. Marie-Andree Forget, et al. Oncolmmunology, 3/2/2016
11. Manufacture of GMP-compllant functional adenovirus-specificT-cell therapy for treatment of post-transplant infectlous complications. Claire Horlock, et al. Cytotherapy, 6/1/2016
12. Go-CART: an animal-free system for the assessment of CAR T cell function. Pradip Bajgain, et al. Journal of Immunotherapy of Cancer, 11/4/2015
13. Manufacture of tumor-and virus-speclific T lymphocytes for adoptive cell theraples. XWang, et al. Cancer Gene Therapy, 2/27/2015
14. Early transduction produces highly functional chimeric antigen receptor-modified virus-specific T-cells with central memory markers: a Production Assistant for Cell Therapy(PACT) translational application. Jiali Sun, et al. Journal of Immunotherapy of Cancer, 1/1/2015
更多Wilson Wolf G-Rex细胞培养瓶信息,欢迎来电咨询17812778052
——Wilson Wolf官方授权中国代理商,北京泽平
声明:“北京泽平生物科技有限责任公司”是“北京泽平科技有限责任公司”的全资子公司,由北京泽平科技有限责任公司统一提供所有产品的销售和服务。
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文献和实验Using the Flp-In T-Rex System to Regulate GPCR Expression
The development of a cell-based system that allows the integration of a gene of interest (GOI), such as a G protein-coupled receptor (GPCR), into a specific site on the genome, has made the generation of mammalian cell lines able to express
。一、固定化动物细胞大规模培养技术1. 固定化培养方法在动物细胞培养中,培养细胞的目的不仅仅要求催化活力,更重要的是利用细胞来合成和分泌蛋白,因此如何保持细胞的活性显得尤为重要。由于动物细胞的极度敏感性,上述这些固定化方法会对动物细胞产生毒性,另外多糖(如卡拉胶等) 由于具有很高的离子强度也会对细胞产生毒害。故在动物细胞培养中要考虑使用较温和的固定化方法,如吸附、包埋、中空纤维或胶囊化。1. 1 吸附1. 1. 1 多孔陶瓷美国某公司开发了一种完全自动化的细胞培养系统。该系统的核心是陶质矩形蜂窝
的 PromoCell DC 生成培养基 DXF(不含细胞因子)洗三次, 吸走 上清液。 3、开始分化为不成熟的单核 DC 细胞(第 0 天) 加入适量的混有 1x 化合物 A 的 P romoCell DC 生成培养基 DXF,在 37 ℃和 5 %的 CO2 的培养箱中培养3天。 4、更换培养基(第 3 天) 在第3天的时候更换 培养基:从细胞中吸走培养基,收集在一个离心管中。然后立刻吸取新鲜的与1x化合物A混合的DC生成培养基DXF加入到细胞中。在 180g 的离心力条件下离心10
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