CF1 Mouse Embryonic Fibroblasts, irradiated Gibco™ A34181 CF1小鼠胚胎成纤维细胞(已辐照)-BioVector NTCC细胞库
- 价 格:¥49850
- 货 号:NTCC®-A34181
- 产 地:北京
- BioVector NTCC典型培养物保藏中心
- 联系人:Dr.Xu, Biovector NTCC Inc.
电话:400-800-2947 工作QQ:1843439339 (微信同号)
邮件:Biovector@163.com
手机:18901268599
地址:北京
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CF1 Mouse Embryonic Fibroblasts, irradiated Gibco™ A34181
CF1小鼠胚胎成纤维细胞(已辐照)
BioVector NTCC质粒载体菌株细胞蛋白抗体基因保藏中心
Irradiated Gibco CF1 Mouse Embryonic Fibroblasts (MEFs) are feeder cells that are ideal for supporting healthy undifferentiated human and mouse embryonic stem cells (ESCs) and induced pluripotent stem cells (iPSCs) in culture. Manufactured by MTI-GlobalStem and equivalent to MTI-GlobalStem Cat. Nos.GSC-6001G and GSC-6201G, these widely-used MEF cells are isolated from outbred CF1 mice, mitotically arrested by irradiation, and tested to ensure safety and performance. CF1 MEFs are traditional feeder cells for culturing pluripotent stem cells; for MEFs derived from ICR mice, see Mouse (ICR) Inactivated Embryonic Fibroblasts.
• Help save precious time with pre-inactivated, ready-to-use MEFs
• Culture ESCs and iPSCs with confidence using meticulously tested feeder cells
• Rely on a widely-used product
Help save time with ready-to-use MEFs
Irradiated CF1 MEFs help save time and trouble dealing with an animal facility, performing tedious, time-consuming dissections, and expanding and testing cells day after day, week after week. Focus on your research with these pre-inactivated, ready-to-use feeders.
Culture with meticulously tested feeder cells
Each lot of CF1 MEFs is tested for bacteria, fungi, mycoplasma, and mouse pathogens to minimize the risk of contamination. Each lot is also tested for post-thaw viability (typically greater than 95%) and ability to support mouse and human ES cells to ensure robust and consistent performance. These MEFs have been used successfully with ESC/iPSC lines from other species, but should be tested for compatibility if used for such an application.
Rely on a widely-used product
These CF1 MEFs are used in many labs worldwide and have been cited in various publications. They have been successfully used to support undifferentiated pluripotent stem cells at densities ranging from 2 x 104–5.3 x 104 cells/cm2.
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