|
  
- 积分
- 536
- 威望
- 536
- 包包
- 1170
|

Nat Methods. 2009 Oct 18.【Epub ahead of print】
, w O# a( U' t) k' @
. S! o4 g8 B+ Q# `) i1 W. |; S
8 d/ V( e$ ~: rA chemical platform for improved induction of human iPSCs., I. m7 U5 g0 `: A8 @
5 A7 Y" m: ~6 l6 P; v5 N Z# h
Lin T, Ambasudhan R, Yuan X, Li W, Hilcove S, Abujarour R, Lin X, Hahm HS, Hao E, Hayek A, Ding S.5 }4 R+ ]& s' y
Department of Chemistry, The Scripps Research Institute, La Jolla, California, USA." c, P( R$ U3 F- M# _. x5 E
& {0 Y7 ^' l; I" D& m( q% h
The slow kinetics and low efficiency of reprogramming methods to generate human induced pluripotent stem cells (iPSCs) impose major limitations on their utility in biomedical applications. Here we describe a chemical approach that dramatically improves (200-fold) the efficiency of iPSC generation from human fibroblasts, within seven days of treatment. This will provide a basis for developing safer, more efficient, nonviral methods for reprogramming human somatic cells.
& Y# I t! e. _4 R+ s
9 C/ _& B+ D7 J5 d4 {6 TPMID: 1983816
: ^8 G0 s n B+ v/ v2 t% ^, ]% p: W$ @' U7 Q7 B
|
附件: 你需要登录才可以下载或查看附件。没有帐号?注册
-
总评分: 威望 + 10
包包 + 10
查看全部评分
|