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

Nat Methods. 2009 Oct 18.【Epub ahead of print】
0 l$ |, Y0 ]2 [: l" Y
( _ e* |; P; y, T1 I* K+ {& X7 x/ t6 d& |
A chemical platform for improved induction of human iPSCs.. |1 q( | u* e6 a2 {
( I0 j) X$ K: t. LLin T, Ambasudhan R, Yuan X, Li W, Hilcove S, Abujarour R, Lin X, Hahm HS, Hao E, Hayek A, Ding S.
4 z1 l* ~ e% jDepartment of Chemistry, The Scripps Research Institute, La Jolla, California, USA.3 N# Z; V# o9 N0 @
5 Q8 E) Y+ }/ F5 e. V9 N
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.
$ ?, q5 f. l4 E1 p2 G" z+ a/ q1 q. ~# _) w2 c
PMID: 1983816+ C8 ?+ _& E7 n8 _5 ]# R% F
: T# B+ S' O4 ?' Q1 J- n/ x h
|
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
|