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经过去分化处理的间充质干细胞移植效果更佳 [复制链接]

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楼主
发表于 2011-11-9 21:34 |只看该作者 |倒序浏览 |打印
本帖最后由 sunsong7 于 2011-11-9 21:34 编辑
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$ B  l9 g1 l. c8 y& \. VReprogramming Stem Cells to a More Basic Form Results in More Effective Transplant, Study Shows/ o* e( V- m  h1 G1 d
ScienceDaily (Nov. 3, 2011) — Chinese stem cell scientists have published new research that improves the survival and effectiveness of transplanted stem cells.
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The research led by Dr Hsiao Chang Chan, from the Chinese University of Hong Kong, is published in Stem Cells.+ f* R& s4 \, n8 g" ?/ L
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Research into differentiation has led to a variety of breakthroughs as stem cell researchers harvest cells from one part of the body and genetically adapt them to fulfill a specialized role. However, if the implanted cells are too much like the cells of the targeted area they may not have the plasticity to engraft and repair the injured tissue.
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"Stem cell differentiation and transplantation has been shown to improve function in conditions including degenerative diseases and blood supply disorders," said Dr Chan. "However, the survival rate of transplanted cells in patients limits their overall effectiveness, which is a barrier to clinical use."$ e3 {  g! |: ^$ F
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To overcome this issue Dr Chan's team explored de-differentiation, a process that reverts specialized, differentiated cells back to a more primitive cell.
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6 e8 L. M8 K9 o: NThe team focused their research on multipotent stem cells, (MSCs) which can be altered into a variety of cell types through differentiation. Bone marrow MSCs have the potential to differentiate into each of the three basic types of lineage cells which form bone (osteocytes), cartilage (chondrocytes) and fat tissue (adipocytes).6 M! p& h* s+ b! r

$ {* N% H$ G: ~% S  _. Y5 iThe team first differentiated bone marrow MSCs towards a neuronal lineage, but then removed the differentiation conditions, allowing the cell to revert back to a form with more basic cellular characteristics.
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6 L, |3 d8 }  g; [  [# ]+ ~Following this process the team recorded increased cell survival rates following transplants. In an animal model de-differentiated cells were found to be more effective in improving cognitive functions and in aiding recovery from strokes, compared to un-manipulated stem cells both in living specimens and in laboratory experiments.6 i% U8 H# R/ C/ f. y* L

3 \* d* k' {0 Q8 xThe results confirm that de-differentiation is a workable technique for reengineering cells to an earlier, more primitive state, but with increased cell survival rates which increase their potential for clinical use.4 Z9 A- V7 ^* t
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"The finding that MSCs can be reprogrammed to have enhanced survival and therapeutic efficacy in an animal model with potential application to patients is extremely exciting as it may provide a novel and clinically practical method to overcome low cell survival in cell-based therapy," concluded Dr Chan. "We are currently exploring other beneficial properties of the reprogrammed MSCs for other therapeutic applications."
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"Many investigators have speculated that differentiation should improve the utility of stem cells for transplantation, but how far to differentiate the cells for the best outcome is a difficult question. Dr Chan's team have helped provide an answer by educating mesenchymal stem cells by pre-differentiating to the desired lineage before de-differentiation, making MSCs easier to manipulate and implant," said Dr Mark Pittenger, Stem Cells Associate Editor.
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"Interesting questions still remain for future work such as which factors are expressed in the pre-differentiated stem cells that persist upon de-differentiation and can the de-differentiated cells be frozen for future use?"$ o; Z1 V' y2 b3 a
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http://www.sciencedaily.com/releases/2011/11/111103081427.htm
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沙发
发表于 2011-11-9 22:35 |只看该作者
  请问有没有这篇文献的全文,Translational and Clinical Research
6 X5 @* S& A8 MDedifferentiation-Reprogrammed Mesenchymal Stem Cells with Improved Therapeutic Potential†8 U1 L2 |6 g$ x/ g: z+ Q5 x! Z
Yang Liu1,2,‡, Xiaohua Jiang1,3,‡, Xiaohu Zhang1,‡, Rui Chen1, Tingting Sun1, Kin Lam Fok1, Jianda Dong1, Lai Ling Tsang1, Shaoqiong Yi6, Yechun Ruan1, Jinghui Guo1, Mei Kuen Yu1, Yuemin Tian1, Yiu Wa Chung1, Mo Yang5, Wenming Xu1,4, Chin Man Chung1, Tingyu Li2,*, Hsiao Chang Chan1,3,4,*  E5 B' N% j5 b

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发表于 2011-11-9 22:42 |只看该作者
本帖最后由 naturalkillerce 于 2011-11-11 15:06 编辑 - C; ^+ j5 K/ E; O7 z
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回复 milklecherry 的帖子
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- d0 S* j% s- J2 W8 A1 S该新闻与下面帖子内容相同,上面有原文:
- M4 a( C& Z, r& H- M中国学者Stem Cell获干细胞新发现:http://www.stemcell8.cn/thread-48458-1-1.html
1 ?* c1 u" N3 A需要的话,去下载吧。
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发表于 2011-11-9 22:57 |只看该作者
干细胞之家微信公众号
谢谢

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发表于 2011-11-10 12:20 |只看该作者
去分化研究非常有用,在肿瘤化生中表现的更为明显!!!!
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地板
发表于 2011-11-11 14:53 |只看该作者
去分化的细胞具有更强的稳定性和分化能力,可以减少移植后细胞的成活率,提高治疗效果,是个不错的研究成果

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发表于 2011-11-29 11:55 |只看该作者
去分化处理的间充质干细胞是否可以降低移植的成瘤性问题
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发表于 2011-11-29 11:55 |只看该作者
去分化处理的间充质干细胞是否可以降低移植的成瘤性问题

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发表于 2011-11-29 12:31 |只看该作者
本帖最后由 一一 于 2011-11-29 12:33 编辑 ( v9 y! x) f8 V9 ~0 N( G6 [
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我们知道我们纯化干细胞的过程,是艰难的,干细胞的获得就是一个倒金字塔,有人说我得到了百分之百纯的干细胞那一定是不懂行。本研究提供我们去分化间充质干细胞可提高移植效率,是不是另一方面可以认为现有的技术,在体外我们无法模拟体内环境而得到最原始的细胞,由于机体生病,自主的干细胞不能发挥作用,体外移植细胞又与体内不完全相同,从而移植的间充质干细胞效率低。因此我们只有在体外获得更为原始,更不易分化的干细胞,找到这个组织来源,也是一件很好的事情。如果找不到,我们怎么去分化,有人认为细胞分化的环境和niche有关,就像本研究,那么是否在基因的水平上还有某些决定因子控制细胞的进程。而两种方法,究竟谁对于临床更安全和有效?
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发表于 2012-2-22 09:01 |只看该作者
喜欢这个研究思路,确定了自己的研究方向就从这里开始,关键是去分化的控制,去分化到何种程度才是最关键的,毕竟去分化的过程是对细胞有一定损害的
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