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科学家首次将脐带干细胞转化为脑支持细胞! [复制链接]

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发表于 2012-1-19 21:24 |只看该作者 |倒序浏览 |打印
A First: Brain Support Cells from Umbilical Cord Stem Cells

ScienceDaily (Jan. 17, 2012) — For the first time ever, stem cells from umbilical cords have been converted into other types of cells, which may eventually lead to new treatment options for spinal cord injuries and multiple sclerosis, among other nervous system diseases.



% f+ Q+ i( }1 V+ x! Q) LJames Hickman. (Credit: Image courtesy of University of Central Florida)
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3 c& [$ K* }" F0 a0 M"This is the first time this has been done with non-embryonic stem cells," says James Hickman, a University of Central Florida bioengineer and leader of the research group, whose accomplishment is described in the Jan. 18 issue of the journal ACS Chemical Neuroscience.7 o- b! w+ }3 }7 c

# U8 e2 M) e3 m4 \"We're very excited about where this could lead because it overcomes many of the obstacles present with embryonic stem cells."- o/ X7 F/ d# v
Stem cells from umbilical cords do not pose an ethical dilemma because the cells come from a source that would otherwise be discarded. Another major benefit is that umbilical cells generally have not been found to cause immune reactions, which would simplify their potential use in medical treatments.# f' t# ?/ q* T( f0 H
The pharmaceutical company Geron, based in Menlo Park, Calif., developed a treatment for spinal cord repair based on embryonic stem cells, but it took the company 18 months to get approval from the FDA for human trials due in large part to the ethical and public concerns tied to human embryonic stem cell research. This and other problems recently led to the company shutting down its embryonic stem cell division, highlighting the need for other alternatives.
6 ?3 A1 d7 l5 F# w/ ]Sensitive Cells
5 b7 g  K( D4 D: t. Q: b% y8 ~The main challenge in working with stem cells is figuring out the chemical or other triggers that will convince them to convert into a desired cell type. When the new paper's lead author, Hedvika Davis, a postdoctoral researcher in Hickman's lab, set out to transform umbilical stem cells into oligodendrocytes-critical structural cells that insulate nerves in the brain and spinal cord-she looked for clues from past research.+ `5 m4 J. s! P( X2 C
Davis learned that other research groups had found components on oligodendrocytes that bind with the hormone norephinephrine, suggesting the cells normally interact with this chemical and that it might be one of the factors that stimulates their production. So, she decided this would be a good starting point.5 j9 m0 }. l/ V
In early tests, she found that norepinephrine, along with other stem cell growth promoters, caused the umbilical stem cells to convert, or differentiate, into oligodendrocytes. However, that conversion only went so far. The cells grew but then stopped short of reaching a level similar to what's found in the human nervous system.
  G' X. o+ ^/ d, s* f! c4 pDavis decided that, in addition to chemistry, the physical environment might be critical.
* h5 Y8 L5 F+ }9 ]9 b- |To more closely approximate the physical restrictions cells face in the body, Davis set up a more confined, three-dimensional environment, growing cells on top of a microscope slide, but with a glass slide above them. Only after making this change, and while still providing the norephinphrine and other chemicals, would the cells fully mature into oligodendrocytes.
( [5 Y  ^7 z; q6 J0 W: H"We realized that the stem cells are very sensitive to environmental conditions," Davis said.! V# E' A$ o6 Z% n
Medical Potential! r$ ]" P' w3 V0 [, j3 c
This growth of oligodendrocytes, while crucial, is only a first step to potential medical treatments. There are two main options the group hopes to pursue through further research. The first is that the cells could be injected into the body at the point of a spinal cord injury to promote repair.
  u. u; g$ t# \5 s1 c5 p3 L+ {Another intriguing possibility for the Hickman team's work relates to multiple sclerosis and similar conditions. "Multiple sclerosis is one of the holy grails for this kind of research," said Hickman, whose group is collaborating with Stephen Lambert at UCF's medical school, another of the paper's authors.
' v1 l9 `* o- F" ]Oligodendrocytes produce myelin, which insulates nerve cells, making it possible for them to conduct the electrical signals that guide movement and other functions. Loss of myelin leads to multiple sclerosis and other related conditions such as diabetic neuropathy.
+ x9 p0 T( k! {4 ^The injection of new, healthy oligodendrocytes might improve the condition of patients suffering from such diseases. The teams are also hoping to develop the techniques needed to grow oligodendrocytes in the lab to use as a model system both for better understanding the loss and restoration of myelin and for testing potential new treatments.
( V. m, \  p7 e. q"We want to do both," Hickman said. "We want to use a model system to understand what's going on and also to look for possible therapies to repair some of the damage, and we think there is great potential in both directions."
, x" W% x; i# y2 p: I' gBesides Hickman and Davis, the other authors on the paper were Xiufang Guo, Stephen Lambert, and Maria Stancescu, all from the University of Central Florida.
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9 V! A6 Q2 ^" N& g/ r7 |6 bhttp://www.sciencedaily.com/releases/2012/01/120117144332.htm
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发表于 2012-1-20 08:35 |只看该作者
回复 sunsong7 的帖子
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是个好消息。脐带血存储的主要卖点是期待是未来能将脐带血里的干细胞转化成能治病的细胞(所以也可以叫做“期待血”),但一直还基本上是个“许诺”。有了可转化的方法和方向,就给这个许诺一个支持。脐带血用于造血干移植的进一步普及以及可能的功能细胞转化,能够把脐血干的商业模式“夯实”一些。* _1 a% e! z5 x8 g6 R5 u
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藤椅
发表于 2012-1-20 08:38 |只看该作者
又使一个新的突破!

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发表于 2012-1-21 14:38 |只看该作者
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其实这篇是通过双重作用来实现的,一方面加入去甲肾上腺素等化学物,另一方面设计培养时的物理环境,最终完美实现脐带血干细胞分化为少突胶质细胞。
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发表于 2012-2-21 16:30 |只看该作者
是个干细胞科研事业的好消息!不过怎么看了这么多好的消息都来自国外,少有国能的科研成果,愿中国的干细胞研究早日走到世界前沿
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