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Life on a bed of needles [复制链接]

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发表于 2009-3-6 00:50 |只看该作者 |倒序浏览 |打印
Chen/NAS
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  g. I1 @7 K9 E' M. JCells pull on their environment during adhesion, contraction, or movement, but mapping those forces is no easy task. Past methods have relied on the wrinkling or deformation of a pliant substrate—akin to the scrunching of a sheet when someone sits down on a bed. Now, John Tan, Christopher Chen, and colleagues (Johns Hopkins University, Baltimore, MD) have put forward an alternative method using arrays of microfabricated, bendy posts.8 o. J+ n# n$ G* v

% Q7 p, Z7 A- y3 `/ O% {& yThe wrinkling methods map the location of the forces indirectly and rely on deconvolving one of several possible solutions. But, says Chen, "because the posts move independently, if a post moves you know it's because the cell is pulling on it—there's really no other explanation. For the other methods you need to know where the adhesions are, or make other assumptions." For example, the new method would spot the influence of an adhesion even if it lacked all known cell adhesion molecules.& W' {0 p, G  g8 o- h" ^

" i1 K" D/ [  p- _2 w/ X" T; m9 `/ zSecond, the posts can be varied in height. The tips of the posts all lie in one plane, but the bases of some can be raised to make shorter, stiffer posts in any pattern desired. This will allow the group to measure how the cell responds to differing resistance, without having to alter the hardness of the substrate's material, which might itself alter adhesion properties.
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6 T$ p) t; a# I5 t- x6 sAs an initial experiment, Tan and Chen have compared adhesion size with the magnitude of pulling force—an experiment that has yielded divergent conclusions in two recent studies. Using the posts, the size of adhesions correlates with magnitude of force for adhesions larger than 1 μm2, but some smaller adhesions generated much larger forces. "We see both types of reported relationships in the same cell," says Tan. "That suggests both groups are right."
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The tops of the posts are coated with fibronectin using microprinting, thus keeping the cells restricted to the tops. This may be more physiological than it sounds. "The way cells seek out and find these posts may be similar to the way cells seek out collagen fibers in a loose network," says Chen. Limited microprinting restricts the spreading of the cells. Such cells could not contract in response to serum, yet still responded to activated RhoA.
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Reference:
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Tan, J.L., et al. 2003. Proc. Natl. Acad. Sci. USA. 10.1073/pnas.0235407100.(Cells bend posts as they grab on.)

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发表于 2015-6-5 15:27 |只看该作者
初来乍到,请多多关照。。。嘿嘿,回个贴表明我来过。  

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藤椅
发表于 2015-6-22 13:58 |只看该作者
顶也~  

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板凳
发表于 2015-7-3 10:18 |只看该作者
干细胞之家微信公众号
干细胞研究重在基础

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报纸
发表于 2015-8-4 10:35 |只看该作者
我该不会是最后一个顶的吧  

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地板
发表于 2015-8-17 17:59 |只看该作者
我起来了 哈哈 刚才迷了会  

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发表于 2015-8-20 11:27 |只看该作者
我想要`~  

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发表于 2015-8-26 07:54 |只看该作者
不对,就是碗是铁的,里边没饭你吃啥去?  

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发表于 2015-10-18 18:17 |只看该作者
说嘛1~~~想说什么就说什么嘛~~  

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发表于 2015-10-22 07:25 |只看该作者
这个站不错!!  
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