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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Enlarged extracellular space of aquaporin-4-deficient mice does not enhance diffusion of Alexa Fluor 488 or dextran polymers.
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Enlarged extracellular space of aquaporin-4-deficient mice does not enhance diffusion of Alexa Fluor 488 or dextran polymers.

机译:Aquaporin-4缺陷小鼠的细胞外空间增大不会增强Alexa Fluor 488或葡聚糖聚合物的扩散。

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摘要

Aquaporin-4 (AQP4) water channels expressed on glia have been implicated in maintaining the volume of extracellular space (ECS). A previous diffusion study employing small cation tetramethylammonium and a real-time iontophoretic (RTI) method demonstrated an increase of about 25% in the ECS volume fraction (alpha) in the neocortex of AQP4(-/-) mice compared to AQP4(+/+) mice but no change in the hindrance imposed to diffusing molecules (tortuosity lambda). In contrast, other diffusion studies employing large molecules (dextran polymers) and a fluorescence recovery after photobleaching (FRAP) method measured a decrease of about 10%-20% in lambda in the neocortex of AQP4(-/-) mice. These conflicting findings on lambda would imply that large molecules diffuse more readily in the enlarged ECS of AQP4(-/-) mice than in wild type but small molecules do not. To test this hypothesis, we used integrative optical imaging (IOI) to measure tortuosity with a small Alexa Fluor 488 (molecular weight [MW] 547, lambda(AF)) and two large dextran polymers (MW 3000, lambda(dex3) and MW 75,000, lambda(dex75)) in the in vitro neocortex of AQP4(+/+) and AQP4(-/-) mice. We found that lambda(AF)=1.59, lambda(dex3)=1.76 and lambda(dex75)=2.30 obtained in AQP4(-/-) mice were not significantly different from lambda(AF)=1.61, lambda(dex3)=1.76, and lambda(dex75)=2.33 in AQP4(+/+) mice. These IOI results demonstrate that lambda measured with small and large molecules each remain unchanged in the enlarged ECS of AQP4(-/-) mice compared to values in AQP4(+/+) mice. Further analysis suggests that the FRAP method yields diffusion parameters not directly comparable with those obtained by IOI or RTI methods. Our findings have implications for the role of glial AQP4 in maintaining the ECS structure.
机译:在胶质细胞上表达的Aquaporin-4(AQP4)水通道与维持细胞外空间(ECS)的体积有关。先前使用小阳离子四甲基铵和实时离子电渗(RTI)方法进行的扩散研究表明,与AQP4(+ /)相比,AQP4(-/-)小鼠新皮质的ECS体积分数(alpha)增加了约25%。 +)小鼠,但分子扩散的障碍(曲折度λ)没有变化。相反,其他采用大分子(右旋糖酐聚合物)和光漂白后的荧光恢复(FRAP)方法进行的扩散研究表明,AQP4(-/-)小鼠新皮层的λ降低了约10%-20%。这些关于lambda的发现相互矛盾,这意味着与野生型相比,大分子在AQP4(-/-)小鼠扩大的ECS中更容易扩散,而小分子则不然。为了验证这一假设,我们使用集成光学成像(IOI)来测量曲折度,其中包括一个小的Alexa Fluor 488(分子量[MW] 547,lambda(AF))和两个较大的右旋糖酐聚合物(MW 3000,lambda(dex3)和MW 75,000,λ(dex75))在AQP4(+ / +)和AQP4(-/-)小鼠的体外新皮层中。我们发现在AQP4(-/-)小鼠中获得的lambda(AF)= 1.59,lambda(dex3)= 1.76和lambda(dex75)= 2.30与lambda(AF)= 1.61,lambda(dex3)= 1.76并无显着差异,而AQP4(+ / +)小鼠的lambda(dex75)= 2.33。这些IOI结果表明,与AQP4(+ / +)小鼠中的值相比,在AQP4(-/-)小鼠的放大ECS中使用小分子和大分子测得的lambda均保持不变。进一步的分析表明,FRAP方法产生的扩散参数不能直接与IOI或RTI方法获得的参数相比。我们的发现对神经胶质AQP4在维持ECS结构中的作用具有影响。

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