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在疏水性分形三棕榈酸甘油酯表面培养的星形胶质细胞的形态和功能。

Morphology and functions of astrocytes cultured on water-repellent fractal tripalmitin surfaces.

机构信息

Department of Pharmacology; Key Laboratory of Medical Neurobiology of the Ministry of Health of China; Zhejiang Province Key Laboratory of Neurobiology, School of Basic Medical Sciences; College of Pharmaceutical Sciences, Hangzhou, Zhejiang 310058, PR China.

Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang 310058, PR China.

出版信息

Biomaterials. 2014 Aug;35(26):7386-97. doi: 10.1016/j.biomaterials.2014.05.026. Epub 2014 Jun 2.

DOI:10.1016/j.biomaterials.2014.05.026
PMID:24894646
Abstract

In the brain, astrocytes play an essential role with their multiple functions and sophisticated structure, as surrounded by a fractal environment which has not been available in our traditional cell culture. Water-repellent fractal tripalmitin (PPP) surfaces can imitate the fractal environment in vivo, so the morphology and biochemical characterization of astrocytes on these surfaces are examined. Water-repellent fractal PPP surface can induce astrocytes to display sophisticated morphology with smaller size of cell area, longer and finer filopodium-like processes, and higher morphological complexity. The super water-repellent fractal PPP surface with water contact angle of 150°∼160° produces the maximal effects compared with other surfaces at lower water contact angles. The trends of characteristic protein expression, including that of nestin, vimentin, GFAP and glutamine synthetase, for astrocytes cultured on super water-repellent fractal PPP surfaces approximate more to in vivo pattern. The super water-repellent PPP surface also render astrocytes to perform more pronounced promotion of neurogenesis by increasing the release of nerve growth factor in a co-culture system. Altogether, our results suggest that the super water-repellent fractal PPP surface facilitates the astrocytes to mimic their in vivo performance, thus provides a closer-to-natural culture environment for experimental assessment of glial structure and functions.

摘要

在大脑中,星形胶质细胞通过其多种功能和复杂的结构发挥着至关重要的作用,其周围是分形环境,而这种分形环境在传统的细胞培养中是无法实现的。疏水性分形三棕榈酸甘油酯 (PPP) 表面可以模拟体内的分形环境,因此研究了星形胶质细胞在这些表面上的形态和生化特性。疏水性分形 PPP 表面可以诱导星形胶质细胞表现出更复杂的形态,细胞面积更小,丝状伪足更长更细,形态复杂性更高。与具有较低水接触角的其他表面相比,水接触角为 150°∼160°的超疏水性分形 PPP 表面产生的效果最大。在超疏水性分形 PPP 表面上培养的星形胶质细胞的特征蛋白表达趋势,包括巢蛋白、波形蛋白、GFAP 和谷氨酰胺合成酶的表达,更接近体内模式。超疏水性 PPP 表面还通过增加神经生长因子在共培养系统中的释放,使星形胶质细胞表现出更明显的促进神经发生的作用。总之,我们的结果表明,超疏水性分形 PPP 表面有助于星形胶质细胞模拟其体内表现,从而为评估神经胶质细胞的结构和功能提供了更接近自然的培养环境。

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