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タイトル
和文:Efficient differentiation and polarization of primary cultured neurons on poly(lactic acid) scaffolds with microgrooved structures 
英文:Efficient differentiation and polarization of primary cultured neurons on poly(lactic acid) scaffolds with microgrooved structures 
著者
和文: Asako Otomo, Mahoko Takahashi Ueda, 藤枝俊宣, Arihiro Hasebe, Yoshitaka Suematsu, Yosuke Okamura, Shinji Takeoka, Shinji Hadano, So Nakagawa.  
英文: Asako Otomo, Mahoko Takahashi Ueda, Toshinori Fujie, Arihiro Hasebe, Yoshitaka Suematsu, Yosuke Okamura, Shinji Takeoka, Shinji Hadano, So Nakagawa.  
言語 English 
掲載誌/書名
和文:Scientific Reports 
英文:Scientific Reports 
巻, 号, ページ Vol. 10    No. 1   
出版年月 2020年12月 
出版者
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開催地
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公式リンク http://dx.doi.org/10.1038/s41598-020-63537-z
 
DOI https://doi.org/10.1038/s41598-020-63537-z
アブストラクト <jats:title>Abstract</jats:title><jats:p>Synthetic biodegradable polymers including poly(lactic acid) (PLA) are attractive cell culture substrates because their surfaces can be micropatterned to support cell adhesion. The cell adhesion properties of a scaffold mainly depend on its surface chemical and structural features; however, it remains unclear how these characteristics affect the growth and differentiation of cultured cells or their gene expression. In this study, we fabricated two differently structured PLA nanosheets: flat and microgrooved. We assessed the growth and differentiation of mouse primary cultured cortical neurons on these two types of nanosheets after pre-coating with poly-D-lysine and vitronectin. Interestingly, prominent neurite bundles were formed along the grooves on the microgrooved nanosheets, whereas thin and randomly extended neurites were only observed on the flat nanosheets. Comparative RNA sequencing analyses revealed that the expression of genes related to postsynaptic density, dendritic shafts, and asymmetric synapses was significantly and consistently up-regulated in cells cultured on the microgrooved nanosheets when compared with those cultured on the flat nanosheets. These results indicate that microgrooved PLA nanosheets can provide a powerful means of establishing a culture system for the efficient and reproducible differentiation of neurons, which will facilitate future investigations of the molecular mechanisms underlying the pathogenesis of neurological disorders.</jats:p>

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