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Morphology, Migration, and Transcriptome Analysis of Schwann Cell Culture on Butterfly Wings with Different Surface Architectures

Authors :
He, Jianghong
Sun, Cheng
Gu, Zhongze
Yang, Yumin
Gu, Miao
Xue, Chengbin
Xie, Zhuoying
Ren, Hechun
Wang, Yongjun
Liu, Yan
Liu, Mei
Ding, Fei
Leong, Kam W.
Gu, Xiaosong
Source :
ACS Nano; August 2018, Vol. 12 Issue: 10 p9660-9668, 9p
Publication Year :
2018

Abstract

It has been shown that material surface topography greatly affects cell attachment, growth, proliferation, and differentiation. However, the underlying molecular mechanisms for cell–material interactions are still not understood well. Here, two kinds of butterfly wings with different surface architectures were employed for addressing such an issue. Papilio ulysses telegonus(P.u.t.) butterfly wing surface is composed of micro/nanoconcaves, whereas Morpho menelaus(M.m.) butterfly wings are decorated with grooves. RSC96 cells grown on M.m. wings showed a regular sorting pattern along with the grooves. On the contrary, the cells seeded on P.u.t. wings exhibited random arrangement. Transcriptome sequencing and bioinformatics analysis revealed that huntingtin (Htt)-regulated lysosome activity is a potential key factor for determining cell growth behavior on M.m. butterfly wings. Gene silence further confirmed this notion. In vivoexperiments showed that the silicone tubes fabricated with M.m. wings markedly facilitate rat sciatic nerve regeneration after injury. Lysosome activity and Htt expression were greatly increased in the M.m. wing-fabricated graft-bridged nerves. Collectively, our data provide a theoretical basis for employing butterfly wings to construct biomimetic nerve grafts and establish Htt lysosome as a crucial regulator for cell–material interactions.

Details

Language :
English
ISSN :
19360851 and 1936086X
Volume :
12
Issue :
10
Database :
Supplemental Index
Journal :
ACS Nano
Publication Type :
Periodical
Accession number :
ejs46306907
Full Text :
https://doi.org/10.1021/acsnano.8b00552