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Development of a Graphene Oxide-Incorporated Polydimethylsiloxane Membrane with Hexagonal Micropillars.
Lin, Yi-Ying; Chien, Yueh; Chuang, Jen-Hua; Chang, Chia-Ching; Yang, Yi-Ping; Lai, Ying-Hsiu; Lo, Wen-Liang; Chien, Ke-Hung; Huo, Teh-Ia; Wang, Chien-Ying.
Afiliação
  • Lin YY; Institute of Pharmacology, School of Medicine, National Yang-Ming University, Taipei 11217, Taiwan. s19609005@gm.ym.edu.tw.
  • Chien Y; Institute of Pharmacology, School of Medicine, National Yang-Ming University, Taipei 11217, Taiwan. g39005005@gmail.com.
  • Chuang JH; Department of Medical Research, Taipei Veterans General Hospital, Taipei 11217, Taiwan. g39005005@gmail.com.
  • Chang CC; Institute of Pharmacology, School of Medicine, National Yang-Ming University, Taipei 11217, Taiwan. chuangjenhua5@gmail.com.
  • Yang YP; Department of Medical Research, Taipei Veterans General Hospital, Taipei 11217, Taiwan. chuangjenhua5@gmail.com.
  • Lai YH; Department of Biological Science and Technology, National Chiao Tung University, Hsinchu 30010, Taiwan. ccchang01@faculty.nctu.edu.tw.
  • Lo WL; Center For Intelligent Drug Systems and Smart Bio-devices (IDS2B), National Chiao Tung University, Hsinchu 30010, Taiwan. ccchang01@faculty.nctu.edu.tw.
  • Chien KH; Institute of Physics, Academia Sinica, Taipei 11217, Taiwan. ccchang01@faculty.nctu.edu.tw.
  • Huo TI; Department of Neurosurgery, Tri-Service General Hospital, National Defense Medical Center, Taipei 11490, Taiwan. molly0103@gmail.com.
  • Wang CY; Department of Medical Research, Taipei Veterans General Hospital, Taipei 11217, Taiwan. d49405004@gmail.com.
Int J Mol Sci ; 19(9)2018 Aug 25.
Article em En | MEDLINE | ID: mdl-30149618
ABSTRACT
Several efforts have been made on the development of bioscaffolds including the polydimethylsiloxane (PDMS) elastomer for supporting cell growth into stable sheets. However, PDMS has several disadvantages, such as intrinsic surface hydrophobicity and mechanical strength. Herein, we generated a novel PDMS-based biomimetic membrane by sequential modifications of the PMDS elastomer with graphene oxide (GO) and addition of a hexagonal micropillar structure at the bottom of the biomembrane. GO was initially homogenously mixed with pure PDMS and then was further coated onto the upper surface of the resultant PDMS. The elastic modulus and hydrophilicity were significantly improved by such modifications. In addition, the development of hexagonal micropillars with smaller diameters largely improved the ion permeability and increased the motion resistance. We further cultured retinal pigment epithelial (RPE) cells on the surface of this modified PDMS biomembrane and assayed its biocompatibility. Remarkably, the GO incorporation and coating exhibited beneficial effect on the cell growth and the new formation of tight junctions in RPE cells. Taken together, this GO-modified PDMS scaffold with polyhexagonal micropillars may be utilized as an ideal cell sheet and adaptor for cell cultivation and can be used in vivo for the transplantation of cells such as RPE cells.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article