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Please use this identifier to cite or link to this item: https://scholars.lib.ntu.edu.tw/handle/123456789/409827
Title: Defined cell adhesion for silicon-based implant materials by using vapor-deposited functional coatings
Authors: Wu C.-Y.
Guan Z.-Y.
Lin P.-C.
Chen S.-T.
Lin P.-K.
Chen P.-C.
Chao P.-H.G.
Chen H.-Y. 
Keywords: Cell adhesion;Durability;Functionalized parylene;Silicon implants;Surface modification
Issue Date: 2019
Journal Volume: 175
Start page/Pages: 545-553
Source: Colloids and Surfaces B: Biointerfaces 
Abstract: 
The field of implantable electronics relies on using silicon materials due to the merits of a well-established fabrication process and favorable properties; of particular interest is the surface modification of such materials. In the present study, we introduce a surface modification technique based on coatings of functionalized Parylene on silicon substrates, where the modified layers provide a defined cell adhesion capability for the resultant silicon materials/devices. Functionalization of Parylene was achieved during a one-step chemical vapor deposition (CVD) polymerization process, forming NHS ester-functionalized Parylene, and subsequent RGD attachment was enabled via a conjugation reaction between the NHS ester and amine groups. The modification procedures additionally provided a clean and gentle approach to avoid thermal excursions, intense irradiation, chemicals, or solvents that might damage delicate structures or sensitive molecules on the devices. The modification layers exhibited excellent mechanical strength on the substrate, meeting the high standards of the American Society for Testing and Materials (ASTM), and the resultant cell adherence property was verified by a centrifugation assay and the analysis of attached cell morphologies; the results collectively demonstrated robust and sustainable modification layers of the NHS ester-functionalized Parylene and confirmed that the cell-adherence property imparted by using this facile modification technique was effective. The modification technology is expected to benefit the design of prospective interface properties for silicon-based devices and related industrial products. ? 2018 Elsevier B.V.
URI: https://scholars.lib.ntu.edu.tw/handle/123456789/409827
ISSN: 09277765
DOI: 10.1016/j.colsurfb.2018.12.034
Appears in Collections:化學工程學系

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臺大位居世界頂尖大學之列,為永久珍藏及向國際展現本校豐碩的研究成果及學術能量,圖書館整合機構典藏(NTUR)與學術庫(AH)不同功能平台,成為臺大學術典藏NTU scholars。期能整合研究能量、促進交流合作、保存學術產出、推廣研究成果。

To permanently archive and promote researcher profiles and scholarly works, Library integrates the services of “NTU Repository” with “Academic Hub” to form NTU Scholars.

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