標題: A Nanodot Array Modulates Cell Adhesion and Induces an Apoptosis-Like Abnormality in NIH-3T3 Cells
作者: Pan, Hsu-An
Hung, Yao-Ching
Su, Chia-Wei
Tai, Shih-Ming
Chen, Chiun-Hsun
Ko, Fu-Hsiang
Huang, G. Steve
機械工程學系
材料科學與工程學系奈米科技碩博班
Department of Mechanical Engineering
Graduate Program of Nanotechnology , Department of Materials Science and Engineering
關鍵字: Cell adhesion;Nanotopography;Apoptosis;Fibronectin;Fibroblasts
公開日期: 1-八月-2009
摘要: Micro-structures that mimic the extracellular substratum promote cell growth and differentiation, while the cellular reaction to a nanostructure is poorly defined. To evaluate the cellular response to a nanoscaled surface, NIH 3T3 cells were grown on nanodot arrays with dot diameters ranging from 10 to 200 nm. The nanodot arrays were fabricated by AAO processing on TaN-coated wafers. A thin layer of platinum, 5 nm in thickness, was sputtered onto the structure to improve biocompatibility. The cells grew normally on the 10-nm array and on flat surfaces. However, 50-nm, 100-nm, and 200-nm nanodot arrays induced apoptosis-like events. Abnormality was triggered after as few as 24 h of incubation on a 200-nm dot array. For cells grown on the 50-nm array, the abnormality started after 72 h of incubation. The number of filopodia extended from the cell bodies was lower for the abnormal cells. Immunostaining using antibodies against vinculin and actin filament was performed. Both the number of focal adhesions and the amount of cytoskeleton were decreased in cells grown on the 100-nm and 200-nm arrays. Pre-coatings of fibronectin (FN) or type I collagen promoted cellular anchorage and prevented the nanotopography-induced programed cell death. In summary, nanotopography, in the form of nanodot arrays, induced an apoptosis-like abnormality for cultured NIH 3T3 cells. The occurrence of the abnormality was mediated by the formation of focal adhesions.
URI: http://dx.doi.org/10.1007/s11671-009-9333-7
http://hdl.handle.net/11536/6862
ISSN: 1931-7573
DOI: 10.1007/s11671-009-9333-7
期刊: NANOSCALE RESEARCH LETTERS
Volume: 4
Issue: 8
起始頁: 903
結束頁: 912
顯示於類別:期刊論文


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