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Effects of Mechanical Stimuli on the Cell Proliferation and Collagen Production on the Micropatterned Substrate
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  • Effects of Mechanical Stimuli on the Cell Proliferation and Collagen Production on the Micropatterned Substrate
  • Effects of Mechanical Stimuli on the Cell Proliferation and Collagen Production on the Micropatterned Substrate
저자명
신정욱,Shin. Jung-Woog
간행물명
Journal of experimental & biomedical sciences
권/호정보
2006년|12권 2호|pp.119-125 (7 pages)
발행정보
대한의생명과학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

In relation to the tissue engineering, the cellular responses to the morphology of the scaffold surface are interesting topics. Human ligament fibroblasts (HLFs) were cultured on the micrpatterned silicone substrates subjected to cyclic stretch to simulate ligament motion. Groove and ridge width of silicone substrates was 10/50, 20/50, 20/10, and 20/20 ${mu}m$ (groove/ridge ${mu}m$) with a depth of $3{mu}m$. Strain was applied over two days for 4 hours per day with a frequency of 0.5 Hz with the magnitudes of 4 or 8%. The purpose of this study was to evaluate ligament fibroblast alignment and cellular responses in relation to the pattern of microgrooved surface and stretching magnitude. Ligament fibroblasts in the microgrooved surface were elongated and aligned parallel to the microgrooves under no stretch. Uniaxial cyclic stretch induced cellular activities and their orientation rise in cellular response and the cells showed alignment and elongation perpendicular to the direction of the stretch. Biochemical analyses showed that the best cellular response was found on the $20/50{mu}m$ under 8% stretch. The surface morphology and mechanical stretching were found to contribute to increase of proliferation, collagen production.