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자료유형
학술저널
저자정보
Siddhartha Das (Indian Institute of Technology Bombay) Sandeep Gurav (HBNI) Vivek Soni (Indian Institute of Technology Bombay) Arvind Ingle (Advanced Centre for Treatment Research and Education in Cancer) Bhabani S. Mohanty (Advanced Centre for Treatment Research and Education in Cancer) Pradip Chaudhari (Advanced Centre for Treatment Research and Education in Cancer) Kiran Bendale (Advanced Centre for Treatment Research and Education in Cancer) Kanchan Dholam (HBNI) Jayesh R. Bellare (Indian Institute of Technology Bombay)
저널정보
한국조직공학과 재생의학회 조직공학과 재생의학 조직공학과 재생의학 제15권 제2호
발행연도
2018.1
수록면
231 - 247 (17page)

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A titanium implant surface when coated with biodegradable, highly porous, osteogenic nanofibrous coating has shown enhanced intrinsic osteoinductive and osteoconductive properties. This coating mimics extracellular matrix resulting in differentiation of stem cells present in the peri-implant niche to osteoblast and hence results in enhanced osseointegration of the implant. The osteogenic nanofibrous coating (ONFC) consists of poly-caprolactone, gelatin, nano- sized hydroxyapatite, dexamethasone, ascorbic acid and beta-glycerophosphate. ONFC exhibits optimum mechanical properties to support mesenchymal stem cells and steer their osteogenic differentiation. ONFC was subjected to various characterization tests like scanning electron microscopy, Fourier-transform infrared spectroscopy, x-ray diffractometry, thermal degradation, biomineralization, mechanical properties, wettability and proliferation assay. In pre-clinical animal trials, the coated implant showed enhanced new bone formation when placed in the tibia of rabbit. This novel approach toward implant bone integration holds significant promise for its easy and economical coating thus marking the beginning of new era of electrospun osteogenic nanofibrous coated bone implants.

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