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Promotive effect of adipose-derived stem cells on the wound model of human epidermal keratinocytes in vitro

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Author:
No author available
Journal Title:
CHINESE JOURNAL OF SURGERY
Issue:
20
DOI:
10.3321/j.issn:0529-5815.2008.20.016
Key Word:
脂肪干细胞;细胞培养;创面愈合;Adipose derived stem eeUs(rADSCs);Cell culture;Wound heeling

Abstract: Objective To investigate the migrating effect of adipose derived stem ceils (ADSCs) on the wound model of human epidermal keratinecyte(HEKa).Methods Rat ADSCs (rADSCs) were isolated and cultured( n = 10), rADSCs were direct co-cultured with HEKa cells in experiment group( experimental group, n = 10).In the control groups, rADSCs were indirect co-cultured with HEKa cells in transwell chambe ( indirect group, n = 8), or HEKa was cultured alone ( single group, n = 8).Then confluent HEKa cells were scraped to establish a wound model under invert microscope.After scraped 24, 48, and 72 h, cell numbers of which migrated across the edge of the wound was measured, the rate of wound healing was calculated by using SigmaScan Pro 5 software, and the proliferating effect of rADSCs on HEKa were examined by incorporation of [3H] thymidine.Results The cells migrated across the edge of wound after 24 hours in experimental group, indirect group, and single group were (9.2±0.2), (5.0±0.3 ), (4.2±0.3), and were (58.5±0.4), (26.5±0.3), (20.7±0.5) 48 hours after, and were (125.8±0.4),(43.0±0.5 ), (35.6±0.5 ) cells/HP 72 hours after, respectively; the numbers were all significantly higher in experimental group than those in control groups ( P < 0.05 ).The rates of wound healing after craped 72 hours were 61.0%±3.0%, 35.0%±2.5% and 32.0±2.1%, the outcome in experimental group was significantly better than in the control groups (P<0.05).And the thymidine feeding displayed the proliferation of HEKa in the three groups were (1440±210), (1050±250) and (1130±390)cpm/105 cell, and there was significant difference between the experimental and the control groups (P<0.05 ).Conclusions The rADSCs can promote the migration of HEKa by direct contact with it.

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