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国家自然科学基金(30872593)

作品数:2 被引量:6H指数:2
相关作者:王彦魏鑫王坤杰陈林邬韬更多>>
相关机构:四川大学华西医院更多>>
发文基金:国家自然科学基金四川省科技厅科技支撑计划项目国家教育部博士点基金更多>>
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不同应力施加方式对膀胱平滑肌细胞影响的比较研究被引量:3
2011年
目的研究4种不同生物力学应力施加装置对体外培养的膀胱平滑肌细胞生长的影响,设计可行的应力施加装置。方法本研究设计了4种生物力学装置(圆形压力罐,玻璃水柱管,压力培养瓶,张力罐),将体外培养的膀胱平滑肌细胞分为实验组和对照组,实验组施予40cmH2O(1cmH2O=0.0981kPa)持续性的静水压力(或7.7N牵张力),对照组不施予任何压力,24h后用胆囊收缩素8肽(CCK8)法检测细胞增殖的变化,免疫荧光检测膀胱平滑肌细胞骨架α-actin,RT-PCR检测增殖细胞核抗原(PCNA)表达的变化。结果每种装置加压组与对照组之间,以及4种装置加压组之间细胞CCK8吸光度差异无统计学意义(P>0.05),细胞骨架α-actin表达差异无统计学意义(P>0.05),PCNA mRNA表达差异也无统计学意义(P>0.05)结论4种加压装置均对细胞无毒,40cmH2O(或7.7N牵张力)压力不能促进细胞增殖,加压装置在细胞培养和加压方式等方面具有多种优点。
邬韬陈林王彦魏鑫王坤杰
关键词:膀胱平滑肌细胞细胞增殖
A novel bioreactor to simulate urinary bladder mechanical properties and compliance for bladder functional tissue engineering被引量:3
2011年
Background Bioreactors are pivotal tools for generating mechanical stimulation in functional tissue engineering study.This study aimed to create a bioreactor that can simulate urinary bladder mechanical properties, and to investigate the effects of a mechanically stimulated culture on urothelial cells and bladder smooth muscle cells.Methods We designed a bioreactor to simulate the mechanical properties of bladder. A pressure-record system was used to evaluate the mechanical properties of the bioreactor by measuring the pressure in culture chambers. To test the biocompatibility of the bioreactor, viabilities of urothelial cells and smooth muscle cells cultured in the bioreactor under static and mechanically changed conditions were measured after 7-day culture. To evaluate the effect of mechanical stimulations on the vital cells, urethral cells and smooth muscle cells were cultured in the simulated mechanical conditions. After that, the viability and the distribution pattern of the cells were observed and compared with cells cultured in non-mechanical stimulated condition.Results The bioreactor system successfully generated waveforms similar to the intended programmed model while maintaining a cell-seeded elastic membrane between the chambers. There were no differences between viabilities of urothelial cells ((91.90±1.22)% vs. (93.14±1.78)%, P 〉0.05) and bladder smooth muscle cells ((93.41±1.49)% vs.(92.61±1.34)%, P 〉0.05). The viability of cells and tissue structure observation after cultured in simulated condition showed that mechanical stimulation was the only factor affected cells in the bioreactor and improved the arrangement of cells on silastic membrane.Conclusions This bioreactor can effectively simulate the physiological and mechanical properties of the bladder.Mechanical stimulation is the only factor that affected the viability of cells cultured in the bioreactor. The bioreactor can change the growth behavior of urothelial cells and bladder smooth muscle cells, resulting i
WEI Xin LI Dao-bing XU Feng WANG Yan ZHU Yu-chun LI Hong WANG Kun-jie
关键词:BIOREACTORCOMPLIANCE
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