生物医学工程学杂志2024,Vol.41Issue(2) :321-327.DOI:10.7507/1001-5515.202306036

多模化仿生应力调节膀胱平滑肌细胞的生物学功能

Biological function of bladder smooth muscle cells regulated by multi-modal biomimetic stress

韦堂墙 陈林 胡海峰 杨进
生物医学工程学杂志2024,Vol.41Issue(2) :321-327.DOI:10.7507/1001-5515.202306036

多模化仿生应力调节膀胱平滑肌细胞的生物学功能

Biological function of bladder smooth muscle cells regulated by multi-modal biomimetic stress

韦堂墙 1陈林 1胡海峰 1杨进1
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作者信息

  • 1. 成都大学附属医院泌尿外科(成都 610081)
  • 折叠

摘要

以往研究表明,经过多代培养后的细胞会出现生长停滞、去分化和丧失原有功能等问题,其原因是缺乏应力刺激.为探讨多模化仿生应力(MMBS)对人膀胱平滑肌细胞(HBSMCs)生物学功能的影响,本实验建立了 MMBS培养系统来模拟膀胱所受的应力环境,并对HBSMCs加载不同强度的仿生应力持续24 h,然后检测细胞生长、增殖及功能分化.结果显示,MMBS可以促进HBSMCs的生长和增殖,以80 cm H2O压力附加4%牵张应力,对促进HBSMCs的生长、增殖以及α—平滑肌肌动蛋白和平滑肌蛋白22-α的表达最有效.综上,在构建组织工程膀胱时,MMBS培养系统将有助于调节HBSMCs的生长、增殖以及功能分化成熟.

Abstract

Previous studies have shown that growth arrest,dedifferentiation,and loss of original function occur in cells after multiple generations of culture,which are attributed to the lack of stress stimulation.To investigate the effects of multi-modal biomimetic stress(MMBS)on the biological function of human bladder smooth muscle cells(HBSMCs),a MMBS culture system was established to simulate the stress environment suffered by the bladder,and HBSMCs were loaded with different biomimetic stress for 24 h.Then,cell growth,proliferation and functional differentiation were detected.The results showed that MMBS promoted the growth and proliferation of HBSMCs,and 80 cm H2O pressure with 4%stretch stress were the most effective in promoting the growth and proliferation of HBSMCs and the expression level of α-smooth muscle actin and smooth muscle protein 22-α.These results suggest that the MMBS culture system will be beneficial in regulating the growth and functional differentiation of HBSMCs in the construction of tissue engineered bladder.

关键词

组织工程/膀胱平滑肌细胞/应力/细胞增殖/细胞分化

Key words

Tissue engineering/Bladder smooth muscle cells/Stress/Cell proliferation/Cell differentiation

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基金项目

国家自然科学基金(81900617)

四川省科技厅项目(2022NSFSC1592)

成都市科技局项目(2020-YF05-01441-SN)

成都大学临床医学院项目(Y202324)

出版年

2024
生物医学工程学杂志
四川大学华西医院 四川省生物医学工程学会

生物医学工程学杂志

CSTPCD北大核心
影响因子:0.432
ISSN:1001-5515
参考文献量35
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