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体外生物工程构建功能性人类主动脉血管平滑肌条

Bioengineering functional human aortic vascular smooth-muscle strips in vitro.

作者信息

Hecker Louise, Khait Luda, Welsh Michael J, Birla Ravi

机构信息

Applied Physics Program, University of Michigan, Biomedical Science Research Building, 109 Zina Pitcher Place, Rm. 2338, Ann Arbor, MI 48109, USA.

出版信息

Biotechnol Appl Biochem. 2008 Jul;50(Pt 3):155-63. doi: 10.1042/BA20070139.

Abstract

The contraction and relaxation of VSM (vascular smooth muscle) are responsible for the maintenance of vascular tone, which is a major determinant of blood pressure. However, the molecular events leading to the contraction and relaxation of VSM are poorly understood. The development of three-dimensional bioengineered tissues provides an opportunity to investigate the molecular events controlling vascular tone in vitro. In the present study we used fibrin-gel casting to bioengineer functional VSM strips from primary human aortic VSM cells. Our bioengineered VSM strips are functionally similar to VSM in vivo and remained viable in culture for up to 5 weeks. VSM strips demonstrate spontaneous basal tone and can generate an active force (contraction) of up to 85.2 microN on stimulation with phenylephrine. Bioengineered VSM strips exhibited Ca(2+)-dependent contraction and calcium-independent relaxation. The development of functional bioengineered VSM tissue provides a new in vitro model system that can be used to investigate the molecular events controlling vascular tone.

摘要

血管平滑肌(VSM)的收缩和舒张负责维持血管张力,而血管张力是血压的主要决定因素。然而,导致VSM收缩和舒张的分子事件却鲜为人知。三维生物工程组织的发展为在体外研究控制血管张力的分子事件提供了契机。在本研究中,我们使用纤维蛋白凝胶浇铸法,从原代人主动脉VSM细胞中构建出具有功能的VSM条带。我们构建的生物工程VSM条带在功能上与体内的VSM相似,并且在培养中可存活长达5周。VSM条带表现出自发性基础张力,在用去氧肾上腺素刺激时可产生高达85.2微牛顿的主动力(收缩)。生物工程VSM条带表现出钙依赖性收缩和钙非依赖性舒张。功能性生物工程VSM组织的构建提供了一个新的体外模型系统,可用于研究控制血管张力的分子事件。

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