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细胞取向影响成纤维细胞填充的胶原血管的双轴力学性能。

Cell orientation influences the biaxial mechanical properties of fibroblast populated collagen vessels.

作者信息

Wagenseil Jessica E, Elson Elliot L, Okamoto Ruth J

机构信息

Department of Biomedical Engineering, Washington University, One Brookings Dr., St. Louis, MO 63110, USA.

出版信息

Ann Biomed Eng. 2004 May;32(5):720-31. doi: 10.1023/b:abme.0000030237.20057.3e.

Abstract

Bioartificial tissues, composed of cells in a collagen matrix, can be fabricated with preferred cell orientations to mimic the histologic arrangement of biologic tissues. The influence of preferred cell orientations on the biaxial mechanical behavior of bioartificial tissues is unknown. Characterizing the biaxial mechanical behavior is necessary for better predicting the in vivo behavior of bioartificial tissues. Fibroblast populated collagen vessels (FPCVs) were fabricated with two different cell orientations by controlling the mechanical constraints during incubation. The cell orientation was verified by confocal microscopy and the collagen fiber organization was examined by confocal reflection and scanning electron microscopy (SEM). Pressure-diameter, force-length tests were performed to determine the influence of cell orientation on the biaxial mechanical behavior. FPCVs were more extensible in the direction perpendicular to the preferred cell orientation, than in the direction parallel to the cell orientation. Biaxial tests were also performed in the presence of Cytochalasin D (Cyto D) to minimize the mechanical contribution of the cells. After Cyto D treatment, the FPCVs remained more extensible in the direction perpendicular to the cell orientation, even though a preferred collagen fiber orientation was not observed in the microscopy images.

摘要

生物人工组织由胶原基质中的细胞组成,可以制成具有特定细胞取向的形式,以模拟生物组织的组织学排列。特定细胞取向对生物人工组织双轴力学行为的影响尚不清楚。表征双轴力学行为对于更好地预测生物人工组织的体内行为是必要的。通过在孵育过程中控制机械约束,制备了具有两种不同细胞取向的成纤维细胞填充胶原血管(FPCV)。通过共聚焦显微镜验证细胞取向,并通过共聚焦反射和扫描电子显微镜(SEM)检查胶原纤维组织。进行压力-直径、力-长度测试以确定细胞取向对双轴力学行为的影响。FPCV在垂直于特定细胞取向的方向上比在平行于细胞取向的方向上更具延展性。还在细胞松弛素D(细胞松弛素D)存在的情况下进行双轴测试,以最小化细胞的力学贡献。细胞松弛素D处理后,FPCV在垂直于细胞取向的方向上仍然更具延展性,尽管在显微镜图像中未观察到特定的胶原纤维取向。

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