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细胞取向决定了细胞产生的胶原基质的排列。

Cell orientation determines the alignment of cell-produced collagenous matrix.

作者信息

Wang James H-C, Jia Fengyan, Gilbert Thomas W, Woo Savio L-Y

机构信息

Department of Orthopaedic Surgery, Musculoskeletal Research Center, University of Pittsburgh Medical Center, E1641 Biomedical Science Tower, 210 Lothrop Street, PO Box 71199, Pittsburgh, PA 15213, USA.

出版信息

J Biomech. 2003 Jan;36(1):97-102. doi: 10.1016/s0021-9290(02)00233-6.

Abstract

In healing ligaments and tendons, the cells are not aligned and collagen matrix is not organized as in normal tissues. In addition, the mechanical properties of the tissues are abnormal. We hypothesized that the lack of alignment of the collagen matrix results from random orientation of the cells seen in the healing area. To test this hypothesis, a novel in vitro model was used in which the orientation of cells could be controlled via microgrooves, and alignment of the collagen matrix formed by these cells could be easily observed. It is known that cells align uniformly along the direction of microgrooves; therefore MC3T3-E1 cells, which produce large amounts of collagen, were grown on silicone membranes with parallel microgrooves (10 microm wide x 3 microm deep) in the surface. As a control, the same cells were also grown on smooth silicone membranes. Cells on both the microgrooved and smooth silicone surfaces produced a layer of readily visible collagen matrix. Immunohistochemical staining showed that the matrix consisted of abundant type I collagen. Polarized light microscopy of the collagen matrix revealed the collagen fibers to be parallel to the direction of the microgrooves, whereas the collagen matrix produced by the randomly oriented cells on the smooth membranes was disorganized. Thus, the results of this study suggest that the orientation of cells affects the organization of the collagenous matrix produced by the cells. The results also suggest that orienting cells along the longitudinal direction of healing ligaments and tendons may lead to the production of aligned collagenous matrix that more closely represents the uninjured state. This may enhance the mechanical properties of healing ligaments and tendons.

摘要

在愈合中的韧带和肌腱中,细胞排列不整齐,胶原基质也不像正常组织那样有序排列。此外,这些组织的力学性能也不正常。我们推测,胶原基质缺乏排列是由于愈合区域中细胞的随机取向所致。为了验证这一假设,我们使用了一种新型体外模型,通过微槽可以控制细胞的取向,并且能够轻松观察到这些细胞形成的胶原基质的排列情况。众所周知,细胞会沿着微槽方向均匀排列;因此,将能产生大量胶原的MC3T3-E1细胞培养在表面带有平行微槽(宽10微米×深3微米)的硅酮膜上。作为对照,同样的细胞也在光滑的硅酮膜上培养。微槽硅酮表面和光滑硅酮表面上的细胞都产生了一层易于观察到的胶原基质。免疫组织化学染色显示,该基质由丰富的I型胶原组成。对胶原基质进行偏光显微镜观察发现,胶原纤维与微槽方向平行,而光滑膜上随机取向的细胞产生的胶原基质则是无序的。因此,本研究结果表明,细胞的取向会影响细胞产生的胶原基质的组织排列。结果还表明,使细胞沿着愈合韧带和肌腱的纵向排列,可能会导致产生排列整齐的胶原基质,更接近未受伤状态。这可能会增强愈合中韧带和肌腱的力学性能。

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