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在滑膜下结缔组织纤维化动物模型中,胶原蛋白凝胶收缩作为成纤维细胞功能的一种测量方法。

Collagen gel contraction as a measure of fibroblast function in an animal model of subsynovial connective tissue fibrosis.

作者信息

Yang Tai-Hua, Thoreson Andrew R, Gingery Anne, Larson Dirk R, Passe Sandra M, An Kai-Nan, Zhao Chunfeng, Amadio Peter C

机构信息

Biomechanics & Tendon and Soft Tissue Biology Laboratories, Division of Orthopedic Research, Mayo Clinic, 200 First Street SW, Rochester, Minnesota, 55905.

出版信息

J Orthop Res. 2015 May;33(5):668-74. doi: 10.1002/jor.22835. Epub 2015 Mar 18.

DOI:10.1002/jor.22835
PMID:25626430
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4415498/
Abstract

Carpal tunnel syndrome (CTS) is a peripheral neuropathy characterized by non-inflammatory fibrosis of the subsynovial connective tissues (SSCT). A rabbit model of CTS was developed to test the hypothesis that SSCT fibrosis causes the neuropathy. We used a cell-seeded collagen-gel contraction model to characterize the fibrosis in this model in terms of cellular mechanics, specifically to compare the ability of SSCT cells from the rabbit model and normal rabbits to contract the gel, and to assess the effect of transforming growth factor-β1,which is upregulated in CTS, on these cells. SSCT fibrosis was induced in six retired breeder female rabbits which were sacrificed at 6 weeks (N = 3) and 12 weeks (n = 3). An additional two rabbits served as controls. SSCT was harvested according to a standard protocol. Gels seeded with SSCT cells from rabbits sacrificed at 6 weeks had significantly higher tensile strength (p < 0.001) and Young's modulus (p < 0.001) than gels seeded with cells from rabbits sacrificed at 12 weeks or control animals. TGF-β1 significantly increased the decay time constant (p < 0.001), tensile strength (p < 0.001), and Young's modulus (p < 0.001) regardless of the cell source. This model may be useful in screening therapeutic agents that may block SSCT fibrosis, identifying possible candidates for CTS treatment.

摘要

腕管综合征(CTS)是一种以滑膜下结缔组织(SSCT)非炎性纤维化为特征的周围神经病变。我们建立了一个CTS兔模型,以验证SSCT纤维化导致神经病变这一假说。我们使用细胞接种的胶原凝胶收缩模型,从细胞力学角度对该模型中的纤维化进行表征,具体而言,比较兔模型和正常兔的SSCT细胞收缩凝胶的能力,并评估在CTS中上调的转化生长因子-β1对这些细胞的影响。在6只退役繁殖雌兔中诱导产生SSCT纤维化,分别在6周(N = 3)和12周(n = 3)时对其实施安乐死。另外两只兔子作为对照。按照标准方案采集SSCT。接种6周时安乐死兔子的SSCT细胞的凝胶,其拉伸强度(p < 0.001)和杨氏模量(p < 0.001)显著高于接种12周时安乐死兔子或对照动物细胞的凝胶。无论细胞来源如何,TGF-β1均显著增加衰减时间常数(p < 0.001)、拉伸强度(p < 0.001)和杨氏模量(p < 0.001)。该模型可能有助于筛选可阻断SSCT纤维化的治疗药物,确定CTS治疗的潜在候选药物。

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J Orthop Res. 2014 Nov;32(11):1444-50. doi: 10.1002/jor.22694. Epub 2014 Jul 30.
2
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J Biomed Mater Res A. 2015 Feb;103(2):574-80. doi: 10.1002/jbm.a.35200. Epub 2014 May 7.
3
Automatic and Quantitative Measurement of Collagen Gel Contraction Using Model-Guided Segmentation.
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