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内皮细胞介导的I型胶原凝胶收缩受血红素调节。

Endothelial cell-mediated type I collagen gel contraction is regulated by hemin.

作者信息

Liu X D, Skold M, Umino T, Zhu Y K, Romberger D J, Spurzem J R, Rennard S I

机构信息

Pulmonary and Critical Care Section, Internal Medicine, University of Nebraska Medical Center, Omaha 68198-5300, USA.

出版信息

J Lab Clin Med. 2000 Aug;136(2):100-9. doi: 10.1067/mlc.2000.108153.

Abstract

The contraction of three-dimensional type I collagen gels is regarded as a model of contraction during wound healing and tissue remodeling. Because such a process could contribute to vessel narrowing, we hypothesized that endothelial cells may be able to mediate gel contraction. To demonstrate this, type I collagen was extracted from rat tail tendon and used to prepare collagen gels. Bovine arterial endothelial cells (BAECs) or human pulmonary artery endothelial cells (HPAECs) were then plated on the top of the gels in serum-free Ham's F-12 medium or 2% fetal calf serum-endothelium growth medium-2 (FCS-EGM2), respectively. After 48 hours of attachment, gels were released and floated in 0.2% FCS-Ham's F-12 medium (BAECs) or 2% FCS-EGM2 (HPAECs). Gel size was measured with an image analyzer daily for 5 consecutive days. Gels were then digested with collagenase to quantify DNA and hydroxyproline. BAECs contracted the gels in a time-dependent manner over the 5 days. Contraction was dependent on cell density (gel size was 100% of initial size after 5 days with no cells vs. 66.4%+/-0.5% with 0.9x10(4) cells/cm2 and 22.1%+/-0.3% with 7.5x10(4) cells/cm2) and was inversely related to collagen concentration (gel size was 22.3%+/-0.05%, 46.4%+/-0.9%, 72.3%+/-0.4%, and 87.4% +/-0.3% of initial size for gels prepared with 0.5 mg/mL, 0.75 mg/mL, 1 mg/mL, and 2 mg/mL of collagen, respectively). Hemin (a precursor for CO) and cytochalasin D inhibited collagen gel contraction mediated by both bovine and human endothelial cells without changing cell number or hydroxyproline content. In contrast, prostaglandin E2, an inhibitor, and transforming growth factor-beta1, a stimulator of fibroblast-mediated gel contraction, had no effect on endothelial cell-mediated contraction. These findings demonstrate that endothelial cells are able to contract native type I collagen gels and that this process can be modulated by exogenous mediators. Such a capability may cause remodeling of subjacent matrix of endothelial cells and may contribute to vessel narrowing.

摘要

三维I型胶原凝胶的收缩被视为伤口愈合和组织重塑过程中收缩的模型。由于这样的过程可能导致血管狭窄,我们推测内皮细胞可能能够介导凝胶收缩。为了证明这一点,从大鼠尾腱中提取I型胶原并用于制备胶原凝胶。然后将牛动脉内皮细胞(BAECs)或人肺动脉内皮细胞(HPAECs)分别接种在无血清Ham's F - 12培养基或2%胎牛血清 - 内皮细胞生长培养基 - 2(FCS - EGM2)中的凝胶顶部。贴壁48小时后,将凝胶释放并漂浮在0.2% FCS - Ham's F - 12培养基(用于BAECs)或2% FCS - EGM2(用于HPAECs)中。连续5天每天用图像分析仪测量凝胶大小。然后用胶原酶消化凝胶以定量DNA和羟脯氨酸。在5天内,BAECs以时间依赖性方式使凝胶收缩。收缩取决于细胞密度(5天后无细胞时凝胶大小为初始大小的100%,而细胞密度为0.9×10⁴个细胞/cm²时为66.4%±0.5%,细胞密度为7.5×10⁴个细胞/cm²时为22.1%±0.3%),并且与胶原浓度呈负相关(用0.5mg/mL、0.75mg/mL、1mg/mL和2mg/mL胶原制备的凝胶大小分别为初始大小的22.3%±0.05%、46.4%±0.9%、72.3%±0.4%和87.4%±0.3%)。血红素(CO的前体)和细胞松弛素D抑制牛和人内皮细胞介导的胶原凝胶收缩,而不改变细胞数量或羟脯氨酸含量。相反,抑制剂前列腺素E2和成纤维细胞介导的凝胶收缩刺激因子转化生长因子 - β1对内皮细胞介导的收缩没有影响。这些发现表明内皮细胞能够收缩天然I型胶原凝胶,并且这个过程可以被外源性介质调节。这种能力可能导致内皮细胞下方基质的重塑,并可能导致血管狭窄。

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