首页> 外文期刊>The journal of sexual medicine >Matrigel-Based Sprouting Endothelial Cell Culture System from Mouse Corpus Cavernosum Is Potentially Useful for the Study of Endothelial and Erectile Dysfunction Related to High-Glucose Exposure
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Matrigel-Based Sprouting Endothelial Cell Culture System from Mouse Corpus Cavernosum Is Potentially Useful for the Study of Endothelial and Erectile Dysfunction Related to High-Glucose Exposure

机译:小鼠海绵体基于基质胶的发芽内皮细胞培养系统潜在地可用于研究与高糖暴露有关的内皮和勃起功能障碍

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Introduction. A proper cavernous endothelial cell culture system would be advantageous for the study of the pathophysiologic mechanisms involved in endothelial dysfunction and erectile dysfunction (ED). Aim. To establish a nonenzymatic technique, which we termed the "Matrigel-based sprouting endothelial cell culture system," for the isolation of mouse cavernous endothelial cells (MCECs) and an in vitro model that mimics in vivo situation for diabetes-induced ED. Methods. For primary MCEC culture, mouse cavernous tissue was implanted into Matrigel and sprouting cells from the tissue were subcultivated. To establish an in vitro model for diabetes-induced ED, the primary cultured MCECs were exposed to a normal-glucose (5mmoL) or a high-glucose (30mmoL) condition for 48 hours. Main Outcome Measures. The purity of isolated cells was determined by fluorescence-activated cell sorting analysis. MCECs incubated under the normal- or the high-glucose condition were used for Western blot, cyclic guanosine monophosphate (cGMP) quantification, and in vitro angiogenesis assay. Results. We could consistently isolate high-purity MCECs (about 97%) with the Matrigel-based sprouting endothelial cell culture system. MCECs were subcultured up to the fifth passage and no significant changes were noted in endothelial cell morphology or purity. The phosphorylation of Akt and eNOS and the cGMP concentration were significantly lower in MCECs exposed to high glucose than in those exposed to normal glucose. MCECs exposed to the normal-glucose condition formed well-organized capillary-like structures, whereas derangements in tube formation were noted in MCECs exposed to high glucose. The protein expression of transforming growth factor-β1 (TGF-β1) and phospho-Smad2 was significantly increased by exposure to high glucose. Conclusion. The Matrigel-based sprouting endothelial cell culture system is a simple, technically feasible, and reproducible technique for isolating pure cavernous endothelial cells in mice. An in vitro model for diabetic ED will be a valuable tool for evaluating the angiogenic potential of novel endogenous or synthetic modulators.
机译:介绍。适当的海绵状内皮细胞培养系统将有利于研究涉及内皮功能障碍和勃起功能障碍(ED)的病理生理机制。目标。为了建立一种非酶技术,我们将其称为“基于基质胶的发芽内皮细胞培养系统”,用于分离小鼠海绵状内皮细胞(MCEC)和模拟糖尿病诱导的ED的体内情况的体外模型。方法。对于原代MCEC培养,将小鼠海绵组织植入Matrigel,然后对组织中的发芽细胞进行继代培养。为了建立糖尿病诱发的ED的体外模型,将原代培养的MCEC暴露于正常葡萄糖(5mmoL)或高葡萄糖(30mmoL)条件下48小时。主要观察指标。通过荧光激活细胞分选分析确定分离的细胞的纯度。在正常或高葡萄糖条件下孵育的MCEC用于蛋白质印迹,环状鸟苷单磷酸酯(cGMP)定量和体外血管生成测定。结果。我们可以使用基于Matrigel的发芽内皮细胞培养系统始终如一地分离出高纯度MCEC(约97%)。将MCECs传代培养至第五代,并且内皮细胞形态或纯度没有明显变化。暴露于高葡萄糖的MCEC中,Akt和eNOS的磷酸化和cGMP浓度显着低于暴露于正常葡萄糖的MCEC。暴露于正常葡萄糖条件下的MCECs形成了组织良好的毛细管状结构,而暴露于高葡萄糖的MCECs中发现了管形成的紊乱。暴露于高葡萄糖条件下,转化生长因子-β1(TGF-β1)和磷酸化Smad2的蛋白表达显着增加。结论。基于基质胶的发芽内皮细胞培养系统是一种简单,技术上可行且可复制的技术,可用于分离小鼠中的纯净海绵状内皮细胞。糖尿病性ED的体外模型将是评估新型内源性或合成调节剂血管生成潜力的有价值的工具。

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