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合成葡聚糖对平滑肌细胞生长的抗增殖能力:衍生化葡聚糖作为类肝素聚合物的模型

Antiproliferative capacity of synthetic dextrans on smooth muscle cell growth: the model of derivatized dextrans as heparin-like polymers.

作者信息

Letourneur D, Logeart D, Avramoglou T, Jozefonvicz J

机构信息

Laboratoire de Recherches sur les Macromolécules, CNRS URA 502, Université Paris-Nord, Villetaneuse, France.

出版信息

J Biomater Sci Polym Ed. 1993;4(5):431-44. doi: 10.1163/156856293x00104.

Abstract

Proliferation of vascular smooth muscle cells (SMC) is postulated to be a key step in the pathogenesis of atherosclerosis or restenosis after vascular interventions such as angioplasty. Natural glycosaminoglycans, such as heparin and heparan sulfate, are known for their ability to inhibit SMC proliferation in vivo and in vitro. The antiproliferative activity of synthetic derivatized dextrans exhibiting heparin-like anticoagulant and anticomplement capacities have been investigated with rat aorta smooth muscle cells in culture. We report here that some derivatized dextrans grafted with benzylamide sulfonate moieties are potent antiproliferative agents for rat smooth muscle cell (SMC) in vitro. These synthetic polymers inhibit the SMC proliferation as well as heparin. The SMC growth inhibition is dose dependent, reversible and non-toxic. Highly anionic carboxylic dextrans are not capable of inhibiting the SMC growth, excluding a simple charge effect mechanism. Using fluorescent (DTAF) probes, we demonstrated that the synthetic antiproliferative polymers and heparin are internalized into the SMC. No binding or internalization was observed with native dextran devoid of antiproliferative capacity. We conclude that a suitable distribution of functional groups on the dextran backbone can simulate heparin activity in terms of antiproliferative capacity on SMC growth.

摘要

血管平滑肌细胞(SMC)的增殖被认为是动脉粥样硬化或血管介入(如血管成形术)后再狭窄发病机制中的关键步骤。天然糖胺聚糖,如肝素和硫酸乙酰肝素,以其在体内和体外抑制SMC增殖的能力而闻名。已在培养的大鼠主动脉平滑肌细胞中研究了具有肝素样抗凝和抗补体能力的合成衍生葡聚糖的抗增殖活性。我们在此报告,一些接有苄基酰胺磺酸酯基团的衍生葡聚糖是大鼠平滑肌细胞(SMC)体外有效的抗增殖剂。这些合成聚合物与肝素一样能抑制SMC增殖。SMC生长抑制具有剂量依赖性、可逆性且无毒。高度阴离子化的羧基葡聚糖不能抑制SMC生长,排除了简单的电荷效应机制。使用荧光(DTAF)探针,我们证明了合成抗增殖聚合物和肝素被内化到SMC中。未观察到无抗增殖能力的天然葡聚糖有结合或内化现象。我们得出结论,葡聚糖主链上功能基团的适当分布在抑制SMC生长的抗增殖能力方面可以模拟肝素活性。

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