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TR3核孤儿受体可防止周期性拉伸诱导的静脉平滑肌细胞增殖。

TR3 nuclear orphan receptor prevents cyclic stretch-induced proliferation of venous smooth muscle cells.

作者信息

de Waard Vivian, Arkenbout E Karin, Vos Mariska, Mocking Astrid I M, Niessen Hans W M, Stooker Wim, de Mol Bas A J M, Quax Paul H A, Bakker Erik N T P, VanBavel Ed, Pannekoek Hans, de Vries Carlie J M

机构信息

Department of Medical Biochemistry, Academic Medical Center, K1-116, Meibergdreef 15, 1105 AZ Amsterdam.

出版信息

Am J Pathol. 2006 Jun;168(6):2027-35. doi: 10.2353/ajpath.2006.050932.

Abstract

In coronary artery bypass surgery, the patency of arterial grafts is higher than that of venous grafts because of vein-graft disease, which involves excessive proliferation of venous smooth muscle cells (SMCs) and subsequent accelerated atherosclerosis. We studied the function of TR3 nuclear orphan receptor (TR3) in the early response of SMCs to mechanical strain, a major initiator of vein-graft disease. We demonstrate that TR3 expression is induced in human saphenous vein segments exposed ex vivo to whole-blood perfusion under arterial pressure. Cultured venous SMCs challenged by cyclic stretch displayed TR3 induction and enhanced DNA synthesis, whereas SMCs derived from the internal mammary artery remained quiescent. Small-interfering RNA-mediated knockdown of TR3 and adenovirus-mediated overexpression of TR3 in venous SMCs enhanced and abolished stretch-induced DNA synthesis, respectively. Accordingly, in organ cultures of wild-type murine vessel segments exposed to cyclic stretch, p27(Kip1) was down-regulated, whereas expression of this cell cycle inhibitor was unaffected by cyclic stretch in TR3-transgenic vessels, concordant with a lower proliferative response. Finally, stretch-mediated proliferation was inhibited by 6-mercaptopurine, an agonist of TR3. In conclusion, TR3 represents inhibitory mechanisms to restrict venous SMC proliferation and may contribute to prevention of vein-graft disease.

摘要

在冠状动脉搭桥手术中,由于静脉移植物病变,动脉移植物的通畅率高于静脉移植物。静脉移植物病变涉及静脉平滑肌细胞(SMC)过度增殖及随后加速的动脉粥样硬化。我们研究了TR3核孤儿受体(TR3)在SMC对机械应变的早期反应中的功能,机械应变是静脉移植物病变的主要引发因素。我们证明,在体外暴露于动脉压下全血灌注的人隐静脉段中,TR3表达被诱导。受循环拉伸刺激的培养静脉SMC显示出TR3诱导和增强的DNA合成,而来自乳内动脉的SMC保持静止。静脉SMC中,小干扰RNA介导的TR3敲低和腺病毒介导的TR3过表达分别增强和消除了拉伸诱导的DNA合成。因此,在暴露于循环拉伸的野生型小鼠血管段的器官培养中,p27(Kip1)被下调,而在TR3转基因血管中,这种细胞周期抑制剂的表达不受循环拉伸的影响,这与较低的增殖反应一致。最后,拉伸介导的增殖被TR3激动剂6-巯基嘌呤抑制。总之,TR3代表限制静脉SMC增殖的抑制机制,可能有助于预防静脉移植物病变。

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