Ivanov Vadim, Ivanova Svetlana, Roomi M Waheed, Kalinovsky Tatiana, Niedzwiecki Aleksandra, Rath Matthias
Dr Rath Research Institute, Santa Clara, CA, USA.
J Cardiovasc Pharmacol. 2007 Nov;50(5):541-7. doi: 10.1097/FJC.0b013e318145148e.
Extracellular matrix (ECM) function and structure are severely compromised at atherosclerotic lesion sites, contributing to initiation and progression of the disease. This study investigated whether ECM biological properties would be beneficially affected by exposure to nutrients essential for collagen synthesis and posttranslational modification. Confluent layers of human aortic smooth muscle cells (SMC) grown on collagen substrate were cultured in the presence of the tested compounds for 7 to 10 days. Pretreated cells were removed from the ECM surface by differential treatment and replaced with secondary innocent SMC cultures. Secondary SMC growth rate and invasiveness were assayed in standard growth medium. ECM protein composition was assayed immunochemically. ECM produced in the presence of ascorbic acid reduced SMC proliferation in a dose-dependent manner. Plant-derived phenolic extracts expressed different degrees of SMC growth inhibition when present during ECM production. A combination of selected nutrients had a greater effect than did individual components. The ECM deposited by SMC in the presence of ascorbate, lysine, proline, and green tea catechins inhibited SMC migration rate up to 70%. The ECM produced under conditions of chronic essential nutrient deficiency can support proatherosclerotic SMC behavior. A combination of selected nutrients can counteract these adverse effects stronger than individual components.
细胞外基质(ECM)的功能和结构在动脉粥样硬化病变部位严重受损,这促进了该疾病的发生和发展。本研究调查了暴露于胶原蛋白合成和翻译后修饰所必需的营养素是否会对ECM的生物学特性产生有益影响。将生长在胶原蛋白底物上的人主动脉平滑肌细胞(SMC)汇合层在受试化合物存在的情况下培养7至10天。通过差异处理从ECM表面去除预处理的细胞,并用次级无害的SMC培养物替代。在标准生长培养基中测定次级SMC的生长速率和侵袭性。通过免疫化学方法测定ECM的蛋白质组成。在抗坏血酸存在下产生的ECM以剂量依赖性方式降低SMC增殖。在ECM产生过程中存在植物来源的酚类提取物时,表现出不同程度的SMC生长抑制作用。选定营养素的组合比单个成分具有更大的作用。在抗坏血酸、赖氨酸、脯氨酸和绿茶儿茶素存在下,SMC沉积的ECM可将SMC迁移率抑制高达70%。在慢性必需营养素缺乏条件下产生的ECM可支持促动脉粥样硬化的SMC行为。选定营养素的组合比单个成分更能有效对抗这些不利影响。