内皮细胞在剪切应力下存活的机制。

Shailesh Y. Desai, M. Marroni, L. Cucullo, L. Križanac-Bengez, M. Mayberg, Mohammed Hossain, Gerald G Grant, D. Janigro
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引用次数: 73

摘要

内皮细胞(ECs)暴露于细胞毒性活性氧和一氧化氮氧化产物中,但其凋亡率低,平均寿命长达多年。EC暴露于流动已被证明下调细胞周期相关基因并引起细胞骨架重排。我们假设暴露于流动也会引起诱导内皮细胞抗氧化特性的分子和生理变化。我们利用cDNA阵列表达谱和蛋白分析研究了在中空纤维装置中暴露的人内皮细胞和在静态条件下生长的相同内皮细胞的反应。我们的研究结果表明,剪切诱导的过程同步表达控制氧化剂的产生;这些变化包括nadh生成酶(克雷布斯循环脱氢酶和甘油醛-3-磷酸脱氢酶[GAPDH])的升高,同时伴有nadh消耗途径(如乳酸脱氢酶[LDH])的减少和乳酸生成的减少。暴露于流动中会上调细胞骨架基因。我们的研究结果表明,除了抑制细胞周期外,暴露于水流中还通过控制参与抗氧化中间体生成和细胞形状适应性控制的酶的表达来影响内皮细胞。这些变化可能解释了内皮细胞的寿命和抗氧化效率,并可能为导致动脉硬化等病理状况的机制提供见解。
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Mechanisms of endothelial survival under shear stress.
Endothelial cells (ECs) are exposed to cytotoxic reactive oxygen species and oxidation products of NO, yet they are characterized by low apoptotic rates and have an average life span of many years. EC exposure to flow has been shown to downregulate cell cycle-related genes and cause cytoskeletal rearrangement. We hypothesized that exposure to flow also causes molecular and physiological changes that induce antioxidant properties in ECs. We used cDNA array expression profiling and protein analysis to study the responses of human ECs exposed to flow in a hollow fiber apparatus or the same ECs grown under static conditions. Our results show that shear-induced synchronized expression of processes control oxidant production; these changes included upregulation of NADH-producing enzymes (Krebs cycle dehydrogenases and glyceraldehyde-3-phosphate dehydrogenase [GAPDH]) accompanied by simultaneous decrease in NADH-depleting pathways (e.g., lactate dehydrogenase [LDH]) and diminished production of lactate. Exposure to flow upregulated cytoskeletal genes. Our results suggest that, in addition to inhibition of cell cycle, exposure to flow influences ECs by controlling expression of enzymes involved in the generation of antioxidant intermediates and in adaptive control of cell shape. These changes may explain longevity and antioxidant efficiency of ECs and may provide insight in mechanisms leading to pathological conditions such as arteriosclerosis.
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