Lactate Promotes Synthetic Phenotype in Vascular Smooth Muscle Cells

血管平滑肌 下调和上调 细胞生物学 乳酸脱氢酶 表型 生物 细胞外 诱导多能干细胞 细胞 转染 细胞培养 生物化学 基因 内分泌学 胚胎干细胞 平滑肌 遗传学
作者
Libang Yang,Ling Gao,T. Nickel,Jing Yang,Jingyi Zhou,Adam Gilbertsen,Zhaohui Geng,Caitlin Johnson,Bernice Young,Craig A. Henke,Glenn R. Gourley,Jianyi Zhang
出处
期刊:Circulation Research [Lippincott Williams & Wilkins]
卷期号:121 (11): 1251-1262 被引量:115
标识
DOI:10.1161/circresaha.117.311819
摘要

The phenotypes of vascular smooth muscle cells (vSMCs) comprise a continuum bounded by predominantly contractile and synthetic cells. Some evidence suggests that contractile vSMCs can assume a more synthetic phenotype in response to ischemic injury, but the mechanisms that activate this phenotypic switch are poorly understood.To determine whether lactate, which increases in response to regional ischemia, may promote the synthetic phenotype in vSMCs.Experiments were performed with vSMCs that had been differentiated from human induced pluripotent stem cells and then cultured in glucose-free, lactate-enriched (L+) medium or in standard (L-) medium. Compared with the L- medium, the L+ medium was associated with significant increases in synthetic vSMC marker expression, proliferation, and migration and with significant declines in contractile and apoptotic activity. Furthermore, these changes were accompanied by increases in the expression of monocarboxylic acid transporters and were generally attenuated both by the blockade of monocarboxylic acid transporter activity and by transfection with iRNA for NDRG (N-myc downstream regulated gene). Proteomics, biomarker, and pathway analyses suggested that the L+ medium tended to upregulate the expression of synthetic vSMC markers, the production of extracellular proteins that participate in tissue construction or repair, and the activity of pathways that regulate cell proliferation and migration. Observations in hypoxia-cultured vSMCs were similar to those in L+-cultured vSMCs, and assessments in a swine myocardial infarction model suggested that measurements of lactate levels, lactate-dehydrogenase levels, vSMC proliferation, and monocarboxylic acid transporter and NDRG expression were greater in the ischemic zone than in nonischemic tissues.These results demonstrate for the first time that vSMCs assume a more synthetic phenotype in a microenvironment that is rich in lactate. Thus, mechanisms that link glucose metabolism to vSMC phenotypic switching could play a role in the pathogenesis and treatment of cardiovascular disease.

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