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Effect of Simulated Microgravity and its Associated Mechanism on Pulmonary Circulation in Rats 被引量:6

Effect of Simulated Microgravity and its Associated Mechanism on Pulmonary Circulation in Rats
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摘要 Objective To study the effect of Simulated Microgravity and its Associated Mechanism on Pulmonary Circulation in Rats. Methods Rat tail-suspension model was used to simulate the physiological effects of microgravity and changes in pulmonary blood vessel morphology, pulmonary arterial and venous blood pressure, pulmonary vascular resistance, pulmonary vasomotoricity, as well as the regulation of pulmonary circulation by cytokines produced and released by the lung of rats were measured. Results The walls of pulmonary blood vessels of rats were thickened, and the pulmonary artery was reconstructed with increased pulmonary vascular resistance. The pulmonary blood vessels of rats became more prone to dilation as contractions increased. Rat epithelial Adrenomedulin gene transcription and protein expression were upregulated. The level of basic fibroblast growth Factor of rat was also elevated. Conclusion Findings from the present study on rats revealed that the microgravity can affect pulmonary blood vessel structure, pulmonary arterial pressure, and pulmonary blood vessel self-regulation and cytokine production. Objective To study the effect of Simulated Microgravity and its Associated Mechanism on Pulmonary Circulation in Rats. Methods Rat tail-suspension model was used to simulate the physiological effects of microgravity and changes in pulmonary blood vessel morphology, pulmonary arterial and venous blood pressure, pulmonary vascular resistance, pulmonary vasomotoricity, as well as the regulation of pulmonary circulation by cytokines produced and released by the lung of rats were measured. Results The walls of pulmonary blood vessels of rats were thickened, and the pulmonary artery was reconstructed with increased pulmonary vascular resistance. The pulmonary blood vessels of rats became more prone to dilation as contractions increased. Rat epithelial Adrenomedulin gene transcription and protein expression were upregulated. The level of basic fibroblast growth Factor of rat was also elevated. Conclusion Findings from the present study on rats revealed that the microgravity can affect pulmonary blood vessel structure, pulmonary arterial pressure, and pulmonary blood vessel self-regulation and cytokine production.
出处 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2013年第2期118-127,共10页 生物医学与环境科学(英文版)
基金 supported by the Defense Medical Fund of China, 06Z048 China Advanced Space Medico-engineering Research Project, 2011SY5406018 and SJ200801 The State Key Laboratory of Space Medicine Fundamentals Application of China Astronaut Research and Training Center SMFA09A02, SMFA11A01 and SMFA12K04
关键词 RAT Simulated microgravity Changes in pulmonary circulation Regulations of pulmonarycirculation Rat Simulated microgravity Changes in pulmonary circulation Regulations of pulmonarycirculation
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