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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Optical Metabolic Imaging for Assessment of Radiation-Induced Injury to Rat Kidney and Mitigation by Lisinopril
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Optical Metabolic Imaging for Assessment of Radiation-Induced Injury to Rat Kidney and Mitigation by Lisinopril

机译:用于评估辐射诱导对大鼠肾脏损伤的光学代谢成像,丽氏素抑制

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摘要

The kidney is one of the most radiosensitive organs; it is the primary dose-limiting organ in radiotherapies for upper abdominal cancers. The role of mitochondrial redox state in the development and treatment of renal radiation injury, however, remains ill-defined. This study utilizes 3D optical cryo-imaging to quantify renal mitochondrial bioenergetics dysfunction after 13Gy leg-out partial body irradiation (PBI). Furthermore, the mitigating effects of lisinopril (lisino), an anti-hypertensive angiotensin converting enzyme inhibitor, is assessed in renal radiation-induced injuries. Around day 150 post-irradiation, kidneys are harvested for cryo-imaging. The 3D images of the metabolic indices (NADH, nicotinamide adenine dinucleotide, and FAD, flavin adenine dinucleotide) are acquired, and the mitochondrial redox states of the irradiated and irradiated+lisino kidneys are quantified by calculating the volumetric mean redox ratio (NADH/FAD). PBI oxidized renal mitochondrial redox state by 78%. The kidneys from the irradiated + lisino rats showed mitigation of mitochondrial redox state by 93% compared to the PBI group. The study provides evidence for an altered bioenergetics and energy metabolism in the rat model of irradiation-induced kidney damage. In addition, the results suggest that lisinopril mitigates irradiation damage by attenuating the oxidation of mitochondria leading to increase redox ratio.
机译:肾是最吸附的器官之一;它是上腹部癌症放射疗法的主要剂量限制器官。线粒体氧化还原状态在肾脏辐射损伤的开发和治疗中的作用仍然是含义。该研究利用3D光学丧失成像来量化13Gy局部辐照(PBI)后量化肾线粒体生物终体功能功能功能障碍。此外,在肾辐射诱导的损伤中评估了肝素(Lisino)(Lisino),抗高血压血管紧张素转化酶抑制剂的减轻效应。在辐照后的第150天左右,收获肾脏进行冷冻成像。获取代谢指数的3D图像(NADH,烟酰胺腺嘌呤二核苷酸和FAD,黄蛋白腺嘌呤二核苷酸),通过计算体积平均氧化还原比(NADH / FAD )。 PBI将肾线粒体氧化还原氧化氧化钠氧化78%。与PBI组相比,来自辐照+菌氏菌大鼠的肾脏显示测量线粒体氧化还原状态的减轻93%。该研究提供了在辐照诱导的肾脏损伤的大鼠模型中改变生物终体和能量代谢的证据。此外,结果表明,Lisinoplil通过衰减线粒体氧化而导致氧化还原比率来减轻辐照损伤。

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