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Optical cryoimaging for assessment of radiation-induced injury to rat kidney metabolic state

机译:用于评估辐射诱导的大鼠肾代谢状态的光冷冻丧料

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Objective: This study utilizes fluorescence cryoimaging to quantitatively assess the effect of a high dose of irradiation on rat renal metabolism through redox state. Introduction: Exposure to high doses of irradiation could lead to death, in part, due to renal dysfunction. The kidney is one of the most sensitive organs that exhibit delayed injuries in survivors of acute radiation syndrome. In this study, optical cryoimaging was utilized to examine the potential for renal mitochondrial dysfunction after partial-body irradiation (PBI) and the mitigating effect of lisinopril-treatment, an angiotensin converting enzyme inhibitor that is FDA-approved for other indications. Materials and methods: Rats were exposed to a single dose of 13 Gy leg-out partial body irradiation (PBI, by X-rays). Rats (n= 5/group) received no further treatment, or lisinopril started one week after irradiation and continued at 24 mg/m~2/day. The non-irradiated siblings were used as controls. After 150 days, the rats were sacrificed, and their kidneys harvested and snap frozen in liquid nitrogen for later cryoimaging. The 3D images of metabolic indices (NADH and FAD) were captured, and the redox ratio i.e. NADH/FAD was calculated. The mitochondrial redox state of three groups of rat kidneys were quantified by calculating the volumetric mean of redox ratio images (RR). Results: 3D cryoimaging revealed that in PBI only kidneys, the metabolic marker (RR) decreased significantly by 78% compared to non-irradiated controls. Treatment with lisinopril significantly improved the RR by 93% in groups exposed to PBI. Conclusion: This study aimed at quantifying the level of the mitochondrial redox state of irradiated rat kidneys compared to non-irradiated kidneys (controls) and the efficacy of lisinopril to preserve kidney metabolism after irradiation. PBI oxidized the metabolic state of kidneys and lisinopril mitigated the radiation-induced injury on renal mitochondria.
机译:目的:本研究利用荧光低温测定,定量评估通过氧化还原状态对大鼠肾代谢对大鼠肾代谢的影响。介绍:由于肾功能不全,暴露于高剂量的辐射可能导致死亡。肾脏是最敏感的器官之一,表现出急性辐射综合征患者患者的延迟损伤之一。在该研究中,光学冷冻测定用于检查部分体辐射(PBI)后肾线粒体功能障碍的可能性以及LISINOPRIL治疗的缓解效果,血管紧张素转化酶抑制剂是FDA批准的其他适应症。材料和方法:大鼠暴露于单剂量的13 Gy腿部局部辐照(PBI,X射线)。大鼠(n = 5 /组)没有进一步治疗,或者在辐照后一周开始,并且在24mg / m〜2 /天继续进行。非辐照的兄弟姐妹用作对照。 150天后,处死大鼠,它们的肾脏收获并在液氮中冷冻以进行后来冷冻胶质衰减。捕获代谢指数(NADH和FAD)的3D图像,并计算了氧化还原比例即NADH / FAD。通过计算氧化还原比图像(RR)的体积均值来定量三组大鼠肾脏的线粒体氧化还原状态。结果:3D CryoImaging显示,与非照射对照相比,在PBI仅在PBI时,代谢标记物(RR)明显减少了78%。含有丽思诺普利的治疗在暴露于PBI的基团中显着提高了93%。结论:本研究旨在定量辐照肾肾线粒体氧化还原状态的水平与未辐照肾脏(对照)和丽氏素肾脏辐照后保存肾代谢的疗效相比。 PBI氧化了肾脏的代谢状态,Lisinopril缓解了肾线粒体对辐射诱导的损伤。

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