Analysis of the urinary metabolic profiles in irradiated rats treated with Activated Protein C (APC), a potential mitigator of radiation toxicity.

IF 2.1 4区 医学 Q2 BIOLOGY International Journal of Radiation Biology Pub Date : 2023-01-01 Epub Date: 2023-02-24 DOI:10.1080/09553002.2023.2182001
Shivani Bansal, Sunil Bansal, Brian L Fish, Yaoxiang Li, Xiao Xu, Jose A Fernandez, John H Griffin, Heather A Himburg, Marjan Boerma, Meetha Medhora, Amrita K Cheema
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Abstract

Purpose: The goal of the current study was to identify longitudinal changes in urinary metabolites following IR exposure and to determine potential alleviation of radiation toxicities by administration of recombinant APC formulations.

Materials and methods: Female adult WAG/RijCmcr rats were irradiated with 13.0 Gy leg-out partial body X-rays; longitudinally collected urine samples were subject to LC-MS based metabolomic profiling. Sub-cohorts of rats were treated with three variants of recombinant APC namely, rat wildtype (WT) APC, rat 3K3A mutant form of APC, and human WT APC as two bolus injections at 24 and 48 hours post IR.

Results: Radiation induced robust changes in the urinary profiles leading to oxidative stress, severe dyslipidemia, and altered biosynthesis of PUFAs, glycerophospholipids, sphingolipids, and steroids. Alterations were observed in multiple metabolic pathways related to energy metabolism, nucleotide biosynthesis and metabolism that were indicative of disrupted mitochondrial function and DNA damage. On the other hand, sub-cohorts of rats that were treated with rat wildtype-APC showed alleviation of radiation toxicities, in part, at the 90-day time point, while rat 3K3A-APC showed partial alleviation of radiation induced metabolic alterations 14 days after irradiation.

Conclusions: Taken together, these results show that augmenting the Protein C pathway and activity via administration of recombinant APC may be an effective approach for mitigation of radiation induced normal tissue toxicity.

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分析接受活化蛋白 C (APC) 治疗的辐照大鼠的尿液代谢概况,活化蛋白 C 是一种潜在的辐射毒性缓解剂。
目的:本研究旨在确定红外照射后尿液代谢物的纵向变化,并确定通过服用重组 APC 制剂减轻辐射毒性的可能性:对雌性成年 WAG/RijCmcr 大鼠进行 13.0 Gy 腿部向外部分身体 X 射线照射;对纵向收集的尿液样本进行基于 LC-MS 的代谢组学分析。在红外照射后 24 小时和 48 小时,用重组 APC 的三种变体,即大鼠野生型(WT)APC、大鼠 3K3A 突变型 APC 和人 WT APC 对大鼠进行两次栓剂注射:结果:辐射诱导尿液特征发生了显著变化,导致氧化应激、严重的血脂异常,并改变了 PUFA、甘油磷脂、鞘磷脂和类固醇的生物合成。与能量代谢、核苷酸生物合成和代谢有关的多种代谢途径都发生了改变,表明线粒体功能紊乱和 DNA 损伤。另一方面,接受大鼠野生型-APC 治疗的大鼠亚群在 90 天的时间点显示辐射毒性部分减轻,而大鼠 3K3A-APC 在辐照 14 天后显示辐射诱导的代谢改变部分减轻:综上所述,这些结果表明,通过服用重组 APC 来增强蛋白 C 途径和活性可能是减轻辐射诱导的正常组织毒性的有效方法。
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来源期刊
CiteScore
5.00
自引率
11.50%
发文量
142
审稿时长
3 months
期刊介绍: The International Journal of Radiation Biology publishes original papers, reviews, current topic articles, technical notes/reports, and meeting reports on the effects of ionizing, UV and visible radiation, accelerated particles, electromagnetic fields, ultrasound, heat and related modalities. The focus is on the biological effects of such radiations: from radiation chemistry to the spectrum of responses of living organisms and underlying mechanisms, including genetic abnormalities, repair phenomena, cell death, dose modifying agents and tissue responses. Application of basic studies to medical uses of radiation extends the coverage to practical problems such as physical and chemical adjuvants which improve the effectiveness of radiation in cancer therapy. Assessment of the hazards of low doses of radiation is also considered.
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