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外泌体:作为生物标志物和治疗手段用于辐射复合伤研究的新视角

Exosomes: A new perspective for radiation combined injury as biomarker and therapeutics.

作者信息

Sharma Ajay Kumar, Yashavarddhan M H, Kumar Rishav, Shaw Priyanka, Kalonia Aman, Shukla Sandeep Kumar

机构信息

Radiation Combined Injuries Research Department, Institute of Nuclear Medicine and Allied Sciences, Defence Research Development Organization, Timarpur, Delhi 110054, India.

Radiation Combined Injuries Research Department, Institute of Nuclear Medicine and Allied Sciences, Defence Research Development Organization, Timarpur, Delhi 110054, India.

出版信息

Tissue Cell. 2024 Dec;91:102563. doi: 10.1016/j.tice.2024.102563. Epub 2024 Sep 11.

Abstract

Radiation Combined Injuries (RCI) pose formidable public health risks, particularly in the context of nuclear incidents, necessitating specialized treatments and development of biomarkers. RCI encompasses instances where ionizing radiation exposure coincides with burns, wounds, or trauma. However, the limited understanding of cellular responses hinders progress in developing effective therapies. This article underscores the pivotal role of exosomes, nano-sized particles (30-120 nm) actively secreted by cells, in addressing the intricate challenges posed by RCI. Exosomes serve as vehicles for the transportation of bioactive molecules, including proteins, lipids, and miRNA, thereby facilitating processes critical to radiotherapy, burn injury, and wound healing. Exosomes hold significant promise for the transformation of RCI management by reducing inflammation, promoting wound healing, managing sepsis, altering immunological responses, and modulating signal transduction pathways. Moreover, exosomes are also being explored as biomarker for various diseases and stress conditions including radiation exposure and associated injuries. This comprehensive review highlights the burgeoning potential of exosomes in advancing the management of RCI, thereby enhancing public health preparedness and response.

摘要

辐射复合伤(RCI)对公众健康构成了巨大风险,尤其是在核事故背景下,因此需要专门的治疗方法和生物标志物的开发。RCI包括电离辐射暴露与烧伤、创伤同时发生的情况。然而,对细胞反应的有限了解阻碍了有效治疗方法的开发进展。本文强调了外泌体(细胞主动分泌的30-120纳米大小的纳米颗粒)在应对RCI带来的复杂挑战中所起的关键作用。外泌体作为生物活性分子(包括蛋白质、脂质和微小RNA)运输的载体,从而促进对放射治疗、烧伤和伤口愈合至关重要的过程。外泌体在通过减轻炎症、促进伤口愈合、控制败血症、改变免疫反应和调节信号转导通路来转变RCI管理方面具有巨大潜力。此外,外泌体也正在被探索作为包括辐射暴露及相关损伤在内的各种疾病和应激状况的生物标志物。这篇综述强调了外泌体在推进RCI管理方面的新兴潜力,从而加强公共卫生防范和应对能力。

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