Department of Chemical and Biomolecular Engineering, Clemson University, Clemson, SC, 29631, USA.
Department of Chemical and Biomolecular Engineering, Clemson University, Clemson, SC, 29631, USA; Department of Bioengineering, Clemson University, Clemson, SC, 29631, USA.
Free Radic Biol Med. 2024 Jul;219:88-103. doi: 10.1016/j.freeradbiomed.2024.04.219. Epub 2024 Apr 15.
This review explores the convergence of clinical radiotherapy and space radiation therapeutics, focusing on ionizing radiation (IR)-generated reactive oxygen species (ROS). IR, with high-energy particles, induces precise cellular damage, particularly in cancer treatments. The paper discusses parallels between clinical and space IR, highlighting unique characteristics of high-charge and energy particles in space and potential health risks for astronauts. Emphasizing the parallel occurrence of ROS generation in both clinical and space contexts, the review identifies ROS as a crucial factor with dual roles in cellular responses and potential disease initiation. The analysis covers ROS generation mechanisms, variations, and similarities in terrestrial and extraterrestrial environments leading to innovative ROS-responsive delivery systems adaptable for both clinical and space applications. The paper concludes by discussing applications of personalized ROS-triggered therapeutic approaches and discussing the challenges and prospects of implementing these strategies in clinical radiotherapy and extraterrestrial missions. Overall, it underscores the potential of ROS-targeted delivery for advancing therapeutic strategies in terrestrial clinical settings and space exploration, contributing to human health improvement on Earth and beyond.
这篇综述探讨了临床放射治疗和空间辐射治疗的融合,重点关注电离辐射(IR)产生的活性氧(ROS)。IR 具有高能粒子,可诱导精确的细胞损伤,特别是在癌症治疗中。本文讨论了临床和空间 IR 之间的相似之处,强调了空间中高电荷和高能粒子的独特特征,以及对宇航员的潜在健康风险。强调了 ROS 在临床和空间环境中产生的平行性,该综述将 ROS 确定为细胞反应和潜在疾病发生的关键因素,具有双重作用。该分析涵盖了 ROS 产生机制、陆地和地球外环境中的变化和相似之处,导致了适用于临床和空间应用的创新的 ROS 响应性传递系统。本文最后讨论了个性化 ROS 触发治疗方法的应用,并讨论了在临床放射治疗和地球外任务中实施这些策略的挑战和前景。总体而言,它强调了 ROS 靶向传递在推进陆地临床环境和空间探索中的治疗策略的潜力,为改善地球上和地球外的人类健康做出了贡献。