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Highly Catalytic Nanodots with Renal Clearance for Radiation Protection

机译:具有肾脏清除作用的高催化纳米点可用于辐射防护

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Ionizing radiation (gamma and X-ray) is widely used in industry and medicine, but it can also pose a significant hazardous effect on health and induce cancer, physical deformity, and even death, due to DNA damage and invasion of free radicals. There is therefore an urgent unmet demand in designing highly efficient radioprotectants with synergetic integration of effective renal clearance and low toxicity. In this study, we designed ultrasmall (sub-5 mn) highly catalytically active and cysteine-protected MoS2 dots as radioprotectants and investigated their application in protection against ionizing radiation. In vivo preclinical studies showed that the surviving fraction of MoS2-treated mice can appreciably increase to up to 79% when they were exposed to high-energy ionizing radiation. Furthermore, MoS2 dots can contribute in cleaning up the accumulated free radicals within the body, repairing DNA damage, and recovering all vital chemical and biochemical indicators, suggesting their unique role as free radical scavengers. MoS2 dots showed rapid and efficient urinary excretion with more than 80% injected dose eliminated from the body after 24 h due to their ultrasmall hydrodynamic size and did not cause any noticeable toxic responses up to 30 days.
机译:电离辐射(伽玛射线和X射线)已广泛用于工业和医学领域,但由于DNA损伤和自由基的入侵,它也可能对健康造成重大危害,并诱发癌症,身体畸形甚至死亡。因此,在设计高效的放射防护剂以及有效的肾脏清除和低毒性的协同整合方面存在着迫切的需求。在这项研究中,我们设计了超小型(小于500万)高催化活性和半胱氨酸保护的MoS2点作为辐射防护剂,并研究了它们在电离辐射防护中的应用。体内临床前研究表明,当接受MoS2处理的小鼠暴露于高能电离辐射下时,其存活分数可以明显提高至79%。此外,MoS2点可有助于清除体内累积的自由基,修复DNA损伤,并恢复所有重要的化学和生化指标,表明其作为自由基清除剂的独特作用。 MoS2点显示快速有效的尿液排泄,由于其超小的流体动力学尺寸,在24小时后从体内消除了超过80%的注射剂量,并且在30天内未引起任何明显的毒性反应。

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