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利用肿瘤衍生的外泌体将羰基锰递送至肿瘤微环境,用于癌症气体治疗和低剂量放疗。

Delivery of manganese carbonyl to the tumor microenvironment using Tumor-Derived exosomes for cancer gas therapy and low dose radiotherapy.

机构信息

Department of Electronic Science and Technology, School of Physics and Technology, Wuhan University, Wuhan, 430072, China.

Department of Plastic Surgery, Zhongnan Hospital of Wuhan University, Wuhan, 430071, China; Department of Plastic Surgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.

出版信息

Biomaterials. 2021 Jul;274:120894. doi: 10.1016/j.biomaterials.2021.120894. Epub 2021 May 18.

Abstract

The development of novel radiosensitizer with high selectivity and controllability is highly desirable. CO gas could cause damage to mitochondria and thus enhance RT effect. Controlled delivery of CO in tumor is important both to achieve high-efficiency of CO gas therapy and to decrease the risk of CO poisoning. In this study, manganese carbonyl (MnCO) loaded exosome nano-vesicles (MMV) to overcome this conundrum for tumor therapy is developed. After administration, MMV showed its admirable performance in active tumor-targeting, mitochondria damage and radiosensitization therapy. These MMV nanoparticles were able to facilitate robust CO evolution and consequent ROS generation in response to X-ray irradiation both in vitro and in vivo. Significantly, MMV could facilitate a 90% inhibition effect of tumor growth under very low dose (only 2Gy) RT, which is better than high dose (6Gy) radiotherapy. Overall, this study highlights a novel and practical approach to enhancing the efficacy of tumor RT, underscoring the value of future research in the field of CO medicine.

摘要

开发具有高选择性和可控性的新型放射增敏剂是非常需要的。CO 气体可导致线粒体损伤,从而增强 RT 效果。在肿瘤中控制 CO 的释放对于实现 CO 气体治疗的高效性和降低 CO 中毒的风险都非常重要。在这项研究中,开发了负载羰基锰(MnCO)的外泌体纳米囊泡(MMV)来克服肿瘤治疗中的这一难题。给药后,MMV 在主动肿瘤靶向、线粒体损伤和放射增敏治疗方面表现出了令人钦佩的性能。这些 MMV 纳米颗粒能够在体外和体内响应 X 射线照射促进大量 CO 的释放和随后的 ROS 生成。值得注意的是,MMV 可以在非常低剂量(仅 2Gy)的 RT 下促进 90%的肿瘤生长抑制效果,优于高剂量(6Gy)放疗。总的来说,这项研究强调了一种提高肿瘤 RT 疗效的新的实用方法,突出了 CO 医学领域未来研究的价值。

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