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通过负载-(HCONH₂)·H₂O₂递送纳米系统与软X射线放疗在肿瘤细胞中高效产生活性氧自由基。

Efficient Active Oxygen Free Radical Generated in Tumor Cell by Loading-(HCONH₂)·H₂O₂ Delivery Nanosystem with Soft-X-ray Radiotherapy.

作者信息

Xu Lei, Shao Yiran, Chang Chengkang, Zhu Yingchun

机构信息

School of Materials Science and Engineering, Shanghai Institute of Technology, Shanghai 201499, China.

Key Laboratory of Inorganic Coating Materials CAS, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China.

出版信息

Materials (Basel). 2018 Apr 12;11(4):596. doi: 10.3390/ma11040596.

Abstract

Tumor hypoxia is known to result in radiotherapy resistance and traditional radiotherapy using super-hard X-ray irradiation can cause considerable damage to normal tissue. Therefore, formamide peroxide (FPO) with high reactive oxygen content was employed to enhance the oxygen concentration in tumor cells and increase the radio-sensitivity of low-energy soft-X-ray. To improve stability of FPO, FPO is encapsulated into polyacrylic acid (PAA)-coated hollow mesoporous silica nanoparticles (FPO@HMSNs-PAA). On account of the pH-responsiveness of PAA, FPO@HMSNs-PAA will release more FPO in simulated acidic tumor microenvironment (pH 6.50) and subcellular endosomes (pH 5.0) than in simulated normal tissue media (pH 7.40). When exposed to soft-X-ray irradiation, the released FPO decomposes into oxygen and the generated oxygen further formed many reactive oxygen species (ROS), leading to significant tumor cell death. The ROS-mediated cytotoxicity of FPO@HMSNs-PAA was confirmed by ROS-induced green fluorescence in tumor cells. The presented FPO delivery system with soft-X-ray irradiation paves a way for developing the next opportunities of radiotherapy toward efficient tumor prognosis.

摘要

已知肿瘤缺氧会导致放疗抗性,而使用超硬X射线照射的传统放疗会对正常组织造成相当大的损伤。因此,采用具有高活性氧含量的过氧甲酰胺(FPO)来提高肿瘤细胞中的氧浓度,并增加低能软X射线的放射敏感性。为了提高FPO的稳定性,将FPO封装到聚丙烯酸(PAA)包覆的中空介孔二氧化硅纳米颗粒(FPO@HMSNs-PAA)中。由于PAA的pH响应性,FPO@HMSNs-PAA在模拟酸性肿瘤微环境(pH 6.50)和亚细胞内体(pH 5.0)中比在模拟正常组织培养基(pH 7.40)中释放更多的FPO。当暴露于软X射线照射时,释放的FPO分解为氧气,生成的氧气进一步形成许多活性氧物种(ROS),导致显著的肿瘤细胞死亡。FPO@HMSNs-PAA的ROS介导的细胞毒性通过肿瘤细胞中ROS诱导的绿色荧光得到证实。所提出的FPO递送系统与软X射线照射为开发高效肿瘤预后的放疗新机遇铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd5f/5951480/801690326c41/materials-11-00596-sch001.jpg

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