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通过具有功能性SPC递送纳米系统的低剂量X射线照射对癌细胞进行高效自由基生成。

Efficient free radical generation against cancer cells by low-dose X-ray irradiation with a functional SPC delivery nanosystem.

作者信息

Shao Yiran, Wang Liyao, Fu Jingke, Shi Chao, Xu Jiaqiang, Zhu Yingchun

机构信息

Key Laboratory of Inorganic Coating Materials, Shanghai Institute of Ceramics CAS, Chinese Academy of Sciences, 1295 Dingxi Road, Shanghai 200050, China.

出版信息

J Mater Chem B. 2016 Sep 21;4(35):5863-5872. doi: 10.1039/c6tb00734a. Epub 2016 Aug 17.

Abstract

Tumor hypoxia is a negative prognostic factor in cancer radiotherapy, due in part to its role in causing resistance to radiotherapy. It has attracted extensive critical attention to radiation sensitizers by using active oxygen to improve radiotherapy outcome. Active oxygen delivery functional materials are promising candidates to transport active oxygen to tumor cells. Herein, we report an oxygen delivery functional material by using hollow mesoporous silica nanoparticles (HMSNs) as carriers, synthesizing sodium percarbonate (SPC) in the channels and cavity of HMSNs (SPC@HMSNs) and coating polyacrylic acid (PAA) on the functional materials (SPC@HMSNs-PAA). SPC@HMSNs-PAA could release more SPC in a simulated tumor acidic microenvironment (pH ∼ 6.5), which can provide oxygen to improve radiotherapy outcome even under low energy X-ray irradiation. The events induce obvious overproduction of reactive oxygen radicals to kill cancer cells with a significant effect. Meanwhile, no obvious cytotoxicity was observed when SPC@HMSNs-PAA applied alone. The radiosensitization of SPC@HMSNs-PAA on cancer cells, even exposure to low-energy X-ray irradiation, may suggest promising application in radiotherapy.

摘要

肿瘤缺氧是癌症放疗中的一个负面预后因素,部分原因在于它在导致放疗抗性方面所起的作用。通过利用活性氧来改善放疗效果,辐射增敏剂已引起广泛的密切关注。活性氧递送功能材料是将活性氧输送到肿瘤细胞的有前景的候选物。在此,我们报道了一种氧递送功能材料,其以中空介孔二氧化硅纳米颗粒(HMSNs)为载体,在HMSNs的通道和腔内合成过碳酸钠(SPC)(SPC@HMSNs),并在功能材料上包覆聚丙烯酸(PAA)(SPC@HMSNs-PAA)。SPC@HMSNs-PAA在模拟肿瘤酸性微环境(pH ∼ 6.5)中能释放更多的SPC,即使在低能X射线照射下也能提供氧气以改善放疗效果。这些事件诱导活性氧自由基明显过量产生,从而显著有效地杀死癌细胞。同时,单独应用SPC@HMSNs-PAA时未观察到明显的细胞毒性。SPC@HMSNs-PAA对癌细胞的放射增敏作用,即使在暴露于低能X射线照射时,也可能表明其在放疗中具有有前景的应用。

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