School of Public Health, Jilin University, Changchun 130021, China.
Molecules. 2021 Dec 26;27(1):128. doi: 10.3390/molecules27010128.
Anticancer treatment is largely affected by the hypoxic tumor microenvironment (TME), which causes the resistance of the tumor to radiotherapy. Combining radiosensitizer compounds and O self-enriched moieties is an emerging strategy in hypoxic-tumor treatments. Herein, we engineered GdW@PDA-CAT (KNaHGdWO·2HO, GdW, polydopamine, PDA, catalase, CAT) composites as a radiosensitizer for the TME-manipulated enhancement of radiotherapy. In the composites, Gd (Z = 64) and W (Z = 74), as the high Z elements, make X-ray gather in tumor cells, thereby enhancing DNA damage induced by radiation. CAT can convert HO to O and HO to enhance the X-ray effect under hypoxic TME. CAT and PDA modification enhances the biocompatibility of the composites. Our results showed that GdW@PDA-CAT composites increased the efficiency of radiotherapy in HT29 cells in culture. This polyoxometalates and O self-supplement composites provide a promising radiosensitizer for the radiotherapy field.
癌症治疗在很大程度上受到缺氧肿瘤微环境 (TME) 的影响,这导致肿瘤对放疗产生抵抗。将放射增敏化合物和 O 自富集部分结合是缺氧肿瘤治疗中的一种新兴策略。本文中,我们设计了 GdW@PDA-CAT(KNaHGdWO·2HO,GdW,聚多巴胺,PDA,过氧化氢酶,CAT)复合材料作为一种放射增敏剂,用于 TME 调控的放疗增强。在复合材料中,Gd(Z=64)和 W(Z=74)作为高 Z 元素,使 X 射线聚集在肿瘤细胞中,从而增强辐射诱导的 DNA 损伤。CAT 可以将 HO 转化为 O 和 HO,在缺氧 TME 下增强 X 射线的效果。CAT 和 PDA 的修饰提高了复合材料的生物相容性。我们的结果表明,GdW@PDA-CAT 复合材料提高了培养的 HT29 细胞中放疗的效率。这种多金属氧酸盐和 O 自补充复合材料为放疗领域提供了一种有前途的放射增敏剂。