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病毒启发的中空介孔钆铋纳米诊疗剂用于磁共振成像引导的协同光动力-放射治疗。

Virus-Inspired Hollow Mesoporous Gadolinium-Bismuth Nanotheranostics for Magnetic Resonance Imaging-Guided Synergistic Photodynamic-Radiotherapy.

机构信息

Cancer Research Center, School of Medicine, Xiamen University, Xiamen, 361000, P. R. China.

Key Laboratory of Design and Assembly of Functional Nanostructures, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, 350007, P. R. China.

出版信息

Adv Healthc Mater. 2022 Mar;11(6):e2102060. doi: 10.1002/adhm.202102060. Epub 2021 Dec 19.

DOI:10.1002/adhm.202102060
PMID:34894092
Abstract

The anti-tumor efficacy of single photodynamic therapy (PDT) and radiotherapy (RT) has been greatly affected by inadequate tumor uptake of photo/radiation sensitizers, limited laser penetration depth, and radiation sickness caused by high doses of X-rays. Here, the authors report a biomimetic coronavirus-inspired hollow mesoporous gadolinium/bismuth nanocarrier loaded with a new NIR photosensitizer HB (termed as HB@VHMBi-Gd) for magnetic resonance imaging (MRI)-guided synergistic photodynamic-RT. HB@VHMBi-Gd displayed a faster cellular uptake rate than the conventional spherical HMBi-Gd loaded with HB (HB@SHMBi-Gd) because of rough surface-enhanced adhesion. After intravenous injection, HB@VHMBi-Gd is efficiently delivered to the tumor and rapidly invades the tumor cells by surface spikes. Interestingly, lysosomal acidity can trigger the degradation of VHMBi-Gd to produce ultrasmall nanoparticles to amplify the X-ray attenuation ability and enhance MRI contrast and radiosensitization. Under laser and X-ray irradiation, HB@VHMBi-Gd significantly enhances O generation from HB to induce activation of caspase 9/3 and inhibition of C-myc, while enhancing hydroxyl radical generation from Bi O to induce intense DNA breakage. By synergistically inducing cell apoptosis by distinct reactive oxygen species (ROS), HB@VHMBi-Gd exhibits superior anticancer efficacy with ≈90% tumor inhibition. They envision that biomimetic virus-inspired hollow hybrid metal nanoparticles can provide a promising strategy for imaging-guided synergistic photodynamic-RT.

摘要

单一光动力疗法 (PDT) 和放射疗法 (RT) 的抗肿瘤疗效受到光敏剂/辐射敏化剂在肿瘤中摄取不足、激光穿透深度有限以及高剂量 X 射线引起的辐射病的极大影响。在这里,作者报告了一种仿生冠状病毒启发的中空介孔钆/铋纳米载体,负载有新型近红外光敏剂 HB(称为 HB@VHMBi-Gd),用于磁共振成像 (MRI) 引导的协同光动力-RT。由于表面增强的粘附作用,HB@VHMBi-Gd 比负载 HB 的传统球形 HMBi-Gd(HB@SHMBi-Gd)具有更快的细胞摄取率。静脉注射后,HB@VHMBi-Gd 可有效递送至肿瘤部位,并通过表面刺迅速入侵肿瘤细胞。有趣的是,溶酶体酸度可以触发 VHMBi-Gd 的降解,产生超小纳米颗粒来放大 X 射线衰减能力并增强 MRI 对比度和放射增敏作用。在激光和 X 射线照射下,HB@VHMBi-Gd 显著增强了 HB 产生的 O2,从而诱导 caspase 9/3 的激活和 C-myc 的抑制,同时增强了 Bi2O3 产生的羟基自由基,从而诱导强烈的 DNA 断裂。通过协同诱导细胞凋亡的不同活性氧 (ROS),HB@VHMBi-Gd 表现出卓越的抗癌疗效,肿瘤抑制率约为 90%。他们设想仿生病毒启发的中空杂化金属纳米粒子可以为成像引导的协同光动力-RT 提供一种有前途的策略。

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