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花状金纳米粒子通过递送混合 siRNA 来抑制热休克应激反应,增强光热抗癌治疗。

Flower-like gold nanoparticles for enhanced photothermal anticancer therapy by the delivery of pooled siRNA to inhibit heat shock stress response.

机构信息

Department of Chemistry, College of Chemistry and Materials Science, Jinan University, Guangzhou 510632, China.

出版信息

J Mater Chem B. 2019 Jan 28;7(4):586-597. doi: 10.1039/c8tb02418a. Epub 2019 Jan 2.

Abstract

Due to the anti-apoptotic effect employed by cells to protect themselves, recent research shows that photothermal therapy (PTT) can lead to heat shock response, thus reducing the effect of treatment on cancer cells. Small interfering RNA (siRNA), as an effective carrier of RNA interference, can silence the expression of heat shock protein, HSPs or BAG3 genes by inhibiting the expression of specific genes, and thereby inhibiting heat shock response and making cancer cells more sensitive to PTT. In this study, flower-like gold nanoparticles were used as a core for a layer-by-layer strategy to produce a safe and biodegradable nanoparticle platform for gene silencing and photothermal therapy. The results showed that when the mass ratio of the GNFs and siRNA was 20 : 1, the loading efficiency was above 90%, which can effectively silence the expression of BAG3 siRNA. We demonstrated that the GNFs-siRNA still had a good photothermal effect after siRNA modification. In vitro, the GNFs-siRNA showed good biocompatibility and effectively tumor killing properties after laser irradiation. Furthermore, the GNFs-siRNA with laser treatment significantly decreased the expression of BAG3 and remarkably inhibited tumor growth in vivo. This nanosystem establishes an optimized platform for future gene delivery and photothermal therapy.

摘要

由于细胞采用抗细胞凋亡作用来保护自身,最近的研究表明光热疗法(PTT)可能导致热休克反应,从而降低治疗对癌细胞的效果。小干扰 RNA(siRNA)作为 RNA 干扰的有效载体,通过抑制特定基因的表达来沉默热休克蛋白(HSPs)或 BAG3 基因的表达,从而抑制热休克反应并使癌细胞对 PTT 更敏感。在这项研究中,花状金纳米粒子被用作层状策略的核心,以生产用于基因沉默和光热治疗的安全和可生物降解的纳米粒子平台。结果表明,当 GNFs 和 siRNA 的质量比为 20∶1 时,载药效率高于 90%,可以有效沉默 BAG3 siRNA 的表达。我们证明了 siRNA 修饰后的 GNFs-siRNA 仍具有良好的光热效应。体外实验中,GNFs-siRNA 经激光照射后表现出良好的生物相容性和有效的肿瘤杀伤特性。此外,经激光处理的 GNFs-siRNA 可显著降低 BAG3 的表达,并显著抑制体内肿瘤生长。该纳米系统为未来的基因传递和光热治疗建立了一个优化的平台。

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