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VB12-丝胶-PBLG-IR780 纳米胶束通过光热(PTT)/光动力(PDT)效应诱导的线粒体 DNA(mitoDNA)氧化损伤来编程细胞细胞焦亡。

VB12-Sericin-PBLG-IR780 Nanomicelles for Programming Cell Pyroptosis via Photothermal (PTT)/Photodynamic (PDT) Effect-Induced Mitochondrial DNA (mitoDNA) Oxidative Damage.

机构信息

Department of General Surgery & Guangdong Provincial Key Laboratory of Precision Medicine for Gastrointestinal Tumor, Nanfang Hospital, Southern Medical University, Guangzhou 510515, China.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 20;14(15):17008-17021. doi: 10.1021/acsami.1c22804. Epub 2022 Apr 8.

Abstract

Pyroptosis, a kind of programmed cell death involving inflammation, might be a powerful way to fight against tumors, for example, using immunotherapy. However, how to trigger pyroptosis in cancer cells is an important issue. Photothermal (PTT)/photodynamic (PDT) therapy is a crucial strategy for inducing cancer cell pyroptosis with noninvasiveness. In this work, a sericin derivative modified with poly(γ-benzyl-l-glutamate) (PBLG) could self-assemble and was stable in an aqueous environment. Furthermore, the sericin derivative was conjugated with the tumor-targeting agent VB12 and loaded with IR780. Finally, we successfully synthesized VB12-sericin-PBLG-IR780 nanomicelles. The as-designed nanomicelles showed appropriate particle sizes, spherical morphology, improved photothermal stability, and high photothermal conversion efficiency (∼40%), which generated reactive oxygen species (ROS) simultaneously. Through enhanced cellular uptake, VB12-sericin-PBLG-IR780 could deliver more IR780 into cancer cells. With near-infrared (NIR), the VB12-sericin-PBLG-IR780 could significantly inhibit the expression of ATP synthase, called ATP5MC3, followed by mitochondrial damage. The presence of mitochondrial reactive oxygen species (mitoROS) led to oxidative damage of mitochondrial DNA (mitoDNA), which further activates NLRP3/Caspase-1/gasdermin D (GSDMD)-dependent pyroptosis and could promote dendritic cell (DC) maturation by pyroptosis. Furthermore, our data showed that VB12-sericin-PBLG-IR780 could achieve a brilliant antitumor effect and could activate DC maturation, initiate T-cell recruiting, and prime adaptive antitumor efficiency. Overall, our well-prepared nanomicelles might offer a tumor-targeted approach for programmed cell pyroptosis and inducing antitumor immunity via photothermal PTT/PDT effect-induced mitoDNA oxidative damage.

摘要

细胞焦亡是一种涉及炎症的程序性细胞死亡方式,可能是对抗肿瘤的一种有效方法,例如使用免疫疗法。然而,如何在癌细胞中触发细胞焦亡是一个重要问题。光热(PTT)/光动力(PDT)疗法是一种通过非侵入性诱导癌细胞焦亡的重要策略。在这项工作中,一种经过聚(γ-苄基-L-谷氨酸)(PBLG)修饰的丝胶衍生物可以自组装,并在水相环境中稳定存在。此外,丝胶衍生物与肿瘤靶向剂 VB12 缀合,并负载 IR780。最后,我们成功合成了 VB12-丝胶-PBLG-IR780 纳米胶束。设计的纳米胶束具有合适的粒径、球形形态、提高的光热稳定性和高光热转换效率(约 40%),同时产生活性氧(ROS)。通过增强细胞摄取,VB12-丝胶-PBLG-IR780 可以将更多的 IR780 递送到癌细胞中。在近红外(NIR)照射下,VB12-丝胶-PBLG-IR780 可以显著抑制 ATP 合酶(称为 ATP5MC3)的表达,随后导致线粒体损伤。线粒体活性氧(mitoROS)的存在导致线粒体 DNA(mitoDNA)的氧化损伤,进而激活 NLRP3/Caspase-1/ 气体蛋白 D(GSDMD)依赖性细胞焦亡,并通过细胞焦亡促进树突状细胞(DC)成熟。此外,我们的数据表明,VB12-丝胶-PBLG-IR780 可以实现出色的抗肿瘤效果,并通过光热 PTT/PDT 效应诱导的 mitoDNA 氧化损伤激活 DC 成熟、引发 T 细胞募集和启动适应性抗肿瘤效率。总的来说,我们精心制备的纳米胶束可能为通过光热 PTT/PDT 效应诱导的 mitoDNA 氧化损伤实现靶向细胞焦亡和诱导抗肿瘤免疫提供了一种肿瘤靶向方法。

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