Mitochondrial‐Targeted Ultrasmall Hydrophobic Cationic Graphene Nanosheets Potentiating Tumor Photoimmunotherapy

生物物理学 阳离子聚合 两亲性 药物输送 材料科学 体外 线粒体内膜 表面改性 化学 纳米技术 生物结合 纳米医学 线粒体 透明质酸 免疫原性 石墨烯 细胞毒性 纳米颗粒 脂质体 磷脂酰丝氨酸 毒品携带者 阿霉素 内吞作用 细胞骨架 细胞凋亡
作者
Jiyuan Zhou,Jiyuan Zhou,Mengnan Yang,Hengchuan Zhang,Tongyu Wu,Yuzhao Zheng,Xiaowen Huang,Jianping Zhou,Jianping Zhou,Zhigui Su,Tingjie Yin
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:36 (29)
标识
DOI:10.1002/adfm.202527128
摘要

Abstract Mitochondria‐targeted drug delivery is a promising strategy to potentiate anti‐tumor efficacy. Current mitochondria‐targeting nano‐delivery strategies are mainly based on modification of lipophilic cation or targeting peptides. Due to endo/lysosomal capture and size limitation from mitochondrial outer membrane pores, neither approach guarantees efficient mitochondrial entry of the modified nanosystems. Herein, an ultrasmall hydrophobic cationic graphene oxide (GO‐ODA) based nanoplatform is developed for cascading of endo/lysosomal escape and precise inner mitochondrial membrane (IMM) targeting. The functional cascading originates from the strong Brownian motion and high edge density of the ultrasmall hydrophobic cationic GO‐ODA, which increases the frequency of edge‐induced scratching and lipid extraction against bio‐membranes during its random movement. Photosensitizers (PSs) with different charges are used as model therapeutics and loaded onto GO‐ODA surface, followed by co‐encapsulated within hyaluronic acid based amphiphile (IPHD) to form IPHD/GO‐ODA@PSs nanoparticles. The PSs loading dose‐optimized GO‐ODA@PSs are validated to feature membrane‐interactive properties for penetration, and prominently accumulate to IMM with inherent electronegativity. Upon laser irradiation, GO‐ODA@PSs induce severe mitochondrial dysfunction both in vitro and in vivo, and thus not only potentiate tumor inhibition, but also significantly enhance tumor immunogenicity through activating the cGAS‐STING pathway and GSDME‐mediated pyroptosis. It ultimately elicits a strong systemic antitumor immune response.
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