Tang JunJie, Liu Yadong, Xue Yifan, Jiang Zhaozhong, Chen Baizhu, Liu Jie
School of Biomedical Engineering Shenzhen Campus of Sun Yat-Sen University Shenzhen Guangdong People's Republic of China.
Department of Biomedical Engineering Integrated Science and Technology Center Yale University West Haven Connecticut USA.
Exploration (Beijing). 2024 Feb 9;4(4):20230127. doi: 10.1002/EXP.20230127. eCollection 2024 Aug.
Prodrug-based self-assembled nanoparticles (PSNs) with tailored responses to tumor microenvironments show a significant promise for chemodynamic therapy (CDT) by generating highly toxic reactive oxygen species (ROS). However, the insufficient level of intracellular ROS and the limited drug accumulation remain major challenges for further clinical transformation. In this study, the PSNs for the delivery of artesunate (ARS) are demonstrated by designing the pH-responsive ARS-4-hydroxybenzoyl hydrazide (HBZ)-5-amino levulinic acid (ALA) nanoparticles (AHA NPs) with self-supplied ROS for excellent chemotherapy and CDT. The PSNs greatly improved the loading capacity of artesunate and the ROS generation from endoperoxide bridge using the electron withdrawing group attached directly to C10 site of artesunate. The ALA and ARS-HBZ could be released from AHA NPs under the cleavage of hydrazone bonds triggered by the acidic surroundings. Besides, the ALA increased the intracellular level of heme in mitochondria, further promoting the ROS generation and lipid peroxidation with ARS-HBZ for excellent anti-tumor effects. Our study improved the chemotherapy of ARS through the chemical modification, pointing out the potential applications in the clinical fields.
对肿瘤微环境具有定制响应的前药自组装纳米颗粒(PSNs)通过产生高毒性活性氧(ROS)在化学动力学疗法(CDT)中显示出巨大潜力。然而,细胞内ROS水平不足和药物积累有限仍然是进一步临床转化的主要挑战。在本研究中,通过设计具有自供应ROS的pH响应型青蒿琥酯(ARS)-4-羟基苯甲酰肼(HBZ)-5-氨基乙酰丙酸(ALA)纳米颗粒(AHA NPs)来实现ARS的递送,以实现出色的化疗和CDT。PSNs通过直接连接到青蒿琥酯C10位点的吸电子基团极大地提高了青蒿琥酯的负载能力和内过氧化物桥产生ROS的能力。ALA和ARS-HBZ可在酸性环境触发的腙键断裂下从AHA NPs中释放出来。此外,ALA增加了线粒体中血红素的细胞内水平,进一步促进了ROS的产生以及与ARS-HBZ的脂质过氧化,从而产生出色的抗肿瘤效果。我们的研究通过化学修饰改善了ARS的化疗效果,指出了其在临床领域的潜在应用。