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基于沸石咪唑盐骨架-8的1-MT协同光热肿瘤免疫治疗,pH值高灵敏度
Authors Su R, Yang Y, Wu H, Liu B, Tian X, Zhou C, Hu Y, Liu T
Received 2 April 2024
Accepted for publication 7 August 2024
Published 20 August 2024 Volume 2024:19 Pages 8501—8517
DOI https://doi.org/10.2147/IJN.S449820
Checked for plagiarism Yes
Review by Single anonymous peer review
Peer reviewer comments 2
Editor who approved publication: Dr Xing Zhang
Ruijing Su,* Yue Yang,* Haiyan Wu, Bo Liu, Xinyuan Tian, Chaoyu Zhou, Yanxin Hu, Tianlong Liu
Laboratory of Veterinary Pathology and Nanopathology, College of Veterinary Medicine, China Agricultural University, Beijing, 100193, People’s Republic of China
*These authors contributed equally to this work
Correspondence: Tianlong Liu; Yanxin Hu, Email liutianlong@cau.edu.cn; huyx@cau.edu.cn
Background: A successful immune response against tumors depends on various cellular processes. Hence, there is an urgent need to construct a proficient nanoplatform for immunotherapy that can concurrently regulate the activities of various cells participating in the immune process. We have developed zeolitic imidazolate framework-8 (ZIF-8) formula, with good pH sensitivity, which is conducive to the release of drugs in the tumor site (acidic environment) and significantly improves immunotherapy. This is achieved through the coordinated action of different therapeutic agents, such as the photothermal agent polydopamine (PDA), the chemodrug camptothecin (CPT), and the immunomodulator 1-methyl-D-tryptophan (1-MT).
Materials and Methods: In this study, we evaluated the antitumor effect of PDA/(CPT + 1-MT) @ZIF-8 (PCMZ) nanoparticles (NPs) in vitro and in vivo and investigated the molecular mechanism of PCMZ NPs in tumor suppression via photothermal-chemo-immunotherapy.
Results: MTT and Annexin V-FITC/PI double staining apoptosis test showed that PCMZ NPs could induce apoptosis of 4T1 cell, and PCMZ NPs could cause 4T1 cell necrosis under 808 nm laser irradiation. The objective is to establish a unilateral breast cancer model in mice and investigate the effect of PCMZ NPs on tumor growth and tumor suppression in tumor bearing mice. The results showed that PCMZ NPs showed good heating effect in vivo and effectively inhibited tumor growth under 808 nm laser irradiation. In addition, PCMZ NPs could induce the immunogenic death of tumor cells, promote the maturation of DCs, inhibit IDO pathway, and finally differentiate T cells into cytotoxic T cells and helper T cells, so as to effectively activate the anti-tumor immune response.
Conclusion: The PCMZ NPs, possessing good photothermal conversion capabilities due to join of PDA, effectively overcome two main challenges in immunotherapy: insufficient stimulation of the immune response and evasion of the immune system. This provides a robust platform against invasive cancer and recurrent tumors.
Keywords: zeolitic imidazolate framework-8, photothermal agent polydopamine, 1-methyl-D-tryptophan, photoluminescence, camptothecin