中国激光, 2023, 50 (3): 0307203, 网络出版: 2023-02-06  

基于Ce6和MMP-2抑制剂的多级控释脂质纳米复合体用于光动力-免疫协同治疗黑色素瘤 下载: 635次

Multi-Responsive Liposomal Nanocomplex Encapsulating Ce6 & MMP-2 Inhibitors for Photodynamic-Immune Synergistic Treatment of Melanoma
作者单位
西安交通大学生命科学与技术学院,生物医学信息工程教育部重点实验室,生物医学光子学与传感研究所,陕西 西安 710049
摘要
光动力疗法(PDT)能诱导肿瘤细胞免疫原性死亡,与免疫治疗联合能够提高对各种癌症的治疗效果。基于自然杀伤(NK)细胞的免疫疗法能够增强PDT的抗癌能力。以肿瘤组织中NK细胞免疫作用的分子途径为靶点,通过药物调控增强其对肿瘤的免疫作用,并进一步联合PDT可以有效提升抗肿瘤疗效。将包封基质金属蛋白酶-2(MMP-2)抑制剂SB-3CT的β-环糊精(β-CD)与负载光敏剂Ce6的脂质体通过MMP-2响应多肽组装在一起,构建了一种肿瘤微环境/光多重响应的脂质纳米药物控制系统(MRPL-SC),在细胞和裸鼠移植瘤模型中证明了MRPL-SC介导的PDT和NK免疫疗法协同抗肿瘤作用。MRPL-SC到达肿瘤部位后,连接β-CD与脂质体核心的MMP-2响应性多肽会在肿瘤组织微环境中过表达的MMP-2的作用下水解,释放包封在β-CD中的SB-3CT,SB-3CT通过直接对MMP-2进行原位抑制来有效提升肿瘤组织中NKG2DLs的表达和NK细胞免疫响应;封装了Ce6的脂质体通过细胞内吞进入肿瘤细胞后,在660 nm激光照射下通过PDT诱导肿瘤细胞凋亡,同时进一步诱导肿瘤细胞NKG2DLs表达,实现对肿瘤组织中NK免疫的时空协同增强。MRPL-SC介导的这种光动力和NK免疫增强协同抗肿瘤作用在黑色素瘤细胞和裸鼠移植瘤模型上得到了证明。本研究不仅为开发一种新的纳米药物用于程序化释放抗肿瘤药物以及更好地整合PDT和免疫治疗提供了参考,还阐明了一种用NK细胞介导的黑色素瘤免疫治疗的新模式。
Abstract
Objective

Melanoma is one of the most immunogenic solid tumors, with strong metastatic characteristics. Although melanoma is curable when detected in a localized form, the long-term survival rates of patients are difficult to improve by any single therapy. The combination of photodynamic therapy (PDT) and immunotherapy has shown encouraging therapeutic efficacy against various cancers due to PDT-induced immunogenic cell death. Natural killer (NK) cell-based immunotherapy has the ability to enhance the anticancer effects of PDT. The NK cell family 2 member D/ligand (NKG2D/NKG2DL) pathway acts as a master switch in the activation of NK cells and mediates the recognition of tumor cells by NK cells. However, tumor cells can produce soluble NKG2DLs via shedding, which mediates the immune escape of tumors. Regulating NKG2D-related molecular pathways can effectively improve the anti-tumor efficacy of NK cells. Further, combined with PDT, NK-related anti-tumor immunity and therapeutic effects could be significantly promoted. In this study, a tumor microenvironment- and light-responsive nanoparticle—MMP-2-responsive polypeptide mixed liposome (MRPL-SC)—was designed to realize synergistic anti-tumor effects of Ce6-mediated PDT and SB-3CT enhanced NKG2D-based immunotherapy, and spatial–temporally controlled release of loaded drugs.

Methods

To synthesize MRPL-SC, DSPE-PEG(3400)-MRP-β-CD with an MMP-2 cleavable sequence was formed via multistep reactions. Then, MRPL-SC, combined with β-cyclodextrin (β-CD) containing SB-3CT to suppress the overexpressed MMP-2 that is tightly associated with the tumor NK-related escape mechanism in the tumor microenvironment and photosensitizer Ce6-loaded liposomes, was prepared using the film dispersion and extrusion method. The multi-responsive release ability of SB-3CT triggered by the MMP-2 abundant tumor microenvironment and chlorin e6 (Ce6) by 660 nm laser irradiation was studied in vitro. Cellular uptake, ROS generation, and the synergistic anti-tumor effects of MRPL-SC-mediated PDT and enhanced NK immunotherapy were studied in A375 cells, followed by the analysis of NKG2DLs expression. In addition, the anti-tumor efficiency and safety of MRPL-SCs were studied in tumor-bearing nude BALB/c mouse models.

Results and Discussions

The prepared MRPL-SC exhibited a typical liposome structure with a phospholipid bilayer and formed single/double-layer vesicles for drug encapsulating and intracellular delivering with a particle size about 160-170 nm (Fig. 2). Then, the MMP-2-responsive polypeptide linker was hydrolyzed by MMP-2, and SB-3CT encapsulated in β-CD was rapidly released, with accumulation reaching 72.26% after 240 min, indicating the responsiveness of MRPL-SC to the MMP-2 abundant tumor extracellular microenvironment. The released SB-3CT effectively regulated the expression of NKG2DLs and generation of soluble NKG2DLs in tumor tissues by directly inhibiting MMP-2 in situ. Ce6-encapsulated liposomes entered the tumor cells through endocytosis and induced severe cytotoxicity by PDT under 660 nm laser irradiation (Fig.5). In addition, Ce6-PDT also induced NKG2DLs expression, thereby realizing spatiotemporal synergistic enhancement of NK immunity in tumor tissues (Fig. 6). By employing the A375 tumor-bearing nude mice xenograft model, MRPL-SCs showed higher amounts of aggregation in tumor tissue and efficiently suppressed melanoma growth after laser irradiation (Fig. 8) without significant cytotoxic effects in the major organs.

Conclusions

In this study, a novel multi-responsive nanoliposome composed of photosensitizer Ce6-liposomes and MMP-2 antagonist SB-3CT linked by MMP-2 responsive peptide was successfully fabricated via film dispersion and extrusion. The synergistic anti-tumor effect of MRPL-SC-mediated PDT and NK cell immune enhancement was observed in both melanoma cells and nude mouse xenograft models. This study not only developed a new multi-responsive nanocomplex for better integration of PDT and immunotherapy but also elucidated a novel paradigm for NK cell-mediated photodynamic immunotherapy for melanoma.

刘慧芳, 雷栋钦, 秦奋, 王斯佳, 张镇西. 基于Ce6和MMP-2抑制剂的多级控释脂质纳米复合体用于光动力-免疫协同治疗黑色素瘤[J]. 中国激光, 2023, 50(3): 0307203. Huifang Liu, Dongqin Lei, Fen Qin, Sijia Wang, Zhenxi Zhang. Multi-Responsive Liposomal Nanocomplex Encapsulating Ce6 & MMP-2 Inhibitors for Photodynamic-Immune Synergistic Treatment of Melanoma[J]. Chinese Journal of Lasers, 2023, 50(3): 0307203.

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