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具有动态和可激活特性的超分子前药样纳米诊疗剂用于转移性癌症的协同光热免疫治疗。

Supramolecular prodrug-like nanotheranostics with dynamic and activatable nature for synergistic photothermal immunotherapy of metastatic cancer.

机构信息

College of Polymer Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, PR China.

College of Material Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, PR China.

出版信息

J Control Release. 2024 Mar;367:354-365. doi: 10.1016/j.jconrel.2024.01.052. Epub 2024 Feb 1.

Abstract

Synergistic photothermal immunotherapy has attracted widespread attention due to the mutually reinforcing therapeutic effects on primary and metastatic tumors. However, the lack of clinical approval nanomedicines for spatial, temporal, and dosage control of drug co-administration underscores the challenges facing this field. Here, a photothermal agent (Cy7-TCF) and an immune checkpoint blocker (NLG919) are conjugated via disulfide bond to construct a tumor-specific small molecule prodrug (Cy7-TCF-SS-NLG), which self-assembles into prodrug-like nano-assemblies (PNAs) that are self-delivering and self-formulating. In tumor cells, over-produced GSH cleaves disulfide bonds to release Cy7-TCF-OH, which re-assembles into nanoparticles to enhance photothermal conversion while generate reactive oxygen species (ROSs) upon laser irradiation, and then binds to endogenous albumin to activate near-infrared fluorescence, enabling multimodal imaging-guided phototherapy for primary tumor ablation and subsequent release of tumor-associated antigens (TAAs). These TAAs, in combination with the co-released NLG919, effectively activated effector T cells and suppressed Tregs, thereby boosting antitumor immunity to prevent tumor metastasis. This work provides a simple yet effective strategy that integrates the supramolecular dynamics and reversibility with stimuli-responsive covalent bonding to design a simple small molecule with synergistic multimodal imaging-guided phototherapy and immunotherapy cascades for cancer treatment with high clinical value.

摘要

协同光热免疫疗法由于对原发性和转移性肿瘤具有相互增强的治疗效果而受到广泛关注。然而,缺乏用于药物共给药的空间、时间和剂量控制的临床批准的纳米药物,突显了该领域面临的挑战。在这里,通过二硫键将光热剂(Cy7-TCF)和免疫检查点抑制剂(NLG919)连接起来,构建了一种肿瘤特异性的小分子前药(Cy7-TCF-SS-NLG),它可以自组装成具有自主传递和自形成能力的前药样纳米组装体(PNAs)。在肿瘤细胞中,过表达的 GSH 会切断二硫键,释放出 Cy7-TCF-OH,它会重新组装成纳米颗粒,以增强光热转换,同时在激光照射下产生活性氧(ROS),然后与内源性白蛋白结合,激活近红外荧光,实现多模态成像引导的光疗,用于原发性肿瘤消融和随后释放肿瘤相关抗原(TAA)。这些 TAA 与共释放的 NLG919 一起,有效激活效应 T 细胞并抑制 Treg,从而增强抗肿瘤免疫,以防止肿瘤转移。这项工作提供了一种简单而有效的策略,将超分子动力学和可逆性与响应性共价键结合起来,设计了一种具有协同的多模态成像引导光疗和免疫治疗级联作用的简单小分子,用于癌症治疗,具有很高的临床价值。

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