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金属复合物脂质纳米颗粒递送代谢调节药物洛美他派,通过激活 STING 通路克服 CTC 的免疫逃避。

Metal complex lipid-based nanoparticles deliver metabolism-regulating lomitapide to overcome CTC immune evasion via activating STING pathway.

机构信息

College of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, Tianjin 301617, China.

State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Department of Pharmaceutics, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100050, China.

出版信息

Eur J Pharm Biopharm. 2024 Oct;203:114467. doi: 10.1016/j.ejpb.2024.114467. Epub 2024 Aug 22.

Abstract

Activating the cGAS-STING pathway of circulating tumor cell clusters (CTC clusters) represents a promising strategy to mitigate metastases. To fully exploit the potential of cholesterol-regulating agents in activating CTCs' STING levels, we developed a nanoparticle (NP) composed of metal complex lipid (MCL). This design includes MCL-miriplatin to increase NP stiffness and loads lomitapide (lomi) modulating cholesterol levels, resulting in the creation of PLTs@Pt-lipid@lomi NPs. MCL-miriplatin not only enhances lomi's eliciting efficacy on STING pathway but also increases NPs' stiffness, thus a vital factor affecting the penetration into CTC clusters to further boost lomi's ability. Demonstrated by cy5 tracking experiments, PLTs@Pt-lipid@lomi NPs quickly attach to cancer cell via platelet membrane anchorage, penetrate deep into the spheres, and reach the subcellular endoplasmic reticulum where lomi regulates cholesterol. Additionally, these NPs have been shown to track CTCs in the bloodstream, a capability not demonstrated by the free drug. PLTs@Pt-lipid@lomi NPs more efficiently activate the STING pathway and reduce CTC stemness compared to free lomi. Ultimately, PLTs@Pt-lipid@lomi NPs reduce metastasis in a post-surgery animal model. While cholesterol-regulating agents are limited in efficacy when being repositioned as immunomodulatory agents, this MCL-composing NP strategy demonstrates the potential to effectively deliver these agents to target CTC clusters.

摘要

激活循环肿瘤细胞簇(CTC 簇)中的 cGAS-STING 通路是减轻转移的一种很有前途的策略。为了充分利用调节胆固醇的药物在激活 CTCs 的 STING 水平方面的潜力,我们开发了一种由金属复合脂质(MCL)组成的纳米颗粒(NP)。这种设计包括 MCL-米立膦来增加 NP 的刚性并加载调节胆固醇水平的洛美他派(lomi),从而产生 PLTs@Pt-lipid@lomi NPs。MCL-米立膦不仅增强了 lomi 对 STING 通路的激发效果,而且增加了 NPs 的刚性,因此是影响 NP 穿透 CTC 簇以进一步增强 lomi 能力的重要因素。通过 Cy5 追踪实验证明,PLTs@Pt-lipid@lomi NPs 通过血小板膜锚定迅速附着在癌细胞上,深入球体内部,并到达细胞内质网亚细胞区,在那里 lomi 调节胆固醇。此外,这些 NPs 已被证明可以在血液中追踪 CTC,而游离药物则没有这种能力。与游离 lomi 相比,PLTs@Pt-lipid@lomi NPs 更有效地激活 STING 通路并降低 CTC 干性。最终,PLTs@Pt-lipid@lomi NPs 在手术后动物模型中减少了转移。虽然当被重新定位为免疫调节药物时,调节胆固醇的药物在疗效上受到限制,但这种由 MCL 组成的 NP 策略表明有潜力将这些药物有效递送到靶 CTC 簇。

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