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基于生物矿化聚多巴胺纳米粒子的海藻酸钠水凝胶用于递送抗丝氨酸/苏氨酸蛋白激酶 B-快速加速纤维肉瘤 siRNA 治疗转移性黑色素瘤。

Biomineralized Polydopamine Nanoparticle-Based Sodium Alginate Hydrogels for Delivery of Anti-serine/Threonine Protein Kinase B-Rapidly Accelerated Fibrosarcoma siRNA for Metastatic Melanoma Therapy.

机构信息

School of Medicine, Institute of Translational Medicine, Affiliated Hospital of Yangzhou University, Yangzhou University, Yangzhou, Jiangsu 225009, China.

Jiangsu Key Laboratory of Integrated Traditional Chinese and Western Medicine for Prevention and Treatment of Senile Diseases, Yangzhou, Jiangsu 225009, China.

出版信息

ACS Nano. 2023 Sep 26;17(18):18318-18331. doi: 10.1021/acsnano.3c05563. Epub 2023 Sep 10.

Abstract

Malignant melanoma, as a highly aggressive skin cancer, is strongly associated with mutations in serine/threonine protein kinase B-RAF (BRAF, where RAF stands for rapidly accelerated fibrosarcoma). Targeted therapy with anti-BRAF small interfering RNA (siBRAF) represents a crucial aspect of metastatic melanoma treatment. In this study, an injectable hydrogel platform based on sodium alginate (SA), with multifunctions of photothermal and Ca-overload cell apoptosis, was explored as a siBRAF carrier for metastatic melanoma therapy. We employed polydopamine nanoparticles (PDAs) as a photothermal core and constructed a calcium phosphate (CaP) shell via biomineralization (PDA@CaP) to load siBRAF (PDA@siBRAF/CaP). The pH-sensitive CaP shell facilitated the release of Ca under the weakly acidic tumor microenvironment, triggering the gelation of PDA@siBRAF/CaP-SA to localized release siBRAF at tumor sites with the interruption of the RAS-RAF-MEK-ERK (MAPK) pathway. Besides, the continuous release of Ca could also lead to Ca-overload cell apoptosis. Moreover, the photothermal effect of PDA regulated the release kinetics, resulting in coordinated therapeutic abilities of individual components in the PDA@siBRAF/CaP-SA hydrogels. Consequently, the effective inhibition of tumor growth and metastasis was achieved in vitro and in vivo using a highly metastatic melanoma cell line B16F10 as the model, by combining photothermal ablation, Ca overload, and BRAF silencing. Our work provides a proof-of-concept for an injectable hydrogel system that simultaneously targets multiple mechanisms involved in melanoma progression and has the potential to be translated into clinical use for the metastatic melanoma therapy.

摘要

恶性黑色素瘤是一种高度侵袭性的皮肤癌,与丝氨酸/苏氨酸蛋白激酶 B-RAF(BRAF,其中 RAF 代表快速加速纤维肉瘤)的突变密切相关。用抗-BRAF 小干扰 RNA(siBRAF)进行靶向治疗是转移性黑色素瘤治疗的一个关键方面。在这项研究中,探索了一种基于海藻酸钠(SA)的可注射水凝胶平台,该平台具有光热和钙超载细胞凋亡的多种功能,可用作转移性黑色素瘤治疗的 siBRAF 载体。我们使用聚多巴胺纳米粒子(PDAs)作为光热核心,并通过生物矿化构建了一个磷酸钙(CaP)壳(PDA@CaP)来装载 siBRAF(PDA@siBRAF/CaP)。pH 敏感的 CaP 壳在弱酸性肿瘤微环境下促进 Ca 的释放,触发 PDA@siBRAF/CaP-SA 的凝胶化,从而在肿瘤部位局部释放 siBRAF,同时中断 RAS-RAF-MEK-ERK(MAPK)通路。此外,Ca 的持续释放也可能导致钙超载细胞凋亡。此外,PDA 的光热效应调节了释放动力学,从而使 PDA@siBRAF/CaP-SA 水凝胶中各个成分的治疗能力达到协调。因此,使用高转移性黑色素瘤细胞系 B16F10 作为模型,在体外和体内均实现了对肿瘤生长和转移的有效抑制,这是通过光热消融、钙超载和 BRAF 沉默相结合实现的。我们的工作为一种可注射水凝胶系统提供了一个概念验证,该系统同时针对黑色素瘤进展中涉及的多种机制,并有潜力转化为临床应用,用于转移性黑色素瘤的治疗。

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