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一种基于介孔二氧化硅的柚皮素递送系统促进动脉粥样硬化中巨噬细胞M2极化

A Mesoporous Silica-Based Naringenin Delivery System Promoting Macrophage M2 Polarization in Atherosclerosis.

作者信息

Ren Shenhui, Liu Junchao, Pu Hongji, Wang Penghui, Wu Xiaodong, Qin Jinbao, Liu Xiaobing, Yin Minyi, Lu Xinwu, Li Bo, Zhao Zhen

机构信息

Department of Vascular Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200011, China.

Department of Vascular Surgery, Institute of Vascular Surgery, Zhongshan Hospital, Fudan University, Shanghai 200032, China.

出版信息

Biomater Res. 2025 Sep 8;29:0248. doi: 10.34133/bmr.0248. eCollection 2025.

Abstract

Atherosclerosis is the leading cause of global cardiovascular morbidity and mortality associated with inflammatory and immunological mechanisms. Immunotherapy has demonstrated promising efficacy in the management of atherosclerosis. Nevertheless, certain immunotherapeutic approaches are associated with limitations, including suboptimal efficacy and non-negligible adverse effects. Upon the pivotal role of macrophage phenotypes in atherosclerosis progression, naringenin-loaded manganese-doped mesoporous silica nanoparticles (MMSN@NAR) were designed and synthesized to reprogram M1 macrophages toward the M2 phenotype, thereby offering a potential therapeutic strategy for atherosclerosis treatment. High loading capacity of naringenin was achieved in MMSN carriers, with superior biocompatibility profiles compared to naringenin dissolved in dimethyl sulfoxide, while maintaining pH-dependent release behavior as demonstrated by dialysis assays. MMSN@NAR is preferentially phagocytosed by M1 macrophages, attenuates inflammatory responses, protects against oxidative stress, and promotes M2 polarization via the AMP-activated protein kinase (AMPK) pathway in vitro. In the ApoE mouse unilateral carotid artery ligation model of atherosclerosis, MMSN@NAR demonstrated marked accumulation in plaques and excellent biocompatibility. Compared to using naringenin or MMSN alone, it could further reduce plaque area by approximately 40% or 60% by inducing macrophage phenotype transformation, which was confirmed by section staining and immunofluorescence. Collectively, this study highlights enhanced macrophage M2 polarization inhibiting atherosclerosis by MMSN@NAR as a promising nanoplatform, offering a novel therapeutic approach based on anti-inflammatory immune regulation.

摘要

动脉粥样硬化是全球心血管疾病发病和死亡的主要原因,与炎症和免疫机制相关。免疫疗法在动脉粥样硬化的治疗中已显示出有前景的疗效。然而,某些免疫治疗方法存在局限性,包括疗效欠佳和不可忽视的不良反应。鉴于巨噬细胞表型在动脉粥样硬化进展中的关键作用,设计并合成了负载柚皮素的锰掺杂介孔二氧化硅纳米颗粒(MMSN@NAR),以将M1巨噬细胞重编程为M2表型,从而为动脉粥样硬化治疗提供一种潜在的治疗策略。MMSN载体实现了柚皮素的高负载量,与溶解在二甲基亚砜中的柚皮素相比,具有更好的生物相容性,同时透析试验表明其保持pH依赖性释放行为。MMSN@NAR优先被M1巨噬细胞吞噬,减轻炎症反应,抵御氧化应激,并在体外通过AMP激活的蛋白激酶(AMPK)途径促进M2极化。在动脉粥样硬化的ApoE小鼠单侧颈动脉结扎模型中,MMSN@NAR在斑块中显示出明显的蓄积和良好的生物相容性。与单独使用柚皮素或MMSN相比,它通过诱导巨噬细胞表型转化可进一步将斑块面积减少约40%或60%,切片染色和免疫荧光证实了这一点。总体而言,本研究强调了MMSN@NAR作为一种有前景的纳米平台增强巨噬细胞M2极化抑制动脉粥样硬化的作用,提供了一种基于抗炎免疫调节的新型治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d56/12415335/5c433678a0b4/bmr.0248.fig.001.jpg

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