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通过原位微环境响应型一氧化氮纳米发生器靶向改善脓毒症诱导的心肌功能障碍。

Heart-targeted amelioration of sepsis-induced myocardial dysfunction by microenvironment responsive nitric oxide nanogenerators in situ.

机构信息

Department of Ultrasound Diagnosis, Second Xiangya Hospital, Central South University, Changsha, 410011, China.

Department of Ultrasound, Hunan Provincial People's Hospital, The First Affiliated of Hunan Normal University, No. 61 Jiefang Road (W), Changsha, China.

出版信息

J Nanobiotechnology. 2022 Jun 7;20(1):263. doi: 10.1186/s12951-022-01457-y.

Abstract

BACKGROUND

A balanced endogenous level of bioavailable nitric oxide (NO) plays a key role in maintaining cardiovascular homeostasis. The bioactive NO level in the cardiomyocytes was much reduced during sepsis. However, it is clinically challenging for the NO gas therapy due to the lack of spatial and temporal release system with precise control. The purpose of this study is to design a NO-releasing biomaterial with heart-targeted capability responsive to the infectious microenvironment, thus ameliorating lipopolysaccharide (LPS)-induced cardiac dysfunction.

RESULTS

The heart-targeted NO delivery and in situ releasing system, PCM-MSN@LA, was synthesized using hollow mesoporous silica nanoparticles (MSN) as the carrier, and L-arginine (LA) as the NO donor. The myocardial delivery was successfully directed to heart by specific peptide (PCM) combined with low-intensity focused ultrasound (LIFU) guidance. The myocardial system synthesized NO from the LA released from PCM-MSN@LA in the presence of increased endogenous nitric oxide synthase (NOS) activity induced by LPS. This targeted NO release in situ achieved extraordinary protective effects against LPS-challenged myocardial injury by reducing the recruitment of inflammatory cells, inhibiting oxidative stress and maintaining the mitochondria integrity. In particular, this protection was not compromised by simultaneous circulation collapse as an adverse event in the context.

CONCLUSIONS

PCM-MSN@LA + LIFU exhibited extraordinary cardioprotective effects against severe sepsis in the hearts of LPS-treated animals without the side effect of NO diffusion. This technology has great potential to be served as a novel therapeutic strategy for sepsis-induced myocardial injury.

摘要

背景

内源性生物可利用一氧化氮(NO)的平衡水平对于维持心血管稳态起着关键作用。脓毒症期间心肌细胞中的生物活性 NO 水平显著降低。然而,由于缺乏具有精确控制能力的时空释放系统,NO 气体治疗在临床上具有挑战性。本研究旨在设计一种具有心脏靶向能力的 NO 释放生物材料,该材料能够响应感染微环境,从而改善脂多糖(LPS)诱导的心脏功能障碍。

结果

使用中空介孔硅纳米粒子(MSN)作为载体,L-精氨酸(LA)作为 NO 供体,合成了具有心脏靶向性的 NO 递药和原位释放系统 PCM-MSN@LA。通过与低强度聚焦超声(LIFU)引导相结合的特定肽(PCM),成功将心肌递药导向心脏。心肌系统在 LPS 诱导的内源性一氧化氮合酶(NOS)活性增加的情况下,从 PCM-MSN@LA 中释放的 LA 合成 NO。这种靶向的原位 NO 释放通过减少炎症细胞的募集、抑制氧化应激和维持线粒体完整性,对 LPS 挑战的心肌损伤产生了非凡的保护作用。特别是,这种保护作用不会因同时发生的循环崩溃而受到影响,因为这是一种不良事件。

结论

PCM-MSN@LA+LIFU 在 LPS 处理的动物心脏中表现出对严重脓毒症的非凡心脏保护作用,而没有 NO 扩散的副作用。该技术具有作为治疗脓毒症诱导的心肌损伤的新型治疗策略的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3b7/9172147/c5fec2b138bd/12951_2022_1457_Fig1_HTML.jpg

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