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Research Article | Open Access

Decoupling local renin-angiotensin system inhibition from systemic effects: A neutrophil-mimetic, ROS-responsive nanocarrier for precision therapy of myocardial ischemia/reperfusion injury

Wusiman Yakufu1,2,§Yuekai Shi3,§Jinfeng Gao3,§Ayitongguli Aimaiti1,2Nueraili Kadi1,2Qiyu Li3Miribanguli Alifu1,2Aikebaier Yasen5Muhetaer Wubuli1,2Yang Pang1,3Su Li3Zhenzhen Huang1,2Rongrong Lu1,2Maimaitiaili Tuerxun1,2Reyimai Mutailipu1,2Abulimiti Jamali1,2Wumaierjiang Kelimu1,2Xianglin Tang3Qibing Wang3Yuqiong Chen4 ( )Abudureheman Mijiti1,2 ( )Zheyong Huang3 ( )Junbo Ge3
Kashi Prefecture Second People’s Hospital, Kashi 844000, China
The First Affiliated Hospital of Kashi University, Kashi 844000, China
Department of Cardiology, Zhongshan Hospital, Shanghai Institute of Cardiovascular Diseases, Fudan University, Shanghai 200032, China
The Affiliated Suzhou Hospital of Nanjing Medical University, Suzhou 215000, China
Kashi University School of Medicine, Kashi 844000, China

§ Wusiman Yakufu, Yuekai Shi, and Jinfeng Gao contributed equally to this work.

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Abstract

Myocardial ischaemia/reperfusion (MI/R) injury causes adverse cardiac remodelling by activating the local renin-angiotensin system (RAS). In this study, we engineered a neutrophil membrane-biomimetic nanocarrier that facilitates the reactive oxygen species (ROS)-responsive release of valsartan (NRLP-Val) to precisely target MI/R injury. This design leverages neutrophil-derived adhesion molecules for targeted delivery to the inflamed myocardium and promotes ROS-triggered drug release at the infarct site. NRLP-Val effectively traversed activated endothelium and protected cardiomyocytes from angiotensin II-induced mitochondrial dysfunction and apoptosis in vitro. In vivo, NRLP-Val demonstrated superior cardiac accumulation and a dose-dependent therapeutic profile in a murine MI/R model. Notably, the 8 mg/kg dose achieved maximal efficacy, which was statistically equivalent to that of the 12 mg/kg dose, in acutely reducing the infarct size, oxidative stress, apoptosis, and inflammation. Long-term treatment with 8 mg/kg NRLP-Val significantly inhibited fibrosis, improved ventricular remodelling, and restored cardiac function at 28 days, outperforming the non-targeted controls and free valsartan. The platform exhibited an excellent safety profile. Therefore, 8 mg/kg NRLP-Val is a promising and clinically translatable strategy for achieving potent local RAS inhibition without systemic compromise, offering a novel targeted therapeutic approach for ischaemic heart disease.

Graphical Abstract

This work reports the fabrication of NRLP-Val and its mechanism for targeted therapy of myocardial ischaemia/reperfusion injury. Neutrophil membrane vesicles were fused with a reactive oxygen species (ROS)-responsive lipid nanoparticle core loaded with valsartan (NRLP-Val). This biomimetic nanocarrier preferentially accumulated in the ischaemic myocardium and released valsartan in response to an elevated ROS microenvironment, thereby selectively inhibiting the local renin-angiotensin system to ameliorate myocardial ischaemia/reperfusion injury.

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Nano Research
Article number: 94908732

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Cite this article:
Yakufu W, Shi Y, Gao J, et al. Decoupling local renin-angiotensin system inhibition from systemic effects: A neutrophil-mimetic, ROS-responsive nanocarrier for precision therapy of myocardial ischemia/reperfusion injury. Nano Research, 2026, 19(8): 94908732. https://doi.org/10.26599/NR.2026.94908732
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Received: 17 January 2026
Revised: 09 April 2026
Accepted: 10 April 2026
Published: 29 June 2026
© The Author(s) 2026. Published by Tsinghua University Press.

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, https://creativecommons.org/licenses/by/4.0/).