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September 28, 2025Advanced Functional Materials4 citations

Sialylated Macrophage Nano‐Decoys Mitigate Inflammatory‐ROS Microenvironment and Reprogram Endothelial Function in Myocardial Infarction

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XHXinman HuCHChengbin HePZPing Zeng

Key Points

  • Treatment with NIC@PTSA inhibited oxidative stress and improved endothelial function in myocardial infarction.
  • The nano-decoys showed effective ROS-scavenging abilities and sustained release of nicorandil in damaged myocardial tissue.
  • This innovative therapy mitigates inflammation and enhances vascularization, providing a potential solution for myocardial infarction.
  • The study presents a new strategy using nano-decoys for effective myocardial infarction therapy with promising in vivo results.

Abstract

Abstract Myocardial infarction (MI) induces the infiltration of abundant immune cells, such as macrophages, and thereby elevated inflammation characterized by elevated reactive oxygen species (ROS), which leads to dysfunction of myocardial microvessels and exacerbates myocardial ischemia and necrosis. Intravenously injected drugs hardly remain in the MI region of the heart, whereas hydrogels or cardiac patches need a complicated thoracotomy. In this study, a ROS‐scavenging polyurethane nano‐decoys (NDs) modified with N‐acetylneuraminic acid (sialic acid, SA) (PTSA) is developed for therapy of MI via convenient intravenous injection. Due to the high affinity of SA to macrophages, PTSA is better camouflaged to avoid fast immune clearance, allowing long‐term retention in the damaged myocardium. The loaded nicorandil (NIC) could be faster released in response to ROS environment, which in turn scavenged ROS and alleviated the inflammation. The NIC@PTSA effectively inhibited abnormal mitochondrial function and apoptosis of cardiomyocytes in vitro. Under the synergistic effect of ROS‐scavenging and NIC release, the function of endothelial cells is reprogrammed, promoting the process of vascularization. Treatment of NIC@PTSA in vivo significantly reduced oxidative stress, promoted angiogenesis, and inhibited adverse ventricular remodeling. These multifunctional NDs provide an effective strategy for MI therapy, especially from the viewpoint of realistic application.

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Cite This Study

Hu et al. (2025) studied this question.

synapsesocial.com/papers/68d90bc941e1c178a14f72aahttps://doi.org/10.1002/adfm.202508455
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