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May 23, 2026European Heart Journal3 citations

Intrapericardially injected hydrogel loaded with stromal cell secretome microparticles improves post-infarction myocardial repair in pigs

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YLYuan LiDZDashuai ZhuPTPanagiotis Tasoudis

Key Points

  • This study aims to assess the efficacy of a hydrogel-loaded stromal cell secretome in improving cardiac repair after myocardial infarction in pigs.
  • Myocardial infarction was induced using minimally invasive techniques.
  • RESCAT was delivered via intrapericardial injection in a porcine model.
  • Cardiac structure and function were assessed in vivo with subsequent histological evaluation.
  • RESCAT-treated pigs showed improved cardiac function and reduced infarct size compared to controls.
  • Enhanced cardiomyocyte cell-cycle activity was observed alongside functional state alterations.
  • Transcriptomic analysis revealed a cardiomyocyte subtype associated with the activation of the PI3K-Akt pathway.

Abstract

Abstract Background and Aims Myocardial infarction (MI) stands as a prominent manifestation of cardiovascular events. Most of the regenerative effects of stem cell therapies for MI are paracrine. A clinically translatable strategy that harnesses regenerative secretome while enabling minimally invasive delivery is needed. This study evaluated Regenerative Encapsulated Secretome as Cardiac Acellular Therapy (RESCAT), a formulation composed of cardiac stromal cell-derived secretome encapsulated in microparticles and embedded within a hyaluronic acid hydrogel, delivered via intrapericardial injection in a porcine model of MI. Methods MI was induced using minimally invasive techniques. RESCAT was administered through clinically feasible intrapericardial delivery. Cardiac structure and function were assessed longitudinally in vivo. After the endpoint, infarct size and cardiomyocyte cell-cycle activity were assessed with histology. Single-nucleus RNA sequencing was performed to characterize cardiomyocyte transcriptional states and identify molecular pathways associated with therapeutic response. Results RESCAT-treated pigs showed improved cardiac function and reduced infarct size compared with control groups. Enhanced cardiomyocyte cell-cycle activity and alterations in cardiomyocyte functional state were also observed. Single-nucleus transcriptomic analysis identified an FN1-expressing cardiomyocyte subtype linked to the activation of the PI3K-Akt pathway, which plays a role in cell survival and growth. Conclusions Intrapericardial delivery of RESCAT promotes functional and structural cardiac recovery in a clinically relevant porcine MI model. These findings support a minimally invasive, off-the-shelf acellular therapeutic strategy that enhances endogenous repair mechanisms and provides a foundation for translational development in ischaemic heart disease.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6a11471e48a409a3a49e03efhttps://doi.org/10.1093/eurheartj/ehag336
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