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   <ref-type name="Journal Article">17</ref-type>
   <contributors>
    <authors>
     <author>Gareev, I.F.</author>
     <author>Beylerli, O.</author>
     <author>Sufianov, A.</author>
     <author>Gulieva, L.</author>
     <author>Pavlov, V.N.</author>
     <author>Shi, H.</author>
    </authors>
   </contributors>
   <titles>
    <title>MicroRNAs in the Regulation of Immune Response in Cardiovascular Diseases: New Diagnostic and Therapeutic Tools</title>
   </titles>
   <keywords>
    <keyword>cardiovascular diseases</keyword>
    <keyword>miRNAs</keyword>
    <keyword>miR-155</keyword>
    <keyword>immuno-miRs</keyword>
    <keyword>immune&#13;
system</keyword>
    <keyword>therapy</keyword>
    <keyword>diagnosis</keyword>
    <keyword>inflammation</keyword>
    <keyword>Scopus</keyword>
    <keyword>Белый список</keyword>
   </keywords>
   <dates>
    <year>2025</year>
    <pub-dates>
     <date>2026-05-03</date>
    </pub-dates>
   </dates>
   <doi>10.14218/GE.2025.00010</doi>
   <journal>Gene Expression</journal>
   <abstract>Cardiovascular diseases (CVDs) remain the leading cause of global morbidity and mortality, highlighting the urgent need for&#13;
innovative diagnostic and prognostic approaches to address their complex pathophysiology. Recent advances in molecular&#13;
cardiology have unveiled immune-derived microRNAs (miRNAs), or immuno-miRs, as pivotal regulators in the interplay between immune responses and cardiovascular pathology. Secreted by immune cells such as T lymphocytes, macrophages, and&#13;
neutrophils, these small non-coding RNAs modulate critical signaling pathways by regulating gene expression. Immuno-miRs&#13;
influence essential processes, including inflammation, endothelial dysfunction, and fibrotic remodeling—core mechanisms&#13;
underlying conditions such as atherosclerosis, myocardial infarction, and heart failure. Moreover, their presence in systemic&#13;
circulation within extracellular vesicles underscores their role in intercellular communication, impacting both immune and&#13;
non-immune cardiovascular cells, such as cardiomyocytes and endothelial cells. This dual functionality renders immunomiRs promising candidates as diagnostic biomarkers for early disease detection and as prognostic tools for assessing disease&#13;
progression and therapeutic efficacy. Furthermore, emerging miRNA-based interventions—such as miRNA mimics and inhibitors—show considerable promise in modulating immune dysregulation in CVDs, although clinical translation remains a&#13;
significant challenge. In this review, we comprehensively examine the regulatory roles of immuno-miRs in both innate and&#13;
adaptive immune responses and explore recent advancements in miRNA-based therapies. By consolidating current knowledge&#13;
and identifying existing gaps, we provide a comprehensive overview of the transformative potential of immuno-miRs in CVD&#13;
management. Integrating these molecules into personalized medicine may pave the way for more effective, targeted, and minimally invasive strategies to combat one of the world’s most pressing health challenges.</abstract>
   <urls>
    <web-urls>
     <url>https://repo.bashgmu.ru/publication/5246</url>
    </web-urls>
    <pdf-urls>
     <url>https://repo.bashgmu.ru/files/5432</url>
    </pdf-urls>
   </urls>
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