Exploring the theranostic potentials of miRNA and epigenetic networks in autoimmune diseases: A comprehensive review
- Sagnik Nag,
- Oishi Mitra,
- Garima Tripathi,
- Souvik Samanta,
- Bikramjit Bhattacharya,
- Priti Chandane
- Vellore Institute of Technology,
- University of Hyderabad,
- Yenepoya (Deemed to be University),
- Chandigarh University,
- Amity University Jharkhand,
- Uttaranchal University
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EnglishArticle number
e1121Journal (Volume, Issue Number)
Immunity, Inflammation and Disease (Volume 11, Issue 12)Publication milestones
- Published - 12/2023
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Publication IDs
- Scopus: 85181165318
- PubMed: 38156400
Abstract
Background: Autoimmune diseases (AD) are severe pathophysiological ailments that are stimulated by an exaggerated immunogenic response towards self-antigens, which can cause systemic or site-specific organ damage. An array of complex genetic and epigenetic facets majorly contributes to the progression of AD, thus providing significant insight into the regulatory mechanism of microRNA (miRNA). miRNAs are short, non-coding RNAs that have been identified as essential contributors to the post-transcriptional regulation of host genome expression and as crucial regulators of a myriad of biological processes such as immune homeostasis, T helper cell differentiation, central and peripheral tolerance, and immune cell development. Aims: This article tends to deliberate and conceptualize the brief pathogenesis and pertinent epigenetic regulatory mechanism as well as miRNA networks majorly affecting five different ADs namely rheumatoid arthritis (RA), type 1 diabetes, multiple sclerosis (MS), systemic lupus erythematosus (SLE) and inflammatory bowel disorder (IBD) thereby providing novel miRNA-based theranostic interventions. Results & Discussion: Pertaining to the differential expression of miRNA attributed in target tissues and cellular bodies of innate and adaptive immunity, a paradigm of scientific expeditions suggests an optimistic correlation between immunogenic dysfunction and miRNA alterations. Conclusion: Therefore, it is not astonishing that dysregulations in miRNA expression patterns are now recognized in a wide spectrum of disorders, establishing themselves as potential biomarkers and therapeutic targets. Owing to its theranostic potencies, miRNA targets have been widely utilized in the development of biosensors and other therapeutic molecules originating from the same.
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