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In patients with chronic hepatitis C virus (HCV) infection, viral hijacking of the host-cell biosynthetic pathways is associated with altered lipid metabolism, which contributes to disease progression and may influence antiviral response. We investigated the molecular interplay among four key regulators of lipid homeostasis [microRNA (miR)-122, miR-24, miR-223, and proprotein convertase subtilisin/kexin type 9 (PCSK9)] in HCV-infected patients (n=72) who achieved a treatment-based viral cure after interferon-based therapy with first-generation direct-acting antivirals. Real-time PCR was used to quantify microRNA plasma levels, and ELISA assays were used to determine plasma concentrations of PCSK9. We report that levels of miR-24 and miR-223 significantly increased in patients achieving sustained virologic response (SVR), whereas the levels of miR-122, a liver-specific cofactor for HCV infection, decreased in these patients. PCSK9 concentrations were significantly increased in SVRs, suggesting that PCSK9 may help impede viral infection. The modulatory effect of PCSK9 on HCV infection was also demonstrated in the context of HCV-infected Huh-7.5.1 cells employing recombinant human PCSK9 mutants. Together, these results provide insights into a novel coordinated interplay among three important molecular players in lipid homeostasis - circulating miR-24, miR-223 and PCSK9 - whose regulation is affected by HCV infection and treatment-based viral cure.
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http://dx.doi.org/10.1016/j.ebiom.2017.08.020 | DOI Listing |
Noncoding RNA Res
December 2025
Case Comprehensive Cancer Center, Case Western Reserve University, Cleveland, OH, USA.
Purpose: To verify the stability and reliability of circulating microRNA (miRNA) profiles in plasma and serum under different processing and storage conditions to inform future applications to circulating biomarker analyses.
Background: The development of blood-based methods for early disease detection has become increasingly desirable across various medical fields. RNA profiles have been investigated but have been a challenge due to rapid degradation of the analyte by ubiquitous RNases.
Int J Mol Sci
June 2025
Department of Pediatrics, Pediatric Nephrology and Allergology, Military Institute of Medicine-National Research Institute, 04-141 Warsaw, Poland.
Atopic dermatitis (AD) is a chronic inflammatory skin disease characterized by eczematous lesions and recurrent pruritus. The pathogenesis of AD involves epidermal barrier impairments, immune dysfunction, and both genetic and environmental factors. This review presents the latest findings regarding the involvement of microRNA (miRNA) molecules in AD pathogenesis and their potential application as diagnostic biomarkers and therapeutic targets.
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January 2025
Medical Research Center of Indonesia, Surabaya, Indonesia.
Iron Deficiency Anemia (IDA) remains a pervasive global health challenge, disproportionately affecting vulnerable populations such as women and children. This review explores the cutting-edge interplay between microRNAs (miRNAs) and proteins in erythropoiesis, highlighting novel therapeutic strategies for IDA. Emerging evidence underscores the pivotal role of miRNAs-such as miR-15a, miR-24, miR-150, and miR-223-in regulating erythropoiesis, with dysregulation linked to hematologic and systemic diseases.
View Article and Find Full Text PDFJ Cell Biochem
February 2025
Amity Institute of Biotechnology, Amity University Uttar Pradesh, Lucknow Campus, Lucknow, Uttar Pradesh, India.
MicroRNAs (miRNAs) have emerged as intricate players in rheumatoid arthritis (RA), holding promise as discerning biomarkers for diagnostic and prognostic purposes. The lack of sensitivity and specificity in current diagnostic techniques, such as rheumatoid factor (RF) and anti-citrullinated protein antibodies (ACPA), causes diagnosis delays in RA. The miR-146a and miR-155 act in inflammatory cascades and reduce joint deterioration, and miR-223 is paradoxical, acting differently in different illness scenarios.
View Article and Find Full Text PDFCurr Dev Nutr
September 2024
Department of Nutritional Sciences and Department of Pediatrics; University of Texas at Austin; Austin, TX, United States.
This study examined the acute effects of 7-d energy restriction normal-protein (NP; ∼15% of daily intake as protein) compared with higher-protein (HP; ∼38% of daily intake as protein) diets varying in quantities of fresh, lean beef on circulating miRNA expression associated with cardiometabolic disease in 16 women with overweight (mean ± SD; age: 35 ± 8.7 y; body mass index: 28.5 ± 1.
View Article and Find Full Text PDF