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Updated: Aug 19, 2025

In Silico Identification and Characterization of circRNAs During Host-Pathogen Interactions
Published on: October 21, 2022
Suppressing circ_0008494 inhibits HSCs activation by regulating the miR-185-3p/Col1a1 axis
Binbin Li1, Jiaming Zhou1,2, Yuanyuan Luo3
1Department of Pathology, Second Affiliated Hospital of Naval Medical University, Shanghai, China.
Insights
Circular RNAs (circRNAs) like circ_0008494 regulate hepatic fibrosis (HF). Suppressing circ_0008494 inhibits hepatic stellate cell activation via the miR-185-3p/collagen I alpha 1 chain (Col1a1) axis, offering a potential HF treatment target.
Area of Science:
- Molecular Biology
- Hepatology
- RNA Biology
Background:
- Hepatic fibrosis (HF) involves hepatic stellate cell (HSC) activation and extracellular matrix deposition.
- Current antifibrotic therapies are limited.
- Circular RNAs (circRNAs) emerge as key regulators in HF pathogenesis.
Purpose of the Study:
- To investigate the role of circ_0008494 in HF.
- To elucidate the regulatory mechanism of circ_0008494 involving miR-185-3p and collagen type I alpha 1 chain (Col1a1).
Main Methods:
- RNA sequencing for circRNA profiling.
- Fluorescence in situ hybridization for circ_0008494 localization.
- Bioinformatics, dual-luciferase reporter, AGO-RIP, and miRNA capture assays to confirm interactions.
- Functional experiments and rescue assays in a human HSC cell line.
Main Results:
- circ_0008494 was significantly over-expressed in human HF tissues and localized in HSC cytoplasm.
- circ_0008494 directly sponges miR-185-3p.
- Suppression of circ_0008494 inhibited HSC activation, proliferation, and migration, while promoting apoptosis via miR-185-3p.
- Col1a1 was identified as a direct target of miR-185-3p; circ_0008494 knockdown reduced Col1a1 expression by releasing miR-185-3p.
Conclusions:
- Knockdown of circ_0008494 inhibits HSC activation through the miR-185-3p/Col1a1 axis.
- circ_0008494 represents a potential therapeutic target for hepatic fibrosis.
Abstract:
Background: Hepatic fibrosis (HF) is characterized by activation of hepatic stellate cells (HSCs) and extensive deposition of extracellular matrix components, especially collagens. However, effective antifibrotic therapies are still lacking. Recently, circular RNAs (circRNAs) have been identified as novel regulators of HF. Methods: circRNAs profile was screened by RNA sequencing and the location of circ_0008494 was confirmed by fluorescence in situ hybridization assay in human HF tissues. Bioinformatics analysis was used for result prediction and dual-luciferase reporter, together with AGO-RIP and biotin-coupled miRNA capture assays, were used to determine miR-185-3p/collagen type I alpha 1 chain (Col1a1) as the target of circ_0008494. A stable circ_0008494-interfering human HSCs cell line was constructed and used to determine the regulatory mechanism of circ_0008494/miR-185-3p/Col1a1 axis. Results: circ_0008494 was abundantly and significantly over-expressed in human HF tissues and located at the cytoplasm of HSCs. Together, dual-luciferase reporter, AGO-RIP and biotin-coupled miRNA capture assays confirmed that circ_0008494 acted as a sponge of miR-185-3p. Cell functional experiments and rescue assays demonstrated suppressing circ_0008494 could inhibit activation, proliferation, migration of HSCs and promote their apoptosis through miR-185-3p. In particular, the HF indicator, Col1a1, was validated as the direct target of miR-185-3p and the suppression of circ_0008494 inhibited the expression of Col1a1 by releasing miR-185-3p. Conclusion: Knocking down circ_0008494 inhibited HSCs activation through the miR-185-3p/Col1a1 axis. circ_0008494 could be a promising treatment target for HF.
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