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Haikun Shenxi Capsule Alleviates Renal Fibrosis in CKD Mice by Targeting the METTL3/IGF2BP3-Mediated m6A Modification of NKD2.

Created on 22 Aug 2026

Authors

Mingjia Gu, Le Yang, Anjing Xu, Neng Bao, Ying Ni, Fang Cao, Xuejing Gu, Kejian Wen, Xiaolan Cheng

Published in

Mediators of inflammation. Volume 2026. Issue 1. Pages e4365859.

Abstract

Renal fibrosis is a central pathological process in chronic kidney disease (CKD). Although Haikun Shenxi Capsule (HKSX) has shown clinical efficacy in CKD, its precise molecular targets and mechanisms remain unclear.
This study aims to determine whether HKSX exerts antifibrotic effects in CKD by modulating NKD2 expression via METTL3-mediated m6A pathway.
A CKD mouse model was established by unilateral ureteral obstruction (UUO). Mice were divided into Sham, Model, low-dose HKSX, high-dose HKSX, and positive drug groups. Renal pathology and fibrosis were assessed by H&E, Masson's trichrome, and Sirius red staining. Renal function was evaluated by measuring serum creatinine (Scr) and blood urea nitrogen (BUN) levels. Inflammatory cytokines, oxidative stress markers, apoptosis-related proteins, fibrotic markers, NKD2, and METTL3 were detected by ELISA, qPCR, and Western blotting. Global m6A levels and NKD2 mRNA-specific m6A enrichment were measured by colorimetric assay and MeRIP-qPCR, respectively. Renal-specific METTL3-overexpressing mice were generated via lentivirus to validate target dependency. The role of the m6A reader IGF2BP3 was investigated using RIP-qPCR.
HKSX significantly improved renal function and attenuated renal pathological injury, inflammation, oxidative stress, apoptosis, and fibrosis in UUO mice. Mechanistically, HKSX dose-dependently downregulated METTL3 expression, reduced both global renal m6A levels and NKD2 mRNA-specific m6A modification, and consequently inhibiting NKD2 overexpression. The protective effects of HKSX were largely abrogated in METTL3-overexpressing CKD mice. Furthermore, HKSX specifically inhibited the expression of the m6A reader IGF2BP3 and its binding to NKD2 mRNA.
This study demonstrates that HKSX alleviates renal fibrosis by inhibiting METTL3, which reduces m6A modification on NKD2 mRNA, and by downregulating the stability reader IGF2BP3. These effects collectively decrease NKD2 mRNA stability and protein expression. These findings reveal a novel epitranscriptomic mechanism of HKSX and identify the METTL3/IGF2BP3/NKD2 axis as a key therapeutic pathway in CKD.

PMID:
42630115
Bibliographic data and abstract were imported from PubMed on 22 Aug 2026.

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