The ANGPTL3-ANGPTL8 bispecific antibody attenuates adriamycin-induced chronic nephritis-like renal injury and fibrosis by suppressing the integrin αvβ3-STAT3 signaling axis

Chronic glomerulonephritis (CGN) is characterized by persistent renal inflammation and fibrosis, but its pathological spectrum is heterogeneous. Adriamycin-induced nephropathy is a commonly used podocyte injury-associated model that develops albuminuria, renal injury, and secondary inflammatory and fibrotic changes. Angiopoietin-like protein 3 (ANGPTL3) and angiopoietin-like protein 8 (ANGPTL8) are implicated in renal pathology, but their coordinated involvement and therapeutic targeting remain incompletely defined. This study aimed to construct an ANGPTL3-ANGPTL8 bispecific antibody (A3-A8) and evaluate its protective effects in an adriamycin-induced chronic nephritis-like model through the integrin αvβ3-STAT3 signaling axis. A rat adriamycin-induced nephropathy model was established as an experimental model of chronic nephritis-like renal injury, and glomerular RNA sequencing (RNA-seq) was performed to identify differentially expressed genes. The A3-A8 bispecific antibody was expressed in E. coli, purified, and characterized for thermal stability and binding affinity by surface plasmon resonance. In vitro s tudies used lipopolysaccharide (LPS)-treated human renal fibroblast cells with Cell Counting Kit-8 (CCK-8), flow cytometry, enzyme-linked immunosorbent assay (ELISA), immunofluorescence, and Western blot analyses. shRNA-mediated knockdown and overexpression were used for mechanistic validation. In vivo efficacy was assessed in model rats treated with A3-A8 with or without osteopontin (OPN), and additional renal tissue signaling, podocyte injury, albuminuria, and cilengitide intervention analyses were performed. ANGPTL3 and ANGPTL8 were markedly upregulated in the adriamycin-induced renal injury model. The bispecific antibody showed high thermal stability (Tm1 = 66.6 °C) and nanomolar-range binding affinities to both rat and human ANGPTL3 and ANGPTL8. It dose-dependently reduced apoptosis, inflammation (IL-1β, IL-6, TNF-α), and fibrosis markers (collagen I, fibronectin), while increasing cell viability. A3-A8 suppressed integrin αvβ3 and p-STAT3; αvβ3 overexpression reversed its effects, which were blocked by STAT3 knockdown. In vivo, A3-A8 attenuated renal fibrosis, inflammatory infiltration, albuminuria, podocyte injury, and renal dysfunction. Renal tissue Western blot (WB)/immunohistochemistry (IHC) and cilengitide intervention further supported involvement of the αvβ3-STAT3 axis. The A3-A8 bispecific antibody alleviates adriamycin-induced chronic nephritis-like renal injury and fibrosis, at least partly by inhibiting the integrin αvβ3-STAT3 axis, and represents a potential bispecific therapeutic candidate.

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Journal
Biology Direct
Published
2026-09-16
DOI
https://doi.org/10.1186/s13062-026-00952-8
Primary Topic
Lipid metabolism and disorders
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article

The ANGPTL3-ANGPTL8 bispecific antibody attenuates adriamycin-induced chronic nephritis-like renal injury and fibrosis by suppressing the integrin αvβ3-STAT3 signaling axis

Weina Wen, Wenbiao Chen, Yanping Chen, Hui Li et al.
Biology Direct
Lipid metabolism and disorders
article

The ANGPTL3-ANGPTL8 bispecific antibody attenuates adriamycin-induced chronic nephritis-like renal injury and fibrosis by suppressing the integrin αvβ3-STAT3 signaling axis

Weina Wen, Wenbiao Chen, Yanping Chen, Hui Li, Xiaomei Chen, Xiaofeng Chen, Jiangcai Long
article en

Abstract

Chronic glomerulonephritis (CGN) is characterized by persistent renal inflammation and fibrosis, but its pathological spectrum is heterogeneous. Adriamycin-induced nephropathy is a commonly used podocyte injury-associated model that develops albuminuria, renal injury, and secondary inflammatory and fibrotic changes. Angiopoietin-like protein 3 (ANGPTL3) and angiopoietin-like protein 8 (ANGPTL8) are implicated in renal pathology, but their coordinated involvement and therapeutic targeting remain incompletely defined. This study aimed to construct an ANGPTL3-ANGPTL8 bispecific antibody (A3-A8) and evaluate its protective effects in an adriamycin-induced chronic nephritis-like model through the integrin αvβ3-STAT3 signaling axis. A rat adriamycin-induced nephropathy model was established as an experimental model of chronic nephritis-like renal injury, and glomerular RNA sequencing (RNA-seq) was performed to identify differentially expressed genes. The A3-A8 bispecific antibody was expressed in E. coli, purified, and characterized for thermal stability and binding affinity by surface plasmon resonance. In vitro s tudies used lipopolysaccharide (LPS)-treated human renal fibroblast cells with Cell Counting Kit-8 (CCK-8), flow cytometry, enzyme-linked immunosorbent assay (ELISA), immunofluorescence, and Western blot analyses. shRNA-mediated knockdown and overexpression were used for mechanistic validation. In vivo efficacy was assessed in model rats treated with A3-A8 with or without osteopontin (OPN), and additional renal tissue signaling, podocyte injury, albuminuria, and cilengitide intervention analyses were performed. ANGPTL3 and ANGPTL8 were markedly upregulated in the adriamycin-induced renal injury model. The bispecific antibody showed high thermal stability (Tm1 = 66.6 °C) and nanomolar-range binding affinities to both rat and human ANGPTL3 and ANGPTL8. It dose-dependently reduced apoptosis, inflammation (IL-1β, IL-6, TNF-α), and fibrosis markers (collagen I, fibronectin), while increasing cell viability. A3-A8 suppressed integrin αvβ3 and p-STAT3; αvβ3 overexpression reversed its effects, which were blocked by STAT3 knockdown. In vivo, A3-A8 attenuated renal fibrosis, inflammatory infiltration, albuminuria, podocyte injury, and renal dysfunction. Renal tissue Western blot (WB)/immunohistochemistry (IHC) and cilengitide intervention further supported involvement of the αvβ3-STAT3 axis. The A3-A8 bispecific antibody alleviates adriamycin-induced chronic nephritis-like renal injury and fibrosis, at least partly by inhibiting the integrin αvβ3-STAT3 axis, and represents a potential bispecific therapeutic candidate.

Biology Direct
Southern University of Science and Technology (CN), Shenzhen Bao'an District People's Hospital (CN), Southern Medical University Shenzhen Hospital (CN), Shenzhen Luohu People's Hospital (CN), Shenzhen Second People's Hospital (CN)
Good health and well-being
Openalex Percentile: Top 11%
Lipid metabolism and disorders
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