Authors
Lei Zhang, Chaoqun Wei, Yifei Li, Jiahao Shi, Yuqi Chi, Yadi Zhang, Qingdong Bao, Wenlong Li, Xiaoxue Liu, Hua Gao
Published in
Investigative ophthalmology & visual science. Volume 67. Issue 10. Pages 19. Aug 03, 2026.
Abstract
Keratoconus (KC) is a multifactorial corneal degenerative disorder characterized by reduced extracellular matrix (ECM) and cellular content. This study investigates the role and mechanism of cellular communication network factor 1 (CCN1) in KC progression.
The expression of CCN1 was first examined in clinical samples using Western blot and immunofluorescence staining. A CCN1 overexpression cell model (OE CCN1) was then established by transfecting primary corneal stromal cells with CCN1 OE plasmids, and RNA sequencing was performed to identify downstream molecular pathways regulated by CCN1. Subsequently, multiple methodologies, including SA‑β‑Gal staining, enzyme‑linked immunosorbent assay (ELISA), qRT‑PCR, Western blot, immunofluorescence staining, flow cytometry, and transmission electron microscopy (TEM), were used to systematically evaluate the role of CCN1 in KC samples and corneal stromal cells.
CCN1 expression was significantly elevated in patients with KC. CCN1 OE markedly upregulated senescence and inflammatory pathways, increased expression of γH2AX, p16, p21, p53, and senescence-associated secretory phenotype (SASP) molecules. Additionally, CCN1 led to reactive oxygen species (ROS) accumulation, G2/M phase cell cycle arrest, enhanced apoptosis, lysosomal dysfunction, and matrix metalloproteinases (MMPs) OE, collectively contributing to ECM remodeling.
CCN1 plays a critical role in promoting corneal degeneration in KC and may serve as a potential therapeutic target to halt or slow disease progression.
PMID:
42565657
Bibliographic data and abstract were imported from PubMed on 07 Aug 2026.
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