TY - JOUR
T1 - Decreased scleral Wnt5ahi fibroblasts exacerbate myopia progression by disrupting extracellular matrix homeostasis in mice
AU - Zhu, He
AU - Chen, Wei
AU - Ling, Xuemei
AU - Jiao, Shiming
AU - Yu, Le
AU - Liu, Huihui
AU - Ding, Mengyi
AU - Zhang, Fan
AU - Zhou, Yixin
AU - Pan, Yulu
AU - Zhou, Zhonglou
AU - Qu, Jia
AU - Zhao, Fei
AU - Zhao, Fuxin
AU - Zhou, Xiangtian
N1 - Publisher Copyright:
© The Author(s) 2025.
PY - 2026/12
Y1 - 2026/12
N2 - Myopia is a common refractive error with high prevalence; its pathogenesis is poorly understood. Scleral single-cell RNA sequencing is used to determine whether there is an association between phenotypic heterogeneity of scleral fibroblasts and form-deprivation myopia in male mice. The number of unique Wnt5a-positive scleral fibroblasts is markedly lower in the form-deprived eyes, specifically in the temporal inner peripapillary sclera. Inhibition of Wnt5a expression by injection of shWnt5a-AAV within Tenon’s capsule causes increased myopia progression, while decreasing COL1A1 protein content and collagen fibril diameter. Integrating scleral bulk RNA-seq data from shWnt5a-AAV injected male mice with data from scleral single-cell RNA sequencing in form-deprivation myopia mice, implicates the Sparc gene as a key downstream target of the Wnt5a signalling pathway. Tenon’s capsule injection of shSparc-AAV induces myopia, decreases scleral COL1A1 content, and reduces collagen fibril diameter. These results demonstrate that scleral-specific fibroblasts manifesting high Wnt5a expression (Wnt5ahi fibroblast) modulate homeostasis of the extracellular matrix, thus promoting myopia progression.
AB - Myopia is a common refractive error with high prevalence; its pathogenesis is poorly understood. Scleral single-cell RNA sequencing is used to determine whether there is an association between phenotypic heterogeneity of scleral fibroblasts and form-deprivation myopia in male mice. The number of unique Wnt5a-positive scleral fibroblasts is markedly lower in the form-deprived eyes, specifically in the temporal inner peripapillary sclera. Inhibition of Wnt5a expression by injection of shWnt5a-AAV within Tenon’s capsule causes increased myopia progression, while decreasing COL1A1 protein content and collagen fibril diameter. Integrating scleral bulk RNA-seq data from shWnt5a-AAV injected male mice with data from scleral single-cell RNA sequencing in form-deprivation myopia mice, implicates the Sparc gene as a key downstream target of the Wnt5a signalling pathway. Tenon’s capsule injection of shSparc-AAV induces myopia, decreases scleral COL1A1 content, and reduces collagen fibril diameter. These results demonstrate that scleral-specific fibroblasts manifesting high Wnt5a expression (Wnt5ahi fibroblast) modulate homeostasis of the extracellular matrix, thus promoting myopia progression.
UR - https://www.scopus.com/pages/publications/105027689382
U2 - 10.1038/s41467-025-67246-x
DO - 10.1038/s41467-025-67246-x
M3 - 文章
C2 - 41402314
AN - SCOPUS:105027689382
SN - 2041-1723
VL - 17
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 554
ER -