Age related changes in hyaluronan expression leads to Meibomian gland dysfunction

睑板腺 透明质酸合成酶 下调和上调 细胞外基质 内分泌学 内科学 基因剔除小鼠 老化 生物 男科 病理 医学 化学 细胞生物学 外科 生物化学 受体 眼睑 基因
作者
Supriya Verma,Isabel Y. Moreno,Mingxia Sun,Tarsis F. Gesteira,Vivien J. Coulson‐Thomas
出处
期刊:Matrix Biology [Elsevier]
卷期号:124: 23-38 被引量:1
标识
DOI:10.1016/j.matbio.2023.11.002
摘要

The prevalence of dry eye disease (DED) ranges from ∼5 to 50 % and its associated symptoms decrease productivity and reduce the quality of life. Approximately 85 % of all DED cases are caused by Meibomian gland dysfunction (MGD). As humans and mice age, their Meibomian glands (MGs) undergo age-related changes resulting in age related-MGD (ARMGD). The precise cause of ARMGD remains elusive, which makes developing therapies extremely challenging. We previously demonstrated that a hyaluronan (HA)-rich matrix exists surrounding the MG, regulating MG morphogenesis and homeostasis. Herein, we investigated whether changes to the HA matrix in the MG throughout life contributes towards ARMGD, and whether altering this HA matrix can prevent ARMGD. For such, HA synthase (Has) knockout mice were aged and compared to age matched wild type (wt) mice. MG morphology, lipid production, PPARγ expression, basal cell proliferation, stem cells, presence of atrophic glands and MG dropout were analyzed at 8 weeks, 6 months, 1 year and 2 years of age and correlated with the composition of the HA matrix. We found that as mice age, there is a loss of HA expression in and surrounding the MGs of wt mice, while, in contrast, Has1−/−Has3−/− mice present a significant increase in HA expression through Has2 upregulation. At 1 year, Has1−/−Has3−/− mice present significantly enlarged MGs, compared to age-matched wt mice and compared to all adult mice. Thus, Has1−/−Has3−/− mice continue to develop new glandular tissue as they age, instead of suffering MG atrophy. At 2 years, Has1−/−Has3−/− mice continue to present significantly larger MGs compared to age-matched wt mice. Has1−/−Has3−/− mice present increased lipid production, increased PPARγ expression and an increase in the number of proliferating cells when compared to wt mice at all-time points analyzed. Taken together, our data shows that a loss of the HA matrix surrounding the MG as mice age contributes towards ARMGD, and increasing Has2 expression, and consequently HA levels, prevents ARMGD in mice.
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