Cellular senescence promotes meibomian gland dysfunction in a chronic graft-versus-host disease mouse model

衰老 睑板腺 纤维化 移植物抗宿主病 免疫组织化学 炎症 病理 生物 医学 免疫学 眼睑 内科学 内分泌学 疾病 外科
作者
Shinri Sato,Yoko Ogawa,Eisuke Shimizu,Kazuki Asai,Taro Okazaki,Robert Rusch,Masatoshi Hirayama,Shigeto Shimmura,Kazuno Negishi,Kazuo Tsubota
出处
期刊:Ocular Surface [Elsevier]
卷期号:32: 198-210 被引量:1
标识
DOI:10.1016/j.jtos.2024.03.006
摘要

Aging is a well-established risk factor for meibomian gland dysfunction (MGD). We previously reported an accelerated cellular senescence phenomenon in the lacrimal glands of a murine model of chronic graft-versus-host disease (cGVHD). Herein, we aimed to elucidate the relationship between cellular senescence and MGD in cGVHD mice, utilizing the senolytic agent ABT-263.A cGVHD mouse model was established through allogeneic bone marrow transplantation (BMT) from B10.D2 to BALB/c mice. Subsequently, cGVHD mice were treated with either ABT-263 or vehicle. The eyelids of recipients were analyzed at 4-week intervals post-BMT in both groups.Meibomian gland (MG) area was significantly smaller in cGVHD mice than in syngeneic control mice. ABT-263-treated mice retained a significantly larger MG area than their vehicle-treated counterparts. Pathological and immunohistochemical examinations revealed significant reductions in eyelid tissue inflammation and pathological fibrosis in the ABT-263 group compared to that in the vehicle-treated group. Additionally, expression of DNA damage markers, senescent cell markers, and senescence-associated secretory phenotype (SASP) factors was elevated in the eyelids of cGVHD mice compared with that in syngeneic mice. The expression of these cellular senescence-associated molecules was considerably suppressed in ABT-263-treated eyelids compared to that in vehicle-treated ones.Cellular senescence, along with expression of SASP factors, exhibited increased activity in the eyelids, particularly in the MGs of cGVHD mice. ABT-263 mitigated the severity of MGD. These findings highlight the potential of targeting cellular senescence as an effective approach for MGD treatment in cGVHD.
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