硫芥角膜损伤与上皮基底膜和基质细胞外基质的改变有关。

IF 2.8 4区 医学 Q2 PATHOLOGY Experimental and molecular pathology Pub Date : 2022-10-01 DOI:10.1016/j.yexmp.2022.104807
Laurie B. Joseph , Marion K. Gordon , Peihong Zhou , Rita A. Hahn , Hamdi Lababidi , Claire R. Croutch , Patrick J. Sinko , Diane E. Heck , Debra L. Laskin , Jeffrey D. Laskin
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引用次数: 3

摘要

硫芥(SM;双(2-氯乙基)硫化物)是一种用于化学战的高活性双功能烷基化剂。眼睛对SM特别敏感,根据暴露的剂量和持续时间,SM会引起刺激、疼痛、畏光和睑缘炎。在这些研究中,我们检测了SM蒸汽对新西兰雄性大白鼠角膜的影响。在暴露于SM的一天内,观察到角膜水肿和模糊,这是急性损伤的迹象,随后是新生血管形成,这是慢性或晚期病理的迹象,持续了至少28天。观察到明显的上皮-基质分离,范围为上皮表面的~8-17%。在基质中,CD45+白细胞显著增加,角化细胞减少,胶原纤维紊乱。SM还破坏了角膜基底膜,并改变了perlecan(一种硫酸乙酰肝素蛋白多糖)和细胞纤连蛋白(一种细胞外基质糖蛋白)的表达。这与包括ADAM17在内的基底膜基质金属蛋白酶的增加有关,ADAM17在伤口愈合过程中对基底膜的重塑很重要。Tenascin-C,一种细胞外基质糖蛋白,在SM后14-28天在基质中也上调,这一发现与其在组织角膜透明所需的基质结构成分中的作用一致。这些数据表明SM蒸汽会导致角膜结构成分的持续变化。SM诱导的兔角膜损伤的进一步表征将有助于确定眼部对抗措施的靶点。
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Sulfur mustard corneal injury is associated with alterations in the epithelial basement membrane and stromal extracellular matrix

Sulfur mustard (SM; bis(2-chloroethyl) sulfide) is a highly reactive bifunctional alkylating agent synthesized for chemical warfare. The eyes are particularly sensitive to SM where it causes irritation, pain, photophobia, and blepharitis, depending on the dose and duration of exposure. In these studies, we examined the effects of SM vapor on the corneas of New Zealand white male rabbits. Edema and hazing of the cornea, signs of acute injury, were observed within one day of exposure to SM, followed by neovascularization, a sign of chronic or late phase pathology, which persisted for at least 28 days. Significant epithelial-stromal separation ranging from ~8–17% of the epithelial surface was observed. In the stroma, there was a marked increase in CD45+ leukocytes and a decrease of keratocytes, along with areas of disorganization of collagen fibers. SM also disrupted the corneal basement membrane and altered the expression of perlecan, a heparan sulfate proteoglycan, and cellular fibronectin, an extracellular matrix glycoprotein. This was associated with an increase in basement membrane matrix metalloproteinases including ADAM17, which is important in remodeling of the basement membrane during wound healing. Tenascin-C, an extracellular matrix glycoprotein, was also upregulated in the stroma 14–28 d post SM, a finding consistent with its role in organizing structural components of the stroma necessary for corneal transparency. These data demonstrate that SM vapor causes persistent alterations in structural components of the cornea. Further characterization of SM-induced injury in rabbit cornea will be useful for the identification of targets for the development of ocular countermeasures.

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来源期刊
CiteScore
8.90
自引率
0.00%
发文量
78
审稿时长
11.5 weeks
期刊介绍: Under new editorial leadership, Experimental and Molecular Pathology presents original articles on disease processes in relation to structural and biochemical alterations in mammalian tissues and fluids and on the application of newer techniques of molecular biology to problems of pathology in humans and other animals. The journal also publishes selected interpretive synthesis reviews by bench level investigators working at the "cutting edge" of contemporary research in pathology. In addition, special thematic issues present original research reports that unravel some of Nature''s most jealously guarded secrets on the pathologic basis of disease. Research Areas include: Stem cells; Neoangiogenesis; Molecular diagnostics; Polymerase chain reaction; In situ hybridization; DNA sequencing; Cell receptors; Carcinogenesis; Pathobiology of neoplasia; Complex infectious diseases; Transplantation; Cytokines; Flow cytomeric analysis; Inflammation; Cellular injury; Immunology and hypersensitivity; Athersclerosis.
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