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Epithelial basement membrane injury and regeneration modulates corneal fibrosis after pseudomonas corneal ulcers in rabbits

机译:兔假单胞菌角膜溃疡后上皮基底膜损伤和再生调节角膜纤维化

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摘要

The purpose of this study was to investigate whether myofibroblast-related fibrosis (scarring) after microbial keratitis was modulated by the epithelial basement membrane (EBM) injury and regeneration. Rabbits were infected with Pseudomonas aeruginosa after epithelial scrape injury and the resultant severe keratitis was treated with topical tobramycin. Corneas were analyzed from one to four months after keratitis with slit lamp photos, immunohistochemistry for alpha-smooth muscle actin (α-SMA) and monocyte lineage marker CD11b, and transmission electron microscopy. At one month after keratitis, corneas had no detectible EBM lamina lucida or lamina densa, and the central stroma was packed with myofibroblasts that in some eyes extended to the posterior corneal surface with damage to Descemet’s membrane and the endothelium. At one month, a nest of stromal cells in the midst of the SMA+ myofibroblasts in the stroma that were CD11b+ may be fibrocyte precursors to myofibroblasts. At two to four months after keratitis, the EBM fully-regenerated and myofibroblasts disappeared from the anterior 60 to 90% of the stroma of all corneas, except for one four-month post-keratitis cornea where anterior myofibroblasts were still present in one localized pocket in the cornea. The organization of the stromal extracellular matrix also became less disorganized from two to four months after keratitis but remained abnormal compared to controls at the last time point. Myofibroblasts persisted in the posterior 10% to 20% of posterior stroma even at four months after keratitis in the central cornea where Descemet’s membrane and the endothelium were damaged. This study suggests that the EBM has a critical role in modulating myofibroblast development and fibrosis after keratitis—similar to the role of EBM in fibrosis after photorefractive keratectomy. Damage to EBM likely allows epithelium-derived transforming growth factor beta (TGFβ) to penetrate the stroma and drive development and persistence of myofibroblasts. Eventual repair of EBM leads to myofibroblast apoptosis when the cells are deprived of requisite TGFβ to maintain viability. The endothelium and Descemet’s membrane may serve a similar function modulating TGFβ penetration into the posterior stroma—with the source of TGFβ likely being the aqueous humor.
机译:这项研究的目的是调查是否由上皮基底膜(EBM)损伤和再生调节了微生物性角膜炎后肌成纤维细胞相关的纤维化(瘢痕形成)。上皮刮擦损伤后,兔子被铜绿假单胞菌感染,并用局部妥布霉素治疗所产生的严重角膜炎。使用裂隙灯照片,α-平滑肌肌动蛋白(α-SMA)和单核细胞谱系标记CD11b的免疫组织化学以及透射电镜对角膜炎后1至4个月的角膜进行分析。角膜炎发生后的一个月,角膜没有可检测到的EBM层状透明层或层状浓密层,中央基质中充斥着成肌纤维细胞,在某些眼中延伸至角膜后表面,损害了Descemet的膜和内皮。一个月后,基质中SMA +肌成纤维细胞中间的基质细胞巢(CD11b +)可能是肌成纤维细胞的纤维细胞前体。角膜炎后两到四个月,EBM完全再生,成肌纤维细胞从所有角膜的前60%至90%消失,除了一个角膜炎后四个月的角膜中,一个局部口袋中仍存在前成纤维细胞在角膜上。角膜炎后两到四个月,基质细胞外基质的组织也变得较少混乱,但与最后一个时间点的对照相比仍保持异常。即使在Descemet膜和内皮受损的中央角膜角膜炎后四个月,肌成纤维细胞仍持续存在于后基质的10%至20%。这项研究表明,EBM在调节角膜炎后肌成纤维细胞的发育和纤维化中起着至关重要的作用-类似于EBM在屈光性角膜切除术后在纤维化中的作用。对EBM的损害可能使上皮衍生的转化生长因子β(TGFβ)穿透基质并驱动成肌纤维细胞的发育和持久性。当细胞缺乏维持生存力所需的TGFβ时,EBM的最终修复会导致成纤维细胞凋亡。内皮和Descemet的膜可能具有类似的功能,调节TGFβ渗透到后基质中-TGFβ的来源可能是房水。

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