增生性玻璃体-视网膜疾病:体内和体外实验模型。

Acta ophthalmologica. Supplement Pub Date : 1992-01-01
B Martini
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引用次数: 0

摘要

本论文的目的是发展,完善和评估增殖性玻璃体-视网膜疾病研究的实验模型。在灵长类动物眼中,玻璃体内注射一种微粒胶体溶液,产生眼内细胞侵袭、细胞增殖、新生血管形成、胶原合成和牵引性视网膜脱离等病理变化。在一个单独的灵长类动物模型激光诱导视网膜下新生血管,巨噬细胞的起源和发生进行了评估。检查采用眼镜、裂隙灯显微镜、光镜和透射电镜。采用细胞培养法,采用Coulter计数法研究玻璃体和巨噬细胞对培养视网膜色素上皮细胞(RPE)和成纤维细胞增殖的影响。用相显微术记录了形态学变化。利用酶消化和放射性标记技术,对巨噬细胞调节的RPE细胞和玻璃体调节的RPE细胞的纤维蛋白胞外基质沉积进行了定量估计。用间接免疫荧光法对玻璃体调节培养沉积在细胞外基质中的胶原蛋白类型进行定性分析。最后利用新开发的RPE细胞特异性单克隆抗体,采用亲和素-生物素-过氧化物酶标记技术检测巨噬细胞调节和非调节RPE细胞的表型表位表达。一个新的实验体内模型的病理变化,表征增殖性玻璃体视网膜疾病在灵长类动物的眼睛被开发。在激光诱导视网膜下新生血管模型中,巨噬细胞主要来自体循环。通过细胞培养,我们发现巨噬细胞条件培养基和玻璃体液分别或联合对RPE细胞和成纤维细胞产生有丝分裂作用。两种刺激对两种细胞系的联合作用是相加的,而不是协同的。当与巨噬细胞条件培养基或玻璃体孵育时,RPE细胞表现出向梭状、纺锤状细胞的化生转化,在形态上与成纤维细胞难以区分。与未调节的对照相比,巨噬细胞调节的RPE细胞的细胞外基质也转化为更有条纹的模式。当实验刺激、巨噬细胞条件培养基或玻璃体停止时,培养的RPE细胞的化生转化恢复。本文还介绍了一种新的体外评价RPE细胞在细胞外基质中纤维蛋白沉积的方法。通过巨噬细胞条件培养基或玻璃体调节的RPE细胞,每个细胞沉积的纤维蛋白较少。(摘要删节为400字)
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Proliferative vitreo-retinal disorders: experimental models in vivo and in vitro.

The aim of the present thesis was to develop, refine, and assess experimental models for the study of proliferative vitreo-retinal disorders. An intravitreal injection of a colloidal solution of microparticles was used in the primate eye to produce pathologic changes including intraocular cell invasion, cell proliferation, neovascularization, collagen synthesis, and tractional retinal detachment. In a separate primate model for laser-induced subretinal neovascularization, the origin and the occurrence of macrophages was evaluated. Examinations were performed using ophthalmoscopy, slit-lamp microscopy, light microscopy, and transmission electron microscopy. Cell cultures were employed to study the effects of vitreous humor and macrophages on the proliferation of cultured retinal pigment epithelial (RPE) cells and cultured fibroblasts using a Coulter counter. Morphologic changes were documented by phase micrography. A quantitative estimation of the extracellular matrix deposition of fibrous proteins by macrophage-modulated RPE cells as well as by vitreous-modulated RPE cells was done using enzymatic digestion and radioactive labeling techniques. A qualitative analysis of the types of collagen that was deposited in the extracellular matrices by vitreous modulated cultures was also made using indirect immunofluorescence. Using a newly developed RPE cell specific monoclonal antibody, the avidin-biotin-peroxidase labeling technique was finally employed to test the phenotypic epitope expression of macrophage-modulated and non-modulated RPE cells. A new experimental in vivo model for pathologic changes that characterize proliferative vitreo-retinal disorders was developed in the primate eye. In the model for laser-induced subretinal neovascularization, macrophages were shown to be principally recruited from the systemic circulation. Using cell cultures, it was found that both macrophage-conditioned medium and vitreous humor, separately or combined, exert mitogenic effects on RPE cells and fibroblasts. The combined effect of the two stimuli was additive, but not synergistic, on both cell lines. When incubated with macrophage-conditioned culture medium or vitreous humor, RPE cells exhibited a metaplastic transformation towards fusiform, spindle-shaped cells that were morphologically indistinguishable from fibroblasts. The extracellular matrices of RPE cells modulated by macrophage-conditioned medium also appeared converted to a more striated pattern as compared to non-modulated controls. The metaplastic transformation of cultured RPE cells reverted when experimental stimuli, macrophage-conditioned medium or vitreous humor, were withdrawn. A new in vitro method for evaluating fibrous protein deposition in the extracellular matrix by RPE cells was also described. RPE cells, that were modulated by macrophage-conditioned medium or vitreous humor, deposited less fibrous proteins per cell.(ABSTRACT TRUNCATED AT 400 WORDS)

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