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Accumulation of tissue inhibitor of metalloproteinases-3 in human eyes with Sorsbys fundus dystrophy or retinitis pigmentosa

机译:Sorsby眼底营养不良或色素性视网膜炎在人眼中积累金属蛋白酶3的组织抑制剂

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摘要

BACKGROUND/AIMS—Tissue inhibitor of metalloproteinases-3 (TIMP-3) is normally synthesised by the retinal pigment epithelium (RPE) and deposited in Bruch's membrane. Mutations in the TIMP3 gene cause Sorsby's fundus dystrophy (SFD), which is characterised by thickening of Bruch's membrane, choroidal neovascularisation, and photoreceptor degeneration. To elucidate the role of TIMP-3 in human retinal degenerative diseases, we immunolocalised TIMP-3 in eyes with SFD caused by the Ser-181-Cys TIMP3 gene mutation or retinitis pigmentosa (RP; not caused by TIMP3 mutations).
METHODS—Standard light microscopic immunocytochemistry, including antigen retrieval, was used to localise TIMP-3 in paraffin sections of human eyes: two with SFD, three with different genetic forms of RP, and two normal.
RESULTS—In the SFD eyes, the thickened Bruch's membrane was strongly TIMP-3 positive except where RPE cells had degenerated. Similarly, in the RP eyes, Bruch's membrane was TIMP-3 positive except where RPE cells were lost, consistent with ongoing RPE mediated turnover of TIMP-3 in this region. In areas of total photoreceptor loss, migrated RPE cells formed cuffs around blood vessels in the RP retinas. Thick, TIMP-3 positive extracellular matrix (ECM) deposits associated with the migrated RPE cells occluded some vascular lumina, correlating with the observed loss of inner retinal neurons in RP.
CONCLUSIONS—TIMP-3 is a component of the increased ECM sequestered in Bruch's membrane in SFD. Further information is needed on normal TIMP-3/ECM interactions in Bruch's membrane and the effect of mutant TIMP-3 on this process. The finding of TIMP-3 accumulations in retinas with RP not caused by TIMP-3 mutations emphasises the importance of ECM remodelling in normal and diseased human eyes.

Keywords: tissue inhibitor of metalloproteinases-3; Sorsby's fundus dystrophy; retinitis pigmentosa; inherited retinal diseases
机译:背景/目的—金属蛋白酶3(TIMP-3)的组织抑制剂通常由视网膜色素上皮(RPE)合成并沉积在布鲁赫膜中。 TIMP3基因的突变会导致Sorsby的眼底营养不良(SFD),其特征在于Bruch膜增厚,脉络膜新生血管形成和感光细胞变性。为阐明TIMP-3在人视网膜变性疾病中的作用,我们将TIMP-3免疫定位于由Ser-181-Cys TIMP3基因突变或色素性视网膜炎(RP;不是由TIMP3突变引起)引起的SFD眼中。 >方法-使用标准的光学显微免疫细胞化学方法,包括抗原回收,将TIMP-3定位在人眼石蜡切片中:两个具有SFD,三个具有不同的遗传形式RP,并且两个呈正常状态。
结果—在SFD眼中,除了RPE细胞已经退化的地方以外,增厚的Bruch膜强烈呈TIMP-3阳性。同样,在RP眼中,除了丢失RPE细胞的地方以外,布鲁赫膜的TIMP-3阳性,这与该区域正在进行的RPE介导的TIMP-3转换有关。在全部光感受器丧失的区域,迁移的RPE细胞在RP视网膜的血管周围形成袖带。与迁移的RPE细胞相关的厚厚的TIMP-3阳性细胞外基质(ECM)沉积物阻塞了一些血管腔,与观察到的RP中视网膜内部神经元的丢失有关。
结论—TIMP-3是增加的一部分在SFD中,ECM被隔离在Bruch的膜中。需要更多有关Bruch膜中正常TIMP-3 / ECM相互作用以及突变TIMP-3对这一过程的影响的信息。并非由TIMP-3突变引起的RP视网膜中TIMP-3积累的发现强调了ECM重塑在正常和患病的人眼中的重要性。

关键词:金属蛋白酶3组织抑制剂索斯比眼底营养不良;色素性视网膜炎;遗传性视网膜疾病

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