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Evidence of complement dysregulation in outer retina of Stargardt disease donor eyes

斯塔加德特病 视网膜 黄斑变性 医学 补体系统 疾病 视网膜 补语(音乐) ABCA4型 眼科 生物 神经科学 病理 免疫学 遗传学 表型 免疫系统 基因 互补
作者
Jane Hu,Gayle J. Pauer,Stephanie A. Hagstrom,Dean Bok,Meghan J. DeBenedictis,Vera L. Bonilha,Joe G. Hollyfield,Roxana A. Radu
出处
期刊:Redox biology [Elsevier BV]
卷期号:37: 101787-101787 被引量:23
标识
DOI:10.1016/j.redox.2020.101787
摘要

Stargardt macular degeneration (STGD) is a central blinding disease caused by loss of or dysfunctional ABCA4 transporter in both photoreceptors and retinal pigment epithelial (RPE) cells. Toxic bisretinoid-lipofuscin buildup in the RPE cells is a pathological hallmark of STGD patients and its mouse model, the Abca4-/-. These vitamin A-derived fluorophores have been shown to induce oxidative stress, stimulate complement activity, and cause chronic inflammation of the RPE. In vivo modulation of complement regulatory pathway in the STGD mouse model has partially rescued the STGD phenotype suggesting that complement attack on the RPE is an important etiologic factor in disease pathogenesis. While bisretinoid-dependent complement activation was further evidenced in cultured RPE cells, this pathway has never been investigated directly in the context of RPE from STGD donor eyes. In the current study, we evaluate the complement reactivity in postmortem donor eyes of clinically diagnosed STGD patients. All three STGD donor eyes RPE displayed strong immunoreactivity for an antibody specific to 4-Hydroxynonenal, a lipid peroxidation byproduct. Also, unlike the control eyes, all three STGD donor eyes showed significantly increased membrane attack complex deposition on the RPE cells. In STGD eyes, increased MAC accumulation was mirrored by elevated C3 fragments internalized by the RPE and inversely correlated with the levels of complement factor H, a major complement regulatory protein. Here, we report the first direct evidence of RPE complement dysregulation as a causative factor in developing Stargardt phenotype.

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