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尽管相邻的突变型视锥细胞发生了退化,但野生型视锥细胞仍然存在。

Wild-type cone photoreceptors persist despite neighboring mutant cone degeneration.

机构信息

Department of Biochemistry, University of Washington, Seattle, Washington 98195, USA.

出版信息

J Neurosci. 2010 Jan 6;30(1):382-9. doi: 10.1523/JNEUROSCI.5019-09.2010.

Abstract

In many retinal diseases, the malfunction that results in photoreceptor loss occurs only in either rods or cones, but degeneration can progress from the affected cell type to its healthy neighbors. Specifically, in human and mouse models of Retinitis Pigmentosa the loss of rods results in the death of neighboring healthy cones. Significantly less is known about cone-initiated degenerations and their affect on neighboring cells. Sometimes rods remain normal after cone death, whereas other patients experience a loss of scotopic vision over time. The affect of cone death on neighboring cones is unknown. The zebrafish is a cone-rich animal model in which the potential for dying cones to kill neighboring healthy cones can be evaluated. We previously reported that the zebrafish cone phosphodiesterase mutant (pde6c(w59)) displays a rapid death of cones soon after their formation and a subsequent loss of rods in the central retina. In this study we examine morphological changes associated with cone death in vivo in pde6c(w59) fish. We then use blastulae transplantations to create chimeric fish with a photoreceptor layer of mixed wild-type (WT) and pde6c(w59) cones. We find that the death of inoperative cones does not cause neighboring WT cone loss. The survival of WT cones is independent of transplant size and location within the retina. Furthermore, transplanted WT cones persist at least several weeks after the initial death of dysfunctional mutant cones. Our results suggest a potential for the therapeutic transplantation of healthy cones into an environment of damaged cones.

摘要

在许多视网膜疾病中,导致光感受器丧失的功能障碍仅发生在视杆细胞或视锥细胞中,但退化可以从受影响的细胞类型进展到其健康的相邻细胞。具体来说,在人类和小鼠色素性视网膜炎模型中,视杆细胞的丧失导致相邻健康视锥细胞的死亡。关于视锥细胞引发的变性及其对视锥细胞相邻细胞的影响,人们知之甚少。有时在视锥细胞死亡后视杆细胞保持正常,而其他患者随着时间的推移会出现暗视力丧失。视锥细胞死亡对视锥细胞相邻细胞的影响尚不清楚。斑马鱼是一种富含视锥细胞的动物模型,可以评估死亡的视锥细胞对相邻健康视锥细胞的潜在影响。我们之前曾报道过,斑马鱼视锥细胞磷酸二酯酶突变体(pde6c(w59))在视锥细胞形成后不久迅速死亡,随后中央视网膜中的视杆细胞也会丧失。在这项研究中,我们在体内研究了 pde6c(w59)鱼中与视锥细胞死亡相关的形态变化。然后,我们使用胚泡移植来创建具有混合野生型(WT)和 pde6c(w59)视锥细胞的嵌合体鱼。我们发现失活视锥细胞的死亡不会导致相邻 WT 视锥细胞的丧失。WT 视锥细胞的存活与移植的大小和在视网膜内的位置无关。此外,在功能失调的突变体视锥细胞最初死亡后,至少数周后移植的 WT 视锥细胞仍然存在。我们的研究结果表明,将健康的视锥细胞移植到受损的视锥细胞环境中具有潜在的治疗作用。

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