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Neurite extension from rod bipolar cells in retinal cell and explant cultures

机译:视网膜细胞和外植体培养物中杆状双极细胞的神经突延伸

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One of the key requirements for the success of a subretinal prosthesis or photoreceptor transplant is the formation of an effective interface with the remaining neural retina. An optimal interface would be one where specific and highly efficient contacts were made with retinal neurons, presumably bipolar cells. Although the properties of neurite (particularly axonal) outgrowth have been extensively studied in retinal ganglion cells, comparatively little work has been done with other retinal neurons. The goal of the present research is to explore the survival and neurite outgrowth properties of a specific type of retinal cell, the rod bipolar cell (RBC), using in vitro culture preparations. RBCs are the most numerous of the several classes of bipolar cells in mammals, and would be a likely target of stimulation by any subretinal implant. We report here that RBCs in short term culture - as isolated cells or within retinal explants - extend their dendrites, and that these are often decorated with varicosities and smaller spine-like extensions. This response is similar to remodeling of RBCs observed in cat models of retinal detachment, and suggests it might be possible to manipulate RBCs with appropriate growth and guidance cues to form an optimal interface with subretinal devices or transplants.
机译:视网膜下假体或光感受器移植成功的关键要求之一是与剩余的神经视网膜形成有效的界面。最佳接口是与视网膜神经元(可能是双极细胞)进行特定且高效的接触的接口。尽管在视网膜神经节细胞中已经广泛研究了神经突(特别是轴突)生长的特性,但是对其他视网膜神经元所做的工作却相对较少。本研究的目的是使用体外培养制剂来探索特定类型的视网膜细胞杆状双极细胞(RBC)的存活和神经突生长特性。 RBC是哺乳动物双极细胞中几类中数量最多的,并且可能是任何视网膜下植入物刺激的靶标。我们在此报告,短期培养的红细胞-作为分离的细胞或在视网膜外植体中-扩展其树突,并且这些树突通常装饰有静脉曲张和较小的脊柱样延伸。这种反应类似于在视网膜脱离的猫模型中观察到的RBC的重塑,并表明可能可以通过适当的生长和引导线索来操纵RBC,以与视网膜下装置或移植物形成最佳界面。

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