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视网膜移植中的功能与结构。

Function and structure in retinal transplants.

作者信息

Adolph A R, Zucker C L, Ehinger B, Bergström A

机构信息

Schepens Eye Research Institute, Boston, MA 02114, USA.

出版信息

J Neural Transplant Plast. 1994 Jul-Sep;5(3):147-61. doi: 10.1155/NP.1994.147.

Abstract

Embryonic mammalian donor retina transplanted into the subretinal space of a mature host develops into a graft with well-organized, but atypical retinal structure. We tested the effect of this organization on rabbit-to-rabbit graft functional properties, isolating the graft to avoid contamination of graft responses by host retinal activity. Transient ON or ON-OFF spike-like responses and local electroretinograms (L-ERGs) were recorded simultaneously via a single electrode on the graft surface. These response components depended on stimulus diameter, sometimes in a way indicating antagonistic center-surround receptive field organization and spatial tuning (43%). Other times, the responses were an increasing function of stimulus diameter which saturated for large spots (57%). Response amplitudes were a monotonically-increasing function of light intensity over the narrow range tested. The L-ERGs were reminiscent of the proximal negative response or M-wave seen in normal retinas, which reflect light-induced amacrine cell activity. Thus, for the first time, we have shown that these subretinal grafts possess light-transduction and complex functional properties like those in normal retinas. They also possess the cellular complement and synaptic microcircuitry needed to form these physiological properties, Therefore, these results demonstrate a functional ability and capacity in transplants that is required if nerve cell transplantation surgery is to be done with therapeutic aims.

摘要

将胚胎期哺乳动物供体视网膜移植到成熟宿主的视网膜下间隙,会发育成具有组织结构良好但结构异常的视网膜的移植物。我们测试了这种组织结构对兔对兔移植物功能特性的影响,将移植物分离以避免宿主视网膜活动对移植物反应的干扰。通过移植物表面的单个电极同时记录瞬态ON或ON-OFF尖峰样反应和局部视网膜电图(L-ERG)。这些反应成分取决于刺激直径,有时表明存在拮抗的中心-周边感受野组织和空间调谐(43%)。其他时候,反应是刺激直径的递增函数,对于大光斑会饱和(57%)。在测试的窄光强范围内,反应幅度是光强的单调递增函数。L-ERG让人联想到正常视网膜中看到的近端负反应或M波,这反映了光诱导的无长突细胞活动。因此,我们首次表明,这些视网膜下移植物具有与正常视网膜类似的光转导和复杂功能特性。它们还拥有形成这些生理特性所需的细胞成分和突触微电路。因此,这些结果证明了移植体具有神经细胞移植手术要达到治疗目的所需的功能能力。

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