Bonaventure N, Wioland N, Roussel G
Doc Ophthalmol. 1985 Oct 30;61(1):71-7. doi: 10.1007/BF00143218.
In both frog and chicken an intravitreal injection of the dextrorotatory (D)-isomer of alpha-aminoadipic acid (alpha-aaa) leads to a progressive disappearance of the ERG b-wave without affecting a and c components. Tectal evoked potentials (TEP) are no longer recorded. These physiological effects are concomitant with a specific glial cell damage, without any apparent damage to neurons. The levorotatory (L)-isomer at low concentrations is more gliotoxic than the D-isomer, the ERG b-wave is suppressed, while the amplitude of both a and c components is increased. TEPs are always recorded, i.e., a visual message is still generated in the retina and transmitted to the optic tectum when the Müller cells have been damaged and the b-wave is abolished. At higher concentrations the L-isomer suppresses TEPs and damages both glial and neuronal cells. Thus alpha-aaa appears to be a good tool for analyzing ERG components, especially subcomponents of the c-wave.
在青蛙和鸡中,玻璃体内注射α-氨基己二酸(α-aaa)的右旋(D)-异构体都会导致视网膜电图b波逐渐消失,而不影响a波和c波成分。不再记录视顶盖诱发电位(TEP)。这些生理效应与特定的胶质细胞损伤相伴,而神经元没有任何明显损伤。低浓度的左旋(L)-异构体比D-异构体对胶质细胞的毒性更大,视网膜电图b波被抑制,而a波和c波成分的振幅增加。总是能记录到TEP,也就是说,当米勒细胞受损且b波消失时,视网膜仍会产生视觉信息并传递到视顶盖。在较高浓度下,L-异构体抑制TEP并损害胶质细胞和神经元细胞。因此,α-aaa似乎是分析视网膜电图成分,尤其是c波亚成分的良好工具。