School of Food and Biological Engineering, Hefei University of Technology, Hefei, Anhui 230009, People's Republic of China.
CAS Key Laboratory of Brain Function and Diseases, School of Life Sciences, University of Science and Technology of China, Hefei, Anhui 230027, People's Republic of China.
Brain Res Bull. 2020 Apr;157:1-9. doi: 10.1016/j.brainresbull.2020.01.015. Epub 2020 Jan 23.
Contrast sensitivity (CS) is one of the primary fundamental factors determining how well we can see, and it directly influences object recognition. Whether bisphenol-A (BPA, an environmental xenoestrogen) can perturb contrast detection in the visual system has yet to be elucidated. In the present study, we analyzed CS of single neurons in the primary visual cortex (area 17, A17) of cats before and after BPA exposure using a multiple-channel recording technique. The results showed that CS of A17 neurons was markedly depressed with an increased contrast threshold after two hour of intravenous BPA administration, which had a positive correlation with decreased firing rates of A17 neurons. Additionally, responses of these neurons presented an overt increase in the trial-to-trail response variability (a kind of neuronal noise), which could disturb the information-filtering function of single neurons. We also found that neuronal CS in the visual relay station was not disturbed after BPA administration, which rules out the contribution of CS alteration in the optical pathway. Importantly, acute BPA treatment obviously increased the inhibitory innervation to the visual pyramidal neurons. This implies that alteration of intracortical inhibitory regulation contributes to the compromised contrast detection in the visual system after BPA treatment.
对比敏感度(CS)是决定我们视觉能力的主要基本因素之一,它直接影响到我们对物体的识别能力。双酚 A(BPA,一种环境雌激素)是否会干扰视觉系统中的对比检测尚未阐明。在本研究中,我们使用多通道记录技术分析了 BPA 暴露前后猫初级视觉皮层(A17 区)单个神经元的 CS。结果表明,静脉注射 BPA 两小时后,A17 神经元的 CS 明显降低,对比阈值升高,与 A17 神经元放电率降低呈正相关。此外,这些神经元的反应表现出明显的试验间反应变异性增加(一种神经元噪声),这可能会干扰单个神经元的信息滤波功能。我们还发现,BPA 给药后视觉中继站的神经元 CS 未受干扰,排除了光通路中 CS 改变的贡献。重要的是,急性 BPA 处理明显增加了对视觉锥体神经元的抑制性传入。这意味着皮质内抑制调节的改变可能导致 BPA 处理后视觉系统对比检测能力受损。