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1
Early and late auditory information processing show opposing deviations in aniridia.先天性虹膜缺损患者的早期和晚期听觉信息处理表现出相反的偏差。
Brain Res. 2019 Oct 1;1720:146307. doi: 10.1016/j.brainres.2019.146307. Epub 2019 Jun 24.
2
Microstructural differences in visual white matter tracts in people with aniridia.无虹膜患者视觉白质束的微观结构差异。
Neuroreport. 2018 Dec 5;29(17):1473-1478. doi: 10.1097/WNR.0000000000001135.
3
Structural brain abnormalities in 12 persons with aniridia.12例无虹膜患者的脑结构异常。
F1000Res. 2017 Mar 13;6:255. doi: 10.12688/f1000research.11063.2. eCollection 2017.
4
PAX6, brain structure and function in human adults: advanced MRI in aniridia.PAX6、人类成年人的大脑结构和功能:无虹膜症的高级 MRI。
Ann Clin Transl Neurol. 2016 Apr 12;3(5):314-30. doi: 10.1002/acn3.297. eCollection 2016 May.
5
Assessment of PAX6 alleles in 66 families with aniridia.对66个无虹膜家族的PAX6等位基因进行评估。
Clin Genet. 2016 Jun;89(6):669-77. doi: 10.1111/cge.12708. Epub 2016 Jan 25.
6
Pineal hypoplasia, reduced melatonin and sleep disturbance in patients with PAX6 haploinsufficiency.PAX6单倍剂量不足患者的松果体发育不全、褪黑素减少与睡眠障碍
J Sleep Res. 2016 Feb;25(1):16-22. doi: 10.1111/jsr.12345.
7
Transcriptional and epigenetic mechanisms of early cortical development: An examination of how Pax6 coordinates cortical development.早期皮质发育的转录和表观遗传机制:对Pax6如何协调皮质发育的研究。
J Comp Neurol. 2016 Feb 15;524(3):609-29. doi: 10.1002/cne.23866. Epub 2015 Aug 25.
8
Aging-dependent changes in the cellular composition of the mouse brain and spinal cord.小鼠脑和脊髓细胞组成的衰老依赖性变化。
Neuroscience. 2015 Apr 2;290:406-20. doi: 10.1016/j.neuroscience.2015.01.039. Epub 2015 Jan 29.
9
Increased functional connectivity in intrinsic neural networks in individuals with aniridia.无虹膜个体内在神经网络中功能连接性增加。
Front Hum Neurosci. 2014 Dec 19;8:1013. doi: 10.3389/fnhum.2014.01013. eCollection 2014.
10
Pax6 is essential for the maintenance and multi-lineage differentiation of neural stem cells, and for neuronal incorporation into the adult olfactory bulb.Pax6对于神经干细胞的维持和多谱系分化,以及神经元融入成年嗅球至关重要。
Stem Cells Dev. 2014 Dec 1;23(23):2813-30. doi: 10.1089/scd.2014.0058. Epub 2014 Sep 17.

无虹膜症的Pax6基因缺陷小鼠模型中的全球及年龄相关神经解剖学异常表明Pax6在成体结构神经可塑性中发挥作用。

Global and age-related neuroanatomical abnormalities in a Pax6-deficient mouse model of aniridia suggests a role for Pax6 in adult structural neuroplasticity.

作者信息

Grant Madison K, Bobilev Anastasia M, Rasys Ashley M, Branson Byers J, Schriever Hannah C, Hekmatyar Khan, Lauderdale James D

机构信息

Department of Cellular Biology, University of Georgia, 250B Coverdell Center, 500 D.W. Brooks Drive, Athens, GA 30602, United States.

Department of Psychiatry, UT Southwestern Medical Center, 5323 Harry Hines Blvd., Dallas, TX, United States; Neuroscience Division of the Biomedical and Health Sciences Institute, The University of Georgia, Athens, GA 30602, United States.

出版信息

Brain Res. 2020 Apr 1;1732:146698. doi: 10.1016/j.brainres.2020.146698. Epub 2020 Jan 31.

DOI:10.1016/j.brainres.2020.146698
PMID:32014531
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10712278/
Abstract

PAX6 encodes a highly conserved transcription factor necessary for normal development of the eyes and central nervous system. Heterozygous loss-of-function mutations in PAX6 cause the disorder aniridia in humans and the Small eye trait in mice. Aniridia is a congenital and progressive disorder known for ocular phenotypes; however, recently, consequences of PAX6 haploinsufficiency in the brains of aniridia patients have been identified. These findings span structural and functional abnormalities, including deficits in cognitive and sensory processing. Furthermore, some of these abnormalities are accelerated as aniridia patients age. Although some functional abnormalities may be explained by structural changes, variability of results remain, and the effects of PAX6 heterozygous loss-of-function mutations on neuroanatomy, particularly with regard to aging, have yet to be resolved. Our study used high-resolution magnetic resonance imaging (MRI) and histology to investigate structural consequences of such mutations in the adult brain of our aniridia mouse model, Small eye Neuherberg allele (Pax6), at two adult age groups. Using both MRI and histology enables a direct comparison with human studies, while providing higher resolution for detection of more subtle changes. We show volumetric changes in major brain regions of the the Pax6 mouse compared to wild-type including genotype- and age-related olfactory bulb differences, age-related cerebellum differences, and genotype-related eye differences. We also show alterations in thickness of major interhemispheric commissures, particularly those anteriorly located within the brain including the optic chiasm, corpus callosum, and anterior commissure. Together, these genotype and age related changes to brain volumes and structures suggest a global decrease in adult brain structural plasticity in our Pax6 mice.

摘要

PAX6编码一种高度保守的转录因子,它是眼睛和中枢神经系统正常发育所必需的。PAX6的杂合功能丧失突变会导致人类患无虹膜症,小鼠出现小眼性状。无虹膜症是一种以眼部表型著称的先天性进行性疾病;然而,最近已发现无虹膜症患者大脑中PAX6单倍剂量不足的后果。这些发现涵盖结构和功能异常,包括认知和感觉处理缺陷。此外,随着无虹膜症患者年龄增长,其中一些异常会加速出现。尽管一些功能异常可能由结构变化解释,但结果仍存在变异性,PAX6杂合功能丧失突变对神经解剖学的影响,尤其是与衰老相关的影响,尚未得到解决。我们的研究使用高分辨率磁共振成像(MRI)和组织学方法,在两个成年年龄组中研究我们的无虹膜症小鼠模型——小眼纽黑伯格等位基因(Pax6)成年大脑中此类突变的结构后果。同时使用MRI和组织学方法能够与人体研究进行直接比较,同时提供更高分辨率以检测更细微的变化。我们发现,与野生型相比,Pax6小鼠主要脑区存在体积变化,包括与基因型和年龄相关的嗅球差异、与年龄相关的小脑差异以及与基因型相关的眼部差异。我们还发现主要半球间连合的厚度发生改变,特别是位于大脑前部的那些连合,包括视交叉、胼胝体和前连合。总之,这些与基因型和年龄相关的脑体积和结构变化表明,我们的Pax6小鼠成年大脑结构可塑性整体下降。