Autism spectrum disorder: neuropathology and animal models

被引:0
|
作者
Merina Varghese
Neha Keshav
Sarah Jacot-Descombes
Tahia Warda
Bridget Wicinski
Dara L. Dickstein
Hala Harony-Nicolas
Silvia De Rubeis
Elodie Drapeau
Joseph D. Buxbaum
Patrick R. Hof
机构
[1] Icahn School of Medicine at Mount Sinai,Fishberg Department of Neuroscience
[2] Icahn School of Medicine at Mount Sinai,Friedman Brain Institute
[3] Icahn School of Medicine at Mount Sinai,Seaver Autism Center for Research and Treatment
[4] Icahn School of Medicine at Mount Sinai,Department of Psychiatry
[5] University Hospitals and School of Medicine,Unit of Psychiatry, Department of Children and Teenagers
[6] Uniformed Services University of the Health Sciences,Department of Pathology
来源
Acta Neuropathologica | 2017年 / 134卷
关键词
Autism spectrum disorder; Cerebral cortex; Genetically modified animal models; Neuronal morphology; Synapse; Idiopathic autism models;
D O I
暂无
中图分类号
学科分类号
摘要
Autism spectrum disorder (ASD) has a major impact on the development and social integration of affected individuals and is the most heritable of psychiatric disorders. An increase in the incidence of ASD cases has prompted a surge in research efforts on the underlying neuropathologic processes. We present an overview of current findings in neuropathology studies of ASD using two investigational approaches, postmortem human brains and ASD animal models, and discuss the overlap, limitations, and significance of each. Postmortem examination of ASD brains has revealed global changes including disorganized gray and white matter, increased number of neurons, decreased volume of neuronal soma, and increased neuropil, the last reflecting changes in densities of dendritic spines, cerebral vasculature and glia. Both cortical and non-cortical areas show region-specific abnormalities in neuronal morphology and cytoarchitectural organization, with consistent findings reported from the prefrontal cortex, fusiform gyrus, frontoinsular cortex, cingulate cortex, hippocampus, amygdala, cerebellum and brainstem. The paucity of postmortem human studies linking neuropathology to the underlying etiology has been partly addressed using animal models to explore the impact of genetic and non-genetic factors clinically relevant for the ASD phenotype. Genetically modified models include those based on well-studied monogenic ASD genes (NLGN3, NLGN4, NRXN1, CNTNAP2, SHANK3, MECP2, FMR1, TSC1/2), emerging risk genes (CHD8, SCN2A, SYNGAP1, ARID1B, GRIN2B, DSCAM, TBR1), and copy number variants (15q11-q13 deletion, 15q13.3 microdeletion, 15q11-13 duplication, 16p11.2 deletion and duplication, 22q11.2 deletion). Models of idiopathic ASD include inbred rodent strains that mimic ASD behaviors as well as models developed by environmental interventions such as prenatal exposure to sodium valproate, maternal autoantibodies, and maternal immune activation. In addition to replicating some of the neuropathologic features seen in postmortem studies, a common finding in several animal models of ASD is altered density of dendritic spines, with the direction of the change depending on the specific genetic modification, age and brain region. Overall, postmortem neuropathologic studies with larger sample sizes representative of the various ASD risk genes and diverse clinical phenotypes are warranted to clarify putative etiopathogenic pathways further and to promote the emergence of clinically relevant diagnostic and therapeutic tools. In addition, as genetic alterations may render certain individuals more vulnerable to developing the pathological changes at the synapse underlying the behavioral manifestations of ASD, neuropathologic investigation using genetically modified animal models will help to improve our understanding of the disease mechanisms and enhance the development of targeted treatments.
引用
收藏
页码:537 / 566
页数:29
相关论文
共 50 条
  • [21] Altered nocifensive behavior in animal models of autism spectrum disorder: The role of the nicotinic cholinergic system
    Wang, Li
    Almeida, Luis E. F.
    Nettleton, Margaret
    Khaibullina, Alfia
    Albani, Sarah
    Kamimura, Sayuri
    Nouraie, Mehdi.
    Quezado, Zenaide M. N.
    NEUROPHARMACOLOGY, 2016, 111 : 323 - 334
  • [22] Hyperthermia elevates brain temperature and improves behavioural signs in animal models of autism spectrum disorder
    Lopez-Rodriguez, Ana Belen
    Murray, Carol L.
    Kealy, John
    Towns, Clodagh
    Roche, Andrew
    Nazmi, Arshed
    Doran, Michelle
    Lowry, John P.
    Cunningham, Colm
    MOLECULAR AUTISM, 2023, 14 (01)
  • [23] D-amino acid metabolism is altered in the brain of autism spectrum disorder animal models
    Errico, F.
    Yahyavi, I.
    Garofalo, M.
    Motta, Z.
    Nuzzo, T.
    Di Maio, A.
    Buzzelli, V.
    De Grandis, E.
    Bruno, C.
    Nobili, L.
    Riccio, M. P.
    Pastore, L.
    Bravaccio, C.
    Salvatore, F.
    Trezza, V.
    Pollegioni, L.
    Usiello, A.
    FEBS OPEN BIO, 2024, 14 : 244 - 245
  • [24] Hyperthermia elevates brain temperature and improves behavioural signs in animal models of autism spectrum disorder
    Ana Belen Lopez-Rodriguez
    Carol L. Murray
    John Kealy
    Clodagh Towns
    Andrew Roche
    Arshed Nazmi
    Michelle Doran
    John P. Lowry
    Colm Cunningham
    Molecular Autism, 14
  • [25] Reconsidering animal models used to study autism spectrum disorder: Current state and optimizing future
    Silverman, Jill L.
    Thurm, Audrey
    Ethridge, Sarah B.
    Soller, Makayla M.
    Petkova, Stela P.
    Abel, Ted
    Bauman, Melissa D.
    Brodkin, Edward S.
    Harony-Nicolas, Hala
    Woehr, Markus
    Halladay, Alycia
    GENES BRAIN AND BEHAVIOR, 2022, 21 (05)
  • [26] Autism spectrum disorders and neuropathology of the cerebellum
    Hampson, David R.
    Blatt, Gene J.
    FRONTIERS IN NEUROSCIENCE, 2015, 9
  • [27] Animal models of autism spectrum disorders: Information for neurotoxicologists
    Halladay, Alycia K.
    Amaral, David
    Aschner, Michael
    Bolivar, Valerie J.
    Bowman, Aaron
    DiCicco-Bloom, Emanuel
    Hyman, Susan L.
    Keller, Flavio
    Lein, Pamela
    Pessah, Isaac
    Restifo, Linda
    Threadgill, David W.
    NEUROTOXICOLOGY, 2009, 30 (05) : 811 - 821
  • [28] Animal-assisted therapy in pediatric autism spectrum disorder
    Kilmer, Michele
    Hong, Minju
    Randolph, Danielle
    Reichel, Allison
    Huetter, Sarah
    Bowden, Madelyn
    Kilmer, Clay
    NURSE PRACTITIONER, 2024, 49 (03): : 31 - 39
  • [29] THE EFFICACY OF LACOSAMIDE AND PERAMPANEL IN THE ANIMAL MODEL OF AUTISM SPECTRUM DISORDER
    Matsuoka, Satomi
    Moriya, Yuka
    Ito, Fuyuka
    Miyachi, Mai
    Fuwa, Takemi
    Kurahashi, Hitomi
    Nabeshima, Toshitaka
    Mouri, Akihiro
    Hasegawa, Yoichi
    INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY, 2025, 28 : I257 - I257
  • [30] Vestibular Brainstem Dysmorphology in an Animal Model of Autism Spectrum Disorder
    Burchell, Alyson
    Mansour, Yusra
    Kulesza, Randy
    FASEB JOURNAL, 2021, 35