scholarly journals Environmentally Induced Oxidative Stress and Disruption of Brain Thyroid Hormone Homeostasis in Autism Spectrum Disorders

Author(s):  
Elizabeth M.
2019 ◽  
Vol 10 ◽  
Author(s):  
Vanja Mandic-Maravic ◽  
Marija Mitkovic-Voncina ◽  
Marija Pljesa-Ercegovac ◽  
Ana Savic-Radojevic ◽  
Miroslav Djordjevic ◽  
...  

2017 ◽  
Vol 33 (2) ◽  
pp. 196-201 ◽  
Author(s):  
Fateheya M. Metwally ◽  
Hend Rashad ◽  
Hala M. Zeidan ◽  
Ayman Kilany ◽  
Ehab R. Abdol Raouf

2018 ◽  
Vol 9 ◽  
Author(s):  
Antonietta Messina ◽  
Vincenzo Monda ◽  
Francesco Sessa ◽  
Anna Valenzano ◽  
Monica Salerno ◽  
...  

Author(s):  
Shanna L. Burke ◽  
Jessica Cobb ◽  
Rumi Agarwal ◽  
Marlaina Maddux ◽  
Marcus S. Cooke

Abstract Growing interest in the pathogenesis of autism spectrum disorders (ASDs) and other intellectual and developmental disabilities (IDD) has led to emerging evidence implicating a role for oxidative stress. However, understanding the strength of this association is made challenging by the use of a variety of purported biomarkers of oxidative stress, many of which have either uncertain specificity or flawed methods of analysis. This review aims to address this issue, which is widespread in the ASD and IDD literature, by providing readers with information concerning the strengths and limitations of the choice and analysis of biomarkers of oxidative stress. We highlight that biomarkers and assays should be specific, sensitive, reproducible, precise, robust, and chosen with careful consideration. Future studies should be sufficiently powered and address sample collection, processing, and storage which are, additionally, poorly considered, sources of bad practice, and potential errors. Only with these issues considered, will the data lead to conclusions as to the precise role of oxidative stress in ASDs and IDD.


2020 ◽  
Vol 2020 ◽  
pp. 1-13
Author(s):  
Tingting Hu ◽  
Yinmiao Dong ◽  
Caixia He ◽  
Mingyi Zhao ◽  
Qingnan He

Autism spectrum disorders (ASDs) are a kind of neurodevelopmental disorder with rapidly increasing morbidity. In recent years, many studies have proposed a possible link between ASD and multiple environmental as well as genetic risk factors; nevertheless, recent studies have still failed to identify the specific pathogenesis. An analysis of the literature showed that oxidative stress and redox imbalance caused by high levels of reactive oxygen species (ROS) are thought to be integral parts of ASD pathophysiology. On the one hand, this review aims to elucidate the communications between oxidative stress, as a risk factor, and ASD. As such, there is also evidence to suggest that early assessment and treatment of antioxidant status are likely to result in improved long-term prognosis by disturbing oxidative stress in the brain to avoid additional irreversible brain damage. Accordingly, we will also discuss the possibility of novel therapies regarding oxidative stress as a target according to recent literature. On the other hand, this review suggests a definite relationship between ASD and an unbalanced gastrointestinal tract (GIT) microbiota (i.e., GIT dysbiosis). A variety of studies have concluded that the intestinal microbiota influences many aspects of human health, including metabolism, the immune and nervous systems, and the mucosal barrier. Additionally, the oxidative stress and GIT dysfunction in autistic children have both been reported to be related to mitochondrial dysfunction. What is the connection between them? Moreover, specific changes in the GIT microbiota are clearly observed in most autistic children, and the related mechanisms and the connection among ASD, the GIT microbiota, and oxidative stress are also discussed, providing a theory and molecular strategies for clinical practice as well as further studies.


2012 ◽  
Vol 53 ◽  
pp. S21 ◽  
Author(s):  
Maria Elena Gonzalez-Fraguela ◽  
Mei-Li Diaz Hung ◽  
Hector Vera ◽  
Maria Robinson ◽  
Carmem Gottfried

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