TY - JOUR
T1 - Molecular substrates of schizophrenia
T2 - Homeostatic signaling to connectivity
AU - Landek-Salgado, M. A.
AU - Faust, T. E.
AU - Sawa, A.
N1 - Funding Information:
AS currently receives research funding from Johnson and Johnson, Astellas, Takeda, Tanabe-Mitsubishi, Dainippon-Sumitomo and Sucampo; has served as an advisory board and consultant for Amgen, Asubio, Eli Lilly, Pfizer, Sucampo, Taisho and Takeda, and collaborated with Afraxis, Astrazeneca and Sanofi-Aventis. However, none of these relationships affected the contents and statements of this review article.
Funding Information:
We thank Alan Anticevic, Anissa Abi-Dargham, Jennifer Coughlin and Anouk Marsman for scientific discussion. We thank Yukiko Lema for organizing the figures, in particular for contributing to the formatting process. MRI images were kindly provided by Susumu Mori and Michael Jacobs. This work was supported by USPHS grants MH-084018 (AS), MH-094268 Silvo O. Conte center (AS), MH-069853 (AS), MH-085226 (AS), MH-088753 (AS), MH-092443 (AS), Stanley (AS), RUSK (AS), S-R foundations (AS), NARSAD (AS) and the Maryland Stem Cell Research Fund (AS).
Publisher Copyright:
© 2016 Macmillan Publishers Limited All rights reserved.
PY - 2016/1/1
Y1 - 2016/1/1
N2 - Schizophrenia (SZ) is a devastating psychiatric condition affecting numerous brain systems. Recent studies have identified genetic factors that confer an increased risk of SZ and participate in the disease etiopathogenesis. In parallel to such bottom-up approaches, other studies have extensively reported biological changes in patients by brain imaging, neurochemical and pharmacological approaches. This review highlights the molecular substrates identified through studies with SZ patients, namely those using top-down approaches, while also referring to the fruitful outcomes of recent genetic studies. We have subclassified the molecular substrates by system, focusing on elements of neurotransmission, targets in white matter-associated connectivity, immune/inflammatory and oxidative stress-related substrates, and molecules in endocrine and metabolic cascades. We further touch on cross-talk among these systems and comment on the utility of animal models in charting the developmental progression and interaction of these substrates. Based on this comprehensive information, we propose a framework for SZ research based on the hypothesis of an imbalance in homeostatic signaling from immune/inflammatory, oxidative stress, endocrine and metabolic cascades that, at least in part, underlies deficits in neural connectivity relevant to SZ. Thus, this review aims to provide information that is translationally useful and complementary to pathogenic hypotheses that have emerged from genetic studies. Based on such advances in SZ research, it is highly expected that we will discover biomarkers that may help in the early intervention, diagnosis or treatment of SZ.
AB - Schizophrenia (SZ) is a devastating psychiatric condition affecting numerous brain systems. Recent studies have identified genetic factors that confer an increased risk of SZ and participate in the disease etiopathogenesis. In parallel to such bottom-up approaches, other studies have extensively reported biological changes in patients by brain imaging, neurochemical and pharmacological approaches. This review highlights the molecular substrates identified through studies with SZ patients, namely those using top-down approaches, while also referring to the fruitful outcomes of recent genetic studies. We have subclassified the molecular substrates by system, focusing on elements of neurotransmission, targets in white matter-associated connectivity, immune/inflammatory and oxidative stress-related substrates, and molecules in endocrine and metabolic cascades. We further touch on cross-talk among these systems and comment on the utility of animal models in charting the developmental progression and interaction of these substrates. Based on this comprehensive information, we propose a framework for SZ research based on the hypothesis of an imbalance in homeostatic signaling from immune/inflammatory, oxidative stress, endocrine and metabolic cascades that, at least in part, underlies deficits in neural connectivity relevant to SZ. Thus, this review aims to provide information that is translationally useful and complementary to pathogenic hypotheses that have emerged from genetic studies. Based on such advances in SZ research, it is highly expected that we will discover biomarkers that may help in the early intervention, diagnosis or treatment of SZ.
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U2 - 10.1038/mp.2015.141
DO - 10.1038/mp.2015.141
M3 - Review article
C2 - 26390828
AN - SCOPUS:84951909066
SN - 1359-4184
VL - 21
SP - 10
EP - 28
JO - Molecular Psychiatry
JF - Molecular Psychiatry
IS - 1
ER -