Catalogue Search | MBRL
Search Results Heading
Explore the vast range of titles available.
MBRLSearchResults
-
DisciplineDiscipline
-
Is Peer ReviewedIs Peer Reviewed
-
Item TypeItem Type
-
SubjectSubject
-
YearFrom:-To:
-
More FiltersMore FiltersSourceLanguage
Done
Filters
Reset
56
result(s) for
"Kano, Shin-ichi"
Sort by:
Adolescent stress impairs postpartum social behavior via anterior insula-prelimbic pathway in mice
2023
Adolescent stress can be a risk factor for abnormal social behavior in the postpartum period, which critically affects an individual social functioning. Nonetheless, the underlying mechanisms remain unclear. Using a mouse model with optogenetics and in vivo calcium imaging, we found that adolescent psychosocial stress, combined with pregnancy and delivery, caused hypofunction of the glutamatergic pathway from the anterior insula to prelimbic cortex (AI-PrL pathway), which altered PrL neuronal activity, and in turn led to abnormal social behavior. Specifically, the AI-PrL pathway played a crucial role during recognizing the novelty of other mice by modulating “stable neurons” in PrL, which were constantly activated or inhibited by novel mice. We also observed that glucocorticoid receptor signaling in the AI-PrL pathway had a causal role in stress-induced postpartum changes. Our findings provide functional insights into a cortico-cortical pathway underlying adolescent stress-induced postpartum social behavioral deficits.
The mechanisms of how adolescent stress causes abnormal postpartum social behavior are unclear. Here, authors show an underlying mechanism mediating by the anterior insula-prelimbic cortex pathway and glucocorticoid receptor signaling in mice.
Journal Article
Adolescent Stress—Induced Epigenetic Control of Dopaminergic Neurons via Glucocorticoids
by
Jaaro-Peled, Hanna
,
Niwa, Minae
,
Hikida, Takatoshi
in
Adolescence
,
Adolescent
,
Adolescent Behavior
2013
Environmental stressors during childhood and adolescence influence postnatal brain maturation and human behavioral patterns in adulthood. Accordingly, excess stressors result in adult-onset neuropsychiatric disorders. We describe an underlying mechanism in which glucocorticoids link adolescent stressors to epigenetic controls in neurons. In a mouse model of this phenomenon, a mild isolation stress affects the mesocortical projection of dopaminergic neurons in which DNA hypermethylation of the tyrosine hydroxylase gene is elicited, but only when combined with a relevant genetic risk for neuropsychiatric disorders. These molecular changes are associated with several neurochemical and behavioral deficits that occur in this mouse model, all of which are blocked by a glucocorticoid receptor antagonist. The biology and phenotypes of the mouse models resemble those of psychotic depression, a common and debilitating psychiatric disease.
Journal Article
Circulating extracellular vesicle microRNAs mediate immune modulation of social behavior in male mice
2026
Extracellular vesicles (EVs) are cell-derived small membrane vesicles and circulate throughout the body, but the impact of circulating EVs on brain function and behavior remains elusive. Here, we report that wild-type (WT) mouse blood, particularly EVs, increases sociability in socially impaired immunodeficient
Rag1
−/−
male mice, mimicking the effects of WT T cell transfer. These EVs are localized to neurons and regulate PKCε expression, GABA
A
receptor synaptic localization, and inhibitory postsynaptic signaling in prefrontal cortex (PFC) pyramidal neurons. Injection of
Rag1
−/−
EVs supplemented with miR-23a-3p and miR-103-3p enhances synaptic function and sociability in
Rag1
−/−
mice. T cells secrete miR-23a-3p via EVs, and
Mir23a
−/−
T cells fail to increase sociability. Similar beneficial effects of WT blood EVs are observed in additional mouse models with sociability deficits, such as
Cntnap2
−/−
and
Shank3
−/−
mice. These findings uncover the role of EV miRNAs in mediating immune modulation of synaptic function and social behavior, revealing a non-canonical molecular pathway for immune-neuron communication.
Extracellular vesicles carrying diverse molecules circulate the body. Here, the authors show that blood-borne vesicles containing specific miRNAs boost synaptic function and sociability in mice, revealing a non-canonical pathway for social behavior.
Journal Article
Alterations in circulating extracellular vesicles underlie social stress‐induced behaviors in mice
by
Sakamoto, Shinji
,
Imai, Takashi
,
Medeiros, Destynie J.
in
Animals
,
Avoidance behavior
,
Behavior
2021
Chronic stress induces peripheral and intracerebral immune changes and inflammation, contributing to neuropathology and behavioral abnormalities relevant to psychiatric disorders such as depression. Although the pathological implication of many peripheral factors such as pro‐inflammatory cytokines, hormones, and macrophages has been demonstrated, the roles of circulating extracellular vesicles (EVs) for chronic stress mechanisms remain poorly investigated. Here, we report that chronic social defeat stress (CSDS)‐induced social avoidance phenotype, assessed by a previously untested three‐chamber social approach test, can be distinguished by multiple pro‐inflammatory cytokines and EV‐associated molecular signatures in the blood. We found that the expression patterns of miRNAs distinguished the CSDS‐susceptible mice from the CSDS‐resilient mice. Social avoidance behavior scores were also estimated with good accuracy by the expression patterns of multiple EV‐associated miRNAs. We also demonstrated that EVs enriched from the CSDS‐susceptible mouse sera upregulated the production of pro‐inflammatory cytokines in the LPS‐stimulated microglia‐like cell lines. Our results indicate the role of circulating EVs and associated miRNAs in CSDS susceptibility, which may be related to pro‐inflammatory mechanisms underlying stress‐induced neurobehavioral outcomes. Social avoidance behaviors after chronic social defeat stress are accompanied by altered extracellular vesicles (EVs) in the blood, together with increased levels of pro‐inflammatory cytokines. EV‐associated miRNA expression patterns are correlated with social behavioral scores. In addition, EVs are shown to enhance the production of pro‐inflammatory cytokines in cultured microglia‐like cells. Thus, EVs may contribute to pro‐inflammatory responses in socially stressed mice.
Journal Article
Host–parasite interaction associated with major mental illness
by
Velivela, Swetha D
,
Dickerson, Faith
,
Harrison, Paul J
in
Activating transcription factor 4
,
Bipolar disorder
,
Disc1 protein
2020
Clinical studies frequently report that patients with major mental illness such as schizophrenia and bipolar disorder have co-morbid physical conditions, suggesting that systemic alterations affecting both brain and peripheral tissues might underlie the disorders. Numerous studies have reported elevated levels of anti-Toxoplasma gondii (T. gondii) antibodies in patients with major mental illnesses, but the underlying mechanism was unclear. Using multidisciplinary epidemiological, cell biological, and gene expression profiling approaches, we report here multiple lines of evidence suggesting that a major mental illness-related susceptibility factor, Disrupted in schizophrenia (DISC1), is involved in host immune responses against T. gondii infection. Specifically, our cell biology and gene expression studies have revealed that DISC1 Leu607Phe variation, which changes DISC1 interaction with activating transcription factor 4 (ATF4), modifies gene expression patterns upon T. gondii infection. Our epidemiological data have also shown that DISC1 607 Phe/Phe genotype was associated with higher T. gondii antibody levels in sera. Although further studies are required, our study provides mechanistic insight into one of the few well-replicated serological observations in major mental illness.
Journal Article
Adolescent stress accelerates postpartum novelty recognition impairment in 5xFAD mice
by
Leitzel, Owen
,
Niwa, Minae
,
Arrant, Andrew
in
acceleration
,
adolescent stress
,
Alzheimer’s disease
2024
Pregnancy and the postpartum period induce physiological changes that can influence women’s cognitive functions. Alzheimer’s disease (AD) has a higher prevalence in women and is exacerbated by early life stress. In the present study, we found that late adolescent social isolation combined with the experience of pregnancy and delivery accelerates the onset of cognitive deficits in 5xFAD dams, particularly affecting their ability to recognize novelty. These cognitive deficits manifested as early as 16 weeks, earlier than the usual timeline for these mice, and were closely associated with increased levels of corticosterone, suggesting dysregulation of the hypothalamic–pituitary–adrenal (HPA) axis. Notably, the presence of β -amyloid plaques in brain regions associated with novelty recognition did not significantly contribute to these deficits. This highlights the potential role of stress and HPA axis dysregulation in the development of cognitive impairments related to AD, and underscores the need for further investigation.
Journal Article
Prenatal immune stress blunts microglia reactivity, impairing neurocircuitry
2022
Recent studies suggested that microglia, the primary brain immune cells, can affect circuit connectivity and neuronal function
1
,
2
. Microglia infiltrate the neuroepithelium early in embryonic development and are maintained in the brain throughout adulthood
3
,
4
. Several maternal environmental factors—such as an aberrant microbiome, immune activation and poor nutrition—can influence prenatal brain development
5
,
6
. Nevertheless, it is unknown how changes in the prenatal environment instruct the developmental trajectory of infiltrating microglia, which in turn affect brain development and function. Here we show that, after maternal immune activation (MIA) in mice, microglia from the offspring have a long-lived decrease in immune reactivity (blunting) across the developmental trajectory. The blunted immune response was accompanied by changes in chromatin accessibility and reduced transcription factor occupancy of the open chromatin. Single-cell RNA-sequencing analysis revealed that MIA does not induce a distinct subpopulation but, rather, decreases the contribution to inflammatory microglia states. Prenatal replacement of microglia from MIA offspring with physiological infiltration of naive microglia ameliorated the immune blunting and restored a decrease in presynaptic vesicle release probability onto dopamine receptor type-two medium spiny neurons, indicating that aberrantly formed microglia due to an adverse prenatal environment affect the long-term microglia reactivity and proper striatal circuit development.
Aberrantly formed microglia due to an adverse prenatal environment affect long-term microglia reactivity and proper striatal circuit development in mice
Journal Article
Dectin-1 signaling on colonic γδ T cells promotes psychosocial stress responses
by
Sakamoto, Shinji
,
Ito, Koki
,
Ishii, Chiharu
in
631/250/1619/554/2509
,
692/420/2780/262/2106
,
Avoidance behavior
2023
The intestinal immune system interacts with commensal microbiota to maintain gut homeostasis. Furthermore, stress alters the microbiome composition, leading to impaired brain function; yet how the intestinal immune system mediates these effects remains elusive. Here we report that colonic γδ T cells modulate behavioral vulnerability to chronic social stress via dectin-1 signaling. We show that reduction in specific
Lactobacillus
species, which are involved in T cell differentiation to protect the host immune system, contributes to stress-induced social-avoidance behavior, consistent with our observations in patients with depression. Stress-susceptible behaviors derive from increased differentiation in colonic interleukin (IL)-17-producing γδ T cells (γδ17 T cells) and their meningeal accumulation. These stress-susceptible cellular and behavioral phenotypes are causally mediated by dectin-1, an innate immune receptor expressed in γδ T cells. Our results highlight the previously unrecognized role of intestinal γδ17 T cells in the modulation of psychological stress responses and the importance of dectin-1 as a potential therapeutic target for the treatment of stress-induced behaviors.
Kamiya and colleagues examine the effects of chronic social-defeat stress on the intestinal microbiome and show a pathological role played by dectin-1 and interleukin-17 expressed by gut γδ T cells on this behavioral vulnerability.
Journal Article