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Biology subjects

Kochi, T.

Publications and source records attributed to Kochi, T..

3 recordsLinked to original sources

Vicious circle of amyloid and leptomeningeal macrophages evokes vascular dysfunction in CAA

The subarachnoid space contains leptomeningeal arteries and resident immune cells known as subarachnoid macrophages (SAMs). In Alzheimers disease (AD) and related cerebral amyloid angiopathy, amyloid-{beta} (A{beta}) frequently accumulates around the leptomeningeal arteries. Nevertheless, the local immune responses and their functional consequences remain poorly understood. Using longitudinal intravital imaging in a mouse model of AD, we tracked A{beta} deposition and identified a distinct SAM population that migrates to and phagocytoses these arterial A{beta} deposits. SAM recruitment correlated with vascular remodeling, including smooth muscle loss, aneurysm formation, and reduced cerebral perfusion. Transcriptomic profiling revealed a distinct SAM population in AD with upregulated CD39 expression. Pharmacological inhibition of CD39 attenuated arterial A{beta} deposition, identifying SAMs as a potential therapeutic target in AD.

neuroscience↗

FcγR- and CD9-dependent synapse engulfing microglia in the thalamus drives cognitive impairment following cortical brain injury

Various states of microglia appear in neuroinflammation, but their impact on brain function and behavior is not fully understood. Here we report that synapse engulfing microglia in the thalamus are crucial for cognitive impairment after cortical brain injury. Region-specific manipulations of reactive microglia in the chronic phase of injuries showed that microglial changes in the thalamus, but not in the hippocampus, impaired recognition memory. Single-cell RNA-sequencing analysis revealed the enrichment of synapse engulfing microglia in the thalamus, which developed in a CD9-dependent manner and caused synaptic loss and recognition memory deficits. In the thalamus, the blood-brain barrier was disrupted, and extravasated {gamma}-immunoglobulins (IgG) co-localized with synapse engulfing microglia. Fc{gamma} receptor III blockade in the thalamus reduced synapse engulfing microglia, synapse loss, and recognition memory deficits. These findings demonstrate that the induction of synapse engulfing microglia in the thalamus by extravasated IgG/Fc{gamma}RIII and CD9 signals causes recognition memory deficits after cortical brain injury.

immunology↗

Circulating extracellular microRNAs in the blood promote sociability in mice

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-/- mice, mimicking the effects of WT T cell transfer. These EVs localized to neurons and regulated PKC{varepsilon} expression, GABAA 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 enhanced synaptic function and sociability in Rag1-/- mice. T cells secreted miR-23a-3p via EVs, and Mir23a-/- T cells failed to increase sociability. Similar beneficial effects of WT blood EVs were observed in additional mouse models with sociability deficits, Cntnap2-/- and Shank3-/- mice. These findings uncover a previously unrecognized role of EV miRNAs in mediating immune modulation of synaptic function and social behavior, revealing a novel molecular pathway for immune-neuron communication.

neuroscience↗