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Di Cintio, N.

Publications and source records attributed to Di Cintio, N..

2 recordsLinked to original sources

Oligodendroglial deletion of the microcephaly gene Cit-k disrupts cortical connectivity and cognitive function

Neurodevelopmental disorders (NDDs) are increasingly recognized as disorders of brain connectivity and circuit dysfunction. Growing evidence suggests that glial cell and myelin abnormalities may actively contribute to these alterations. Yet, they have been often considered secondary consequences of impaired neuronal development rather than primary drivers of circuit dysfunction. Primary autosomal recessive microcephaly type 17 (MCPH17) is a severe NDD caused by mutations in the CIT gene, encoding Citron kinase (CIT-K). The disease is associated with cognitive and motor deficits, epilepsy susceptibility, and marked hypomyelination in both patients and mouse models, suggesting a contribution of oligodendroglial dysfunction to disease pathophysiology. Here, we investigated the specific role of oligodendroglial Cit-k loss using Sox10Cre;Cit-kfl/fl mice, in which Cit-k is selectively deleted in oligodendrocyte-lineage cells. Mutant mice displayed impaired forebrain myelination at juvenile stages and persistent cortical hypomyelination in adulthood. Despite preserved gross motor function, adult mutants showed deficits in fine motor control, working and recognition memory, and auditory fear memory. These impairments were associated with altered cortico-cortical and cortico-hippocampal functional connectivity. Moreover, consistent with the clinical MCPH17 phenotype, mutant mice exhibited increased susceptibility to kainate-induced seizures. Together, our findings show that oligodendroglial Cit-k loss and the resulting hypomyelination are sufficient to produce long-lasting neurological and behavioral impairments independently of primary neuronal defects. These results identify oligodendrocytes as active contributors to MCPH17 and support a broader role for myelin abnormalities in NDDs. HighlightsO_LICit-k deletion in oligodendroglia disrupts forebrain myelination C_LIO_LICortical hypomyelination persists in adult mutant mice C_LIO_LIMutant mice show deficits in motor control and memory C_LIO_LICortico-cortical and cortico-hippocampal connectivity are altered C_LIO_LIligodendrocytes contribute to microcephaly-associated dysfunctions C_LI

neuroscience↗

Acute particulate matter (PM10) exposure selectively triggers behavioral alterations in the presymptomatic Experimental Autoimmune Encephalomyelitis (EAE) mouse model of Multiple Sclerosis

Multiple Sclerosis (MS) is a chronic disease of the Central Nervous System, where neuroinflammation and autoimmune response against myelin lead to functional impairments, cognitive and psychiatric symptoms. Exposure to air pollution - in particular to peaks of particulate matter (PM) - has been associated with an increase of hospital admissions for MS onset and relapses and exacerbated neuroinflammation in MS patients. Here, in the MOG35-55-induced experimental autoimmune encephalomyelitis (EAE) mouse model of MS, we tested the hypothesis that exposure to PM10 might influence the disease course and severity in individuals with a predisposing background. Short-term PM10 exposures - occurring either before immunization or during the pre-symptomatic phase - did not modify disease manifestation in EAE mice, as assessed by clinical and neuropathological analyses. Yet, presymptomatic EAE - but not healthy - mice selectively showed increased disinhibited, risk-taking and novelty-seeking behaviors early after being exposed to PM10. These data show a selective vulnerability of immunologically primed mice toward the effects of PM10, occurring before the emergence of overt motor impairment and presenting as specific behavioral alterations.

neuroscience↗