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Lisboa, S. F.

Publications and source records attributed to Lisboa, S. F..

2 recordsLinked to original sources

Minocycline engages microglia in the midbrain periaqueductal grey to attenuate hypoxia-triggered panic-like behaviour in rats

Panic disorder (PD) is a chronic and highly disabling psychiatric disorder characterised by recurrent and unexpected panic attacks, with underlying neurobiological mechanisms poorly understood. Emerging evidence suggests that inflammatory processes may contribute to the triggering of panic attacks, with a subset of PD patients exhibiting alterations in circulating cytokine levels, while animal studies indicate that an immunoresponsive microglial phenotype may contribute to the disorders pathophysiology. Minocycline, a tetracycline-class antibiotic that crosses the blood-brain barrier, exerts anti-inflammatory effects and has demonstrated therapeutic potential in attenuating panic attacks, supporting its potential as an alternative strategy for reducing PD-related symptoms by modulating microglial activity. In this study, we investigated whether exposure of male Sprague-Dawley rats to a panicogenic stimulus, hypoxia (7% O2), is followed by microglial morphological remodelling in the midbrain periaqueductal grey (PAG), a well-known panic-associated structure, at baseline and after minocycline treatment. The effects of hypoxia on the expression of panic-like jumping behaviour were measured during the respiratory challenge, whereas microglial morphology was assessed at 1, 6, or 24h following the aversive stimulus. In a second experiment, the effects of minocycline (30 mg/kg, i.p., administered once daily for 5 days) on the immediate behavioural responses to hypoxia were compared with those produced by an acute administration of alprazolam (2 mg/kg, i.p.), a benzodiazepine widely used in the clinical management of PD. Minocycline effects on microglial morphology in the PAG were also assessed. Our findings show that hypoxia elicited robust jumping behaviour, without affecting overall locomotion. This panicogenic effect was accompanied by marked and time-dependent microglial morphological changes in the dorsomedial (dmPAG) and ventrolateral (vlPAG) columns of the PAG, consistent with a shift towards an immunoresponsive phenotype. Notably, minocycline, similarly to alprazolam, reduced the number of jumps, indicating a panicolytic effect, while also preventing hypoxia-induced microglial remodelling in the dmPAG. Altogether, these findings suggest a role for microglia in regulating hypoxia-induced panic- like behaviour, indicating that microglial inhibition, as achieved here with minocycline, represents a promising therapeutic strategy for preventing panic attacks.

neuroscience↗

Sex-Dependent Vulnerability to PTSD-Like Behaviors in iNOS Knockout Mice

Nitric oxide (NO), mainly produced by neuronal nitric oxide synthase (nNOS) in the brain, has been implicated in stress responses and the pathophysiology of post-traumatic stress disorder (PTSD). Our group previously showed that inducible nitric oxide synthase (iNOS) knockout (KO) male mice exhibit compensatory changes in nNOS expression in the medial prefrontal cortex (mPFC) and impaired fear extinction, suggesting that this genetic model may be relevant for studying PTSD-related phenotypes. Given the frequent comorbidity of PTSD with anxiety and depression, and the marked underrepresentation of females in neuropsychopharmacology research, we performed a behavioral characterization of male and female iNOS KO mice, focusing on aversive memory, anxiety-, and depression-like behaviors. To our knowledge, this is the first systematic behavioral study of female iNOS KO mice, which is particularly relevant given that females are twice as likely to develop psychiatric disorders. We observed that female iNOS KO mice exhibited increased anxiety-like behavior in the elevated plus maze test (EPMT), whereas males showed antidepressant-like behavior in the forced swim test (FST). No general cognitive deficits were found in the Y-maze or object recognition (OR) tests in either sex. However, male iNOS KO mice exhibited deficits in fear extinction memory and extinction retrieval in both contextual and cued fear conditioning. These findings indicate that iNOS KO mice present sex-dependent behavioral phenotypes and may serve as a genetic model to investigate disorders related to fear memory, such as PTSD, and highlight the importance of considering sex as a biological variable in research.

animal behavior and cognition↗