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Biology subjects

Silva, M. L.

Publications and source records attributed to Silva, M. L..

3 recordsLinked to original sources

Long-term SARS-CoV-2 Persistence in Syrian Hamsters

SARS-CoV-2 persistence has been proposed as a potential contributor to the pathogenesis of long COVID, with reservoir tissues potentially serving as sites for viral persistence, intra-host evolution, and intermittent viral shedding. Here, we used experimentally infected Syrian hamsters to investigate long-term SARS-CoV-2 persistence across tissues, viral infectivity, and associated immunological and metabolic alterations. Syrian hamsters (Mesocricetus auratus) were intranasally infected with a SARS-CoV-2 parental strain or Gamma and Delta variants and monitored for up to one year, with samples collected at 3, 15, 30, 90, 150, and 365 days post-infection (dpi). During the acute phase, infected animals exhibited significant weight loss, viral shedding, and marked pulmonary inflammation, accompanied by increased expression of pro-inflammatory cytokines at 3 dpi. Infection was confirmed by seroconversion, with sustained IgG responses and low-titer neutralizing antibodies against Omicron. Viral nucleoprotein was detected in multiple tissues up to 365 dpi, while RT-qPCR identified persistent low-level viral RNA in the lungs, brain, spleen, and thymus throughout the observation period, without evidence of productive viral replication. Immune gene expression displayed organ-specific temporal patterns: acute pulmonary inflammation transitioned into broad late-stage suppression, except for sustained TGF-{beta} expression; the brain exhibited a late chemokine signature at 365 dpi; and the thymus showed a delayed immune activation peak at 150 dpi, particularly in Delta-infected animals. Metabolomic profiling revealed a shared acute-phase metabolic signature across variants that largely resolved by 365 dpi, whereas Delta-infected animals retained distinct residual metabolic alterations. Collectively, these findings establish a model of long-term SARS-CoV-2 tissue persistence characterized by organ-specific immune and metabolic signatures, providing a platform to investigate mechanisms underlying post-acute sequelae and evaluate potential therapeutic strategies.

microbiology↗

Activation of nuclear receptors correlates with tuberculosis severity and is a target for host-directed therapy

The immune response to Mycobacterium tuberculosis is accompanied by metabolic adaptations that fuel host immunity, but that are exploited by the pathogen to ensure persistence and growth. Nuclear receptors, such as liver-X-receptors (LXR), orchestrate macrophage immunometabolic adaptations to infection and globally associate with tuberculosis (TB) protection. Here, we show that the "signalling by nuclear receptors" (SNR) pathway is detected in the whole blood of TB patients and that its expression correlates with disease severity. Accordingly, we also show that the activation of the LXR pathway progressively increases in the lungs of M. tuberculosis-infected C57BL/6 and C3HeB/FeJ mice. Pharmacologic activation of LXR, specifically at the chronic stage of infection, improved infection outcomes and significantly prolonged the survival of the highly susceptible C3HeB/FeJ mice. Common to both mouse models and to in vitro macrophage infections, LXR activation enhanced bacterial control together with an increase in extracellular cholesterol levels. We propose that progressive LXR activation is required to fine-tune host cholesterol availability during M. tuberculosis infections and restrict access to this nutrient during chronic stages of infections. Collectively, we identify the SNR pathway as a potential biomarker of TB severity and timely LXR activation as a candidate host-directed therapy.

immunology↗

Serotonergic mediation of orienting and defensive responses in zebrafish

Serotonin (5-HT) is involved in arousal and defensive responses, both of which represent modulators of attention and orienting. Orienting responses (ORs), considered as a unit of attentional processing, are elicited by novel innocuous stimuli, differ from defense reflexes (DR)s, as the latter are elicited by painful and threatening stimuli. When zebrafish (Danio rerio) are exposed to a conspecific alarm substance (CAS), visual stimuli elicit a DR instead of ORs, suggesting a state of hypervigilance. CAS elicited an OR-to-DR shift, as shown both by the shift from an approach to an escape response when the stimulus was turned on and by the changes in directional focus. Both pCPA and 5-HTP attenuated the CAS-elicited OR-to-DR shift . While pCPA did not alter ORs in animals which were not exposed to CAS, 5-HTP abolished those responses, suggesting that the serotonergic tone is important in regulating the general arousal levels in zebrafish.

neuroscience↗