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Rizzi, N.

Publications and source records attributed to Rizzi, N..

3 recordsLinked to original sources

Spatiotemporal atlas of pro-inflammatory (NF-kB) and anti-inflammatory (STAT6) signalling using reporter mice during mRNA vaccination

The immunization process unfolds through a precisely orchestrated sequence of innate and adaptive events across distinct anatomical sites. Although many mechanisms underlying vaccination are well described, most vaccines have been developed empirically, partly due to the lack of tools enabling rapid, organ-specific analysis of immune activation. To address this gap, we developed and validated a novel STAT6 reporter mouse enabling dynamic in vivo whole-body imaging and ex vivo analysis of STAT6-mediated anti-inflammatory signalling, and combined it with an established NF-{kappa}B reporter model to dissect immune activation induced by two LNP-encapsulated mRNA vaccines encoding the same antigen but differing in RNA chemistry (unmodified versus N{superscript 1}-methyl-pseudouridine (m{superscript 1}{Psi})-modified). This dual-reporter system enabled the creation of a spatiotemporal atlas of vaccine-induced signalling, revealing chemistry-dependent immune dynamics and identifying the liver as a predominant early hub for both NF-{kappa}B and STAT6 activity following systemic administration. Integration with antibody measurements demonstrated that early STAT6 activation followed by rapid signal resolution--rather than prolonged NF-{kappa}B-mediated inflammation--correlated with robust humoral responses, suggesting that monitoring NF-{kappa}B and STAT6 dynamics could provide predictive insight into vaccine immunogenicity. Together, these findings establish NF-{kappa}B and STAT6 reporter mice as rapid in vivo screening tools for the early assessment of vaccine immunogenicity and performance. By enabling dynamic, organ-resolved immune profiling, this approach paves the way for more rational, mechanism-driven design of mRNA vaccines and underscores the importance of further investigating the effects of vaccines on the liver, both as a primary LNP target and as an immunologically tolerogenic organ.

immunology↗

MyoRep: a novel reporter system to detect early muscle atrophy in vitro and in vivo

Muscle atrophy occurs during physiological (i.e., fasting, aging) and pathological (i.e., amyotrophic lateral sclerosis, cancer) conditions and anticipates death. Since not all patients will undergo muscle wasting, it would be highly useful to identify them soon to intervene early. We have studied the promoters/enhancers of a subset of atrophy-related genes or atrogenes upregulated in muscles of rodents during various kinds of atrophy (i.e., disuse, diabetes, cancer, fasting, uremia) for their ability to induce early atrophy. Comparing their upstream non-coding regions, using as backbone MuRF1 promoter (one of the earliest muscle-specific genes induced by wasting), we cloned various promoters upstream of a doubled reporter system (FLuciferase/tdTomato). Through in vitro and in vivo studies in mice subjected to denervation or cancer injection, we selected a sequence (i.e., MyoRep) able to predict atrophy upon cut of the sciatic nerve or cancer. In vivo imaging of MyoRep mice emit a bioluminescent signal earlier than muscle loss. Importantly, MyoRep was unable to sense atrophy during fasting or physiological variations following the circadian rhythms. Since MyoRep can discriminate muscle loss due to pathological conditions from physiological ones anticipating wasting, it represents an unprecedented tool to predict it early in various diseases with local or systemic atrophy.

genetics↗

Sex-specific microglial responses to glucocerebrosidase inhibition: relevance to GBA1-linked Parkinson disease

Microglia are heterogenous cells characterized by distinct populations each contributing to specific biological processes in the nervous system, including neuroprotection. To elucidate the impact of sex-specific microglia heterogenicity to the susceptibility of neuronal stress, we analysed the dynamic changes in shape and motility occurring in primary mouse microglia following pro-inflammatory or neurotoxic insults, thus finding sex-specific responses of microglial subpopulations. Male microglia exhibited a pro-inflammatory phenotype, whereas female microglia showed enhanced neuroprotective capabilities associated with the activation of Nrf2 detoxification pathway in neurons. The sex difference in neuroprotective functions is lost by inhibition of glucocerebrosidase, the product of the GBA1 gene, mutations of which are the major risk factor for Parkinsons disease (PD). This finding is consistent with the increased risk of PD observed in female carriers of GBA1 mutation, when compared with wild type population, suggesting a role for microglial functionality in the etiopathogenesis of PD-GBA1.

neuroscience↗