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di Maio, A.

Publications and source records attributed to di Maio, A..

2 recordsLinked to original sources

Enhanced antifungal activity of NK-92 cells against Candida albicans mediated by a mannan-specific chimeric antigen receptor

Chimeric antigen receptors (CARs) offer promising prospects for innovative cell-based therapies against invasive fungal infections such as invasive candidiasis. Here, we have developed four CARs targeting Candida albicans with distinct single-chain variable fragments (scFvs): scFv3-CAR, scFv5-CAR, scFv12-CAR, and scFv{kappa}3-1-CAR. In T cells, scFv5-CAR induced IL-2 expression in response to C. albicans hyphae, while scFv3-CAR and scFv12-CAR did not mediate cell activation against C. albicans. Notably, scFv{kappa}3-1-CAR mediated the strongest cell activation against C. albicans yeast, hyphae, and other clinically relevant Candida species. scFv{kappa}3-1-CAR-NK-92 cells exhibited elevated IFN-{gamma} and CD107a expression, reducing C. albicans viability. NOD scid gamma (NSG) mice treated with scFv{kappa}3-1-CAR-NK-92 cells had reduced C. albicans burden in the kidney 24 hours postinfection. We showed that scFv{kappa}3-1-CAR targets C. albicans mannan but no other glycans in glycan microarray screening analyses. These findings reveal the scFv{kappa}3-1-CAR potential as a therapeutic strategy for treating Candida spp. by modifying peripheral blood mononuclear cells. ImportanceRecent studies on novel immunotherapies, including chimeric antigen receptor (CAR)-T cells, have shown promising results in preclinical models against invasive fungal infections (IFIs). However, the application of CAR technology in natural killer (NK) cells for treating IFIs remains unexplored. NK cells play a key role in early fungal clearance due to their antifungal activity mediated by granzymes, perforins, and the secretion of proinflammatory cytokines. This study is the first to demonstrate the feasibility and efficacy of CAR-modified NK cells targeting Candida spp. We provided proof-of-concept data showing that CAR-expressing NK cells exhibit enhanced activation and antifungal effects against clinically relevant Candida species by targeting mannan in the fungal cell wall. These findings are significant as they open new avenues for developing CAR-NK-based therapies to treat invasive candidiasis - a severe infection with limited treatment options and high mortality rates, particularly in immunocompromised patients.

bioengineering↗

UPF1 is required for gene expression in mitochondria and for the elimination of paternal mtDNA

UPF1 is a conserved RNA helicase in eukaryotes typically defined by its role in nonsense-mediated mRNA decay (NMD). This study presents ChIP-seq evidence indicating an RNA-dependent interaction of UPF1 with mtDNA, consistent with an RNA-mediated association. Mitochondrial localisation was observed as discrete foci throughout the mitochondrial network, frequently in proximity to nucleoids, as confirmed microscopically by immunostaining and GFP tagging of UPF1 in different fly tissues and S2 cells. Depletion of UPF1, but not depletion of the other core NMD factors UPF2 or UPF3, in salivary glands results in smaller mitochondria and, unexpectedly, increased respiratory activity. This increase is observed specifically in salivary glands and correlates with elevated expression of nuclear genes involved in respiratory chain assembly and mitochondrial translation. Changes in mtDNA-encoded gene expression are also observed upon the depletion of UPF1. These findings indicate that UPF1 operates in mitochondria and, independently of canonical NMD, is linked to mitochondrial gene expression and may coordinate nuclear and mitochondrial gene expression in a tissue-specific manner.

cell biology↗