Publications by authors named "Simone Torretta"

Article Synopsis
  • - Tumour angiogenesis is crucial for supplying malignant cells with oxygen and nutrients, facilitating their invasion and spread, often resulting in the formation of disorganized and leaky blood vessels due to cytokine activity.
  • - Nicotinamide phosphoribosyltransferase (eNAMPT) is elevated in many cancers, acting not only as a necessary enzyme for energy production but also as a pro-inflammatory cytokine that correlates with cancer aggressiveness and prognosis, especially in breast cancer.
  • - In triple-negative breast cancer, eNAMPT promotes angiogenesis and metastasis by attracting NG2 pericytes and activating pro-inflammatory signaling, with potential therapeutic effects demonstrated by neutralizing eNAMPT with an antibody, pointing towards new anti-
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Heme is an iron-containing porphyrin of vital importance for cell energetic metabolism. High rates of heme synthesis are commonly observed in proliferating cells. Moreover, the cell-surface heme exporter feline leukemia virus subgroup C receptor 1a (FLVCR1a) is overexpressed in several tumor types.

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D-mannose is a monosaccharide approximately a hundred times less abundant than glucose in human blood. Previous studies demonstrated that supraphysiological levels of D-mannose inhibit tumour growth and stimulate regulatory T cell differentiation. It is not known whether D-mannose metabolism affects the function of non-proliferative cells, such as inflammatory macrophages.

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Article Synopsis
  • Extracellular nicotinamide phosphoribosyltransferase (eNAMPT) has been linked to tumor growth and inflammation in cancer through its interaction with the C-C chemokine receptor type 5 (CCR5), but the exact mechanism remains unclear.
  • In experiments using stable cell lines, eNAMPT was shown to not activate key signaling pathways like ERK or induce calcium release alone, but instead inhibited CCR5's response to other signaling molecules like Rantes.
  • The study concludes that eNAMPT acts as a natural antagonist to CCR5, preventing internalization and activation by Rantes, thus impacting cellular calcium signaling and migration in melanoma cells.
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All cells require sustained intracellular energy flux, which is driven by redox chemistry at the subcellular level. NAD, its phosphorylated variant NAD(P), and its reduced forms NAD(P)/NAD(P)H are all redox cofactors with key roles in energy metabolism and are substrates for several NAD-consuming enzymes ( poly(ADP-ribose) polymerases, sirtuins, and others). The nicotinamide salvage pathway, constituted by nicotinamide mononucleotide adenylyltransferase (NMNAT) and nicotinamide phosphoribosyltransferase (NAMPT), mainly replenishes NAD in eukaryotes.

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Curcumin is a unique blend of pharmacophores responsible for the pleiotropy of this natural pigment. In the present study we have replaced the 1,3-dicarbonyl moiety with a 1,2,3-triazole ring to furnish a new class of triazole-curcuminoids as a possible strategy to generate new compounds with different potency and selectivity compared to curcumin. We obtained a proof-of-principle library of 28 compounds tested for their cytotoxicity (SY-SY5Y and HeLa cells) and for their ability to inhibit NF-κB.

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High plasma levels of nicotinamide phosphoribosyltransferase (NAMPT), traditionally considered an intracellular enzyme with a key role in NAD synthesis, have been reported in several oncological, inflammatory and metabolic diseases. We now show that eNAMPT can be actively released by melanoma cells in vitro. We analysed the mechanisms of its release, and we found both classical and non-classical pathway involvement.

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In the present manuscript, starting from the 1,4-benzodiazepin-2-one nucleus, a privileged structure in medicinal chemistry, we have synthesized a novel class of cis-locked combretastatins named combreatabenzodiazepines. They show similar cytotoxic and antitubulin activity compared to combretastatin A-4 in neuroblastoma cells, showing a better pharmacokinetic profile. This class of compounds has therefore the potential for further development as antitubulin agents.

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