Publications by authors named "C Cappello"

Background: Non-Small Cell Lung Cancer (NSCLC) is the leading cause of cancer death worldwide. Although immune checkpoint inhibitors (ICIs) have shown remarkable clinical efficacy, they can also induce a paradoxical cancer acceleration, known as hyperprogressive disease (HPD), whose causative mechanisms are still unclear.

Methods: This study investigated the mechanisms of ICI resistance in an HPD-NSCLC model.

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Antibodies directed against surface antigens of tumor cells are commonly found in sera of cancer patients and of oncological animal models. Polyclonal antibodies directed against various epitopes of the same antigen may be spontaneously elicited by tumor antigens or may result from the administration of specific vaccines and other immunostimulating treatments. Furthermore, after therapeutic administration of monoclonal antibodies, the antibody will be detectable in the bloodstream for several weeks.

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Modelling multivariate spatio-temporal data with complex dependency structures is a challenging task but can be simplified by assuming that the original variables are generated from independent latent components. If these components are found, they can be modelled univariately. Blind source separation aims to recover the latent components by estimating the unknown linear or nonlinear unmixing transformation based on the observed data only.

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Article Synopsis
  • - Lipid rafts are specialized areas in cell membranes rich in cholesterol and sphingolipids, crucial for organizing proteins that facilitate cell signaling, particularly in cancer development.
  • - The review explores how lipid rafts interact with proteins like EGFR and HER2, highlighting their role in cancer therapy resistance, especially in breast and gastric cancers, including their effects on bone metastasis.
  • - Strategies that target lipid rafts and caveolin-1, such as cholesterol-lowering drugs, might improve the effectiveness of anti-HER2 therapies by enhancing drug delivery and overcoming resistance mechanisms.
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Fava bean ( L.) is a protein-rich pulse with high nutritional value, but its functional and sensory characteristics limit its application in foods. Solid-state fermentation (SSF) can modify the composition of plant proteins, modulate its functionality, and enhance the sensory aspects.

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