Publications by authors named "Sara Exposito"

Sirtuin 2 (SIRT2) has been proposed to have a central role on aging, inflammation, cancer and neurodegenerative diseases; however, its specific function remains controversial. Recent studies propose SIRT2 pharmacological inhibition as a therapeutic strategy for several neurodegenerative diseases including Alzheimer's disease (AD). Surprisingly, none of these published studies regarding the potential interest of SIRT2 inhibition has assessed the peripheral adverse side consequences of this treatment.

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Dietary polyphenols have beneficial effects in situations of impaired cognition in acute models of neurodegeneration. The possibility that they may have a direct effect on the electrical activity of neuronal populations has not been tested. We explored the electrophysiological action of protocatechuic acid (PCA) on CA1 pyramidal cells ex vivo and network activity in anesthetized female rats using pathway-specific field potential (FP) generators obtained from laminar FPs in cortex and hippocampus.

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Article Synopsis
  • The study focuses on a new DNA-based next-generation sequencing (NGS) method for detecting and monitoring BCR::ABL1 KD mutations in patients with chronic myeloid leukemia (CML) and Philadelphia-positive acute lymphoblastic leukemia (ALL).
  • This NGS method shows high sensitivity (1.0E-4) and a strong correlation with an established RNA-based method, indicating that it can effectively quantify ABL1 mutations.
  • The study analyzed 162 samples from 129 patients, identifying significant mutations in both CML and B-ALL cases, including instances where mutations were detected at very low disease levels.
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Introduction: Parvalbumin (PV)-positive cells are strategic elements of neuronal networks capable of influencing memory and learning processes. However, it is not known whether pituitary hormones may be related to PV expression in the hippocampus - a part of the limbic system with important functions in learning and memory.

Objective: Since previous studies indicate that prolactin (PRL) plays a significant role in hippocampal-dependent learning and synaptic plasticity, we hypothesized that a rise in PRL levels can modify PV expression in the hippocampus.

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