Search Results - "Escriba, Pablo V."
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Corrigendum: Editorial: Metabolic modulation of cellular function
Published in Frontiers in cell and developmental biology (11-04-2024)“…[This corrects the article DOI: 10.3389/fcell.2024.1395922.]…”
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Editorial: Metabolic modulation of cellular function
Published in Frontiers in cell and developmental biology (2024)Get full text
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Minerval (2-hydroxyoleic acid) causes cancer cell selective toxicity by uncoupling oxidative phosphorylation and compromising bioenergetic compensation capacity
Published in Bioscience reports (31-01-2019)“…This work tests bioenergetic and cell-biological implications of the synthetic fatty acid Minerval (2-hydroxyoleic acid), previously demonstrated to act by…”
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Membrane Lipid Composition: Effect on Membrane and Organelle Structure, Function and Compartmentalization and Therapeutic Avenues
Published in International journal of molecular sciences (01-05-2019)“…Biological membranes are key elements for the maintenance of cell architecture and physiology. Beyond a pure barrier separating the inner space of the cell…”
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Editorial: Using Small Molecules to Treat Macromolecule Storage Disorders
Published in Frontiers in cell and developmental biology (27-11-2020)Get full text
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Multifaceted Analyses of Isolated Mitochondria Establish the Anticancer Drug 2-Hydroxyoleic Acid as an Inhibitor of Substrate Oxidation and an Activator of Complex IV-Dependent State 3 Respiration
Published in Cells (Basel, Switzerland) (07-02-2022)“…The synthetic fatty acid 2-hydroxyoleic acid (2OHOA) has been extensively investigated as a cancer therapy mainly based on its regulation of membrane lipid…”
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Membrane-lipid therapy: A historical perspective of membrane-targeted therapies — From lipid bilayer structure to the pathophysiological regulation of cells
Published in Biochimica et biophysica acta. Biomembranes (01-09-2017)“…Our current understanding of membrane lipid composition, structure and functions has led to the investigation of their role in cell signaling, both in healthy…”
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The effect of natural and synthetic fatty acids on membrane structure, microdomain organization, cellular functions and human health
Published in Biochimica et biophysica acta (01-06-2014)“…This review deals with the effects of synthetic and natural fatty acids on the biophysical properties of membranes, and on their implication on cell function…”
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Membrane lipid therapy: Modulation of the cell membrane composition and structure as a molecular base for drug discovery and new disease treatment
Published in Progress in lipid research (01-07-2015)“…Nowadays we understand cell membranes not as a simple double lipid layer but as a collection of complex and dynamic protein–lipid structures and microdomains…”
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Sphingomyelin and sphingomyelin synthase (SMS) in the malignant transformation of glioma cells and in 2-hydroxyoleic acid therapy
Published in Proceedings of the National Academy of Sciences - PNAS (06-12-2011)“…The mechanism of action of 2-hydroxyoleic acid (2OHOA), a potent antitumor compound, has not yet been fully elucidated. Here, we show that human cancer cells…”
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Structural basis of glycogen branching enzyme deficiency and pharmacologic rescue by rational peptide design
Published in Human molecular genetics (15-10-2015)“…Glycogen branching enzyme 1 (GBE1) plays an essential role in glycogen biosynthesis by generating α-1,6-glucosidic branches from α-1,4-linked glucose chains,…”
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Antimicrobial activity, membrane interaction and structural features of short arginine-rich antimicrobial peptides
Published in Frontiers in microbiology (05-10-2023)“…Antimicrobial activity of many AMPs can be improved by lysine-to-arginine substitution due to a more favourable interaction of arginine guanidinium moiety with…”
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The Antimicrobial Peptide 1018-K6 Interacts Distinctly with Eukaryotic and Bacterial Membranes, the Basis of Its Specificity and Bactericidal Activity
Published in International journal of molecular sciences (16-10-2022)“…Since penicillin was discovered, antibiotics have been critical in the fight against infections. However, antibiotic misuse has led to drug resistance, which…”
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Membrane-lipid therapy: a new approach in molecular medicine
Published in Trends in molecular medicine (2006)“…Although most drugs bind to proteins and regulate their activity, some drugs act through a new therapeutic approach called membrane-lipid therapy and bind to…”
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Regulation of the cancer cell membrane lipid composition by NaCHOleate: effects on cell signaling and therapeutical relevance in glioma
Published in Biochimica et biophysica acta (01-06-2014)“…This review summarizes the cellular bases of the effects of NaCHOleate (2-hydroxyoleic acid; 2OHOA; Minerval) against glioma and other types of tumors…”
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A Phase 1/2A trial of idroxioleic acid: first-in-class sphingolipid regulator and glioma cell autophagy inducer with antitumor activity in refractory glioma
Published in British journal of cancer (21-09-2023)“…Background The first-in-class brain-penetrating synthetic hydroxylated lipid idroxioleic acid (2-OHOA; sodium 2-hydroxyoleate), activates sphingomyelin…”
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Lipid–protein interactions in GPCR-associated signaling
Published in Biochimica et biophysica acta (01-04-2007)“…Signal transduction via G-protein-coupled receptors (GPCRs) is a fundamental pathway through which the functions of an individual cell can be integrated within…”
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Fundamentals of Membrane Lipid Replacement: A Natural Medicine Approach to Repairing Cellular Membranes and Reducing Fatigue, Pain, and Other Symptoms While Restoring Function in Chronic Illnesses and Aging
Published in Membranes (Basel) (29-11-2021)“…Membrane Lipid Replacement (MLR) uses natural membrane lipid supplements to safely replace damaged, oxidized lipids in membranes in order to restore membrane…”
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Targeting the Notch-Furin axis with 2-hydroxyoleic acid: a key mechanism in glioblastoma therapy
Published in Cellular oncology (Dordrecht) (14-10-2024)“…Glioblastomas (GBMs) are highly treatment-resistant and aggressive brain tumors. 2OHOA, which is currently running a phase IIB/III clinical trial for newly…”
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2-Hydroxyoleate, a nontoxic membrane binding anticancer drug, induces glioma cell differentiation and autophagy
Published in Proceedings of the National Academy of Sciences - PNAS (29-05-2012)“…Despite recent advances in the development of new cancer therapies, the treatment options for glioma remain limited, and the survival rate of patients has…”
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