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Novel Lipids to Regulate Obesity and Brain Function: Comparing Available Evidence and Insights from QSAR In Silico Models

Lipid molecules, such as policosanol, ergosterol, sphingomyelin, omega 3 rich phosphatidylcholine, α-tocopherol, and sodium butyrate, have emerged as novel additions to the portfolio of bioactive lipids. In this state-of-the-art review, we discuss these lipids, and their activity against obesity and...

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Autores principales: Teixeira, Francisca S., Costa, Paula T., Soares, Ana M. S., Fontes, Ana Luiza, Pintado, Manuela E., Vidigal, Susana S. M. P., Pimentel, Lígia L., Rodríguez-Alcalá, Luís M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10341324/
https://www.ncbi.nlm.nih.gov/pubmed/37444314
http://dx.doi.org/10.3390/foods12132576
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author Teixeira, Francisca S.
Costa, Paula T.
Soares, Ana M. S.
Fontes, Ana Luiza
Pintado, Manuela E.
Vidigal, Susana S. M. P.
Pimentel, Lígia L.
Rodríguez-Alcalá, Luís M.
author_facet Teixeira, Francisca S.
Costa, Paula T.
Soares, Ana M. S.
Fontes, Ana Luiza
Pintado, Manuela E.
Vidigal, Susana S. M. P.
Pimentel, Lígia L.
Rodríguez-Alcalá, Luís M.
author_sort Teixeira, Francisca S.
collection PubMed
description Lipid molecules, such as policosanol, ergosterol, sphingomyelin, omega 3 rich phosphatidylcholine, α-tocopherol, and sodium butyrate, have emerged as novel additions to the portfolio of bioactive lipids. In this state-of-the-art review, we discuss these lipids, and their activity against obesity and mental or neurological disorders, with a focus on their proposed cellular targets and the ways in which they produce their beneficial effects. Furthermore, this available information is compared with that provided by in silico Absorption, Distribution, Metabolism, Excretion, and Toxicity (ADMET) models in order to understand the usefulness of these tools for the discovery of new bioactive compounds. Accordingly, it was possible to highlight how these lipids interact with various cellular targets related to the molecule transportation and absorption (e.g., α-tocopherol transfer protein for α-Tocopherol, ATP-binding cassette ABC transporters or Apolipoprotein E for sphingomyelins and phospholipids) or other processes, such as the regulation of gene expression (involving Sterol Regulatory Element-Binding Proteins for ergosterol or Peroxisome Proliferator-Activated Receptors in the case of policosanol) and inflammation (the regulation of interleukins by sodium butyrate). When comparing the literature with in silico Quantitative Structure–Activity Relationship (QSAR) models, it was observed that although they are useful for selecting bioactive molecules when compared in batch, the information they provide does not coincide when assessed individually. Our review highlights the importance of considering a broad range of lipids as potential bioactives and the need for accurate prediction of ADMET parameters in the discovery of new biomolecules. The information presented here provides a useful resource for researchers interested in developing new strategies for the treatment of obesity and mental or neurological disorders.
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spelling pubmed-103413242023-07-14 Novel Lipids to Regulate Obesity and Brain Function: Comparing Available Evidence and Insights from QSAR In Silico Models Teixeira, Francisca S. Costa, Paula T. Soares, Ana M. S. Fontes, Ana Luiza Pintado, Manuela E. Vidigal, Susana S. M. P. Pimentel, Lígia L. Rodríguez-Alcalá, Luís M. Foods Review Lipid molecules, such as policosanol, ergosterol, sphingomyelin, omega 3 rich phosphatidylcholine, α-tocopherol, and sodium butyrate, have emerged as novel additions to the portfolio of bioactive lipids. In this state-of-the-art review, we discuss these lipids, and their activity against obesity and mental or neurological disorders, with a focus on their proposed cellular targets and the ways in which they produce their beneficial effects. Furthermore, this available information is compared with that provided by in silico Absorption, Distribution, Metabolism, Excretion, and Toxicity (ADMET) models in order to understand the usefulness of these tools for the discovery of new bioactive compounds. Accordingly, it was possible to highlight how these lipids interact with various cellular targets related to the molecule transportation and absorption (e.g., α-tocopherol transfer protein for α-Tocopherol, ATP-binding cassette ABC transporters or Apolipoprotein E for sphingomyelins and phospholipids) or other processes, such as the regulation of gene expression (involving Sterol Regulatory Element-Binding Proteins for ergosterol or Peroxisome Proliferator-Activated Receptors in the case of policosanol) and inflammation (the regulation of interleukins by sodium butyrate). When comparing the literature with in silico Quantitative Structure–Activity Relationship (QSAR) models, it was observed that although they are useful for selecting bioactive molecules when compared in batch, the information they provide does not coincide when assessed individually. Our review highlights the importance of considering a broad range of lipids as potential bioactives and the need for accurate prediction of ADMET parameters in the discovery of new biomolecules. The information presented here provides a useful resource for researchers interested in developing new strategies for the treatment of obesity and mental or neurological disorders. MDPI 2023-07-01 /pmc/articles/PMC10341324/ /pubmed/37444314 http://dx.doi.org/10.3390/foods12132576 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Teixeira, Francisca S.
Costa, Paula T.
Soares, Ana M. S.
Fontes, Ana Luiza
Pintado, Manuela E.
Vidigal, Susana S. M. P.
Pimentel, Lígia L.
Rodríguez-Alcalá, Luís M.
Novel Lipids to Regulate Obesity and Brain Function: Comparing Available Evidence and Insights from QSAR In Silico Models
title Novel Lipids to Regulate Obesity and Brain Function: Comparing Available Evidence and Insights from QSAR In Silico Models
title_full Novel Lipids to Regulate Obesity and Brain Function: Comparing Available Evidence and Insights from QSAR In Silico Models
title_fullStr Novel Lipids to Regulate Obesity and Brain Function: Comparing Available Evidence and Insights from QSAR In Silico Models
title_full_unstemmed Novel Lipids to Regulate Obesity and Brain Function: Comparing Available Evidence and Insights from QSAR In Silico Models
title_short Novel Lipids to Regulate Obesity and Brain Function: Comparing Available Evidence and Insights from QSAR In Silico Models
title_sort novel lipids to regulate obesity and brain function: comparing available evidence and insights from qsar in silico models
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10341324/
https://www.ncbi.nlm.nih.gov/pubmed/37444314
http://dx.doi.org/10.3390/foods12132576
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