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N-palmitoyl-D-glucosamine, A Natural Monosaccharide-Based Glycolipid, Inhibits TLR4 and Prevents LPS-Induced Inflammation and Neuropathic Pain in Mice

Toll-like receptors (TLRs) are key receptors through which infectious and non-infectious challenges act with consequent activation of the inflammatory cascade that plays a critical function in various acute and chronic diseases, behaving as amplification and chronicization factors of the inflammator...

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Autores principales: Iannotta, Monica, Belardo, Carmela, Trotta, Maria Consiglia, Iannotti, Fabio Arturo, Vitale, Rosa Maria, Maisto, Rosa, Boccella, Serena, Infantino, Rosmara, Ricciardi, Flavia, Mirto, Benito Fabio, Ferraraccio, Franca, Panarese, Iacopo, Amodeo, Pietro, Tunisi, Lea, Cristino, Luigia, D’Amico, Michele, di Marzo, Vincenzo, Luongo, Livio, Maione, Sabatino, Guida, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7867376/
https://www.ncbi.nlm.nih.gov/pubmed/33540826
http://dx.doi.org/10.3390/ijms22031491
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author Iannotta, Monica
Belardo, Carmela
Trotta, Maria Consiglia
Iannotti, Fabio Arturo
Vitale, Rosa Maria
Maisto, Rosa
Boccella, Serena
Infantino, Rosmara
Ricciardi, Flavia
Mirto, Benito Fabio
Ferraraccio, Franca
Panarese, Iacopo
Amodeo, Pietro
Tunisi, Lea
Cristino, Luigia
D’Amico, Michele
di Marzo, Vincenzo
Luongo, Livio
Maione, Sabatino
Guida, Francesca
author_facet Iannotta, Monica
Belardo, Carmela
Trotta, Maria Consiglia
Iannotti, Fabio Arturo
Vitale, Rosa Maria
Maisto, Rosa
Boccella, Serena
Infantino, Rosmara
Ricciardi, Flavia
Mirto, Benito Fabio
Ferraraccio, Franca
Panarese, Iacopo
Amodeo, Pietro
Tunisi, Lea
Cristino, Luigia
D’Amico, Michele
di Marzo, Vincenzo
Luongo, Livio
Maione, Sabatino
Guida, Francesca
author_sort Iannotta, Monica
collection PubMed
description Toll-like receptors (TLRs) are key receptors through which infectious and non-infectious challenges act with consequent activation of the inflammatory cascade that plays a critical function in various acute and chronic diseases, behaving as amplification and chronicization factors of the inflammatory response. Previous studies have shown that synthetic analogues of lipid A based on glucosamine with few chains of unsaturated and saturated fatty acids, bind MD-2 and inhibit TLR4 receptors. These synthetic compounds showed antagonistic activity against TLR4 activation in vitro by LPS, but little or no activity in vivo. This study aimed to show the potential use of N-palmitoyl-D-glucosamine (PGA), a bacterial molecule with structural similarity to the lipid A component of LPS, which could be useful for preventing LPS-induced tissue damage or even peripheral neuropathies. Molecular docking and molecular dynamics simulations showed that PGA stably binds MD-2 with a MD-2/(PGA)3 stoichiometry. Treatment with PGA resulted in the following effects: (i) it prevented the NF-kB activation in LPS stimulated RAW264.7 cells; (ii) it decreased LPS-induced keratitis and corneal pro-inflammatory cytokines, whilst increasing anti-inflammatory cytokines; (iii) it normalized LPS-induced miR-20a-5p and miR-106a-5p upregulation and increased miR-27a-3p levels in the inflamed corneas; (iv) it decreased allodynia in peripheral neuropathy induced by oxaliplatin or formalin, but not following spared nerve injury of the sciatic nerve (SNI); (v) it prevented the formalin- or oxaliplatin-induced myelino-axonal degeneration of sciatic nerve. SIGNIFICANCE STATEMENT We report that PGA acts as a TLR4 antagonist and this may be the basis of its potent anti-inflammatory activity. Being unique because of its potency and stability, as compared to other similar congeners, PGA can represent a tool for the optimization of new TLR4 modulating drugs directed against the cytokine storm and the chronization of inflammation.
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spelling pubmed-78673762021-02-07 N-palmitoyl-D-glucosamine, A Natural Monosaccharide-Based Glycolipid, Inhibits TLR4 and Prevents LPS-Induced Inflammation and Neuropathic Pain in Mice Iannotta, Monica Belardo, Carmela Trotta, Maria Consiglia Iannotti, Fabio Arturo Vitale, Rosa Maria Maisto, Rosa Boccella, Serena Infantino, Rosmara Ricciardi, Flavia Mirto, Benito Fabio Ferraraccio, Franca Panarese, Iacopo Amodeo, Pietro Tunisi, Lea Cristino, Luigia D’Amico, Michele di Marzo, Vincenzo Luongo, Livio Maione, Sabatino Guida, Francesca Int J Mol Sci Article Toll-like receptors (TLRs) are key receptors through which infectious and non-infectious challenges act with consequent activation of the inflammatory cascade that plays a critical function in various acute and chronic diseases, behaving as amplification and chronicization factors of the inflammatory response. Previous studies have shown that synthetic analogues of lipid A based on glucosamine with few chains of unsaturated and saturated fatty acids, bind MD-2 and inhibit TLR4 receptors. These synthetic compounds showed antagonistic activity against TLR4 activation in vitro by LPS, but little or no activity in vivo. This study aimed to show the potential use of N-palmitoyl-D-glucosamine (PGA), a bacterial molecule with structural similarity to the lipid A component of LPS, which could be useful for preventing LPS-induced tissue damage or even peripheral neuropathies. Molecular docking and molecular dynamics simulations showed that PGA stably binds MD-2 with a MD-2/(PGA)3 stoichiometry. Treatment with PGA resulted in the following effects: (i) it prevented the NF-kB activation in LPS stimulated RAW264.7 cells; (ii) it decreased LPS-induced keratitis and corneal pro-inflammatory cytokines, whilst increasing anti-inflammatory cytokines; (iii) it normalized LPS-induced miR-20a-5p and miR-106a-5p upregulation and increased miR-27a-3p levels in the inflamed corneas; (iv) it decreased allodynia in peripheral neuropathy induced by oxaliplatin or formalin, but not following spared nerve injury of the sciatic nerve (SNI); (v) it prevented the formalin- or oxaliplatin-induced myelino-axonal degeneration of sciatic nerve. SIGNIFICANCE STATEMENT We report that PGA acts as a TLR4 antagonist and this may be the basis of its potent anti-inflammatory activity. Being unique because of its potency and stability, as compared to other similar congeners, PGA can represent a tool for the optimization of new TLR4 modulating drugs directed against the cytokine storm and the chronization of inflammation. MDPI 2021-02-02 /pmc/articles/PMC7867376/ /pubmed/33540826 http://dx.doi.org/10.3390/ijms22031491 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Iannotta, Monica
Belardo, Carmela
Trotta, Maria Consiglia
Iannotti, Fabio Arturo
Vitale, Rosa Maria
Maisto, Rosa
Boccella, Serena
Infantino, Rosmara
Ricciardi, Flavia
Mirto, Benito Fabio
Ferraraccio, Franca
Panarese, Iacopo
Amodeo, Pietro
Tunisi, Lea
Cristino, Luigia
D’Amico, Michele
di Marzo, Vincenzo
Luongo, Livio
Maione, Sabatino
Guida, Francesca
N-palmitoyl-D-glucosamine, A Natural Monosaccharide-Based Glycolipid, Inhibits TLR4 and Prevents LPS-Induced Inflammation and Neuropathic Pain in Mice
title N-palmitoyl-D-glucosamine, A Natural Monosaccharide-Based Glycolipid, Inhibits TLR4 and Prevents LPS-Induced Inflammation and Neuropathic Pain in Mice
title_full N-palmitoyl-D-glucosamine, A Natural Monosaccharide-Based Glycolipid, Inhibits TLR4 and Prevents LPS-Induced Inflammation and Neuropathic Pain in Mice
title_fullStr N-palmitoyl-D-glucosamine, A Natural Monosaccharide-Based Glycolipid, Inhibits TLR4 and Prevents LPS-Induced Inflammation and Neuropathic Pain in Mice
title_full_unstemmed N-palmitoyl-D-glucosamine, A Natural Monosaccharide-Based Glycolipid, Inhibits TLR4 and Prevents LPS-Induced Inflammation and Neuropathic Pain in Mice
title_short N-palmitoyl-D-glucosamine, A Natural Monosaccharide-Based Glycolipid, Inhibits TLR4 and Prevents LPS-Induced Inflammation and Neuropathic Pain in Mice
title_sort n-palmitoyl-d-glucosamine, a natural monosaccharide-based glycolipid, inhibits tlr4 and prevents lps-induced inflammation and neuropathic pain in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7867376/
https://www.ncbi.nlm.nih.gov/pubmed/33540826
http://dx.doi.org/10.3390/ijms22031491
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