Cargando…

Aminoclay Nanoparticles Induce Anti-Inflammatory Dendritic Cells to Attenuate LPS-Elicited Pro-Inflammatory Immune Responses

Although 3-aminopropyl functionalized magnesium phyllosilicate nanoparticles (hereafter aminoclay nanoparticles, ACNs) are well-known nanomaterials employed as drug carriers, their effects on immune cells remain unclear. To address this issue, we explored murine dendritic cells (DCs) as these cells...

Descripción completa

Detalles Bibliográficos
Autores principales: Park, Hyun Jung, Lee, Sung Won, Song, Jae Geun, Van Kaer, Luc, Cheon, Jae Hee, Lim, Soo-Jeong, Han, Hyo-Kyung, Hong, Seokmann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9787634/
https://www.ncbi.nlm.nih.gov/pubmed/36557876
http://dx.doi.org/10.3390/molecules27248743
_version_ 1784858559057494016
author Park, Hyun Jung
Lee, Sung Won
Song, Jae Geun
Van Kaer, Luc
Cheon, Jae Hee
Lim, Soo-Jeong
Han, Hyo-Kyung
Hong, Seokmann
author_facet Park, Hyun Jung
Lee, Sung Won
Song, Jae Geun
Van Kaer, Luc
Cheon, Jae Hee
Lim, Soo-Jeong
Han, Hyo-Kyung
Hong, Seokmann
author_sort Park, Hyun Jung
collection PubMed
description Although 3-aminopropyl functionalized magnesium phyllosilicate nanoparticles (hereafter aminoclay nanoparticles, ACNs) are well-known nanomaterials employed as drug carriers, their effects on immune cells remain unclear. To address this issue, we explored murine dendritic cells (DCs) as these cells belong to the innate arm of the immune system and function as antigen-presenting cells to elicit adaptive immune responses. We examined the in vitro effects of ACNs on DCs isolated from B6 mice. ACN treatment significantly down-regulated the expression of inflammasome-related markers, including NLRP3, caspase-1, and IL1β. The ACNs-induced anti-inflammatory DC phenotype was further confirmed by down-regulation of the AKT/mTOR/HIF1α signaling pathway. Such anti-inflammatory effects of ACNs on DCs occurred independently of DC subtypes. To document the effects of ACNs on DCs more clearly, we examined their anti-inflammatory effects on lipopolysaccharide (LPS)-activated DCs. As expected, excessive inflammatory responses (increased mitochondrial ROS and Th1-type cytokines such as IL12 and IL1β) of LPS-activated DCs were dramatically attenuated by ACN treatment. Furthermore, ACNs down-regulated IFNγ production by antigen-specific CD4(+) T cells, which is consistent with a reduced inflammatory phenotype of DCs. Overall, our results provide support for employing ACNs as drug delivery materials with therapeutic potential to control inflammatory disorders.
format Online
Article
Text
id pubmed-9787634
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97876342022-12-24 Aminoclay Nanoparticles Induce Anti-Inflammatory Dendritic Cells to Attenuate LPS-Elicited Pro-Inflammatory Immune Responses Park, Hyun Jung Lee, Sung Won Song, Jae Geun Van Kaer, Luc Cheon, Jae Hee Lim, Soo-Jeong Han, Hyo-Kyung Hong, Seokmann Molecules Article Although 3-aminopropyl functionalized magnesium phyllosilicate nanoparticles (hereafter aminoclay nanoparticles, ACNs) are well-known nanomaterials employed as drug carriers, their effects on immune cells remain unclear. To address this issue, we explored murine dendritic cells (DCs) as these cells belong to the innate arm of the immune system and function as antigen-presenting cells to elicit adaptive immune responses. We examined the in vitro effects of ACNs on DCs isolated from B6 mice. ACN treatment significantly down-regulated the expression of inflammasome-related markers, including NLRP3, caspase-1, and IL1β. The ACNs-induced anti-inflammatory DC phenotype was further confirmed by down-regulation of the AKT/mTOR/HIF1α signaling pathway. Such anti-inflammatory effects of ACNs on DCs occurred independently of DC subtypes. To document the effects of ACNs on DCs more clearly, we examined their anti-inflammatory effects on lipopolysaccharide (LPS)-activated DCs. As expected, excessive inflammatory responses (increased mitochondrial ROS and Th1-type cytokines such as IL12 and IL1β) of LPS-activated DCs were dramatically attenuated by ACN treatment. Furthermore, ACNs down-regulated IFNγ production by antigen-specific CD4(+) T cells, which is consistent with a reduced inflammatory phenotype of DCs. Overall, our results provide support for employing ACNs as drug delivery materials with therapeutic potential to control inflammatory disorders. MDPI 2022-12-09 /pmc/articles/PMC9787634/ /pubmed/36557876 http://dx.doi.org/10.3390/molecules27248743 Text en © 2022 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 Article
Park, Hyun Jung
Lee, Sung Won
Song, Jae Geun
Van Kaer, Luc
Cheon, Jae Hee
Lim, Soo-Jeong
Han, Hyo-Kyung
Hong, Seokmann
Aminoclay Nanoparticles Induce Anti-Inflammatory Dendritic Cells to Attenuate LPS-Elicited Pro-Inflammatory Immune Responses
title Aminoclay Nanoparticles Induce Anti-Inflammatory Dendritic Cells to Attenuate LPS-Elicited Pro-Inflammatory Immune Responses
title_full Aminoclay Nanoparticles Induce Anti-Inflammatory Dendritic Cells to Attenuate LPS-Elicited Pro-Inflammatory Immune Responses
title_fullStr Aminoclay Nanoparticles Induce Anti-Inflammatory Dendritic Cells to Attenuate LPS-Elicited Pro-Inflammatory Immune Responses
title_full_unstemmed Aminoclay Nanoparticles Induce Anti-Inflammatory Dendritic Cells to Attenuate LPS-Elicited Pro-Inflammatory Immune Responses
title_short Aminoclay Nanoparticles Induce Anti-Inflammatory Dendritic Cells to Attenuate LPS-Elicited Pro-Inflammatory Immune Responses
title_sort aminoclay nanoparticles induce anti-inflammatory dendritic cells to attenuate lps-elicited pro-inflammatory immune responses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9787634/
https://www.ncbi.nlm.nih.gov/pubmed/36557876
http://dx.doi.org/10.3390/molecules27248743
work_keys_str_mv AT parkhyunjung aminoclaynanoparticlesinduceantiinflammatorydendriticcellstoattenuatelpselicitedproinflammatoryimmuneresponses
AT leesungwon aminoclaynanoparticlesinduceantiinflammatorydendriticcellstoattenuatelpselicitedproinflammatoryimmuneresponses
AT songjaegeun aminoclaynanoparticlesinduceantiinflammatorydendriticcellstoattenuatelpselicitedproinflammatoryimmuneresponses
AT vankaerluc aminoclaynanoparticlesinduceantiinflammatorydendriticcellstoattenuatelpselicitedproinflammatoryimmuneresponses
AT cheonjaehee aminoclaynanoparticlesinduceantiinflammatorydendriticcellstoattenuatelpselicitedproinflammatoryimmuneresponses
AT limsoojeong aminoclaynanoparticlesinduceantiinflammatorydendriticcellstoattenuatelpselicitedproinflammatoryimmuneresponses
AT hanhyokyung aminoclaynanoparticlesinduceantiinflammatorydendriticcellstoattenuatelpselicitedproinflammatoryimmuneresponses
AT hongseokmann aminoclaynanoparticlesinduceantiinflammatorydendriticcellstoattenuatelpselicitedproinflammatoryimmuneresponses