Cargando…

Targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes

Provoked by sterile/nonsterile insults, prolonged monocyte mobilization and uncontrolled monocyte/macrophage activation can pose imminent or impending harm to the affected organs. Curiously, folate receptor beta (FRβ), with subnanomolar affinity for the vitamin folic acid (FA), is upregulated during...

Descripción completa

Detalles Bibliográficos
Autores principales: Lu, Yingjuan J., Wheeler, Leroy W., Chu, Haiyan, Kleindl, Paul J., Pugh, Michael, You, Fei, Rao, Satish, Garcia, Gabriela, Wu, Henry Y., da Cunha, Andre P., Johnson, Richard, Westrick, Elaine, Cross, Vicky, Lloyd, Alex, Dircksen, Christina, Klein, Patrick J., Vlahov, Iontcho R., Low, Philip S., Leamon, Christopher P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8561236/
https://www.ncbi.nlm.nih.gov/pubmed/34755134
http://dx.doi.org/10.1016/j.xcrm.2021.100422
_version_ 1784593079854956544
author Lu, Yingjuan J.
Wheeler, Leroy W.
Chu, Haiyan
Kleindl, Paul J.
Pugh, Michael
You, Fei
Rao, Satish
Garcia, Gabriela
Wu, Henry Y.
da Cunha, Andre P.
Johnson, Richard
Westrick, Elaine
Cross, Vicky
Lloyd, Alex
Dircksen, Christina
Klein, Patrick J.
Vlahov, Iontcho R.
Low, Philip S.
Leamon, Christopher P.
author_facet Lu, Yingjuan J.
Wheeler, Leroy W.
Chu, Haiyan
Kleindl, Paul J.
Pugh, Michael
You, Fei
Rao, Satish
Garcia, Gabriela
Wu, Henry Y.
da Cunha, Andre P.
Johnson, Richard
Westrick, Elaine
Cross, Vicky
Lloyd, Alex
Dircksen, Christina
Klein, Patrick J.
Vlahov, Iontcho R.
Low, Philip S.
Leamon, Christopher P.
author_sort Lu, Yingjuan J.
collection PubMed
description Provoked by sterile/nonsterile insults, prolonged monocyte mobilization and uncontrolled monocyte/macrophage activation can pose imminent or impending harm to the affected organs. Curiously, folate receptor beta (FRβ), with subnanomolar affinity for the vitamin folic acid (FA), is upregulated during immune activation in hematopoietic cells of the myeloid lineage. This phenomenon has inspired a strong interest in exploring FRβ-directed diagnostics/therapeutics. Previously, we have reported that FA-targeted aminopterin (AMT) therapy can modulate macrophage function and effectively treat animal models of inflammation. Our current investigation of a lead compound (EC2319) leads to discovery of a highly FR-specific mechanism of action independent of the root causes against inflammatory monocytes. We further show that EC2319 suppresses interleukin-6/interleukin-1β release by FRβ(+) monocytes in a triple co-culture leukemic model of cytokine release syndrome with anti-CD19 chimeric antigen receptor T cells. Because of its chemical stability and metabolically activated linker, EC2319 demonstrates favorable pharmacokinetic characteristics and cross-species translatability to support future pre-clinical and clinical development.
format Online
Article
Text
id pubmed-8561236
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-85612362021-11-08 Targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes Lu, Yingjuan J. Wheeler, Leroy W. Chu, Haiyan Kleindl, Paul J. Pugh, Michael You, Fei Rao, Satish Garcia, Gabriela Wu, Henry Y. da Cunha, Andre P. Johnson, Richard Westrick, Elaine Cross, Vicky Lloyd, Alex Dircksen, Christina Klein, Patrick J. Vlahov, Iontcho R. Low, Philip S. Leamon, Christopher P. Cell Rep Med Article Provoked by sterile/nonsterile insults, prolonged monocyte mobilization and uncontrolled monocyte/macrophage activation can pose imminent or impending harm to the affected organs. Curiously, folate receptor beta (FRβ), with subnanomolar affinity for the vitamin folic acid (FA), is upregulated during immune activation in hematopoietic cells of the myeloid lineage. This phenomenon has inspired a strong interest in exploring FRβ-directed diagnostics/therapeutics. Previously, we have reported that FA-targeted aminopterin (AMT) therapy can modulate macrophage function and effectively treat animal models of inflammation. Our current investigation of a lead compound (EC2319) leads to discovery of a highly FR-specific mechanism of action independent of the root causes against inflammatory monocytes. We further show that EC2319 suppresses interleukin-6/interleukin-1β release by FRβ(+) monocytes in a triple co-culture leukemic model of cytokine release syndrome with anti-CD19 chimeric antigen receptor T cells. Because of its chemical stability and metabolically activated linker, EC2319 demonstrates favorable pharmacokinetic characteristics and cross-species translatability to support future pre-clinical and clinical development. Elsevier 2021-10-19 /pmc/articles/PMC8561236/ /pubmed/34755134 http://dx.doi.org/10.1016/j.xcrm.2021.100422 Text en © 2021 Novartis Pharmaceuticals https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Lu, Yingjuan J.
Wheeler, Leroy W.
Chu, Haiyan
Kleindl, Paul J.
Pugh, Michael
You, Fei
Rao, Satish
Garcia, Gabriela
Wu, Henry Y.
da Cunha, Andre P.
Johnson, Richard
Westrick, Elaine
Cross, Vicky
Lloyd, Alex
Dircksen, Christina
Klein, Patrick J.
Vlahov, Iontcho R.
Low, Philip S.
Leamon, Christopher P.
Targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes
title Targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes
title_full Targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes
title_fullStr Targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes
title_full_unstemmed Targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes
title_short Targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes
title_sort targeting folate receptor beta on monocytes/macrophages renders rapid inflammation resolution independent of root causes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8561236/
https://www.ncbi.nlm.nih.gov/pubmed/34755134
http://dx.doi.org/10.1016/j.xcrm.2021.100422
work_keys_str_mv AT luyingjuanj targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT wheelerleroyw targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT chuhaiyan targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT kleindlpaulj targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT pughmichael targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT youfei targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT raosatish targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT garciagabriela targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT wuhenryy targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT dacunhaandrep targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT johnsonrichard targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT westrickelaine targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT crossvicky targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT lloydalex targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT dircksenchristina targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT kleinpatrickj targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT vlahoviontchor targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT lowphilips targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses
AT leamonchristopherp targetingfolatereceptorbetaonmonocytesmacrophagesrendersrapidinflammationresolutionindependentofrootcauses