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Phage Display Identification of CD100 in Human Atherosclerotic Plaque Macrophages and Foam Cells

Atherosclerosis is a complex disease in which vessels develop plaques comprising dysfunctional endothelium, monocyte derived lipid laden foam cells and activated lymphocytes. Considering that humans and animal models of the disease develop quite distinct plaques, we used human plaques to search for...

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Autores principales: Luque, Maria Carolina Aquino, Gutierrez, Paulo Sampaio, Debbas, Victor, Martins, Waleska Kerllen, Puech-Leao, Pedro, Porto, Georgia, Coelho, Verônica, Boumsell, Laurence, Kalil, Jorge, Stolf, Beatriz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787062/
https://www.ncbi.nlm.nih.gov/pubmed/24098722
http://dx.doi.org/10.1371/journal.pone.0075772
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author Luque, Maria Carolina Aquino
Gutierrez, Paulo Sampaio
Debbas, Victor
Martins, Waleska Kerllen
Puech-Leao, Pedro
Porto, Georgia
Coelho, Verônica
Boumsell, Laurence
Kalil, Jorge
Stolf, Beatriz
author_facet Luque, Maria Carolina Aquino
Gutierrez, Paulo Sampaio
Debbas, Victor
Martins, Waleska Kerllen
Puech-Leao, Pedro
Porto, Georgia
Coelho, Verônica
Boumsell, Laurence
Kalil, Jorge
Stolf, Beatriz
author_sort Luque, Maria Carolina Aquino
collection PubMed
description Atherosclerosis is a complex disease in which vessels develop plaques comprising dysfunctional endothelium, monocyte derived lipid laden foam cells and activated lymphocytes. Considering that humans and animal models of the disease develop quite distinct plaques, we used human plaques to search for proteins that could be used as markers of human atheromas. Phage display peptide libraries were probed to fresh human carotid plaques, and a bound phage homologous to plexin B1, a high affinity receptor for CD100, was identified. CD100 is a member of the semaphorin family expressed by most hematopoietic cells and particularly by activated T cells. CD100 expression was analyzed in human plaques and normal samples. CD100 mRNA and protein were analyzed in cultured monocytes, macrophages and foam cells. The effects of CD100 in oxLDL-induced foam cell formation and in CD36 mRNA abundance were evaluated. Human atherosclerotic plaques showed strong labeling of CD100/SEMA4D. CD100 expression was further demonstrated in peripheral blood monocytes and in in vitro differentiated macrophages and foam cells, with diminished CD100 transcript along the differentiation of these cells. Incubation of macrophages with CD100 led to a reduction in oxLDL-induced foam cell formation probably through a decrease of CD36 expression, suggesting for the first time an atheroprotective role for CD100 in the human disease. Given its differential expression in the numerous foam cells and macrophages of the plaques and its capacity to decrease oxLDL engulfment by macrophages we propose that CD100 may have a role in atherosclerotic plaque development, and may possibly be employed in targeted treatments of these atheromas.
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spelling pubmed-37870622013-10-04 Phage Display Identification of CD100 in Human Atherosclerotic Plaque Macrophages and Foam Cells Luque, Maria Carolina Aquino Gutierrez, Paulo Sampaio Debbas, Victor Martins, Waleska Kerllen Puech-Leao, Pedro Porto, Georgia Coelho, Verônica Boumsell, Laurence Kalil, Jorge Stolf, Beatriz PLoS One Research Article Atherosclerosis is a complex disease in which vessels develop plaques comprising dysfunctional endothelium, monocyte derived lipid laden foam cells and activated lymphocytes. Considering that humans and animal models of the disease develop quite distinct plaques, we used human plaques to search for proteins that could be used as markers of human atheromas. Phage display peptide libraries were probed to fresh human carotid plaques, and a bound phage homologous to plexin B1, a high affinity receptor for CD100, was identified. CD100 is a member of the semaphorin family expressed by most hematopoietic cells and particularly by activated T cells. CD100 expression was analyzed in human plaques and normal samples. CD100 mRNA and protein were analyzed in cultured monocytes, macrophages and foam cells. The effects of CD100 in oxLDL-induced foam cell formation and in CD36 mRNA abundance were evaluated. Human atherosclerotic plaques showed strong labeling of CD100/SEMA4D. CD100 expression was further demonstrated in peripheral blood monocytes and in in vitro differentiated macrophages and foam cells, with diminished CD100 transcript along the differentiation of these cells. Incubation of macrophages with CD100 led to a reduction in oxLDL-induced foam cell formation probably through a decrease of CD36 expression, suggesting for the first time an atheroprotective role for CD100 in the human disease. Given its differential expression in the numerous foam cells and macrophages of the plaques and its capacity to decrease oxLDL engulfment by macrophages we propose that CD100 may have a role in atherosclerotic plaque development, and may possibly be employed in targeted treatments of these atheromas. Public Library of Science 2013-09-30 /pmc/articles/PMC3787062/ /pubmed/24098722 http://dx.doi.org/10.1371/journal.pone.0075772 Text en © 2013 Luque et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Luque, Maria Carolina Aquino
Gutierrez, Paulo Sampaio
Debbas, Victor
Martins, Waleska Kerllen
Puech-Leao, Pedro
Porto, Georgia
Coelho, Verônica
Boumsell, Laurence
Kalil, Jorge
Stolf, Beatriz
Phage Display Identification of CD100 in Human Atherosclerotic Plaque Macrophages and Foam Cells
title Phage Display Identification of CD100 in Human Atherosclerotic Plaque Macrophages and Foam Cells
title_full Phage Display Identification of CD100 in Human Atherosclerotic Plaque Macrophages and Foam Cells
title_fullStr Phage Display Identification of CD100 in Human Atherosclerotic Plaque Macrophages and Foam Cells
title_full_unstemmed Phage Display Identification of CD100 in Human Atherosclerotic Plaque Macrophages and Foam Cells
title_short Phage Display Identification of CD100 in Human Atherosclerotic Plaque Macrophages and Foam Cells
title_sort phage display identification of cd100 in human atherosclerotic plaque macrophages and foam cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787062/
https://www.ncbi.nlm.nih.gov/pubmed/24098722
http://dx.doi.org/10.1371/journal.pone.0075772
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