Cargando…

Insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia

Although murine models of coronary atherosclerotic disease have been used extensively to determine mechanisms, limited new therapeutic options have emerged. Pigs with familial hypercholesterolemia (FH pigs) develop complex coronary atheromas that are almost identical to human lesions. We reported pr...

Descripción completa

Detalles Bibliográficos
Autores principales: Sukhanov, Sergiy, Higashi, Yusuke, Yoshida, Tadashi, Danchuk, Svitlana, Alfortish, Mitzi, Goodchild, Traci, Scarborough, Amy, Sharp, Thomas, Jenkins, James S., Garcia, Daniel, Ivey, Jan, Tharp, Darla L., Schumacher, Jeffrey, Rozenbaum, Zach, Kolls, Jay K., Bowles, Douglas, Lefer, David, Delafontaine, Patrice
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9990768/
https://www.ncbi.nlm.nih.gov/pubmed/36602878
http://dx.doi.org/10.1172/jci.insight.165713
_version_ 1784902005110603776
author Sukhanov, Sergiy
Higashi, Yusuke
Yoshida, Tadashi
Danchuk, Svitlana
Alfortish, Mitzi
Goodchild, Traci
Scarborough, Amy
Sharp, Thomas
Jenkins, James S.
Garcia, Daniel
Ivey, Jan
Tharp, Darla L.
Schumacher, Jeffrey
Rozenbaum, Zach
Kolls, Jay K.
Bowles, Douglas
Lefer, David
Delafontaine, Patrice
author_facet Sukhanov, Sergiy
Higashi, Yusuke
Yoshida, Tadashi
Danchuk, Svitlana
Alfortish, Mitzi
Goodchild, Traci
Scarborough, Amy
Sharp, Thomas
Jenkins, James S.
Garcia, Daniel
Ivey, Jan
Tharp, Darla L.
Schumacher, Jeffrey
Rozenbaum, Zach
Kolls, Jay K.
Bowles, Douglas
Lefer, David
Delafontaine, Patrice
author_sort Sukhanov, Sergiy
collection PubMed
description Although murine models of coronary atherosclerotic disease have been used extensively to determine mechanisms, limited new therapeutic options have emerged. Pigs with familial hypercholesterolemia (FH pigs) develop complex coronary atheromas that are almost identical to human lesions. We reported previously that insulin-like growth factor 1 (IGF-1) reduced aortic atherosclerosis and promoted features of stable plaque in a murine model. We administered human recombinant IGF-1 or saline (control) in atherosclerotic FH pigs for 6 months. IGF-1 decreased relative coronary atheroma in vivo (intravascular ultrasound) and reduced lesion cross-sectional area (postmortem histology). IGF-1 increased plaque’s fibrous cap thickness, and reduced necrotic core, macrophage content, and cell apoptosis, consistent with promotion of a stable plaque phenotype. IGF-1 reduced circulating triglycerides, markers of systemic oxidative stress, and CXCL12 chemokine levels. We used spatial transcriptomics (ST) to identify global transcriptome changes in advanced plaque compartments and to obtain mechanistic insights into IGF-1 effects. ST analysis showed that IGF-1 suppressed FOS/FOSB factors and gene expression of MMP9 and CXCL14 in plaque macrophages, suggesting possible involvement of these molecules in IGF-1’s effect on atherosclerosis. Thus, IGF-1 reduced coronary plaque burden and promoted features of stable plaque in a pig model, providing support for consideration of clinical trials.
format Online
Article
Text
id pubmed-9990768
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Society for Clinical Investigation
record_format MEDLINE/PubMed
spelling pubmed-99907682023-03-08 Insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia Sukhanov, Sergiy Higashi, Yusuke Yoshida, Tadashi Danchuk, Svitlana Alfortish, Mitzi Goodchild, Traci Scarborough, Amy Sharp, Thomas Jenkins, James S. Garcia, Daniel Ivey, Jan Tharp, Darla L. Schumacher, Jeffrey Rozenbaum, Zach Kolls, Jay K. Bowles, Douglas Lefer, David Delafontaine, Patrice JCI Insight Research Article Although murine models of coronary atherosclerotic disease have been used extensively to determine mechanisms, limited new therapeutic options have emerged. Pigs with familial hypercholesterolemia (FH pigs) develop complex coronary atheromas that are almost identical to human lesions. We reported previously that insulin-like growth factor 1 (IGF-1) reduced aortic atherosclerosis and promoted features of stable plaque in a murine model. We administered human recombinant IGF-1 or saline (control) in atherosclerotic FH pigs for 6 months. IGF-1 decreased relative coronary atheroma in vivo (intravascular ultrasound) and reduced lesion cross-sectional area (postmortem histology). IGF-1 increased plaque’s fibrous cap thickness, and reduced necrotic core, macrophage content, and cell apoptosis, consistent with promotion of a stable plaque phenotype. IGF-1 reduced circulating triglycerides, markers of systemic oxidative stress, and CXCL12 chemokine levels. We used spatial transcriptomics (ST) to identify global transcriptome changes in advanced plaque compartments and to obtain mechanistic insights into IGF-1 effects. ST analysis showed that IGF-1 suppressed FOS/FOSB factors and gene expression of MMP9 and CXCL14 in plaque macrophages, suggesting possible involvement of these molecules in IGF-1’s effect on atherosclerosis. Thus, IGF-1 reduced coronary plaque burden and promoted features of stable plaque in a pig model, providing support for consideration of clinical trials. American Society for Clinical Investigation 2023-02-22 /pmc/articles/PMC9990768/ /pubmed/36602878 http://dx.doi.org/10.1172/jci.insight.165713 Text en © 2023 Sukhanov et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Sukhanov, Sergiy
Higashi, Yusuke
Yoshida, Tadashi
Danchuk, Svitlana
Alfortish, Mitzi
Goodchild, Traci
Scarborough, Amy
Sharp, Thomas
Jenkins, James S.
Garcia, Daniel
Ivey, Jan
Tharp, Darla L.
Schumacher, Jeffrey
Rozenbaum, Zach
Kolls, Jay K.
Bowles, Douglas
Lefer, David
Delafontaine, Patrice
Insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia
title Insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia
title_full Insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia
title_fullStr Insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia
title_full_unstemmed Insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia
title_short Insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia
title_sort insulin-like growth factor 1 reduces coronary atherosclerosis in pigs with familial hypercholesterolemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9990768/
https://www.ncbi.nlm.nih.gov/pubmed/36602878
http://dx.doi.org/10.1172/jci.insight.165713
work_keys_str_mv AT sukhanovsergiy insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT higashiyusuke insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT yoshidatadashi insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT danchuksvitlana insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT alfortishmitzi insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT goodchildtraci insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT scarboroughamy insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT sharpthomas insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT jenkinsjamess insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT garciadaniel insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT iveyjan insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT tharpdarlal insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT schumacherjeffrey insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT rozenbaumzach insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT kollsjayk insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT bowlesdouglas insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT leferdavid insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia
AT delafontainepatrice insulinlikegrowthfactor1reducescoronaryatherosclerosisinpigswithfamilialhypercholesterolemia