TY - JOUR
T1 - Peripheral Ischemia Imprints Epigenetic Changes in Hematopoietic Stem Cells to Propagate Inflammation and Atherosclerosis
AU - Coppin, Emilie
AU - Zhang, Xinyi
AU - Ohayon, Lee
AU - Johny, Ebin
AU - Dasari, Ankush
AU - Zheng, Kang H.
AU - Stiekema, Lotte
AU - Cifuentes-Pagano, Eugenia
AU - Pagano, Patrick J.
AU - Chaparala, Srilakshmi
AU - Stroes, Erik S.
AU - Dutta, Partha
N1 - Funding Information:
Confocal and intravital microscopy was performed using the National Institutes of Health (NIH) supported microscopy resources in the Center for Biologic Imaging. Specifically, the confocal microscope was supported by the NIH grant 1S10OD019973-01. Cell ranger software (10× Genomics) was used to generate single-cell count matrix data and further analysis was performed using Partek Flow software, version 10.0.22.1204, licensed by Health Sciences Library system, University of Pittsburgh. CLC Genomics Workbench software licensed through the Molecular Biology Information Service of the Health Sciences Library System, University of Pittsburgh, was used for data analysis. This research was supported, in part, by the University of Pittsburgh Center for Research Computing through the resources provided. The graphical illustration was designed using BioRender software, and the summary cartoon and mouse images were adapted from the Servier Medical Art ( www.servier.com ). E. Coppin, X. Zhang, and L. Ohayon designed and performed the experiments, analyzed the data, and wrote the manuscript. A. Dasari helped with the data analysis. K.H. Zheng, L. Stiekema, and E.S. Stroes recruited PAD patients and collected blood from the patients. P. Dutta designed experiments, wrote the manuscript, and provided with the fund to complete the study.
Funding Information:
This work was supported by the National Institutes of Health grants R00HL121076-03, R01HL142629 and R01HL143967, R01AG069399 and R01DK129339, American Heart Association (AHA) Transformational Project Award (19TPA34910142), AHA Innovative Project Award (19IPLOI34760566) and ALA Innovation Project Award (IA-629694; to P. Dutta), Young Scientists Fund of the National Natural Science Foundation of China (No. 82100346 to X. Zhang), and R01HL142248 (to P.J. Pagano).
Publisher Copyright:
© 2023 Lippincott Williams and Wilkins. All rights reserved.
PY - 2023/6/1
Y1 - 2023/6/1
N2 - Background: Peripheral ischemia caused by peripheral artery disease is associated with systemic inflammation, which may aggravate underlying comorbidities such as atherosclerosis and heart failure. However, the mechanisms of increased inflammation and inflammatory cell production in patients with peripheral artery disease remain poorly understood. Methods: We used peripheral blood collected from patients with peripheral artery disease and performed hind limb ischemia (HI) in Apoe-/-mice fed a Western diet and C57BL/6J mice with a standard laboratory diet. Bulk and single-cell RNA sequencing analysis, whole-mount microscopy, and flow cytometry were performed to analyze hematopoietic stem and progenitor cell (HSPC) proliferation, differentiation, and relocation. Results: We observed augmented numbers of leukocytes in the blood of patients with peripheral artery disease and Apoe-/-mice with HI. RNA sequencing and whole-mount imaging of the bone marrow revealed HSPC migration into the vascular niche from the osteoblastic niche and their exaggerated proliferation and differentiation. Single-cell RNA sequencing demonstrated alterations in the genes responsible for inflammation, myeloid cell mobilization, and HSPC differentiation after HI. Heightened inflammation in Apoe-/-mice after HI aggravated atherosclerosis. Surprisingly, bone marrow HSPCs expressed higher amounts of the receptors for IL (interleukin)-1 and IL-3 after HI. Concomitantly, the promoters of Il1r1 and Il3rb had augmented H3K4me3 and H3K27ac marks after HI. Genetic and pharmacological inhibition of these receptors resulted in suppressed HSPC proliferation, reduced leukocyte production, and ameliorated atherosclerosis. Conclusions: Our findings demonstrate increased inflammation, HSPC abundance in the vascular niches of the bone marrow, and elevated IL-3Rb and IL-1R1 (IL-1 receptor 1) expression in HSPC following HI. Furthermore, the IL-3Rb and IL-1R1 signaling plays a pivotal role in HSPC proliferation, leukocyte abundance, and atherosclerosis aggravation after HI.
AB - Background: Peripheral ischemia caused by peripheral artery disease is associated with systemic inflammation, which may aggravate underlying comorbidities such as atherosclerosis and heart failure. However, the mechanisms of increased inflammation and inflammatory cell production in patients with peripheral artery disease remain poorly understood. Methods: We used peripheral blood collected from patients with peripheral artery disease and performed hind limb ischemia (HI) in Apoe-/-mice fed a Western diet and C57BL/6J mice with a standard laboratory diet. Bulk and single-cell RNA sequencing analysis, whole-mount microscopy, and flow cytometry were performed to analyze hematopoietic stem and progenitor cell (HSPC) proliferation, differentiation, and relocation. Results: We observed augmented numbers of leukocytes in the blood of patients with peripheral artery disease and Apoe-/-mice with HI. RNA sequencing and whole-mount imaging of the bone marrow revealed HSPC migration into the vascular niche from the osteoblastic niche and their exaggerated proliferation and differentiation. Single-cell RNA sequencing demonstrated alterations in the genes responsible for inflammation, myeloid cell mobilization, and HSPC differentiation after HI. Heightened inflammation in Apoe-/-mice after HI aggravated atherosclerosis. Surprisingly, bone marrow HSPCs expressed higher amounts of the receptors for IL (interleukin)-1 and IL-3 after HI. Concomitantly, the promoters of Il1r1 and Il3rb had augmented H3K4me3 and H3K27ac marks after HI. Genetic and pharmacological inhibition of these receptors resulted in suppressed HSPC proliferation, reduced leukocyte production, and ameliorated atherosclerosis. Conclusions: Our findings demonstrate increased inflammation, HSPC abundance in the vascular niches of the bone marrow, and elevated IL-3Rb and IL-1R1 (IL-1 receptor 1) expression in HSPC following HI. Furthermore, the IL-3Rb and IL-1R1 signaling plays a pivotal role in HSPC proliferation, leukocyte abundance, and atherosclerosis aggravation after HI.
KW - atherosclerosis
KW - epigenomics
KW - hematopoiesis
KW - hematopoietic stem cells
KW - inflammation
KW - myelopoiesis
KW - peripheral artery disease
UR - https://www.scopus.com/pages/publications/85160209401
U2 - 10.1161/ATVBAHA.123.318956
DO - 10.1161/ATVBAHA.123.318956
M3 - Article
C2 - 36891902
SN - 1079-5642
VL - 43
SP - 889
EP - 906
JO - Arteriosclerosis, thrombosis, and vascular biology
JF - Arteriosclerosis, thrombosis, and vascular biology
IS - 6
ER -