Integrative multiomics analysis of neointima proliferation in human saphenous vein: implications for bypass graft disease
Kim, D.; Goo, B.; Shi, H.; Coffey, P.; Veerapaneni, P.; Chouhaita, R.; Cyriac, N.; Aboud, G.; Cave, S.; Greenway, J.; Mundkur, R.; Ahmadieh, S.; Harb, R.; Ogbi, M.; Fulton, D. J.; Huo, Y.; Zhang, W.; Long, X.; Miano, J. M.; Guha, A.; Kim, H. W.; Shi, Y.; Rice, R. D.; Gallo, D. R.; Patel, V.; Lee, R.; Weintraub, N. L.
Show abstract
IntroductionHuman saphenous veins (SV) are widely used as grafts in coronary artery bypass (CABG) surgery but often fail due to neointima proliferation (NP). NP involves complex interplay between vascular smooth muscle cells (VSMC) and fibroblasts. Little is known, however, regarding the transcriptomic and proteomic dynamics of NP. Here, we performed multi-omics analysis in an ex vivo tissue culture model of NP in human SV procured for CABG surgery. Methods and resultsHistological examination demonstrated significant elastin degradation and NP (indicated by increased neointima area and neointima/media ratio) in SV subjected to tissue culture. Analysis of data from 73 patients suggest that the process of SV adaptation and NP may differ according to sex and body mass index. RNA sequencing confirmed upregulation of pro-inflammatory and proliferation-related genes during NP and identified novel processes, including increased cellular stress and DNA damage responses, which may reflect tissue trauma associated with SV harvesting. Proteomic analysis identified upregulated extracellular matrix-related and coagulation/thrombosis proteins and downregulated metabolic proteins. Spatial transcriptomics detected transdifferentiating VSMC in the intima on the day of harvesting and highlighted dynamic alterations in fibroblast and VSMC phenotype and behavior during NP. Specifically, we identified new cell subpopulations contributing to NP, including SPP1+, LGALS3+ VSMC and MMP2+, MMP14+ fibroblasts. ConclusionDynamic alterations of gene and protein expression occur during NP in human SV. Identification of the human-specific molecular and cellular mechanisms may provide novel insight into SV bypass graft disease.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Association of NOTCH3 with Elastic Fiber Dispersion in the Infrarenal Abdominal Aorta of Cynomolgus Monkeys 95%
- Single-Cell Multimodal Profiling Reveals a Novel CD26+ Fibroblast Subpopulation in Atherosclerosis 94%
- Aberrant mechanosensitive signaling underlies activation of vascular endothelial xanthine oxidoreductase that promotes aortic aneurysm formation in Marfan syndrome 94%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Human left ventricle circRNA-miRNA-mRNA network analyses reveals a novel proangiogenic role for circNPHP1 under ischemic conditions 93%
- Beta-arrestin-mediated Angiotensin II type 1 Receptor Activation Promotes Pulmonary Vascular Remodeling in Pulmonary Hypertension 93%
- Serum cFAS Content Correlates with Incidence of Peripheral Arterial Disease 93%
Similar papers in this journal
- Locational memory of macrovessel vascular cells is transcriptionally imprinted 94%
- Altered Intercellular Communication and Extracellular Matrix Signaling as a Potential Disease Mechanism in Human Hypertrophic Cardiomyopathy 93%
- 3D imaging and morphometry of the heart capillary system in spontaneously hypertensive rats and normotensive controls 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.