| Literature DB >> 29761220 |
Nasren Jaff1, Rikard Grankvist2, Lars Muhl3, Arvin Chireh2, Mikael Sandell2, Stefan Jonsson2,4, Fabian Arnberg5, Ulf Eriksson3, Staffan Holmin6,7.
Abstract
PURPOSE: In mechanical thrombectomy (MT) for ischemic stroke, endothelial cells (ECs) from intracranial blood vessels adhere to the stent retriever device and can be harvested. However, understanding the molecular biology and the role of the endothelium in different pathological conditions remains insufficient. The purpose of the study was to characterize and analyze the molecular aspect of harvested ECs using cell culture and transcriptomic techniques in an MT swine model relevant to clinical ischemic stroke.Entities:
Keywords: Cell culture; Endothelial cells; Thrombectomy; Transcriptomic analysis
Mesh:
Substances:
Year: 2018 PMID: 29761220 PMCID: PMC5995995 DOI: 10.1007/s00234-018-2033-1
Source DB: PubMed Journal: Neuroradiology ISSN: 0028-3940 Impact factor: 2.804
Fig. 1Anteroposterior angiographies of mechanical thrombectomy procedure. a Catheter tip in the right external carotid artery (ECA) before thrombus injection, showing patent circulation. b After a thrombus injection, a large and a smaller segments are occluded (arrows). c After two passes of mechanical thrombectomy of the occluded segments using a stent retriever device, the smaller segment and the base of the larger segment are again patent. More distal occlusions to the large segment remain
Fig. 2Immunohistochemistry staining of endothelial cells from cell culture. Endothelial cells revealed by positive CD31 membrane staining (a), vWF cytosol staining (b), VE-cadherin staining (c), and positive CD31 membrane staining and vWF cytosol staining (d). Scale bars = 100 μm
Fig. 3a FACS final gates for EC cell sorting. CD31+ and CD146+ ECs were sorted for single-cell RNA sequencing. b Histograms of counts and number of expressed genes over all cells. c Expression of gene characteristics of endothelial cells in thrombus and nonthrombus samples as well as genes that used as a negative controls (CD-11b and CD-45). Differential expression assessed by DESeq2, showing no significant difference between selected genes with a cutoff of absolute log2 fold change ≥ 1 (p > 0.05)
Fig. 4a Principal component analyses (PCA) plot, showing the first 3 PCA components
Fig. 5Heatmap for the 50 high variable genes (HVG). Rows are genes; columns are cells. Clustering is done based on Euclidean distance. No clear clustering of cells within or between mechanical thrombectomy (MT) and control is seen