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Links from GEO DataSets

Items: 5

1.
Full record GDS3177

Confluent and sub-confluent umbilical vein endothelial cell cultures

Analysis of umbilical vein endothelial cells grown to sub-confluency or confluency. Results provide insight into the molecular mechanisms underlying endothelial barrier formation.
Organism:
Homo sapiens
Type:
Expression profiling by array, log10 ratio, 2 growth protocol sets
Platform:
GPL4868
Series:
GSE9334
6 Samples
Download data: TXT
DataSet
Accession:
GDS3177
ID:
3177
2.

Confluent versus Sub-confluent HUVEC

(Submitter supplied) HUVEC (N=3 isolates) were separately grown to sub-confluency, and to confluency. In order to study the effects of growth and contact inhibition on the transcriptome, the microarray gene expression profiles of these sub-confluent and confluent HUVEC were compared. Keywords: HUVEC, confluency, contact inhibition
Organism:
Homo sapiens
Type:
Expression profiling by array
Dataset:
GDS3177
Platform:
GPL4868
6 Samples
Download data: TXT
Series
Accession:
GSE9334
ID:
200009334
3.

Human Cavernosal Endothelial Cell Phenotype

(Submitter supplied) Purpose: To identify the molecular phenotype of endothelial cells (EC) isolated from the unique vasculature of the corpus cavernosum. Methods: Human EC derived from corpus cavernosum (HCCEC, n=5), coronary artery (HCAEC, n=4) and umbilical vein (HUVEC, n=3) were grown in culture and mRNA transcripts quantified by Affymetrix GeneChip microarrays. Genes differentially expressed across samples were partitioned around medoids to identify genes with highest expression in HCCEC. more...
Organism:
Homo sapiens
Type:
Expression profiling by array
Platform:
GPL571
12 Samples
Download data: CEL, CHP
Series
Accession:
GSE10804
ID:
200010804
4.

SARS-CoV-2 disrupt respiratory vascular barrier by suppressing Claudin-5 expression (additional RNA-seq data)

(Submitter supplied) In the initial process of COVID-19, SARS-CoV-2 infects respiratory epithelial cells and then transfers to other organs via the blood vessels. It is believed that SARS-CoV-2 can pass the vascular wall by altering the endothelial barrier using an unknown mechanism. In this study, we investigated the effect of SARS-CoV-2 on the endothelial barrier using an airway-on-a-chip that mimics respiratory organs and found that SARS-CoV-2 produced from infected epithelial cells disrupts the barrier by decreasing Claudin-5 (CLDN5), a tight junction protein, and disrupting vascular endothelial cadherin (VE-cadherin)-mediated adherens junctions. more...
Organism:
Homo sapiens
Type:
Expression profiling by high throughput sequencing
Platform:
GPL18573
5 Samples
Download data: TXT
Series
Accession:
GSE206635
ID:
200206635
5.

SARS-CoV-2 disrupts respiratory vascular barriers by suppressing Claudin-5 expression

(Submitter supplied) In the initial process of COVID-19, SARS-CoV-2 infects respiratory epithelial cells and then transfers to other organs via the blood vessels. It is believed that SARS-CoV-2 can pass the vascular wall by altering the endothelial barrier using an unknown mechanism. In this study, we investigated the effect of SARS-CoV-2 on the endothelial barrier using an airway-on-a-chip that mimics respiratory organs and found that SARS-CoV-2 produced from infected epithelial cells disrupts the barrier by decreasing Claudin-5 (CLDN5), a tight junction protein, and disrupting vascular endothelial cadherin (VE-cadherin)-mediated adherens junctions. more...
Organism:
Homo sapiens
Type:
Expression profiling by high throughput sequencing
Platform:
GPL21697
6 Samples
Download data: TXT
Series
Accession:
GSE196113
ID:
200196113
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