BioGPS
  • Home
  • Help
  • Plugins
  • Datasets
  • Sign Up
  • Login
Examples: Gene Symbol(s), Gene Ontology, Splicing plugins, Melanoma datasets
advanced
Home › Dataset Library › Genome-wide expression profiling of laser micro-dissected macrophages from ruptured and stable atherosclerotic human plaques

Dataset: Genome-wide expression profiling of laser micro-dissected macrophages from ruptured and stable atherosclerotic human plaques

Objective: Resident macrophages play an important role in atheromatous plaque rupture. The macrophage gene expression signature...

Registered by ArrayExpress Uploader
View Dataset

Objective: Resident macrophages play an important role in atheromatous plaque rupture. The macrophage gene expression signature associated with plaque rupture is incompletely defined due to the complex cellular heterogeneity in the plaque. We aimed to characterise differential gene expression in resident plaque macrophages from ruptured and stable human atheromatous lesions. A cell-specific approach has the potential to address the question of gene expression differences between particular cell types in stable and unstable plaques with greater precision than approaches based on the study of whole plaques. Using laser micro-dissection, we isolated total RNA from macrophage-rich regions of stable and ruptured human atheromatous plaques derived from carotid endarterectomy samples which were comprehensively characterized using clinical, radiological and histological criteria, and carried out genome-wide gene expression profiling using microarrays. Results: The profiles were characteristic of activated macrophages. At a false discovery rate of 10%, 914 genes were differentially expressed between stable and ruptured plaques. The findings were confirmed in fourteen further stable and ruptured samples for a subset of eleven genes with the highest expression differences (p<0.05). Pathway analysis revealed that components of the PPAR/Adipocytokine signaling pathway were the most significantly upregulated in ruptured compared to stable plaques (p=5.4x10-7). Two key components of the pathway, fatty-acid binding-protein 4 (FABP4) and leptin, showed nine-fold (p=0.0086) and five-fold (p=0.0012) greater expression respectively in macrophages from ruptured plaques. Conclusions: We found differences in gene expression signatures between macrophages isolated from stable and ruptured human atheromatous plaques. Our findings indicate the involvement of FABP4 and leptin in the progression of atherosclerosis and plaque rupture, and suggest that down-regulation of PPAR/adipocytokine signaling within plaques may have therapeutic potential. Methods: We performed genome-wide expression analyses of isolated macrophage-rich regions of stable and ruptured human atherosclerotic plaques. Plaques present in carotid endarterectomy specimens were designated as stable or ruptured using clinical, radiological and histopathological criteria. Macrophage-rich regions were excised from 5 ruptured and 6 stable plaques by laser micro-dissection. Total RNA were subjected to two cycles of linear amplification. Transcriptional profiling was performed using Affymetrix HG-U133 plus 2.0 GeneChip arrays.

Species:
human

Samples:
11

Source:
E-GEOD-41571

Updated:
Dec.12, 2014

Registered:
Jul.12, 2014


Factors: (via ArrayExpress)
Sample PLAQUE HISTOLOGY AGE SEX DAYS FROM LAST SYMPTOM SYMPTOM EVENT RADIOLOGICAL STENOSIS
GSM1019549 Stable Fibrocalcific Plaque 59 male n/a N/A 85.0 (%)
GSM1019548 Stable Thick Fibrous Cap Atheroma 68 female n/a N/A 95.0 (%)
GSM1019547 Stable Thick Fibrous Cap Atheroma 73 male n/a N/A 98.0 (%)
GSM1019546 Stable Fibrocalcific Plaque 67 male n/a N/A 75.0 (%)
GSM1019545 Stable Thick Fibrous Cap Atheroma 58 male n/a N/A 90.0 (%)
GSM1019544 Stable Thick Fibrous Cap Atheroma 45 female 365 CVA(lacunar) 85.0 (%)
GSM1019543 Ruptured Thin Fibrous Cap Atheroma 73 female 35 CVA 60.0 (%)
GSM1019542 Ruptured Thin Fibrous Cap Atheroma 74 female 180 AFugax 95.0 (%)
GSM101954 Ruptured Thin Fibrous Cap Atheroma 53 male 28 TIA 70.0 (%)
GSM1019540 Ruptured Thin Fibrous Cap Atheroma 63 male 3 AFugax 70.0 (%)
GSM1019539 Ruptured Thin Fibrous Cap Atheroma 67 male 30 CVA 90.0 (%)

Tags

  • atherosclerosis
  • cell
  • genome
  • macrophage
  • protein

Other Formats

JSON    XML
  • About
  • Blog
  • Help
  • FAQ
  • Downloads
  • API
  • iPhone App
  • Email updates
© 2022 The Scripps Research Institute. All rights reserved. (ver 94eefe6 )
  • Terms of Use