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PMID: 9400374 Published · ppublish English Journal Article

Smooth muscle cells isolated from discrete compartments of the mature vascular media exhibit unique phenotypes and distinct growth capabilities.

Circulation research ·Vol. 81 ·No. 6 ·1997-12-00 ·Pages 940-52

Frid MG, Aldashev AA, Dempsey EC, Stenmark KR

Abstract

Heterogeneity of smooth muscle cell (SMC) phenotype and function is rapidly emerging as an important concept. We have recently described that phenotypically distinct SMC subpopulations in bovine pulmonary arteries exhibit unique proliferative and matrix-producing responses to hypoxic pulmonary hypertension. To provide better understanding of the molecular mechanisms contributing to this phenomenon, experimental studies will require a reliable in vitro model. The purpose of the present study was first to determine if distinct SMC subpopulations, similar to those observed in vivo, could be selectively isolated from the mature arterial media, and then to evaluate whether select SMC subpopulations would exhibit heightened responses to growth-promoting stimuli and hypoxia. We were able to reproducibly isolate at least four phenotypically unique cell subpopulations from the inner, middle, and outer compartments of the arterial media. Differences in cell phenotype were demonstrated by morphological appearance and differential expression of muscle-specific proteins. The isolated cell subpopulations exhibited markedly different growth capabilities. Two SMC subpopulations grew slowly in 10% serum and were quiescent in plasma-based medium. The other two cell subpopulations, exhibiting nonmuscle characteristics, grew rapidly in 10% serum and proliferated in plasma-based medium and in response to hypoxia. Certain colonies of the nonmuscle-like cell subpopulations were found to grow autonomously under serum-deprived conditions and to secrete mitogenic factors. Our data, demonstrating that phenotypically distinct cells with enhanced growth potential exist within the normal arterial media, support the idea that these unique cells could contribute selectively to the pathogenesis of vascular disease.

MeSH Terms
Actins/analysis Animals Blotting, Western Cattle Cell Division/drug effects Cell Hypoxia Cytoskeletal Proteins/analysis DNA/biosynthesis Female Heparin/pharmacology Muscle, Smooth, Vascular/cytology Phenotype
Chemicals
Actins Cytoskeletal Proteins Heparin DNA
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Frid M G
Developmental Lung Biology Research, University of Colorado Health Sciences Center, Denver 80262, USA. [email protected]
Aldashev A A
Dempsey E C
Stenmark K R
Article Info
Journal
Circulation research
Abbr.
Circ Res
ISSN
0009-7330
Published
1997-12-00
Pages
940-52
Language
English
Region
United States
NLM ID
0047103
Subset
IM
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