| Literature DB >> 15812556 |
R L Adams1, I P Adams, S W Lindow, W Zhong, S L Atkin.
Abstract
Angiogenesis is characterised by activation, migration and proliferation of endothelial cells and is central to the pathology of cancer, cardiovascular disease and chronic inflammation. Somatostatin is an inhibitory polypeptide that acts through five receptors (sst 1, 2, 3, 4, 5). Sst has previously been reported in endothelium, but their role remains obscure. Here, we report the expression of sst in human umbilical vein endothelial cells (HUVECs) in vitro, during proliferation and quiescence. A protocol for culturing proliferating and quiescent HUVECs was established, and verified by analysing cell cycle distribution in propidium-iodide-stained samples using flow cytometry. Sst mRNA was then quantified in nine proliferating and quiescent HUVEC lines using quantitative reverse transcriptase-polymerase chain reaction. Sst 2 and 5 were preferentially expressed in proliferating HUVECs. All samples were negative for sst 4. Sst 1 and 3 expression and cell cycle progression were unrelated. Immunostaining for sst 2 and 5 showed positivity in proliferating but not quiescent cells, confirming sst 2 and 5 protein expression. Inhibition of proliferating cells with somatostatin analogues Octreotide and SOM230, which have sst 5 activity, was found (Octreotide 10(-10)-10(-6) M: 48.5-70.2% inhibition; SOM230 10(-9)-10(-6) M: 44.9-65.4% inhibition) in a dose-dependent manner, suggesting that sst 5 may have functional activity in proliferation. Dynamic changes in sst 2 and 5 expression during the cell cycle and the inhibition of proliferation with specific analogues suggest that these receptors may have a role in angiogenesis.Entities:
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Year: 2005 PMID: 15812556 PMCID: PMC2362009 DOI: 10.1038/sj.bjc.6602503
Source DB: PubMed Journal: Br J Cancer ISSN: 0007-0920 Impact factor: 7.640
Sst 1, 2, 3, 4, 5 oligonucleotide forward primers, reverse primers and internal probes
| SSTR 1 | Forward primer | 5′-GCTCGGAGCGCAAGATCA-3′ |
| Reverse primer | 5′-CGTCGTCCTGCTCAGCAAA-3′ | |
| Probe | 5′-CTTAATGGTGATGATGGTGGTGATGGTGTTT-3′ | |
| SSTR 2 | Forward primer | 5′-TGGTCCACTGGCCCTTTG –3′ |
| Reverse primer | 5′-TTGATGCCATCCACAGTCATG-3′ | |
| Probe | 5′-CAAGGCCATTTGCCGGGTGG-3′ | |
| SSTR 3 | Forward primer | 5′-TGGGCCTGCTGGACTC-3′ |
| Reverse primer | 5′-GTTGAGGATGTAGACGTTGGTGACT-3′ | |
| Probe | 5′-CCGTGTGCCGCAGGACCACA-3′ | |
| SSTR 4 | Forward primer | 5′-GCGCTCGGAGAAGAAAATCA-3′ |
| Reverse primer | 5′-GGCTGGTCACGACGAGGTT-3′ | |
| Probe | 5′-CGTCTTTGTGCTCTGCTGGATGCCTT-3′ | |
| SSTR 5 | Forward primer | 5′-TCATCCTCTCCTACGCCAACA-3′ |
| Reverse primer | 5′-TGGAAGCTCTGGCGGAAGT-3′ | |
| Probe | 5′-CCGTCCTCTCAGGCTTCCTCTCGGA-3′ |
Sst=somatostatin; SSTR=somatostatin receptor.
Figure 1Flow cytometry for cell cycle parameters of propidium–iodide-stained samples of (A) proliferative, and (B) quiescent HUVECs. This was performed in triplicate for cells derived from each patient.
Expression of sst 1, 2 and 5 in proliferating and quiescent HUVECs, including relative expression of sst 2 and 5
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| 1 | − | + | + | − | − | + | + | − |
| 2 | + | + | + | − | − | − | + | − |
| 3 | + | + | + | − | − | − | − | − |
| 4 | + | + | + | − | − | − | − | − |
| 5 | + | + | + | − | − | − | + | − |
| 6 | + | − | − | − | − | − | − | − |
| 7 | − | − | + | − | + | − | + | − |
| 8 | − | + | − | − | − | − | + | − |
| 9 | − | − | 100±43.0% | 12.2±8.5% | − | − | 100±10.7% | 1.1±1.4% |
P=proliferative; Q=quiescent; HUVEC=human umbilical vein endothelial cell; SSTR=somatostatin receptor.
Experiments were performed for six replicates on each of the cultures derived from the nine patients.
Relative sst gene expression is displayed as a percentage of the corresponding proliferative cells. Each quantified value is expressed as mean±s.d.
Figure 2Immunohistochemistry: immunostaining was performed in cultures on chamber slides in quadruplicate. (A) Quiescent cells are negative for sst 2 positivity; (B) uniform immunopositivity for sst 2 in the proliferating cells; (C) quiescent cells are negative for sst 5 positivity; and (D) uniform immunopositivity for sst 5 in the proliferating cells (magnification × 10).
Figure 3Effect of Octreotide and SOM230 on HUVEC proliferation in growth factor-free conditions. Octreotide significantly inhibited HUVEC proliferation across the concentration range 10−10–10−6 M (48.5±7.3–70.2±0.4% inhibition), while SOM230 significantly inhibited HUVEC proliferation across the concentration range 10−9–10−6 M (44.9±9.2–65.4±6.1% inhibition) in a dose-dependent manner. Effects on proliferation were determined using the WST-1 proliferation assay. Data are expressed as mean±s.e.m., determined from six replicates. **P<0.01, *P<0.05.