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Somatostatin analogues inhibit angiogenesis in the chick chorioallantoic membrane
E A Woltering1, R Barrie, T M O'Dorisio
1Oregon Health Sciences University, Department of Surgery, Portland 97201-3980.
Abstract:
The mechanism responsible for alterations in tumor growth following administration of somatostatin analogues is unknown. Somatostatin analogues, SMS 201-995 and RC-160, have demonstrated the potential to inhibit both tumor growth and vascularity, in vivo and in vitro. We hypothesized that SMS and RC-160 inhibit angiogenesis and this inhibition may alter tumor growth. To test this hypothesis, 2 mm methylcellulose disks containing concentrations of SMS 201-995 and RC-160 at 0, 0.5, 2.5, or 50 micrograms per disk, were implanted on the chorioallantoic membrane (CAM) of 6- to 7-day-old shell-less chick embryos. Inhibition of blood vessel growth in the region of the disk was visually assessed 24-36 hr following disk implantation and graded (0-4) based on the radius of the zone of inhibition from the center of the disk. The overall incidence of inhibition for the somatostatin analogues at concentrations of 0.5, 2.5, and 50 micrograms per disk was 13, 56, and 61% for SMS and 27, 49, and 68% for RC-160, respectively. Overall incidence of inhibition for the positive (inhibitory) control was 70.5% and those for buffer (negative) controls were 3-14%. Somatostatin analogues were associated in a dose-related fashion with both a greater percentage of inhibition of blood vessel growth and an increased grade of inhibition. Inhibition of angiogenesis may be a mechanism responsible for the tumor regression observed in vivo following SMS or RC-160 therapy.
Insights
Somatostatin analogues, SMS 201-995 and RC-160, were found to inhibit blood vessel growth (angiogenesis) in a dose-dependent manner. This anti-angiogenic effect may explain how these drugs reduce tumor growth.
Area of Science:
- Oncology
- Pharmacology
- Developmental Biology
Background:
- The mechanism by which somatostatin analogues affect tumor growth is not fully understood.
- Somatostatin analogues SMS 201-995 and RC-160 have shown potential in inhibiting tumor growth and vascularity.
- Angiogenesis, the formation of new blood vessels, is crucial for tumor development.
Purpose of the Study:
- To investigate the hypothesis that somatostatin analogues inhibit angiogenesis.
- To determine if this inhibition of angiogenesis contributes to altered tumor growth.
Main Methods:
- Utilized the chorioallantoic membrane (CAM) model in chick embryos.
- Implanted methylcellulose disks containing varying concentrations of SMS 201-995 and RC-160.
- Assessed and graded the inhibition of blood vessel growth around the disks.
Main Results:
- Somatostatin analogues demonstrated a dose-related inhibition of blood vessel growth on the CAM.
- Higher concentrations of SMS 201-995 and RC-160 resulted in a greater percentage and grade of inhibition.
- Incidence of inhibition ranged from 13-61% for SMS and 27-68% for RC-160 across concentrations.
Conclusions:
- Inhibition of angiogenesis is a likely mechanism underlying the tumor-inhibiting effects of somatostatin analogues SMS 201-995 and RC-160.
- These findings support the therapeutic potential of somatostatin analogues in cancer treatment by targeting tumor vascularity.