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Somatostatin analogs for diagnosis and treatment of cancer
G Weckbecker1, F Raulf, B Stolz
1Preclinical Research, Sandoz Pharma Ltd, Basle, Switzerland.
Abstract:
Somatostatin (SRIF) is a cyclic tetradecapeptide hormone initially isolated from ovine hypothalami. It inhibits endocrine and exocrine secretion, as well as tumor cell growth, by binding to specific cell surface receptors. Its potent inhibitory activity, however, is limited by its rapid enzymatic degradation and the consequent short plasma half-life. Octreotide is a short SRIF analog with increased duration of action compared to SRIF. Octreotide is approved for the treatment of acromegaly, amine precursor uptake and decarboxylation-omas, complications of pancreatic surgery and severe forms of diarrhea. Preclinical studies have focussed on the anticancer effects of octreotide and the related SRIF analogs BIM 23014 and RC-160. In vitro at nanomolar concentrations, these analogs inhibit the growth of tumor cells that express high affinity SRIF receptors. Accordingly, SRIF analogs, such as octreotide, potently inhibit the growth of SRIF receptor-positive tumors in various rodent models, and, in particular, xenotransplanted human tumors in nude mice. The range of cancers susceptible to octreotide and related SRIF analogs includes mammary, pancreatic, colorectal and lung malignancies. Moreover, an indirect antiproliferative effect of SRIF analogs is achievable in SRIF receptor-negative tumors, whose growth is driven by factors (gastrin, insulin-like growth factor-1, etc.) that are downregulated by SRIF. The use of radiolabeled somatostatin analogs represents a new diagnostic approach. [111In-DTPA]octreotide was developed for gamma camera imaging of SRIF receptor-positive malignancies, such as gasteroenteropancreatic tumors. Visualization of SRIF receptor-positive tumors in humans is emerging as an important methodology, both in tumor staging and predicting therapeutic response to octreotide. Recently, five SRIF receptor subtypes (SSTR1-5) have been cloned, all of which bind SRIF with high affinity. In contrast, SRIF receptor subtypes 1-5 have different binding profiles for short SRIF analogs. Octreotide, SSTR5, show moderate affinity for SSTR3 and fail to bind with high affinity to the other subtypes (SSTR1 and 4). Accordingly, the oncological profile of these three analogs is apparently similar. In conclusion, somatostatin analogs are a promising class of compounds for diagnosis and treatment of cancer. Current work is focussed on the identification of further SRIF receptor subtype-selective analogs with potential in oncology.
Insights
Somatostatin analogs like octreotide show promise in treating various cancers by inhibiting tumor growth and are useful for diagnosing somatostatin receptor-positive malignancies. Further research aims to develop subtype-selective analogs for enhanced oncology applications.
Area of Science:
- Endocrinology
- Oncology
- Pharmacology
Background:
- Somatostatin (SRIF) is a hormone that inhibits secretion and tumor growth via specific receptors.
- Its therapeutic use is limited by rapid degradation and short plasma half-life.
- Octreotide, a short SRIF analog, has a longer duration of action and is approved for several conditions.
Purpose of the Study:
- To review the anticancer effects of octreotide and related SRIF analogs.
- To explore their diagnostic applications using radiolabeled compounds.
- To discuss the role of SRIF receptor subtypes in analog efficacy.
Main Methods:
- Preclinical studies evaluating in vitro and in vivo anticancer effects of SRIF analogs.
- Development of radiolabeled octreotide for imaging SRIF receptor-positive tumors.
- Cloning and characterization of five somatostatin receptor subtypes (SSTR1-5).
Main Results:
- SRIF analogs inhibit growth of SRIF receptor-positive tumors in vitro and in vivo, including human xenografts.
- Cancers susceptible include mammary, pancreatic, colorectal, and lung malignancies.
- Radiolabeled octreotide enables imaging of SRIF receptor-positive tumors for staging and treatment response prediction.
- Different SRIF receptor subtypes exhibit distinct binding profiles for SRIF analogs.
Conclusions:
- Somatostatin analogs are a promising class of compounds for cancer diagnosis and treatment.
- Further research focuses on identifying subtype-selective analogs for improved oncological applications.
- SRIF analogs offer both direct antiproliferative effects and indirect mechanisms in receptor-negative tumors.