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Synergistic effects of bombesin and epidermal growth factor on cancers
1Department of Oral Surgery, School of Dental Medicine, State University of New York at Buffalo 14214.
Abstract:
Bombesin and gastrin-releasing peptide act as autocrine mitogens in various cancers. Bombesin antagonist RC-3095 inhibited growth in some cancers and slowed the progression of premalignant lesions, possibly by down-regulating epidermal growth factor (EGF) receptors. Since the EGF receptor mitogen response involves tyrosine kinase stimulation, we tested the hypotheses that bombesin stimulates, and RC-3095 inhibits, phosphorylation; EGF and bombesin promote the phosphorylation of the same substrates; and EGF and bombesin act synergistically on phosphorylation. Therefore, in vitro assays for phosphorylation were performed in the presence or absence of EGF, bombesin, RC-3095, and combinations in samples derived from tumor, tissue surrounding tumor, cell lines, and normal and transforming tissue derived from the 9,10-dimethyl-1,2-benzanthracene-induced squamous cell lesions of the hamster cheek pouch. Bombesin increased, and RC-3095 decreased, phosphorylation in these samples. In the human hepatoma sample and surrounding tissue, these ligands altered the phosphorylation of the same substrates affected by EGF. EGF and bombesin stimulated phosphorylation synergistically in the hamster samples and the hepatoma. Bombesin-induced phosphorylation was greater in tissue surrounding the hepatoma, whereas RC-3095 was more effective in inhibiting phosphorylation in the hepatoma itself. This cancer, therefore, could be endogenously stimulated by gastrin-releasing peptide. These observations support the hypothesis that bombesin stimulates growth of tissues and tumors by amplifying the phosphorylation response to EGF. The growth inhibitory response to RC-3095, or other bombesin analogues, of individual tumors may be prognosed by in vitro phosphorylation assays using the samples from the patient's tumor.
Insights
Bombesin stimulates cancer growth by enhancing epidermal growth factor (EGF) receptor phosphorylation. A bombesin antagonist, RC-3095, inhibited this process, suggesting its potential for cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Bombesin and gastrin-releasing peptide are autocrine mitogens implicated in various cancers.
- Bombesin antagonist RC-3095 has shown potential in inhibiting cancer growth and premalignant lesion progression.
- The epidermal growth factor (EGF) receptor pathway, involving tyrosine kinase stimulation, is crucial for mitogenic responses.
Purpose of the Study:
- To investigate whether bombesin stimulates and RC-3095 inhibits phosphorylation.
- To determine if EGF and bombesin affect the same phosphorylation substrates.
- To examine the synergistic effects of EGF and bombesin on phosphorylation.
Main Methods:
- In vitro phosphorylation assays were conducted using samples from tumors, surrounding tissues, cell lines, and chemically induced squamous cell lesions.
- Assays included the presence or absence of EGF, bombesin, RC-3095, and their combinations.
- Phosphorylation levels were analyzed in various cancer and pre-cancer models.
Main Results:
- Bombesin treatment increased phosphorylation, while RC-3095 decreased it across tested samples.
- EGF and bombesin influenced the same phosphorylation substrates in human hepatoma and surrounding tissues.
- Synergistic phosphorylation stimulation by EGF and bombesin was observed in hamster and hepatoma samples.
Conclusions:
- Bombesin amplifies the phosphorylation response to EGF, supporting its role in stimulating tissue and tumor growth.
- RC-3095's efficacy in inhibiting phosphorylation suggests its therapeutic potential.
- In vitro phosphorylation assays could predict individual tumor response to RC-3095 or similar bombesin analogues.