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Octreotide and pasireotide effects on medullary thyroid carcinoma (MTC) cells growth, migration and invasion
E Giardino1, R Catalano2, F Mangili1
1Department of Clinical Sciences and Community Health, University of Milan, Milan, Italy.
Abstract:
Medullary thyroid carcinoma (MTC) is a rare neuroendocrine neoplasm of the parafollicular thyroid C cells. Although somatostatin receptors are expressed by MTCs, treatment with octreotide has shown poor efficacy, whereas recently pasireotide has demonstrated antiproliferative effects in persistent postoperative MTCs. Aim of this study was to test the effects of octreotide and pasireotide on MTC cells proliferation, cell cycle proteins expression, MAPK activation, apoptosis, calcitonin secretion, migration and invasion in TT cell line as well as in primary MTC cultured cells. Our results showed that both octreotide and pasireotide reduced TT cell proliferation (-35.2 ± 12.1%, p < 0.001, and -25.3 ± 24.8%, p < 0.05, at 10-8 M, respectively), with concomitant inhibition of ERK phosphorylation and cyclin D1 expression. This cytostatic effect was accompanied by a proapoptotic action, with an increase of caspase3/7 activity of 1.5-fold. Moreover, both octreotide and pasireotide inhibited cell migration (-50.9 ± 11.3%, p < 0.01, and -40.5 ± 17%, p < 0.05, respectively) and invasion (-61.3 ± 35.1%, p < 0.05, and -49.7 ± 18%, p < 0.01, respectively). No effect was observed on calcitonin secretion. We then tried to extend these observations to primary cultures (n = 5). Octreotide and/or pasireotide were effective in reducing cells proliferation in 3 out of 5 tumors, and to induce cell apoptosis in 1 out of 3 MTCs. Both octreotide and pasireotide were able to reduce cell migration in all MTC tested. SST2, SST3 and SST5 were expressed in all MTC, with a tendency to increased expression of SST2 in RET mutated vs wild type MTCs. In agreement, inhibition of mutated RET in TT cells reduced SST2 expression. In conclusion, we demonstrated that octreotide and pasireotide inhibited cell proliferation and invasiveness in a subset of MTC, supporting their potential use in the control of tumor growth.
Insights
Octreotide and pasireotide show potential in treating medullary thyroid carcinoma (MTC) by inhibiting cancer cell proliferation and invasiveness. These somatostatin analogs reduced tumor cell growth and migration in both cell lines and primary MTC cultures.
Area of Science:
- Endocrinology
- Oncology
- Molecular Biology
Background:
- Medullary thyroid carcinoma (MTC) is a rare neuroendocrine tumor arising from thyroid parafollicular C cells.
- While somatostatin receptors are present in MTC, octreotide has limited efficacy; pasireotide shows promise in persistent MTC.
- Understanding the effects of somatostatin analogs on MTC is crucial for developing targeted therapies.
Purpose of the Study:
- To investigate the antiproliferative and anti-invasive effects of octreotide and pasireotide on MTC.
- To analyze the impact of these drugs on cell cycle proteins, MAPK activation, and apoptosis in MTC.
- To evaluate the efficacy of octreotide and pasireotide in both MTC cell lines and primary MTC cultures.
Main Methods:
- Utilized the TT MTC cell line and primary MTC cultures for in vitro experiments.
- Assessed cell proliferation, cell cycle protein expression (e.g., cyclin D1), and MAPK pathway activation (ERK phosphorylation).
- Measured apoptosis via caspase 3/7 activity, and evaluated cell migration and invasion capabilities.
Main Results:
- Both octreotide and pasireotide significantly reduced TT cell proliferation and inhibited ERK phosphorylation and cyclin D1 expression.
- A pro-apoptotic effect was observed, with increased caspase 3/7 activity.
- Octreotide and pasireotide demonstrated significant inhibition of cell migration and invasion in MTC cells.
- In primary cultures, these drugs reduced proliferation in 3/5 tumors and migration in all tested MTCs.
- Somatostatin receptor subtypes (SST2, SST3, SST5) were expressed in all MTCs, with higher SST2 in RET-mutated tumors.
Conclusions:
- Octreotide and pasireotide exhibit antiproliferative and anti-invasive properties in a subset of MTC.
- These findings support the potential therapeutic role of octreotide and pasireotide in managing MTC tumor growth.
- The efficacy may be linked to somatostatin receptor expression and RET mutation status.
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