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In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
Trastuzumab inhibits pituitary tumor cell growth modulating the TGFB/SMAD2/3 pathway
Juan Pablo Petiti1, Liliana Del Valle Sosa1, Florencia Picech1
1Instituto de Investigaciones en Ciencias de la Salud (INICSA)Centro de Microscopía Electrónica-Facultad de Ciencias Médicas, CONICET, Universidad Nacional de Córdoba, Córdoba, Argentina.
Abstract:
In pituitary adenomas, early recurrences and resistance to conventional pharmacotherapies are common, but the mechanisms involved are still not understood. The high expression of epidermal growth factor receptor 2 (HER2)/extracellular signal-regulated kinase (ERK1/2) signal observed in human pituitary adenomas, together with the low levels of the antimitogenic transforming growth factor beta receptor 2 (TBR2), encouraged us to evaluate the effect of the specific HER2 inhibition with trastuzumab on experimental pituitary tumor cell growth and its effect on the antiproliferative response to TGFB1. Trastuzumab decreased the pituitary tumor growth as well as the expression of ERK1/2 and the cell cycle regulators CCND1 and CDK4. The HER2/ERK1/2 pathway is an attractive therapeutic target, but its intricate relations with other signaling modulators still need to be unraveled. Thus, we investigated possible cross-talk with TGFB signaling, which has not yet been studied in pituitary tumors. In tumoral GH3 cells, co-incubation with trastuzumab and TGFB1 significantly decreased cell proliferation, an effect accompanied by a reduction in ERK1/2 phosphorylation, an increase of SMAD2/3 activation. In addition, through immunoprecipitation assays, a diminution of SMAD2/3-ERK1/2 and an increase SMAD2/3-TGFBR1 interactions were observed when cells were co-incubated with trastuzumab and TGFB1. These findings indicate that blocking HER2 by trastuzumab inhibited pituitary tumor growth and modulated HER2/ERK1/2 signaling and consequently the anti-mitogenic TGFB1/TBRs/SMADs cascade. The imbalance between HER2 and TGFBRs expression observed in human adenomas and the response to trastuzumab on experimental tumor growth may make the HER2/ERK1/2 pathway an attractive target for future pituitary adenoma therapy.
Insights
Blocking HER2 with trastuzumab inhibits pituitary tumor growth by modulating the HER2/ERK1/2 and TGFB signaling pathways. This suggests HER2 as a potential therapeutic target for pituitary adenomas.
Area of Science:
- Endocrinology
- Oncology
- Molecular Biology
Background:
- Pituitary adenomas often exhibit early recurrence and resistance to standard therapies, with underlying mechanisms unclear.
- High expression of human epidermal growth factor receptor 2 (HER2) and extracellular signal-regulated kinase (ERK1/2) signaling, alongside low transforming growth factor beta receptor 2 (TBR2), is noted in pituitary adenomas.
Purpose of the Study:
- To evaluate the effect of HER2 inhibition using trastuzumab on experimental pituitary tumor growth.
- To investigate the impact of trastuzumab on the anti-proliferative response to transforming growth factor beta 1 (TGFB1).
- To explore the cross-talk between HER2/ERK1/2 and TGFB signaling in pituitary tumors.
Main Methods:
- Treatment of experimental pituitary tumor cells with trastuzumab and/or TGFB1.
- Assessment of cell proliferation, expression of ERK1/2, CCND1, and CDK4.
- Analysis of SMAD2/3 activation and protein interactions using immunoprecipitation assays.
Main Results:
- Trastuzumab significantly decreased pituitary tumor growth, ERK1/2 expression, and cell cycle regulators CCND1 and CDK4.
- Co-incubation with trastuzumab and TGFB1 reduced cell proliferation, decreased ERK1/2 phosphorylation, and increased SMAD2/3 activation.
- Immunoprecipitation revealed reduced SMAD2/3-ERK1/2 and increased SMAD2/3-TGFBR1 interactions upon co-incubation.
Conclusions:
- HER2 inhibition by trastuzumab effectively reduces pituitary tumor growth.
- Trastuzumab modulates the HER2/ERK1/2 pathway, influencing the anti-mitogenic TGFB1/TBRs/SMADs cascade.
- The HER2/ERK1/2 pathway represents a promising therapeutic target for pituitary adenoma treatment.
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