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Updated: Feb 11, 2026

In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
Treatment with epigenetic agents profoundly inhibits tumor growth in leiomyosarcoma
Cynthia De Carvalho Fischer1,2, Yue Hu1,3, Michael Morreale1
1Department of Surgery, Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Abstract:
Leiomyosarcomas are rare mesenchymal neoplasms characterized by a smooth muscle differentiation pattern. Due to the extremely poor prognosis in patients, the development of novel chemotherapeutic regimens remains critically important. In this study, multiple leiomyosarcoma cell lines, SK-UT1, SK-LMS1, and MES-SA were treated with varying doses of the DNA Methyltransferase Inhibitors (DNMTi) 5-azacitidine (Aza), 5-aza-2-deoxycytidine (DAC), and guadecitabine (SGI-110). The effect of these epigenetic modulators was measured using both in-vitro and in-vivo models. Of the three epigenetic modulators, Guadecitabine was the most effective at decreasing cell survival in LMS cell lines. SK-UT1 was found to be the more sensitive to all three epigenetic modulators, while SK-LMS1 and MES-SA were more resistant. The contrast in sensitivity seen was also represented by the increase in apoptosis in Aza and guadecitabine. In parallel with Aza, guadecitabine was observed to also arrest the cell cycle. Treatment with guadecitabine led to a decrease in growth across the spectrum of sensitivity in LMS cell lines, both in a delayed in vitro and in vivo model; in parallel experiments, apoptotic pathways were activated in sensitive and less sensitive lines. Additional studies are required to explore potential therapeutic applications and mechanisms for leiomyosarcoma treatment.
Insights
Guadecitabine, a DNA Methyltransferase Inhibitor (DNMTi), effectively reduced leiomyosarcoma cell survival and growth in vitro and in vivo. This epigenetic modulator showed promise for treating rare mesenchymal neoplasms.
Area of Science:
- Oncology
- Epigenetics
- Cancer Biology
Background:
- Leiomyosarcomas (LMS) are rare mesenchymal neoplasms with poor prognosis.
- Novel chemotherapeutic strategies are crucial for effective LMS treatment.
Purpose of the Study:
- To evaluate the efficacy of DNA Methyltransferase Inhibitors (DNMTi) as a potential therapeutic approach for leiomyosarcoma.
- To compare the effects of 5-azacitidine (Aza), 5-aza-2-deoxycytidine (DAC), and guadecitabine (SGI-110) on leiomyosarcoma cell lines.
Main Methods:
- Treatment of leiomyosarcoma cell lines (SK-UT1, SK-LMS1, MES-SA) with varying doses of DNMTi.
- Assessment of DNMTi effects using in vitro and in vivo models.
- Evaluation of cell survival, apoptosis, and cell cycle arrest.
Main Results:
- Guadecitabine (SGI-110) demonstrated the highest efficacy in reducing leiomyosarcoma cell survival.
- SK-UT1 cells were more sensitive to DNMTi compared to SK-LMS1 and MES-SA.
- DNMTi treatment, particularly guadecitabine, induced apoptosis and cell cycle arrest in leiomyosarcoma cells.
Conclusions:
- Guadecitabine exhibits significant potential as a therapeutic agent for leiomyosarcoma.
- Differential sensitivity among leiomyosarcoma cell lines suggests personalized treatment approaches.
- Further research is warranted to elucidate the mechanisms and therapeutic applications of guadecitabine in leiomyosarcoma.
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