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Published on: July 25, 2020
PI3K/AKT/mTOR inhibition in combination with doxorubicin is an effective therapy for leiomyosarcoma
Yael Babichev1, Leah Kabaroff2, Alessandro Datti3,4
1Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, Toronto, M5G 1X5, Canada. babichev@lunenfeld.ca.
Background:
Leiomyosarcoma (LMS) is a common type of soft tissue sarcoma that responds poorly to standard chemotherapy. Thus the goal of this study was to identify novel selective therapies that may be effective in leiomyosarcoma by screening cell lines with a small molecule library comprised of 480 kinase inhibitors to functionally determine which signalling pathways may be critical for LMS growth.
Methods:
LMS cell lines were screened with the OICR kinase library and a cell viability assay was used to identify potentially effective compounds. The top 10 % of hits underwent secondary validation to determine their EC50 and immunoblots were performed to confirm selective drug action. The efficacy of combination drug therapy with doxorubicin (Dox) in vitro was analyzed using the Calcusyn program after treatment with one of three dosing schedules: concurrent treatment, initial treatment with a selective compound followed by Dox, or initial treatment with Dox followed by the selective compound. Single and combination drug therapy were then validated in vivo using LMS xenografts.
Results:
Compounds that targeted PI3K/AKT/mTOR pathways (52 %) were most effective. EC50s were determined to validate these initial hits, and of the 11 confirmed hits, 10 targeted PI3K and/or mTOR pathways with EC50 values <1 μM. We therefore examined if BEZ235 and BKM120, two selective compounds in these pathways, would inhibit leiomyosarcoma growth in vitro. Immunoblots confirmed on-target effects of these compounds in the PI3K and/or mTOR pathways. We next investigated if there was synergy with these agents and first line chemotherapy doxorubicin (Dox), which would allow for earlier introduction into patient care. Only combined treatment of BEZ235 and Dox was synergistic in vitro. To validate these findings in pre-clinical models, leiomyosarcoma xenografts were treated with single agent and combination therapy. BEZ235 treated xenografts (n = 8) demonstrated a decrease in tumor volume of 42 % whereas combining BEZ235 with Dox (n = 8) decreased tumor volume 68 % compared to vehicle alone.
Conclusions:
In summary, this study supports further investigation into the use of PI3K and mTOR inhibitors alone and in combination with standard treatment in leiomyosarcoma patients.
Insights
This study identified PI3K/AKT/mTOR pathway inhibitors as promising therapies for leiomyosarcoma (LMS). Combining BEZ235 with doxorubicin showed synergistic effects, reducing tumor volume in preclinical models.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Leiomyosarcoma (LMS) is a soft tissue sarcoma with poor response to chemotherapy.
- Novel targeted therapies are needed for effective LMS treatment.
- Kinase signaling pathways are critical for LMS growth and survival.
Purpose of the Study:
- Identify novel selective therapies for leiomyosarcoma (LMS).
- Screen a small molecule library of kinase inhibitors to determine critical signaling pathways for LMS growth.
- Evaluate combination therapy with doxorubicin (Dox) for enhanced efficacy.
Main Methods:
- Screened LMS cell lines with a 480-compound kinase inhibitor library.
- Validated top hits using cell viability assays and determined EC50 values.
- Performed immunoblots to confirm on-target drug effects and assessed combination therapy in vitro and in vivo.
Main Results:
- Compounds targeting PI3K/AKT/mTOR pathways were most effective (52%).
- 10 out of 11 confirmed hits targeted PI3K and/or mTOR pathways with EC50 < 1 μM.
- Combination of BEZ235 and doxorubicin demonstrated synergistic effects, reducing tumor volume by 68% in xenografts.
Conclusions:
- PI3K and mTOR inhibitors show potential as novel therapies for LMS.
- Combination therapy with PI3K/mTOR inhibitors and doxorubicin warrants further investigation.
- Targeting PI3K/mTOR pathways offers a promising strategy for leiomyosarcoma treatment.
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