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Targeting the FAK-Src Complex in Desmoplastic Small Round Cell Tumors, Ewing Sarcoma, and Rhabdomyosarcoma
Anke E M van Erp1, Melissa H S Hillebrandt-Roeffen1, Niek F H N van Bree1
1Department of Medical Oncology, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, Netherlands.
Abstract:
Desmoplastic small round cell tumors (DSRCTs), Ewing sarcoma (ES), and alveolar and embryonal rhabdomyosarcoma (ARMS and ERMS) are malignant sarcomas typically occurring at young age, with a poor prognosis in the metastatic setting. New treatment options are necessary. Src family kinase inhibitor dasatinib single-agent treatment has been investigated in a phase 2 study in patients with advanced sarcomas including ES and RMS but failed as a single agent in these subtypes. Since previous studies demonstrated high FAK and Src activities in RMS and ES tissue and cell lines, and dasatinib treatment was shown to upregulate activated FAK, we hypothesized that FAK-Src combination treatment could potentially be an interesting treatment option for these tumor types. We examined the effects of targeting the FAK-Src complex by addressing (p)FAK and (p)Src expressions in tumor sections of DSRCT (n = 13), ES (n = 68), ARMS (n = 21), and ERMS (n = 39) and by determining the antitumor effects of single and combined treatment with FAK inhibitor defactinib and multikinase (Abl/SFK) inhibitor dasatinib in vitro on cell lines of each subtype. In vivo effects were assessed in DSRCT and ERMS models. Concurrent pFAK and pSrc expressions (H-score >50) were observed in DSRCT (67%), ES (6%), ARMS (35%), and ERMS (19%) samples. Defactinib treatment decreased pFAK expression and reduced cell viability in all subtypes. Dasatinib treatment decreased pSrc expression and cell viability in each subtype. Combination treatment led to a complete reduction in pFAK and pSrc in each cell line and showed enhanced cell viability reduction, drug synergy, DNA damage induction, and a trend toward higher apoptosis induction in DSRCT, ERMS, and ARMS but not in ES cells. These promising in vitro results unfortunately do not translate into promising in vivo results as we did not observe a significant effect on tumor volume in vivo, and the combination did not show superior effects compared to dasatinib single-agent treatment.
Insights
Targeting FAK and Src with defactinib and dasatinib showed promising in vitro results for pediatric sarcomas like DSRCT, ERMS, and ARMS, but failed to improve tumor volume in vivo. Further research is needed for effective sarcoma treatments.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Desmoplastic small round cell tumors (DSRCTs), Ewing sarcoma (ES), and rhabdomyosarcomas (RMS) are aggressive pediatric sarcomas with poor prognoses.
- Existing treatments are limited, necessitating novel therapeutic strategies.
- Previous studies indicated high FAK and Src activity in ES and RMS, with dasatinib upregulating FAK.
Purpose of the Study:
- To investigate the efficacy of combined FAK and Src inhibition using defactinib and dasatinib against DSRCT, ES, ARMS, and ERMS.
- To evaluate the expression of phosphorylated FAK (pFAK) and phosphorylated Src (pSrc) in these sarcoma subtypes.
- To assess the in vitro and in vivo antitumor effects of single and combination treatments.
Main Methods:
- Analysis of pFAK and pSrc expression in tumor samples from DSRCT, ES, ARMS, and ERMS.
- In vitro assessment of defactinib and dasatinib effects on cell viability, drug synergy, DNA damage, and apoptosis in sarcoma cell lines.
- In vivo evaluation of combination treatment efficacy in DSRCT and ERMS models.
Main Results:
- Concurrent pFAK and pSrc expression was detected in varying percentages across DSRCT, ES, ARMS, and ERMS samples.
- Both defactinib and dasatinib monotherapies reduced cell viability.
- Combination treatment effectively reduced pFAK and pSrc, enhanced cell viability reduction, demonstrated drug synergy, and induced DNA damage in DSRCT, ERMS, and ARMS cell lines, but not in ES cells.
- In vivo studies showed no significant improvement in tumor volume with combination therapy compared to dasatinib alone.
Conclusions:
- Targeting FAK-Src complex with defactinib and dasatinib shows potential in vitro for DSRCT, ERMS, and ARMS, but lacks in vivo efficacy.
- The combination therapy did not outperform dasatinib monotherapy in vivo for the evaluated sarcoma models.
- Further investigation is required to develop effective FAK-Src targeting strategies for these aggressive pediatric sarcomas.
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