Skip to main content
Erschienen in: Clinical and Translational Oncology 4/2020

14.06.2019 | Research Article

Anti-tumor activity of the MDM2-TP53 inhibitor BI-907828 in dedifferentiated liposarcoma patient-derived xenograft models harboring MDM2 amplification

verfasst von: J. Cornillie, A. Wozniak, H. Li, Y. K. Gebreyohannes, J. Wellens, D. Hompes, M. Debiec-Rychter, R. Sciot, P. Schöffski

Erschienen in: Clinical and Translational Oncology | Ausgabe 4/2020

Einloggen, um Zugang zu erhalten

Abstract

Purpose

Dedifferentiated liposarcoma (DDLPS) is a soft tissue malignancy characterized by amplification of the mouse double minute 2 homolog (MDM2) gene. MDM2 is a negative regulator of tumor protein 53 (TP53). We tested the in vivo efficacy of BI-907828, a small molecule inhibitor of the MDM2-TP53 interaction, in two DDLPS patient-derived xenografts (PDX).

Methods

Partially immunodeficient mice were bilaterally engrafted with UZLX-STS3 (n = 24) and UZLX-STS5 (n = 24) human DDLPS tissue harboring MDM2 amplifications. Mice were grouped as follows: (a) vehicle (0.5% hydroxyethylcellullose) 10 ml/kg daily per os (p.o.); (b) doxorubicin 5 mg/kg weekly intraperitoneally (i.p.); (c) BI-907828 2.5 mg/kg daily p.o. and (d) BI-907828 10 mg/kg daily p.o. The treatment lasted for 15 days, all mice treated with BI-907828 were followed for 37 days post-treatment. Efficacy was assessed by tumor volume and histopathological evaluation.

Results

The 15-day treatment with 2.5 mg/kg and 10 mg/kg BI-907828 significantly inhibited tumor growth in UZLX-STS5 and -STS3 (p < 0.0001 compared to control for both models). All UZLX-STS5 and -STS3 tumors treated with BI-907828 decreased in size during treatment, and BI-907828-treated UZLX-STS5 tumors even disappeared completely. During the follow-up period, no tumor regrowth was observed in the UZLX-STS5 model and both doses of BI-907828 led to a pathological complete response, whereas a dose-dependent regrowth was seen in the UZLX-STS3 model.

Conclusion

BI-907828 showed significant anti-tumor activity in DDLPS PDX harboring MDM2 amplifications, providing a strong rationale for early clinical testing of BI-907828 in a DDLPS patient population.
Literatur
1.
Zurück zum Zitat Fletcher CD, Bridge JA, Hogendoorn PC, Mertens F. WHO classification of tumours of soft tissue and bone. Lyon: IARC Press; 2013. Fletcher CD, Bridge JA, Hogendoorn PC, Mertens F. WHO classification of tumours of soft tissue and bone. Lyon: IARC Press; 2013.
2.
Zurück zum Zitat Henricks WH, Chu YC, Goldblum JR, Weis SW. Dedifferentiated liposarcoma: a clinicopathological analysis of 155 cases with a proposal for an expanded definition of dedifferentiation. Am J Surg Pathol. 1997;21:271–81.CrossRef Henricks WH, Chu YC, Goldblum JR, Weis SW. Dedifferentiated liposarcoma: a clinicopathological analysis of 155 cases with a proposal for an expanded definition of dedifferentiation. Am J Surg Pathol. 1997;21:271–81.CrossRef
3.
Zurück zum Zitat Judson I, Verweij J, Gelderblom H, Hartmann JT, Schöffski P, Blay JY, et al. Doxorubicin alone versus intensified doxorubicin plus ifosfamide for first-line treatment of advanced or metastatic soft-tissue sarcoma: a randomised controlled phase 3 trial. Lancet Oncol. 2014;15:415–23.CrossRef Judson I, Verweij J, Gelderblom H, Hartmann JT, Schöffski P, Blay JY, et al. Doxorubicin alone versus intensified doxorubicin plus ifosfamide for first-line treatment of advanced or metastatic soft-tissue sarcoma: a randomised controlled phase 3 trial. Lancet Oncol. 2014;15:415–23.CrossRef
4.
Zurück zum Zitat Schöffski P, Cornillie J, Wozniak A, Li H, Hompes D. Soft tissue sarcoma: an update on systemic treatment options for patients with advanced disease. Oncol Res Treat. 2014;37:355–62.CrossRef Schöffski P, Cornillie J, Wozniak A, Li H, Hompes D. Soft tissue sarcoma: an update on systemic treatment options for patients with advanced disease. Oncol Res Treat. 2014;37:355–62.CrossRef
5.
Zurück zum Zitat Italiano A, Toulmonde M, Cioffi A, Penel N, Isambert N, Bompas E, et al. Advanced well-differentiated/dedifferentiated liposarcomas: role of chemotherapy and survival. Ann Oncol. 2012;23:1601–7.CrossRef Italiano A, Toulmonde M, Cioffi A, Penel N, Isambert N, Bompas E, et al. Advanced well-differentiated/dedifferentiated liposarcomas: role of chemotherapy and survival. Ann Oncol. 2012;23:1601–7.CrossRef
6.
Zurück zum Zitat Oliner JD, Kinzler KW, Meltzer PS, George DL, Vogelstein B. Amplification of a gene encoding a p53-associated protein in human sarcomas. Nature. 1992;358:80–3.CrossRef Oliner JD, Kinzler KW, Meltzer PS, George DL, Vogelstein B. Amplification of a gene encoding a p53-associated protein in human sarcomas. Nature. 1992;358:80–3.CrossRef
7.
Zurück zum Zitat Vassilev LT, Vu BT, Graves B, Carvajal D, Podlaski F, Filipovic Z, et al. In vivo activation of the p53 pathway by small-molecule antagonists of MDM2. Science. 2004;303:844–8.CrossRef Vassilev LT, Vu BT, Graves B, Carvajal D, Podlaski F, Filipovic Z, et al. In vivo activation of the p53 pathway by small-molecule antagonists of MDM2. Science. 2004;303:844–8.CrossRef
8.
Zurück zum Zitat Burgess A, Chia KM, Haupt S, Thomas D, Haupt Y, Lim E. Clinical overview of MDM2/X-targeted therapies. Front Oncol. 2016;6:7.CrossRef Burgess A, Chia KM, Haupt S, Thomas D, Haupt Y, Lim E. Clinical overview of MDM2/X-targeted therapies. Front Oncol. 2016;6:7.CrossRef
9.
Zurück zum Zitat Tovar C, Graves B, Packman K, Filipovic Z, Higgins B, Xia M, et al. MDM2 small-molecule antagonist RG7112 activates p53 signaling and regresses human tumors in preclinical cancer models. Cancer Res. 2013;73:2587–97.CrossRef Tovar C, Graves B, Packman K, Filipovic Z, Higgins B, Xia M, et al. MDM2 small-molecule antagonist RG7112 activates p53 signaling and regresses human tumors in preclinical cancer models. Cancer Res. 2013;73:2587–97.CrossRef
10.
Zurück zum Zitat Ray-Coquard I, Blay JY, Italiano A, Le Cesne A, Penel N, Zhi J, et al. Effect of the MDM2 antagonist RG7112 on the P53 pathway in patients with MDM2-amplified, well-differentiated or dedifferentiated liposarcoma: an exploratory proof-of-mechanism study. Lancet Oncol. 2012;13:1133–40.CrossRef Ray-Coquard I, Blay JY, Italiano A, Le Cesne A, Penel N, Zhi J, et al. Effect of the MDM2 antagonist RG7112 on the P53 pathway in patients with MDM2-amplified, well-differentiated or dedifferentiated liposarcoma: an exploratory proof-of-mechanism study. Lancet Oncol. 2012;13:1133–40.CrossRef
11.
Zurück zum Zitat Andreeff M, Kelly KR, Yee K, Assouline S, Strair R, Popplewell L, et al. Results of a phase I trial of RG7112, a small-molecule MDM2 antagonist in leukemia. Clin Cancer Res. 2016;22:868–76.CrossRef Andreeff M, Kelly KR, Yee K, Assouline S, Strair R, Popplewell L, et al. Results of a phase I trial of RG7112, a small-molecule MDM2 antagonist in leukemia. Clin Cancer Res. 2016;22:868–76.CrossRef
12.
Zurück zum Zitat Kurzrock R, Blay JY, Nguyen BB, Wagner AJ, Maki RG, Schwartz GK et al. A phase I study of MDM2 antagonist RG7112 in patient (pts) with relapsed/refractory solid tumors. J Clin Oncol 2012;30(suppl; abstr e13600).CrossRef Kurzrock R, Blay JY, Nguyen BB, Wagner AJ, Maki RG, Schwartz GK et al. A phase I study of MDM2 antagonist RG7112 in patient (pts) with relapsed/refractory solid tumors. J Clin Oncol 2012;30(suppl; abstr e13600).CrossRef
13.
Zurück zum Zitat Chawla SP, Blay JY, Italiano A, Guttierez M, Le Cesne A, Gomez-Roca CA et al. Phase Ib study of RG7112 with doxorubicin (D) in advanced soft tissue sarcoma (ASTS). J Clin Oncol 2013;31(suppl; abstr 10514).CrossRef Chawla SP, Blay JY, Italiano A, Guttierez M, Le Cesne A, Gomez-Roca CA et al. Phase Ib study of RG7112 with doxorubicin (D) in advanced soft tissue sarcoma (ASTS). J Clin Oncol 2013;31(suppl; abstr 10514).CrossRef
14.
Zurück zum Zitat Bill KL, Garnett J, Meaux I, Ma X, Creighton CJ, Bolshakov S, et al. SAR405838: a novel and potent inhibitor of the MDM2:p53 axis for the treatment of dedifferentiated liposarcoma. Clin Cancer Res. 2016;22:1150–60.CrossRef Bill KL, Garnett J, Meaux I, Ma X, Creighton CJ, Bolshakov S, et al. SAR405838: a novel and potent inhibitor of the MDM2:p53 axis for the treatment of dedifferentiated liposarcoma. Clin Cancer Res. 2016;22:1150–60.CrossRef
15.
Zurück zum Zitat Furet P, Masuya K, Kallen J, Stachyra-Valat T, Ruetz S, Guagnano V, et al. Discovery of a novel class of highly potent inhibitors of the p53-MDM2 interaction by structure-based design starting from a conformational argument. Bioorg Med Chem Lett. 2016;26:4837–41.CrossRef Furet P, Masuya K, Kallen J, Stachyra-Valat T, Ruetz S, Guagnano V, et al. Discovery of a novel class of highly potent inhibitors of the p53-MDM2 interaction by structure-based design starting from a conformational argument. Bioorg Med Chem Lett. 2016;26:4837–41.CrossRef
16.
Zurück zum Zitat de Jonge M, de Weger VA, Dickson MA, Langenberg M, Le Cesne A, Wagner AJ, et al. A phase I study of SAR405838, a novel human double minute 2 (HDM2) antagonist, in patients with solid tumours. Eur J Cancer. 2017;76:144–51.CrossRef de Jonge M, de Weger VA, Dickson MA, Langenberg M, Le Cesne A, Wagner AJ, et al. A phase I study of SAR405838, a novel human double minute 2 (HDM2) antagonist, in patients with solid tumours. Eur J Cancer. 2017;76:144–51.CrossRef
17.
Zurück zum Zitat Iancu-Rubin C, Mosoyan G, Glenn K, Gordon RE, Nichols GL, Hoffman R. Activation of p53 by the MDM2 inhibitor RG7112 impairs thrombopoiesis. Exp Hematol. 2014;42:137–45.CrossRef Iancu-Rubin C, Mosoyan G, Glenn K, Gordon RE, Nichols GL, Hoffman R. Activation of p53 by the MDM2 inhibitor RG7112 impairs thrombopoiesis. Exp Hematol. 2014;42:137–45.CrossRef
18.
Zurück zum Zitat Mahfoudhi E, Lordier L, Marty C, Pan J, Roy A, Roy L, et al. P53 activation inhibits all types of hematopoietic progenitors and all stages of megakaryopoiesis. Oncotarget. 2016;7:31980–92.CrossRef Mahfoudhi E, Lordier L, Marty C, Pan J, Roy A, Roy L, et al. P53 activation inhibits all types of hematopoietic progenitors and all stages of megakaryopoiesis. Oncotarget. 2016;7:31980–92.CrossRef
19.
Zurück zum Zitat Rinnenthal J, Rudolph D, Blake S, Gollner A, Wernitznig A, Weyer-Czernilofsky U et al. BI 907828: a highly potent MDM2 inhibitor with low human dose estimation, designed for high dose intermittent schedules in the clinic. AACR Annual Meeting, Chicago, IL, USA; April 14–18, 2018; abstract #4865. Rinnenthal J, Rudolph D, Blake S, Gollner A, Wernitznig A, Weyer-Czernilofsky U et al. BI 907828: a highly potent MDM2 inhibitor with low human dose estimation, designed for high dose intermittent schedules in the clinic. AACR Annual Meeting, Chicago, IL, USA; April 14–18, 2018; abstract #4865.
20.
Zurück zum Zitat Rudolph D, Gollner A, Blake S, Rinnenthal J, Wernitznig A, Weyer-Czernilofsky U et al. BI 907828: a novel, potent MDM2 inhibitor that is suitable for high-dose intermittent schedules. AACR Annual Meeting, Chicago, IL, USA; April 14–18, 2018; abstract #4868. Rudolph D, Gollner A, Blake S, Rinnenthal J, Wernitznig A, Weyer-Czernilofsky U et al. BI 907828: a novel, potent MDM2 inhibitor that is suitable for high-dose intermittent schedules. AACR Annual Meeting, Chicago, IL, USA; April 14–18, 2018; abstract #4868.
21.
Zurück zum Zitat Rudolph D, Reschke M, Blake S, Rinnenthal J, Wernitznig A, Weyer-Czernilofsky U et al. BI 907828: a novel, potent MDM2 inhibitor that induces anti-tumor immunological memory and acts synergistically with an anti-PD1 antibody in syngeneic mouse models of cancer. AACR Annual Meeting, Chicago, IL, USA; April 14–18, 2018; abstract #4866. Rudolph D, Reschke M, Blake S, Rinnenthal J, Wernitznig A, Weyer-Czernilofsky U et al. BI 907828: a novel, potent MDM2 inhibitor that induces anti-tumor immunological memory and acts synergistically with an anti-PD1 antibody in syngeneic mouse models of cancer. AACR Annual Meeting, Chicago, IL, USA; April 14–18, 2018; abstract #4866.
22.
Zurück zum Zitat Li H, Wozniak A, Sciot R, Cornillie J, Wellens J, Van Looy T, et al. Pazopanib, a receptor tyrosine kinase inhibitor, suppresses tumor growth through angiogenesis in dedifferentiated liposarcoma xenograft models. Transl Oncol. 2014;7:665–71.CrossRef Li H, Wozniak A, Sciot R, Cornillie J, Wellens J, Van Looy T, et al. Pazopanib, a receptor tyrosine kinase inhibitor, suppresses tumor growth through angiogenesis in dedifferentiated liposarcoma xenograft models. Transl Oncol. 2014;7:665–71.CrossRef
23.
Zurück zum Zitat Cornillie J, Wozniak A, Pokreisz P, Casazza A, Vreys L, Wellens J, et al. In vivo antitumoral efficacy of PhAc-ALGP-doxorubicin, an enzyme-activated doxorubicin prodrug, in patient-derived soft tissue sarcoma xenograft models. Mol Cancer Ther. 2017;16:1566–75.CrossRef Cornillie J, Wozniak A, Pokreisz P, Casazza A, Vreys L, Wellens J, et al. In vivo antitumoral efficacy of PhAc-ALGP-doxorubicin, an enzyme-activated doxorubicin prodrug, in patient-derived soft tissue sarcoma xenograft models. Mol Cancer Ther. 2017;16:1566–75.CrossRef
25.
Zurück zum Zitat Rana T, Chakrabarti A, Freeman M, Biswas S. Doxorubicin-mediated bone loss in breast cancer bone metastases is driven by an interplay between oxidative stress and induction of TGFβ. PLoS ONE. 2013;8:e78043.CrossRef Rana T, Chakrabarti A, Freeman M, Biswas S. Doxorubicin-mediated bone loss in breast cancer bone metastases is driven by an interplay between oxidative stress and induction of TGFβ. PLoS ONE. 2013;8:e78043.CrossRef
26.
Zurück zum Zitat Oliveira MS, Melo MB, Carvalho JL, Melo IM, Lavor MS, Domes DA, et al. Doxorubicin cardiotoxicity and cardiac function improvement after stem cell therapy diagnosed by strain echocardiography. J Cancer Sci Ther. 2013;5:52–7.CrossRef Oliveira MS, Melo MB, Carvalho JL, Melo IM, Lavor MS, Domes DA, et al. Doxorubicin cardiotoxicity and cardiac function improvement after stem cell therapy diagnosed by strain echocardiography. J Cancer Sci Ther. 2013;5:52–7.CrossRef
27.
Zurück zum Zitat Aziz MH, Shen H, Maki CG. Acquisition of p53 mutations in response to the non-genotoxic p53 activator nutlin-3. Oncogene. 2011;30:4678–86.CrossRef Aziz MH, Shen H, Maki CG. Acquisition of p53 mutations in response to the non-genotoxic p53 activator nutlin-3. Oncogene. 2011;30:4678–86.CrossRef
28.
Zurück zum Zitat Jones RJ, Bjorklund CC, Baladandayuthapani V, Kuhn DJ, Orlowski RZ. Drug resistance to inhibitors of the human double minute-2 E3 ligase is mediated by point mutations of p53, but can be overcome with the p53 targeting agent RITA. Mol Cancer Ther. 2012;11:2243–53.CrossRef Jones RJ, Bjorklund CC, Baladandayuthapani V, Kuhn DJ, Orlowski RZ. Drug resistance to inhibitors of the human double minute-2 E3 ligase is mediated by point mutations of p53, but can be overcome with the p53 targeting agent RITA. Mol Cancer Ther. 2012;11:2243–53.CrossRef
31.
Zurück zum Zitat Duffy MJ, Synnott NC, Crown J. Mutant p53 as a target for cancer treatment. Eur J Cancer. 2017;83:258–65.CrossRef Duffy MJ, Synnott NC, Crown J. Mutant p53 as a target for cancer treatment. Eur J Cancer. 2017;83:258–65.CrossRef
Metadaten
Titel
Anti-tumor activity of the MDM2-TP53 inhibitor BI-907828 in dedifferentiated liposarcoma patient-derived xenograft models harboring MDM2 amplification
verfasst von
J. Cornillie
A. Wozniak
H. Li
Y. K. Gebreyohannes
J. Wellens
D. Hompes
M. Debiec-Rychter
R. Sciot
P. Schöffski
Publikationsdatum
14.06.2019
Verlag
Springer International Publishing
Erschienen in
Clinical and Translational Oncology / Ausgabe 4/2020
Print ISSN: 1699-048X
Elektronische ISSN: 1699-3055
DOI
https://doi.org/10.1007/s12094-019-02158-z

Weitere Artikel der Ausgabe 4/2020

Clinical and Translational Oncology 4/2020 Zur Ausgabe

Update Onkologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.