H2020Individual fellowship2017–2019

EwiSarc · A novel in vivo platform to study and target undruggable Ewing onco-chimera.

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2017-05-01 → 2019-04-30
EU contribution
€180,277
Participants
1
Scheme
MSCA-IF-EF-CAR

Lines connect the coordinator with its partners.

Results in brief

A novel in vivo platform to study and target undruggable Ewing onco-chimera.

Cancer represents the second major cause of death and morbidity after cardiovascular diseases, with more than 3 Million new cases and 1.7 Million deaths each year (WHO data). While most of the new cancer diagnosis is made in adults, childhood cancers make up less than 1% of all cases diagnosed every year, but the rate has been rising slightly for the past few decades (American Cancer Society). Cancer in children is relatively rare, yet it is the leading cause of death by disease in developed countries. About 3% of childhood cancers are represented by primary bone tumors, of which 2 main types have been described: Osteosarcoma and Ewing sarcoma. While osteosarcoma is the most common type in teens, Ewing sarcoma represents 1% of all childhood cancers (incidence approximately 3 cases/million/year). However, given its aggressiveness, while the current 5-years survival rate for young patients with localized ES is about 70%, this prognosis value drops to 15-30% for patients with metastatic tumors at diagnosis. Chemotherapy and radiotherapy have drastically reduced the lethality of leukemia and lymphoma, however, they have only slightly improved sarcomas outcome in the past 30 years, and Ewing sarcoma treatment is still only based on the use of generic chemo agents such as doxorubicin, vincristine, cyclophosphamide, and dactinomycin. In many different forms of sarcoma, the initial oncogenic event is a balanced chromosomal translocation originating a chimeric oncoprotein. Even though much is known regarding the oncogenic functions of different chimeras, the success rate at which this advanced knowledge has been translated into effective therapies is pitifully low. Chimeric oncoproteins are exclusive hallmarks of tumor cells and should represent the most valuable therapeutic target to identify novel precision's medicine approaches to flank and support the current chemotherapy protocols against Ewing sarcoma. The identification of novel drugs through preclinical studies is however heavily influenced by the model enrolled in the studies. Faithfull preclinical models able to recapitulate most of the biological characteristics of the human disease should always be employed to improve the efficiency of the preclinical study and to decrease the percentage of subsequently failing clinical tests. Currently, however, no faithful preclinical models of Ewing Sarcoma are available. Therefore, main objectives of this study will be the development of reliable preclinical models able to faithfully recapitulate Ewing sarcomagenetic process to study the pathobiology basis of the disease (Work Package 1) and the identification of molecular mechanisms whose pharmacological tuning will tear down Ewing sarcoma lethality (Work Package 2). Thanks to the work carried out in this project, our understanding of Ewing sarcoma’s pathobiology has further improved. Indeed, while previous scientific knowledge suggested that Ewing sarcoma development is driven uniquely by specific chromosomal translocations, results from this projects strongly support the idea that Ewing oncochimeras are not sufficient to induce cell transformation, and other currently unknown events are required to unleash their full transforming potential.

Data: CORDIS, © European Union

Project objective

Development of efficient therapeutic strategies in the past years has drastically reduced the lethality of several common types of pediatric and juvenile form of cancer such as leukemia, lymphoma and brain tumors. Such a tremendous success, however, does not include sarcomas treatment, whose mortality rate remains the same as twenty years ago. Ewing sarcoma is a childhood cancer with a relatively low incidence, with 3 cases/million/year. The initial oncogenic event is represented by a balanced chromosomal translocation originating a transcription factor chimeric onco-protein. Notably, 90% of Ewing sarcoma patients are characterized by the fusion between EWS and FLI1 genes. From a therapeutic point of view, as exclusive hallmark of tumor cells and driving force of the disease, the onco-chimera protein represents an ideal target, even though transcription factor onco-proteins are classified as “undruggable” from a conventional pharmacological point of view, lacking in their structure convenient targeting pockets. This project aims to break this dogma through the following steps: 1. Generation of an in vivo genetic platform based on an innovative ex vivo-in vitro-in vivo approach that will allow us to accurately recapitulate in mice Ewing sarcomagenesis; 2. Characterization in vivo and in vitro of those mechanisms and pathways that are essential for the tumorigenic process; and finally, 3. Identification of druggable targets whose fine-tuning will tear down Ewing sarcoma lethality by promoting onco-chimera degradation. The success of this project will not only lead to the development of new therapies against Ewing sarcoma, but also to the development of a novel platform which will be easily exported to other tumors driven by “undruggable” onco-chimeras.

Original text from CORDIS.

Participants

  • UNIVERSITA DEGLI STUDI DI TRENTO · TrentoCoordinatorItaly

Links

Data: CORDIS, © European Union