Grupo de Oncología Experimental

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Investigadores Científicos

  • Sara García
  • Carmen Guerra

Becarios Post-doctorales

  • Juan Carlos López

Becarios Pre-Doctorales

  • Domingo Acosta
  • Gonzalo María Aizpurua
  • Oksana Brehey
  • Ana María Fernández
  • Ana Galván
  • Lucía Lomba
  • Blanca Rosas
  • Andrés Simón
  • Pian Sun
  • Elena Zamorano

Técnicos de Laboratorio

  • Rebeca Barrero
  • Mª Carmen González
  • Silvia Jiménez
  • Alejandra López
  • Jorge Guillermo Ortiz
  • Marta San Román
  • Raquel Villar

Científico Visitante

  • Matthias Drosten
  • Mónica Andrea Musteanu

For over three decades, KRAS proteins were thought to be undruggable. This concept came to an end when, in 2013, Shokat and co-workers identified a small groove in the KRASG12C oncoprotein, which allows the insertion of small inhibitory chemotypes. These results led to a frenetic race to develop a new generation of KRAS inhibitors. Unfortunately, these inhibitors have provided somewhat disappointing results in the clinic, primarily due to the rapid onset of tumour resistance. In our laboratory, we reasoned that the most efficacious way to overcome tumour resistance was to target KRAS signalling at independent nodes, thus thwarting the capacity of tumour cells to utilise alternative pathways that bypass the anti-tumoural effect of KRAS inhibitors. This strategy has proved to be correct. Indeed, we have recently demonstrated that the genetic ablation of three independent nodes involved in downstream (RAF1), upstream (EGFR) and orthogonal (STAT3) KRAS signalling led to the complete and permanent regression of experimental pancreatic tumours. More importantly, we have successfully translated these results to a pharmacological scenario. We have reported that a combination of KRAS, EGFR and STAT3 inhibitors induced the complete and durable regression of experimental and patient-derived (PDX) pancreatic tumour models. These results should guide the development of new clinical trials to benefit pancreatic cancer patients.

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