ALK translocation and crizotinib in non-small cell lung cancer: an evolving paradigm in oncology drug development

Giorgio Scagliotti1, Rolf A Stahel, Rafael Rosell

  • 1University of Torino San Luigi Hospital, Orbassano, Torino, Italy.

European Journal of Cancer (Oxford, England : 1990)
|March 9, 2012
PubMed

Insights

Molecularly targeted therapies, like crizotinib for ALK-positive non-small cell lung cancer (NSCLC), show high response rates. This success supports re-evaluating clinical trial designs for future targeted agents.

Area of Science:

  • Oncology
  • Molecular Biology
  • Clinical Pharmacology

Background:

  • Tumour classification is shifting from site of origin to molecular characteristics.
  • The EML4-anaplastic lymphoma kinase (ALK) oncogenic driver is identified in non-small cell lung cancer (NSCLC).
  • ALK translocations are amenable to targeted therapy, exemplified by crizotinib.

Purpose of the Study:

  • To evaluate the clinical efficacy and safety of crizotinib in patients with ALK-positive advanced NSCLC.
  • To assess the impact of molecularly targeted therapy on clinical trial design.
  • To support the accelerated development and approval of targeted agents in molecularly defined populations.

Main Methods:

  • Phase I and II clinical trials were conducted in patients with ALK-positive advanced NSCLC.
  • Clinical responses, duration of response, and adverse events were meticulously recorded.
  • Data analysis focused on response rates, tolerability, and quality of life.

Main Results:

  • Crizotinib demonstrated notably high and rapid response rates in patients with ALK-positive NSCLC.
  • Treatment-related adverse events were generally mild (gastrointestinal and visual disorders).
  • Crizotinib improved symptom relief and maintained quality of life for patients.

Conclusions:

  • The success of crizotinib validates molecular selection for targeted therapies in NSCLC.
  • Clinical trial designs should incorporate molecular testing and enrichment biomarkers for efficient drug development.
  • Accelerated approval pathways for molecularly specified populations are supported by these findings.

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