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Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
Resistance to anaplastic lymphoma kinase inhibitors: knowing the enemy is half the battle won
Fabrizio Tabbò1, Maria Lucia Reale1, Paolo Bironzo1
1Department of Oncology, University of Turin, San Luigi Hospital, Orbassano, TO, Italy.
Abstract:
Anaplastic lymphoma kinase (ALK) translocations are responsible of neoplastic transformation in a limited subset of non-small cell lung cancer (NSCLC) patients. In recent years outcomes of these patients improved due to the development and clinical availability of specific and extremely active targeted therapies [i.e., next-generation Tyrosine Kinase Inhibitors (TKI)]: ALK+ patients are now reaching impressive results when treated with more potent inhibitors upfront with an average median progression-free survival (mPFS) around 35 months. However, under drug pressure, cancer cells develop resistance and patients eventually progress. Multiple mechanisms of intrinsic or acquired resistance have been extensively characterized. Less potent ALK inhibitors (ALKi)-like crizotinib-usually tend to induce a large spectrum of secondary intra-kinase mutations; however, these alterations may be observed also after sequential administration of multiple ALKi. Noteworthy, neoplastic cells may evade ALK targeting through a myriad of different mechanisms involving cell-stroma interaction, activation of parallel signaling pathways, intracellular downstream adaptation and histological reshaping, as relevant molecular events. Often these phenomena are restricted to a limited number of cases or even can be patient-specific, thus hindering the development of therapeutic strategies largely applicable. Consequently, the recognition of specific resistance mechanisms seldom translates in clinical opportunities. Management of ALK+ patients is drastically changed and deciphering the molecular biology underlying this disease during treatment is of paramount relevance. The bedrock of resistance to TKI is that, after the diagnosis, we face with a different disease that needs to be re-characterized through tissue or/and liquid biopsies. Understanding molecular pathways driving the resistant phenotype will give us the chance to know what we are dealing with and, rather than choose an empirical approach, will help us to properly define the best targeted treatment for these patients.
Insights
Anaplastic lymphoma kinase (ALK) positive non-small cell lung cancer patients develop resistance to targeted therapies. Understanding diverse resistance mechanisms is crucial for effective treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Anaplastic lymphoma kinase (ALK) translocations drive cancer in a subset of non-small cell lung cancer (NSCLC) patients.
- Targeted therapies, particularly next-generation Tyrosine Kinase Inhibitors (TKIs), have significantly improved outcomes for ALK+ NSCLC patients, with median progression-free survival around 35 months.
- Despite treatment success, cancer cells develop resistance, leading to disease progression.
Purpose of the Study:
- To explore the diverse mechanisms of intrinsic and acquired resistance to ALK inhibitors in NSCLC.
- To highlight the challenges in translating the recognition of specific resistance mechanisms into broadly applicable clinical strategies.
- To emphasize the importance of re-characterizing ALK+ NSCLC through molecular profiling to guide subsequent treatment decisions.
Main Methods:
- Characterization of intrinsic and acquired resistance mechanisms to ALK inhibitors.
- Analysis of secondary intra-kinase mutations induced by ALK inhibitors.
- Investigation of non-mutational resistance pathways including cell-stroma interactions, parallel signaling, and histological reshaping.
Main Results:
- Resistance to ALK TKIs can arise from various mechanisms, including secondary mutations and alternative signaling pathways.
- Less potent ALK inhibitors often induce a spectrum of secondary mutations, which can also occur after sequential TKI use.
- Resistance mechanisms can be diverse, patient-specific, and involve complex cellular adaptations, complicating treatment development.
Conclusions:
- Deciphering the molecular biology of ALK+ NSCLC during treatment is paramount for effective patient management.
- Re-characterization of the disease via tissue or liquid biopsies is essential upon progression.
- Understanding resistance pathways enables personalized targeted treatment selection, moving beyond empirical approaches.
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