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TRK inhibitors in TRK fusion-positive cancers
1Memorial Sloan Kettering Cancer Center, New York; Weill Cornell Medical College, New York, USA.
Abstract:
TRK fusions are oncogenic drivers of various adult and paediatric cancers. The first-generation TRK inhibitors, larotrectinib and entrectinib, were granted landmark, tumour-agnostic regulatory approvals for the treatment of these cancers in 2018 and 2019, respectively. Brisk and durable responses are achieved with these drugs in patients, including those with locally advanced or metastatic disease. In addition, intracranial activity has been observed with both agents in TRK fusion-positive solid tumours with brain metastases and primary brain tumours. While resistance to first-generation TRK inhibition can eventually occur, next-generation agents such as selitrectinib (BAY 2731954, LOXO-195) and repotrectinib were designed to address on-target resistance, which is mediated by emergent kinase domain mutations, such as those that result in substitutions at solvent front or gatekeeper residues. These next-generation drugs are currently available in the clinic and proof-of-concept responses have been reported. This underscores the utility of sequential TRK inhibitor use in select patients, a paradigm that parallels the use of targeted therapies in other oncogenic driver-positive cancers, such as ALK fusion-positive lung cancers. While TRK inhibitors have a favourable overall safety profile, select on-target adverse events, including weight gain, dizziness/ataxia and paraesthesias, are occasionally observed and should be monitored in the clinic. These side-effects are likely consequences of the inhibition of the TRK pathway that is involved in the development and maintenance of the nervous system.
Insights
Tropomyosin receptor kinase (TRK) inhibitors, including first-generation and next-generation agents, offer effective cancer treatment. Sequential use of these TRK inhibitors shows promise for managing resistance and improving patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- TRK fusions are key drivers in various adult and pediatric cancers.
- First-generation TRK inhibitors (larotrectinib, entrectinib) have shown efficacy in tumor-agnostic approvals.
- These inhibitors demonstrate activity in advanced, metastatic, and intracranial disease.
Purpose of the Study:
- To review the efficacy and application of TRK inhibitors in cancer treatment.
- To discuss the role of next-generation TRK inhibitors in overcoming resistance.
- To highlight the potential of sequential TRK inhibitor therapy.
Main Methods:
- Review of clinical data and scientific literature on TRK inhibitors.
- Analysis of resistance mechanisms to first-generation TRK inhibitors.
- Evaluation of next-generation agents (selitrectinib, repotrectinib) for on-target resistance.
Main Results:
- First-generation TRK inhibitors provide durable responses, including in brain metastases.
- Next-generation TRK inhibitors are designed to overcome specific resistance mutations.
- Early data suggests positive responses with sequential TRK inhibitor use.
Conclusions:
- TRK inhibitors are valuable targeted therapies for TRK fusion-driven cancers.
- Sequential TRK inhibitor therapy represents a viable strategy for managing treatment resistance.
- Monitoring for specific adverse events related to TRK pathway inhibition is crucial.
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