Target-Driven Tissue-Agnostic Drug Approvals-A New Path of Drug Development
Kyaw Z Thein1,2,3, Yin M Myat4,5, Byung S Park6,7
1Division of Hematology and Medical Oncology, Comprehensive Cancer Centers of Nevada-Central Valley, 3730 S Eastern Ave, Las Vegas, NV 89169, USA.
Abstract:
The regulatory approvals of tumor-agnostic therapies have led to the re-evaluation of the drug development process. The conventional models of drug development are histology-based. On the other hand, the tumor-agnostic drug development of a new drug (or combination) focuses on targeting a common genomic biomarker in multiple cancers, regardless of histology. The basket-like clinical trials with multiple cohorts allow clinicians to evaluate pan-cancer efficacy and toxicity. There are currently eight tumor agnostic approvals granted by the Food and Drug Administration (FDA). This includes two immune checkpoint inhibitors, and five targeted therapy agents. Pembrolizumab is an anti-programmed cell death protein-1 (PD-1) antibody that was the first FDA-approved tumor-agnostic treatment for unresectable or metastatic microsatellite instability-high (MSI-H) or deficient mismatch repair (dMMR) solid tumors in 2017. It was later approved for tumor mutational burden-high (TMB-H) solid tumors, although the TMB cut-off used is still debated. Subsequently, in 2021, another anti-PD-1 antibody, dostarlimab, was also approved for dMMR solid tumors in the refractory setting. Patients with fusion-positive cancers are typically difficult to treat due to their rare prevalence and distribution. Gene rearrangements or fusions are present in a variety of tumors. Neurotrophic tyrosine kinase (NTRK) fusions are present in a range of pediatric and adult solid tumors in varying frequency. Larotrectinib and entrectinib were approved for neurotrophic tyrosine kinase (NTRK) fusion-positive cancers. Similarly, selpercatinib was approved for rearranged during transfection (RET) fusion-positive solid tumors. The FDA approved the first combination therapy of dabrafenib, a B-Raf proto-oncogene serine/threonine kinase (BRAF) inhibitor, plus trametinib, a mitogen-activated protein kinase (MEK) inhibitor for patients 6 months or older with unresectable or metastatic tumors (except colorectal cancer) carrying a BRAF mutation. The most recent FDA tumor-agnostic approval is of fam-trastuzumab deruxtecan-nxki (T-Dxd) for HER2-positive solid tumors. It is important to identify and expeditiously develop drugs that have the potential to provide clinical benefit across tumor types.
Insights
Tumor-agnostic therapies target common genomic biomarkers across multiple cancer types, shifting from traditional histology-based drug development. This approach has led to eight FDA approvals, including targeted therapies and immune checkpoint inhibitors.
Area of Science:
- Oncology
- Pharmacology
- Genomics
Background:
- Conventional cancer drug development relies on histology-based classifications.
- Tumor-agnostic drug development targets common genomic biomarkers irrespective of tumor origin.
- This paradigm shift necessitates re-evaluation of traditional drug development pathways.
Purpose of the Study:
- To review the current landscape of tumor-agnostic therapy approvals.
- To highlight key genomic biomarkers and targeted agents in tumor-agnostic drug development.
- To emphasize the importance of identifying and developing pan-cancer therapies.
Main Methods:
- Review of Food and Drug Administration (FDA) approvals for tumor-agnostic therapies.
- Analysis of clinical trial designs, such as basket trials, for evaluating pan-cancer efficacy.
- Identification of specific genomic biomarkers (e.g., MSI-H/dMMR, NTRK fusions, RET fusions, BRAF mutations, HER2-positivity) and associated drugs.
Main Results:
- Eight tumor-agnostic therapies have been approved by the FDA.
- Approved therapies include immune checkpoint inhibitors (e.g., Pembrolizumab, Dostarlimab) and targeted agents (e.g., Larotrectinib, Entrectinib, Selpercatinib, Dabrafenib/Trametinib, Fam-trastuzumab deruxtecan-nxki).
- These approvals target biomarkers like microsatellite instability-high (MSI-H), deficient mismatch repair (dMMR), NTRK fusions, RET fusions, BRAF mutations, and HER2-positivity.
Conclusions:
- Tumor-agnostic drug development offers a promising alternative to histology-based approaches.
- Basket trials facilitate the evaluation of drugs targeting common biomarkers across diverse cancers.
- Continued research and development are crucial for expanding the clinical benefit of tumor-agnostic therapies.
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