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Updated: Jun 25, 2025

Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
The evolving landscape of tissue-agnostic therapies in precision oncology
Vivek Subbiah1, Mohamed A Gouda2, Bettina Ryll3,4
1Sarah Cannon Research Institute, Nashville, Tennessee, USA.
Abstract:
Tumor-agnostic therapies represent a paradigm shift in oncology by altering the traditional means of characterizing tumors based on their origin or location. Instead, they zero in on specific genetic anomalies responsible for fueling malignant growth. The watershed moment for tumor-agnostic therapies arrived in 2017, with the US Food and Drug Administration's historic approval of pembrolizumab, an immune checkpoint inhibitor. This milestone marked the marriage of genomics and immunology fields, as an immunotherapeutic agent gained approval based on genomic biomarkers, specifically, microsatellite instability-high or mismatch repair deficiency (dMMR). Subsequently, the approval of NTRK inhibitors, designed to combat NTRK gene fusions prevalent in various tumor types, including pediatric cancers and adult solid tumors, further underscored the potential of tumor-agnostic therapies. The US Food and Drug Administration approvals of targeted therapies (BRAF V600E, RET fusion), immunotherapies (tumor mutational burden ≥10 mutations per megabase, dMMR) and an antibody-drug conjugate (Her2-positive-immunohistochemistry 3+ expression) with pan-cancer efficacy have continued, offering newfound hope to patients grappling with advanced solid tumors that harbor particular biomarkers. In this comprehensive review, the authors delve into the expansive landscape of tissue-agnostic targets and drugs, shedding light on the rationale underpinning this approach, the hurdles it faces, presently approved therapies, voices from the patient advocacy perspective, and the tantalizing prospects on the horizon. This is a welcome advance in oncology that transcends the boundaries of histology and location to provide personalized options.
Insights
Tumor-agnostic therapies target specific genetic anomalies, not tumor location. Approved treatments like pembrolizumab offer personalized options for advanced solid tumors with specific biomarkers.
Area of Science:
- Oncology
- Genomics
- Immunology
Background:
- Traditional cancer treatment relies on tumor origin, but tumor-agnostic therapies focus on genetic mutations.
- The 2017 FDA approval of pembrolizumab for microsatellite instability-high (MSI-H) or mismatch repair deficient (dMMR) tumors marked a significant shift.
- Subsequent approvals of NTRK inhibitors and other targeted therapies highlight the growing potential of this approach.
Purpose of the Study:
- To review the landscape of tissue-agnostic targets and drugs in oncology.
- To discuss the rationale, challenges, and approved therapies in tumor-agnostic treatment.
- To explore patient advocacy perspectives and future prospects.
Main Methods:
- Review of FDA-approved tumor-agnostic therapies.
- Analysis of genomic biomarkers driving treatment selection.
- Examination of immunotherapies, targeted therapies, and antibody-drug conjugates.
Main Results:
- Pembrolizumab, NTRK inhibitors, BRAF V600E, RET fusion, and Her2-positive therapies demonstrate pan-cancer efficacy.
- Tumor mutational burden (TMB) and dMMR are key biomarkers for immunotherapy.
- These therapies offer personalized options for advanced solid tumors with specific biomarkers.
Conclusions:
- Tumor-agnostic therapies represent a paradigm shift, moving beyond histology and location.
- Genomic biomarkers are crucial for identifying patients who can benefit from these treatments.
- This approach provides personalized treatment options and hope for patients with advanced cancers.
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