Selective RET kinase inhibition for patients with RET-altered cancers
V Subbiah1, V Velcheti2, B B Tuch3
1The University of Texas MD Anderson Cancer Center, Houston, USA.
Background:
Alterations involving the RET kinase are implicated in the pathogenesis of lung, thyroid and other cancers. However, the clinical activity of multikinase inhibitors (MKIs) with anti-RET activity in RET-altered patients appears limited, calling into question the therapeutic potential of targeting RET. LOXO-292 is a selective RET inhibitor designed to inhibit diverse RET fusions, activating mutations and acquired resistance mutations.
Patients And Methods:
Potent anti-RET activity, high selectivity, and central nervous system coverage were confirmed preclinically using a variety of in vitro and in vivo RET-dependent tumor models. Due to clinical urgency, two patients with RET-altered, MKI-resistant cancers were treated with LOXO-292, utilizing rapid dose-titration guided by real-time pharmacokinetic assessments to achieve meaningful clinical exposures safely and rapidly.
Results:
LOXO-292 demonstrated potent and selective anti-RET activity preclinically against human cancer cell lines harboring endogenous RET gene alterations; cells engineered to express a KIF5B-RET fusion protein -/+ the RET V804M gatekeeper resistance mutation or the common RET activating mutation M918T; and RET-altered human cancer cell line and patient-derived xenografts, including a patient-derived RET fusion-positive xenograft injected orthotopically into the brain. A patient with RET M918T-mutant medullary thyroid cancer metastatic to the liver and an acquired RET V804M gatekeeper resistance mutation, previously treated with six MKI regimens, experienced rapid reductions in tumor calcitonin, CEA and cell-free DNA, resolution of painful hepatomegaly and tumor-related diarrhea and a confirmed tumor response. A second patient with KIF5B-RET fusion-positive lung cancer, acquired resistance to alectinib and symptomatic brain metastases experienced a dramatic response in the brain, and her symptoms resolved.
Conclusions:
These results provide proof-of-concept of the clinical actionability of RET alterations, and identify selective RET inhibition by LOXO-292 as a promising treatment in heavily pretreated, multikinase inhibitor-experienced patients with diverse RET-altered tumors.
Insights
Selective RET inhibitor LOXO-292 shows promise for patients with RET-altered cancers, including those resistant to other treatments. This targeted therapy demonstrated significant clinical activity in early trials for lung and thyroid cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- RET kinase alterations are key drivers in various cancers, including lung and thyroid.
- Limited efficacy of current multikinase inhibitors (MKIs) in RET-altered cancers highlights the need for novel therapeutic strategies.
- LOXO-292 is a novel, selective RET inhibitor designed to overcome diverse RET alterations, including fusions, mutations, and resistance mechanisms.
Observation:
- Preclinical studies confirmed LOXO-292's potent anti-RET activity, high selectivity, and central nervous system penetration in RET-dependent tumor models.
- Two heavily pretreated patients with MKI-resistant, RET-altered cancers received LOXO-292 under rapid dose-titration guided by pharmacokinetics.
- Clinical urgency necessitated early treatment initiation to assess safety and efficacy.
Findings:
- LOXO-292 exhibited potent and selective preclinical anti-RET activity against various RET alterations, including gatekeeper and activating mutations, in cell lines and xenografts.
- A patient with M918T-mutant medullary thyroid cancer and V804M resistance mutation showed significant tumor marker reduction and symptom resolution.
- A second patient with a KIF5B-RET fusion-positive lung cancer and brain metastases experienced a dramatic brain response and symptom relief.
Implications:
- These findings provide proof-of-concept for the clinical utility of targeting RET alterations.
- Selective RET inhibition with LOXO-292 represents a promising therapeutic avenue for refractory RET-altered cancers.
- LOXO-292 may offer a new treatment option for patients with limited prior therapeutic success.
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