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Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Phase I Basket Study of Taselisib, an Isoform-Selective PI3K Inhibitor, in Patients with PIK3CA-Mutant Cancers
Komal Jhaveri1,2, Matthew T Chang3, Dejan Juric4
1Memorial Sloan Kettering Cancer Center, Memorial Hospital, New York, New York. jhaverik@mskcc.org.
Purpose:
Somatic mutations in phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit alpha (PIK3CA), which encodes the p110α catalytic subunit of PI3K, are found in multiple human cancers. While recurrent mutations in PIK3CA helical, regulatory, and kinase domains lead to constitutive PI3K pathway activation, other mutations remain uncharacterized. To further evaluate their clinical actionability, we designed a basket study for patients with PIK3CA-mutant cancers with the isoform-specific PI3K inhibitor taselisib.
Patients And Methods:
Patients were enrolled on the basis of local PIK3CA mutation testing into one of 11 histology-specific cohorts and treated with taselisib at 6 or 4 mg daily until progression. Tumor DNA from baseline and progression (when available) was sequenced using a next-generation sequencing panel. Exploratory analyses correlating genomic alterations with treatment outcomes were performed.
Results:
A total of 166 patients with PIK3CA-mutant cancers were enrolled. The confirmed response rate was 9%. Activity varied by tumor type and mutant allele, with confirmed responses observed in head and neck squamous (15.4%), cervical (10%), and other cancers, plus in tumors containing helical domain mutations. Genomic analyses identified mutations potentially associated with resistance to PI3K inhibition upfront (TP53 and PTEN) and postprogression through reactivation of the PI3K pathway (PTEN, STK11, and PIK3R1). Higher rates of dose modification occurred at higher doses of taselisib, indicating a narrow therapeutic index.
Conclusions:
Taselisib had limited activity in the tumor types tested and is no longer in development. This genome-driven study improves understanding of the activity, limitations, and resistance mechanisms of using PI3K inhibitors as monotherapy to target PIK3CA-mutant tumors.
Insights
The PI3K inhibitor taselisib showed limited activity in patients with PIK3CA-mutant cancers, with a 9% response rate. This study enhances understanding of PI3K inhibitor limitations and resistance mechanisms in PIK3CA-mutant tumors.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Somatic mutations in phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit alpha (PIK3CA) are prevalent in various human cancers.
- These PIK3CA mutations, particularly in helical, regulatory, and kinase domains, can lead to constitutive activation of the PI3K pathway.
- The clinical actionability of other PIK3CA mutations remains largely uncharacterized, necessitating further investigation.
Purpose of the Study:
- To evaluate the clinical actionability of PIK3CA mutations using a basket study design.
- To assess the efficacy of the isoform-specific PI3K inhibitor taselisib in patients with PIK3CA-mutant cancers.
Main Methods:
- A basket study enrolled 166 patients with PIK3CA-mutant cancers across 11 histology-specific cohorts.
- Patients received taselisib (6 or 4 mg daily) until disease progression.
- Next-generation sequencing of tumor DNA was performed to identify genomic alterations and correlate them with treatment outcomes.
Main Results:
- The confirmed response rate for taselisib was 9%, with activity varying by tumor type and mutation.
- Confirmed responses were observed in head and neck squamous cell carcinoma (15.4%) and cervical cancer (10%).
- Genomic analyses identified TP53, PTEN, STK11, and PIK3R1 mutations associated with resistance to PI3K inhibition.
Conclusions:
- Taselisib demonstrated limited activity in the tested tumor types and is no longer in development.
- This study provides valuable insights into the activity, limitations, and resistance mechanisms of PI3K inhibitors as monotherapy for PIK3CA-mutant tumors.
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