Publications by authors named "Katherine Minichiello"

Purpose: ctDNA is a powerful diagnostic companion to tissue profiling. Tumor fraction (TF) is a global assessment of an individual's ctDNA burden. We evaluated the impact of plasma TF on mutation detection and clinical outcomes in patients with previously treated, advanced non-small cell lung cancer on the Lung Master Protocol (Lung-MAP).

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For cancer clinical trials that require central confirmation of tumor genomic profiling, exhaustion of tissue from standard-of-care testing may prevent enrollment. For Lung-MAP, a master protocol that requires results from a defined centralized clinical trial assay to assign patients to a therapeutic substudy, we developed a process to repurpose existing commercial vendor raw genomic data for eligibility: genomic data reanalysis (GDR). Molecular results for substudy assignment were successfully generated for 369 of the first 374 patients (98.

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Purpose: Lung Cancer Master Protocol (Lung-MAP), a public-private partnership, established infrastructure for conducting a biomarker-driven master protocol in molecularly targeted therapies. We compared characteristics of patients enrolled in Lung-MAP with those of patients in advanced non-small-cell lung cancer (NSCLC) trials to examine if master protocols improve trial access.

Methods: We examined patients enrolled in Lung-MAP (2014-2020) according to sociodemographic characteristics.

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Article Synopsis
  • The study aimed to address the challenge of resistance to immune checkpoint inhibitors in advanced non-small-cell lung cancer (NSCLC) by testing a combination treatment of ramucirumab and pembrolizumab (RP) against standard care options.
  • With 136 eligible patients, the results showed that those on the RP treatment had a significantly longer overall survival (OS) of 14.5 months compared to 11.6 months for standard care (SOC).
  • While the RP group had slightly fewer severe adverse events (42% vs. 60% for SOC), both treatment arms had similar rates of progression-free survival and objective response rates, indicating a potential for RP in overcoming previous treatment resistance.
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Article Synopsis
  • S1400F is a study examining the effectiveness of the immunotherapy drugs durvalumab and tremelimumab for patients with advanced squamous non-small cell lung cancer (sqNSCLC) who show resistance to previous anti-PD-1 therapy.
  • The study included patients who had disease progression after anti-PD-1 treatment and assessed their response to the drug combination, with a primary focus on the objective response rate and analyzing two resistance groups.
  • Results showed that the combination therapy had limited success, with only a 7% response rate in the primary resistance group and no responses in the acquired resistance group, indicating minimal activity in this patient population.
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Importance: Nivolumab plus ipilimumab is superior to platinum-based chemotherapy in treatment-naive advanced non-small cell lung cancer (NSCLC). Nivolumab is superior to docetaxel in advanced pretreated NSCLC.

Objective: To determine whether the addition of ipilimumab to nivolumab improves survival in patients with advanced, pretreated, immunotherapy-naive squamous (Sq) NSCLC.

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Introduction: The objective of the Lung-MAP sub-study S1400A was to evaluate the response rate to durvalumab, an anti-programmed death-ligand 1 (PD-L1) antibody, in patients with squamous non-small-cell lung cancer (SqNSCLC).

Patients And Methods: Patients who progressed on at least 1 prior platinum-based chemotherapy were eligible. The study was designed as a phase II/III trial comparing durvalumab with docetaxel but was modified to a single-arm, phase II trial with the primary endpoint of objective response when immunotherapy became an approved treatment.

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Introduction: Lung-MAP S1400K was designed to evaluate the response to telisotuzumab vedotin, an antibody-drug conjugate targeting c-MET, in patients with c-MET-positive squamous cell carcinoma (SCC).

Patients And Methods: Patients with previously treated SCC with c-MET-positive tumors (H score ≥ 150, Ventana SP44 assay) were enrolled into 2 cohorts: Cohort 1 (immune checkpoint inhibitor-naive) and Cohort 2 (immune checkpoint inhibitor refractory). Telisotuzumab vedotin 2.

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Background: The Lung Cancer Master Protocol (Lung-MAP; S1400) is a completed biomarker-driven master protocol designed to address an unmet need for better therapies for squamous non-small-cell lung cancer. Lung-MAP (S1400) was created to establish an infrastructure for biomarker screening and rapid regulatory intent evaluation of targeted therapies and was the first biomarker-driven master protocol initiated with the US National Cancer Institute (NCI).

Methods: Lung-MAP (S1400) was done within the National Clinical Trials Network of the NCI using a public-private partnership.

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Objective: Lung-MAP (SWOG S1400) is a master platform trial assessing targeted therapies in squamous NSCLC. The objective of study C (S1400C) was to evaluate the response rate to palbociclib, a cyclin-dependent kinase 4 and cyclin-dependent kinase 6 inhibitor, in patients with cell cycle gene abnormalities.

Methods: Patients with squamous NSCLC, a performance status of 0 to 2, and normal organ function who had progressed after at least one prior platinum-based chemotherapy with cyclin-dependent kinase 4 gene (CDK4) or cyclin D1 gene (CCND1), cyclin D2 gene (CCND2), or cyclin D3 gene (CCND3) amplifications on tumor specimens were eligible.

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Background: S1400D is a biomarker-driven therapeutic substudy of Lung-MAP evaluating the fibroblast growth factor (FGF) receptor (FGFR) inhibitor AZD4547 in patients with FGF pathway-activated squamous cell. This is the first phase II trial to evaluate AZD4547 as a targeted approach in patients with previously treated FGFR-altered squamous cell NSCLC and is the first demonstration of successful implementation and conduct of a national umbrella protocol in this disease setting.

Methods: Eligible patients had tumoral FGFR alteration or mutation and had progressive disease after at least one line of platinum-based systemic therapy.

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Background: S1400B is a biomarker-driven Lung-MAP substudy evaluating the phosphatidylinositol 3-kinase (PI3K) inhibitor taselisib (GDC-0032) in patients with PI3K pathway-activated squamous NSCLC (sqNSCLC).

Methods: Eligible patients had tumoral phosphatidylinositol-4,5-biphosphate 3 kinase catalytic subunit alpha (PIK3CA) alterations by next-generation sequencing and disease progression after at least one line of platinum-based therapy. Patients received 4-mg taselisib orally daily.

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