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Featured researches published by Marcus Ballinger.


The Lancet | 2016

Atezolizumab versus docetaxel for patients with previously treated non-small-cell lung cancer (POPLAR): a multicentre, open-label, phase 2 randomised controlled trial.

Louis Fehrenbacher; Alexander I. Spira; Marcus Ballinger; Marcin Kowanetz; Johan Vansteenkiste; Julien Mazieres; Keunchil Park; David Smith; Angel Artal-Cortes; Conrad R. Lewanski; Fadi S. Braiteh; Daniel Waterkamp; Pei He; Wei Zou; Daniel S. Chen; Jing Yi; Alan Sandler; Achim Rittmeyer

BACKGROUND Outcomes are poor for patients with previously treated, advanced or metastatic non-small-cell lung cancer (NSCLC). The anti-programmed death ligand 1 (PD-L1) antibody atezolizumab is clinically active against cancer, including NSCLC, especially cancers expressing PD-L1 on tumour cells, tumour-infiltrating immune cells, or both. We assessed efficacy and safety of atezolizumab versus docetaxel in previously treated NSCLC, analysed by PD-L1 expression levels on tumour cells and tumour-infiltrating immune cells and in the intention-to-treat population. METHODS In this open-label, phase 2 randomised controlled trial, patients with NSCLC who progressed on post-platinum chemotherapy were recruited in 61 academic medical centres and community oncology practices across 13 countries in Europe and North America. Key inclusion criteria were Eastern Cooperative Oncology Group performance status 0 or 1, measurable disease by Response Evaluation Criteria In Solid Tumors version 1.1 (RECIST v1.1), and adequate haematological and end-organ function. Patients were stratified by PD-L1 tumour-infiltrating immune cell status, histology, and previous lines of therapy, and randomly assigned (1:1) by permuted block randomisation (with a block size of four) using an interactive voice or web system to receive intravenous atezolizumab 1200 mg or docetaxel 75 mg/m(2) once every 3 weeks. Baseline PD-L1 expression was scored by immunohistochemistry in tumour cells (as percentage of PD-L1-expressing tumour cells TC3≥50%, TC2≥5% and <50%, TC1≥1% and <5%, and TC0<1%) and tumour-infiltrating immune cells (as percentage of tumour area: IC3≥10%, IC2≥5% and <10%, IC1≥1% and <5%, and IC0<1%). The primary endpoint was overall survival in the intention-to-treat population and PD-L1 subgroups at 173 deaths. Biomarkers were assessed in an exploratory analysis. We assessed safety in all patients who received at least one dose of study drug. This study is registered with ClinicalTrials.gov, number NCT01903993. FINDINGS Patients were enrolled between Aug 5, 2013, and March 31, 2014. 144 patients were randomly allocated to the atezolizumab group, and 143 to the docetaxel group. 142 patients received at least one dose of atezolizumab and 135 received docetaxel. Overall survival in the intention-to-treat population was 12·6 months (95% CI 9·7-16·4) for atezolizumab versus 9·7 months (8·6-12·0) for docetaxel (hazard ratio [HR] 0·73 [95% CI 0·53-0·99]; p=0·04). Increasing improvement in overall survival was associated with increasing PD-L1 expression (TC3 or IC3 HR 0·49 [0·22-1·07; p=0·068], TC2/3 or IC2/3 HR 0·54 [0·33-0·89; p=0·014], TC1/2/3 or IC1/2/3 HR 0·59 [0·40-0·85; p=0·005], TC0 and IC0 HR 1·04 [0·62-1·75; p=0·871]). In our exploratory analysis, patients with pre-existing immunity, defined by high T-effector-interferon-γ-associated gene expression, had improved overall survival with atezolizumab. 11 (8%) patients in the atezolizumab group discontinued because of adverse events versus 30 (22%) patients in the docetaxel group. 16 (11%) patients in the atezolizumab group versus 52 (39%) patients in the docetaxel group had treatment-related grade 3-4 adverse events, and one (<1%) patient in the atezolizumab group versus three (2%) patients in the docetaxel group died from a treatment-related adverse event. INTERPRETATION Atezolizumab significantly improved survival compared with docetaxel in patients with previously treated NSCLC. Improvement correlated with PD-L1 immunohistochemistry expression on tumour cells and tumour-infiltrating immune cells, suggesting that PD-L1 expression is predictive for atezolizumab benefit. Atezolizumab was well tolerated, with a safety profile distinct from chemotherapy. FUNDING F Hoffmann-La Roche/Genentech Inc.


The Lancet | 2017

Atezolizumab versus docetaxel in patients with previously treated non-small-cell lung cancer (OAK): a phase 3, open-label, multicentre randomised controlled trial

Achim Rittmeyer; Fabrice Barlesi; Daniel Waterkamp; Keunchil Park; Fortunato Ciardiello; Joachim von Pawel; Shirish M. Gadgeel; Toyoaki Hida; Dariusz M. Kowalski; Manuel Cobo Dols; Diego Cortinovis; Joseph Leach; Jonathan Polikoff; Carlos H. Barrios; Fairooz F. Kabbinavar; Osvaldo Arén Frontera; Filippo De Marinis; Hande Turna; Jongseok Lee; Marcus Ballinger; Marcin Kowanetz; Pei He; Daniel S. Chen; Alan Sandler; David R. Gandara

BACKGROUND Atezolizumab is a humanised antiprogrammed death-ligand 1 (PD-L1) monoclonal antibody that inhibits PD-L1 and programmed death-1 (PD-1) and PD-L1 and B7-1 interactions, reinvigorating anticancer immunity. We assessed its efficacy and safety versus docetaxel in previously treated patients with non-small-cell lung cancer. METHODS We did a randomised, open-label, phase 3 trial (OAK) in 194 academic or community oncology centres in 31 countries. We enrolled patients who had squamous or non-squamous non-small-cell lung cancer, were 18 years or older, had measurable disease per Response Evaluation Criteria in Solid Tumors, and had an Eastern Cooperative Oncology Group performance status of 0 or 1. Patients had received one to two previous cytotoxic chemotherapy regimens (one or more platinum based combination therapies) for stage IIIB or IV non-small-cell lung cancer. Patients with a history of autoimmune disease and those who had received previous treatments with docetaxel, CD137 agonists, anti-CTLA4, or therapies targeting the PD-L1 and PD-1 pathway were excluded. Patients were randomly assigned (1:1) to intravenously receive either atezolizumab 1200 mg or docetaxel 75 mg/m2 every 3 weeks by permuted block randomisation (block size of eight) via an interactive voice or web response system. Coprimary endpoints were overall survival in the intention-to-treat (ITT) and PD-L1-expression population TC1/2/3 or IC1/2/3 (≥1% PD-L1 on tumour cells or tumour-infiltrating immune cells). The primary efficacy analysis was done in the first 850 of 1225 enrolled patients. This study is registered with ClinicalTrials.gov, number NCT02008227. FINDINGS Between March 11, 2014, and April 29, 2015, 1225 patients were recruited. In the primary population, 425 patients were randomly assigned to receive atezolizumab and 425 patients were assigned to receive docetaxel. Overall survival was significantly longer with atezolizumab in the ITT and PD-L1-expression populations. In the ITT population, overall survival was improved with atezolizumab compared with docetaxel (median overall survival was 13·8 months [95% CI 11·8-15·7] vs 9·6 months [8·6-11·2]; hazard ratio [HR] 0·73 [95% CI 0·62-0·87], p=0·0003). Overall survival in the TC1/2/3 or IC1/2/3 population was improved with atezolizumab (n=241) compared with docetaxel (n=222; median overall survival was 15·7 months [95% CI 12·6-18·0] with atezolizumab vs 10·3 months [8·8-12·0] with docetaxel; HR 0·74 [95% CI 0·58-0·93]; p=0·0102). Patients in the PD-L1 low or undetectable subgroup (TC0 and IC0) also had improved survival with atezolizumab (median overall survival 12·6 months vs 8·9 months; HR 0·75 [95% CI 0·59-0·96]). Overall survival improvement was similar in patients with squamous (HR 0·73 [95% CI 0·54-0·98]; n=112 in the atezolizumab group and n=110 in the docetaxel group) or non-squamous (0·73 [0·60-0·89]; n=313 and n=315) histology. Fewer patients had treatment-related grade 3 or 4 adverse events with atezolizumab (90 [15%] of 609 patients) versus docetaxel (247 [43%] of 578 patients). One treatment-related death from a respiratory tract infection was reported in the docetaxel group. INTERPRETATION To our knowledge, OAK is the first randomised phase 3 study to report results of a PD-L1-targeted therapy, with atezolizumab treatment resulting in a clinically relevant improvement of overall survival versus docetaxel in previously treated non-small-cell lung cancer, regardless of PD-L1 expression or histology, with a favourable safety profile. FUNDING F. Hoffmann-La Roche Ltd, Genentech, Inc.


Lancet Oncology | 2017

iRECIST: guidelines for response criteria for use in trials testing immunotherapeutics

Lesley Seymour; Jan Bogaerts; Andrea Perrone; Robert Ford; Lawrence H. Schwartz; Sumithra J. Mandrekar; Nan Lin; Saskia Litière; Janet Dancey; Alice Chen; F. Stephen Hodi; Patrick Therasse; Otto S. Hoekstra; Lalitha K. Shankar; Jedd D. Wolchok; Marcus Ballinger; Caroline Caramella; Elisabeth G.E. de Vries

Tumours respond differently to immunotherapies compared with chemotherapeutic drugs, raising questions about the assessment of changes in tumour burden-a mainstay of evaluation of cancer therapeutics that provides key information about objective response and disease progression. A consensus guideline-iRECIST-was developed by the RECIST working group for the use of modified Response Evaluation Criteria in Solid Tumours (RECIST version 1.1) in cancer immunotherapy trials, to ensure consistent design and data collection, facilitate the ongoing collection of trial data, and ultimate validation of the guideline. This guideline describes a standard approach to solid tumour measurements and definitions for objective change in tumour size for use in trials in which an immunotherapy is used. Additionally, it defines the minimum datapoints required from future trials and those currently in development to facilitate the compilation of a data warehouse to use to later validate iRECIST. An unprecedented number of trials have been done, initiated, or are planned to test new immune modulators for cancer therapy using a variety of modified response criteria. This guideline will allow consistent conduct, interpretation, and analysis of trials of immunotherapies.


Biochemistry | 2009

Fragment-based discovery of nonpeptidic BACE-1 inhibitors using tethering.

Wenjin Yang; Raymond V. Fucini; Bruce T. Fahr; Mike Randal; Kenneth E. Lind; Melissa B. Lam; Wanli Lu; Yafan Lu; Douglas R. Cary; Michael J. Romanowski; Dennis Colussi; Beth Pietrak; Timothy J. Allison; Sanjeev Munshi; David M. Penny; Phuongly Pham; Jian Sun; Anila E. Thomas; Jennifer Wilkinson; Jeffrey W. Jacobs; Robert Mcdowell; Marcus Ballinger

BACE-1 (beta-site amyloid precursor protein cleaving enzyme), a prominent target in Alzheimers disease drug discovery efforts, was surveyed using Tethering technology to discover small molecule fragment ligands that bind to the enzyme active site. Screens of a library of >15000 thiol-containing fragments versus a panel of BACE-1 active site cysteine mutants under redox-controlled conditions revealed several novel amine-containing fragments that could be selectively captured by subsets of the tethering sites. For one such hit class, defined by a central aminobenzylpiperidine (ABP) moiety, X-ray crystal structures of BACE mutant-disulfide conjugates revealed that the fragment bound by engaging both catalytic aspartates with hydrogen bonds. The affinities of ABP fragments were improved by structure-guided chemistry, first for conjugation as thiol-containing fragments and then for stand-alone, noncovalent inhibition of wild-type (WT) BACE-1 activity. Crystallography confirmed that the inhibitors bound in exactly the same mode as the disulfide-conjugated fragments that were originally selected from the screen. The ABP ligands represent a new type of nonpeptidic BACE-1 inhibitor motif that has not been described in the aspartyl protease literature and may serve as a starting point for the development of BACE-1-directed Alzheimers disease therapeutics.


Nature Structural & Molecular Biology | 1998

Will any dimer do

Marcus Ballinger; James A. Wells

New structural information on the interaction of erythropoietin with its receptor suggests that the orientation of receptor dimers is critical to intracellular activation.


Journal of Clinical Oncology | 2018

Immune-Modified Response Evaluation Criteria In Solid Tumors (imRECIST): Refining Guidelines to Assess the Clinical Benefit of Cancer Immunotherapy

F. Stephen Hodi; Marcus Ballinger; Benjamin Lyons; Jean-Charles Soria; Mizuki Nishino; Josep Tabernero; Thomas Powles; David Smith; Axel Hoos; Chris McKenna; Ulrich Beyer; Ina Rhee; Gregg Fine; Nathan Winslow; Daniel S. Chen; Jedd D. Wolchok

Purpose Treating solid tumors with cancer immunotherapy (CIT) can result in unconventional responses and overall survival (OS) benefits that are not adequately captured by Response Evaluation Criteria In Solid Tumors (RECIST) v1.1. We describe immune-modified RECIST (imRECIST) criteria, designed to better capture CIT responses. Patients and Methods Atezolizumab data from clinical trials in non-small-cell lung cancer, metastatic urothelial carcinoma, renal cell carcinoma, and melanoma were evaluated. Modifications to imRECIST versus RECIST v1.1 included allowance for best overall response after progressive disease (PD) and changes in PD definitions per new lesions (NLs) and nontarget lesions. imRECIST progression-free survival (PFS) did not count initial PD as an event if the subsequent scan showed disease control. OS was evaluated using conditional landmarks in patients whose PFS differed by imRECIST versus RECIST v1.1. Results The best overall response was 1% to 2% greater, the disease control rate was 8% to 13% greater, and the median PFS was 0.5 to 1.5 months longer per imRECIST versus RECIST v1.1. Extension of imRECIST PFS versus RECIST v1.1 PFS was associated with longer or similar OS. Patterns of progression analysis revealed that patients who developed NLs without target lesion (TL) progression had a similar or shorter OS compared with patients with RECIST v1.1 TL progression. Patients infrequently experienced a spike pattern (TLs increase, then decrease) but had longer OS than patients without TL reversion. Conclusion Evaluation of PFS and patterns of response and progression revealed that allowance for TL reversion from PD per imRECIST may better identify patients with OS benefit. Progression defined by the isolated appearance of NLs, however, is not associated with longer OS. These results may inform additional modifications to radiographic criteria (including imRECIST) to better reflect efficacy with CIT agents.


Tetrahedron Letters | 1996

Fmoc-based synthesis of glycolate ester peptides for the assembly of de novo designed multimeric proteins using subtiligase

Daniel J. Suich; Marcus Ballinger; James A. Wells; William F. DeGrado

Abstract An automated method utilizing Fmoc-protected amino acids has been developed for the synthesis of glycolate ester peptides as substrates for subtiligase. As a test of this methodology, peptide esters containing α-helical sequences that specify the association into 3- and 4- helix bundles were synthesized, and used to explore the suitability of subtiligase as a tool for the generation of covalently linked bundles. The feasibility of creating de novo designed, single-chain or cyclic structures from simple, readily-synthesized modules has been demonstrated.


Methods in Enzymology | 2002

Kinetic characterization of transient free radical intermediates in reaction of lysine 2,3-aminomutase by EPR lineshape analysis

Perry A. Frey; Christopher H. Chang; Marcus Ballinger; George H. Reed

Radicals have been detected in the steady states of most of the adenosylcobalamin-dependent reactions. Although in most cases the structures of these radicals have not been fully established, the thiyl-protein radical in B 12 -dependent ribonucleotide reductase has been characterized. Radical intermediates in monooxygenase reactions—such as those of cytochrome P450s and methane monooxygenase—have been postulated. However, the assignment of radical mechanisms is controversial in these cases because of the indirect nature of the evidence for the participation of organic radicals. The most direct evidence for a radical mechanism is the observation of transient radicals by electron paramagnetic resonance spectroscopy (EPR). In these cases, the question of kinetic competence can be addressed experimentally by rapid-mix freeze-quench EPR spectroscopy. This technique has allowed the kinetic competence of the thiyl-protein radical in the B l2 -dependent ribonucleotide reductase to be proven through studies in the past. The method described in the chapter should be generally applicable to the evaluation of kinetic competence for any enzymatic radical that can be labeled with deuterium or carbon-13 to perturb the EPR spectrum. Increasing numbers of such radicals are being observed in the rapidly expanding world of enzymatic radicals.


Journal of Thoracic Oncology | 2018

Updated Efficacy Analysis Including Secondary Population Results for OAK: A Randomized Phase III Study of Atezolizumab versus Docetaxel in Patients with Previously Treated Advanced Non–Small Cell Lung Cancer

Louis Fehrenbacher; Joachim von Pawel; Keunchil Park; Achim Rittmeyer; David R. Gandara; Santiago Ponce Aix; Ji-Youn Han; Shirish M. Gadgeel; Toyoaki Hida; Diego Cortinovis; Manuel Cobo; Dariusz M. Kowalski; Filippo De Marinis; M. Gandhi; Bradford Danner; Christina Matheny; Marcin Kowanetz; Pei He; Federico Felizzi; Hina Patel; Alan Sandler; Marcus Ballinger; Fabrice Barlesi

Introduction: The efficacy and safety of atezolizumab versus the efficacy and safety of docetaxel as second‐ or third‐line treatment in patients with advanced NSCLC in the primary (n = 850) and secondary (n = 1225) efficacy populations of the randomized phase III OAK study (respectively referred to as the intention‐to‐treat [ITT] 850 [ITT850] and ITT1225) at an updated data cutoff were assessed. Methods: Patients received atezolizumab, 1200 mg, or docetaxel, 75 mg/m2, intravenously every 3 weeks until loss of clinical benefit or disease progression, respectively. The primary end point was overall survival (OS) in the ITT population and programmed death‐ligand 1–expressing subgroup. A sensitivity analysis was conducted to evaluate the impact of subsequent immunotherapy use in the docetaxel arm on the observed survival benefit with atezolizumab. Results: Atezolizumab demonstrated an OS benefit versus docetaxel in the updated ITT850 (hazard ratio [HR] = 0.75, 95% confidence interval: 0.64–0.89, p = 0.0006) and the ITT1225 (HR = 0.80, 95% confidence interval: 0.70–0.92, p = 0.0012) after minimum follow‐up times of 26 and 21 months, respectively. Improved survival with atezolizumab was observed across programmed death‐ligand 1 and histological subgroups. In the immunotherapy sensitivity analysis, the relative OS benefit with atezolizumab was slightly greater in the ITT850 (HR = 0.69) and ITT1225 (HR = 0.74) than the conventional OS estimate. Fewer patients receiving atezolizumab experienced grade 3 or 4 treatment‐related adverse events (14.9%) than did patients receiving docetaxel (42.4%); no grade 5 adverse events related to atezolizumab were observed. Conclusions: The results of the updated ITT850 and initial ITT1225 analyses were consistent with those of the primary efficacy analysis demonstrating survival benefit with atezolizumab versus with docetaxel. Atezolizumab continued to demonstrate a favorable safety profile after longer treatment exposure and follow‐up.


Proceedings of the National Academy of Sciences of the United States of America | 2018

Differential regulation of PD-L1 expression by immune and tumor cells in NSCLC and the response to treatment with atezolizumab (anti–PD-L1)

Marcin Kowanetz; Wei Zou; Scott N. Gettinger; Hartmut Koeppen; Mark M. Kockx; Peter Schmid; Edward E. Kadel; Ignacio I. Wistuba; Jamie E. Chaft; Naiyer A. Rizvi; David R. Spigel; Alexander I. Spira; Fred R. Hirsch; V. Cohen; Dustin Smith; Zach Boyd; Natasha Miley; Susan Flynn; Vincent Leveque; David S. Shames; Marcus Ballinger; Simonetta Mocci; Geetha Shankar; Roel Funke; Garret Hampton; Alan Sandler; Lukas Amler; Ira Mellman; Daniel S. Chen; Priti Hegde

Significance Programmed death-ligand 1 (PD-L1) expression on tumor cells and tumor-infiltrating immune cells is regulated by distinct mechanisms and has nonredundant roles in regulating anticancer immunity, and PD-L1 on both cell types is important for predicting best response to atezolizumab in non-small cell lung cancer. Programmed death-ligand 1 (PD-L1) expression on tumor cells (TCs) by immunohistochemistry is rapidly gaining importance as a diagnostic for the selection or stratification of patients with non-small cell lung cancer (NSCLC) most likely to respond to single-agent checkpoint inhibitors. However, at least two distinct patterns of PD-L1 expression have been observed with potential biological and clinical relevance in NSCLC: expression on TC or on tumor-infiltrating immune cells (ICs). We investigated the molecular and cellular characteristics associated with PD-L1 expression in these distinct cell compartments in 4,549 cases of NSCLC. PD-L1 expression on IC was more prevalent and likely reflected IFN-γ–induced adaptive regulation accompanied by increased tumor-infiltrating lymphocytes and effector T cells. High PD-L1 expression on TC, however, reflected an epigenetic dysregulation of the PD-L1 gene and was associated with a distinct histology described by poor immune infiltration, sclerotic/desmoplastic stroma, and mesenchymal molecular features. Importantly, durable clinical responses to atezolizumab (anti–PD-L1) were observed in patients with tumors expressing high PD-L1 levels on either TC alone [40% objective response rate (ORR)] or IC alone (22% ORR). Thus, PD-L1 expression on TC or IC can independently attenuate anticancer immunity and emphasizes the functional importance of IC in regulating the antitumor T cell response.

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