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PMID: 28373007 Published · ppublish English Clinical Trial, Phase I Journal Article

Avelumab for metastatic or locally advanced previously treated solid tumours (JAVELIN Solid Tumor): a phase 1a, multicohort, dose-escalation trial.

The Lancet. Oncology ·Vol. 18 ·No. 5 ·2017-00-00 ·Pages 587-598

Heery CR, O'Sullivan-Coyne G, Madan RA, Cordes L, Rajan A, Rauckhorst M, Lamping E, Oyelakin I, Marté JL, Lepone LM, Donahue RN, Grenga I, Cuillerot JM, Neuteboom B, Heydebreck AV, Chin K, Schlom J, Gulley JL

Abstract

Avelumab (MSB0010718C) is a human IgG1 monoclonal antibody that binds to PD-L1, inhibiting its binding to PD-1, which inactivates T cells. We aimed to establish the safety and pharmacokinetics of avelumab in patients with solid tumours while assessing biological correlatives for future development. This open-label, single-centre, phase 1a, dose-escalation trial (part of the JAVELIN Solid Tumor trial) assessed four doses of avelumab (1 mg/kg, 3 mg/kg, 10 mg/kg, and 20 mg/kg), with dose-level cohort expansions to provide additional safety, pharmacokinetics, and target occupancy data. This study used a standard 3 + 3 cohort design and assigned patients sequentially at trial entry according to the 3 + 3 dose-escalation algorithm and depending on the number of dose-limiting toxicities during the first 3-week assessment period (the primary endpoint). Patient eligibility criteria included age 18 years or older, Eastern Cooperative Oncology Group performance status 0-1, metastatic or locally advanced previously treated solid tumours, and adequate end-organ function. Avelumab was given as a 1-h intravenous infusion every 2 weeks. Patients in the dose-limiting toxicity analysis set were assessed for the primary endpoint of dose-limiting toxicity, and all patients enrolled in the dose-escalation part were assessed for the secondary endpoints of safety (treatment-emergent and treatment-related adverse events according to National Cancer Institute Common Terminology Criteria for Adverse Events version 4.0), pharmacokinetic and pharmacodynamic profiles (immunological effects), best overall response by Response Evaluation Criteria, and antidrug antibody formation. The population for the pharmacokinetic analysis included a subset of patients with rich pharmacokinetic samples from two selected disease-specific expansion cohorts at the same study site who had serum samples obtained at multiple early timepoints. This trial is registered with ClinicalTrials.gov, number NCT01772004. Patient recruitment to the dose-escalation part reported here is closed. Between Jan 31, 2013, and Oct 8, 2014, 53 patients were enrolled (four patients at 1 mg/kg, 13 at 3 mg/kg, 15 at 10 mg/kg, and 21 at 20 mg/kg). 18 patients were analysed in the dose-limiting toxicity analysis set: three at dose level 1 (1 mg/kg), three at dose level 2 (3 mg/kg), six at dose level 3 (10 mg/kg), and six at dose level 4 (20 mg/kg). Only one dose-limiting toxicity occurred, at the 20 mg/kg dose, and thus the maximum tolerated dose was not reached. In all 53 enrolled patients (the safety analysis set), common treatment-related adverse events (occurring in >10% of patients) included fatigue (21 patients [40%]), influenza-like symptoms (11 [21%]), fever (8 [15%]), and chills (6 [11%]). Grade 3-4 treatment-related adverse events occurred in nine (17%) of 53 patients, with autoimmune disorder (n=3), increased blood creatine phosphokinase (n=2), and increased aspartate aminotransferase (n=2) each occurring in more than one patient (autoimmune disorder in two patients at 10 mg/kg and one patient at 20 mg/kg, increased blood creatine phosphokinase in two patients at 20 mg/kg, and increased aspartate aminotransferase in one patient at 1 mg/kg, and one patient at 10 mg/kg). Six (11%) of 53 patients had a serious treatment-related adverse event: autoimmune disorder (two [13%]), lower abdominal pain (one [7%]), fatigue (one [7%]), and influenza-like illness (one [7%]) in three patients treated at 10 mg/kg dose level, and autoimmune disorder (one [5%]), increased amylase (one [5%]), myositis (one [5%]), and dysphonia (one [5%]) in three patients who received the 20 mg/kg dose. We recorded some evidence of clinical activity in various solid tumours, with partial confirmed or unconfirmed responses in four (8%) of 53 patients; 30 (57%) additional patients had stable disease. Pharmacokinetic analysis (n=86) showed a dose-proportional exposure between doses of 3 mg/kg and 20 mg/kg and a half-life of 95-99 h (3·9-4·1 days) at the 10 mg/kg and 20 mg/kg doses. Target occupancy was greater than 90% at doses of 3 mg/kg and 10 mg/kg. Antidrug antibodies were detected in two (4%) of 53 patients. No substantial differences were found in absolute lymphocyte count or multiple immune cell subsets, including those expressing PD-L1, after treatment with avelumab. 31 (58%) of 53 patients in the overall safety population died; no deaths were related to treatment on study. Avelumab has an acceptable toxicity profile up to 20 mg/kg and the maximum tolerated dose was not reached. Based on pharmacokinetics, target occupancy, and immunological analysis, we chose 10 mg/kg every 2 weeks as the dose for further development and phase 3 trials are ongoing. National Cancer Institute and Merck KGaA.

MeSH Terms
Abdominal Pain/chemically induced Aged Amylases/blood Antibodies/blood Antibodies, Monoclonal/administration & dosage,adverse effects,immunology,pharmacokinetics Antibodies, Monoclonal, Humanized Antineoplastic Agents/administration & dosage,adverse effects,immunology,pharmacokinetics Aspartate Aminotransferases/blood Autoimmune Diseases/chemically induced Chills/chemically induced Creatine Kinase/blood Dysphonia/chemically induced Fatigue/chemically induced Female Fever/chemically induced Half-Life Humans Male Middle Aged Myositis/chemically induced Neoplasms/drug therapy Response Evaluation Criteria in Solid Tumors
Chemicals
Antibodies Antibodies, Monoclonal Antibodies, Monoclonal, Humanized Antineoplastic Agents Aspartate Aminotransferases Creatine Kinase Amylases avelumab
Authors & Affiliations
18 authors, click to expand affiliations / ORCID
Heery Christopher R
Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
O'Sullivan-Coyne Geraldine
Genitourinary Malignancies Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Madan Ravi A
Genitourinary Malignancies Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Cordes Lisa
Pharmacy Department, National Institutes of Health Clinical Center, Bethesda, MD, USA.
Rajan Arun
Thoracic and Gastrointestinal Oncology Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Rauckhorst Myrna
Office of Research Nursing, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Lamping Elizabeth
Office of Research Nursing, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Oyelakin Israel
Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Marté Jennifer L
Genitourinary Malignancies Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Lepone Lauren M
Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Donahue Renee N
Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Grenga Italia
Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Cuillerot Jean-Marie
EMD Serono, Billerica, MA, USA.
Neuteboom Berend
EMD Serono, Billerica, MA, USA.
Heydebreck Anja von
Merck KGaA, Darmstadt, Germany.
Chin Kevin
EMD Serono, Billerica, MA, USA.
Schlom Jeffrey
Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Gulley James L
Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA; Genitourinary Malignancies Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA. Electronic address: gulleyj@mail.nih.gov.
References (30)
30 references, click to expand
  1. Clinical immunotoxicity of therapeutic proteins.
    Expert Opin Drug Metab Toxicol. 2008 Dec;4(12):1537-49 PMID: 19040329
  2. Thymic carcinoma associated with paraneoplastic polymyositis.
    J Clin Oncol. 2009 Aug 1;27(22):e33-4 PMID: 19506156
  3. Thymoma-associated paraneoplastic polymyositis.
    J Clin Oncol. 2010 Aug 1;28(22):e378 PMID: 20458028
  4. Phase I study of single-agent anti-programmed death-1 (MDX-1106) in refractory solid tumors: safety, clinical activity, pharmacodynamics, and immunologic correlates.
    J Clin Oncol. 2010 Jul 1;28(19):3167-75 PMID: 20516446
  5. Effects of charge on antibody tissue distribution and pharmacokinetics.
    Bioconjug Chem. 2010 Dec 15;21(12):2153-63 PMID: 21053952
  6. Acute autoimmune hepatitis, myositis, and myasthenic crisis in a patient with thymoma.
    J Thorac Oncol. 2013 Oct;8(10):e87-8 PMID: 24457247
  7. Nivolumab in previously untreated melanoma without BRAF mutation.
    N Engl J Med. 2015 Jan 22;372(4):320-30 PMID: 25399552
  8. Predictive correlates of response to the anti-PD-L1 antibody MPDL3280A in cancer patients.
    Nature. 2014 Nov 27;515(7528):563-7 PMID: 25428504
  9. Framework selection can influence pharmacokinetics of a humanized therapeutic antibody through differences in molecule charge.
    MAbs. 2014;6(5):1255-64 PMID: 25517310
  10. Multiorgan autoimmune manifestations associated with thymoma.
    J Thorac Oncol. 2015 Feb;10(2):e5-7 PMID: 25611232
  11. Pembrolizumab versus Ipilimumab in Advanced Melanoma.
    N Engl J Med. 2015 Jun 25;372(26):2521-32 PMID: 25891173
  12. Pembrolizumab for the treatment of non-small-cell lung cancer.
    N Engl J Med. 2015 May 21;372(21):2018-28 PMID: 25891174
  13. Phase I Study of Pembrolizumab (MK-3475; Anti-PD-1 Monoclonal Antibody) in Patients with Advanced Solid Tumors.
    Clin Cancer Res. 2015 Oct 1;21(19):4286-93 PMID: 25977344
  14. Antibody-Dependent Cellular Cytotoxicity Activity of a Novel Anti-PD-L1 Antibody Avelumab (MSB0010718C) on Human Tumor Cells.
    Cancer Immunol Res. 2015 Oct;3(10):1148-1157 PMID: 26014098
  15. Nivolumab versus Docetaxel in Advanced Squamous-Cell Non-Small-Cell Lung Cancer.
    N Engl J Med. 2015 Jul 9;373(2):123-35 PMID: 26028407
  16. Anti-PD-1/PD-L1 therapy of human cancer: past, present, and future.
    J Clin Invest. 2015 Sep;125(9):3384-91 PMID: 26325035
  17. Nivolumab versus Docetaxel in Advanced Nonsquamous Non-Small-Cell Lung Cancer.
    N Engl J Med. 2015 Oct 22;373(17):1627-39 PMID: 26412456
  18. Cytokine release in patients with CLL treated with obinutuzumab and possible relationship with infusion-related reactions.
    Blood. 2015 Dec 10;126(24):2646-9 PMID: 26447188
  19. Pembrolizumab versus docetaxel for previously treated, PD-L1-positive, advanced non-small-cell lung cancer (KEYNOTE-010): a randomised controlled trial.
    Lancet. 2016 Apr 9;387(10027):1540-50 PMID: 26712084
  20. Safety and antitumour activity of durvalumab plus tremelimumab in non-small cell lung cancer: a multicentre, phase 1b study.
    Lancet Oncol. 2016 Mar;17(3):299-308 PMID: 26858122
  21. Systemic Immunotherapy of Non-Muscle Invasive Mouse Bladder Cancer with Avelumab, an Anti-PD-L1 Immune Checkpoint Inhibitor.
    Cancer Immunol Res. 2016 May;4(5):452-62 PMID: 26921031
  22. Atezolizumab in patients with locally advanced and metastatic urothelial carcinoma who have progressed following treatment with platinum-based chemotherapy: a single-arm, multicentre, phase 2 trial.
    Lancet. 2016 May 7;387(10031):1909-20 PMID: 26952546
  23. Safety profiles of anti-CTLA-4 and anti-PD-1 antibodies alone and in combination.
    Nat Rev Clin Oncol. 2016 Aug;13(8):473-86 PMID: 27141885
  24. Enhanced killing of chordoma cells by antibody-dependent cell-mediated cytotoxicity employing the novel anti-PD-L1 antibody avelumab.
    Oncotarget. 2016 Jun 7;7(23):33498-511 PMID: 27172898
  25. Acute effects of alemtuzumab infusion in patients with active relapsing-remitting MS.
    Neurol Neuroimmunol Neuroinflamm. 2016 Apr 29;3(3):e228 PMID: 27213173
  26. A fully human IgG1 anti-PD-L1 MAb in an in vitro assay enhances antigen-specific T-cell responses.
    Clin Transl Immunology. 2016 May 20;5(5):e83 PMID: 27350882
  27. Malignant Mesothelioma Effusions Are Infiltrated by CD3+ T Cells Highly Expressing PD-L1 and the PD-L1+ Tumor Cells within These Effusions Are Susceptible to ADCC by the Anti-PD-L1 Antibody Avelumab.
    J Thorac Oncol. 2016 Nov;11(11):1993-2005 PMID: 27544053
  28. Avelumab in patients with chemotherapy-refractory metastatic Merkel cell carcinoma: a multicentre, single-group, open-label, phase 2 trial.
    Lancet Oncol. 2016 Oct;17(10):1374-1385 PMID: 27592805
  29. Avelumab for patients with previously treated metastatic or recurrent non-small-cell lung cancer (JAVELIN Solid Tumor): dose-expansion cohort of a multicentre, open-label, phase 1b trial.
    Lancet Oncol. 2017 May;18(5):599-610 PMID: 28373005
  30. Analyses of 123 Peripheral Human Immune Cell Subsets: Defining Differences with Age and between Healthy Donors and Cancer Patients Not Detected in Analysis of Standard Immune Cell Types.
    J Circ Biomark. 2016 Mar 10;5:5 PMID: 28936253
Article Info
Journal
The Lancet. Oncology
Abbr.
Lancet Oncol
ISSN
1474-5488
Published
2017-00-00
Epub
2017-00-31
Pages
587-598
Language
English
Region
England
NLM ID
100957246
PMCID
PMC6387686
Subset
IM
Grants
Intramural NIH HHS · ZIA BC010666-14 · United States
Databases
ClinicalTrials.gov
NCT01772004
Corrections
CommentIn
Analysis Services
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