TY - JOUR
T1 - Phase 1, dose-escalation study of guadecitabine (SGI-110) in combination with pembrolizumab in patients with solid tumors
AU - Papadatos-Pastos, Dionysis
AU - Yuan, Wei
AU - Pal, Abhijit
AU - Crespo, Mateus
AU - Ferreira, Ana
AU - Gurel, Bora
AU - Prout, Toby
AU - Ameratunga, Malaka
AU - Chénard-Poirier, Maxime
AU - Curcean, Andra
AU - Bertan, Claudia
AU - Baker, Chloe
AU - Miranda, Susana
AU - Masrour, Nahal
AU - Chen, Wentin
AU - Pereira, Rita
AU - Figueiredo, Ines
AU - Morilla, Ricardo
AU - Jenkins, Ben
AU - Zachariou, Anna
AU - Riisnaes, Ruth
AU - Parmar, Mona
AU - Turner, Alison
AU - Carreira, Suzanne
AU - Yap, Christina
AU - Brown, Robert
AU - Tunariu, Nina
AU - Banerji, Udai
AU - Lopez, Juanita
AU - De Bono, Johann
AU - Minchom, Anna
N1 - Funding Information:
Contributors DP-P and AP: Data acquisition, manuscript writing, manuscript review. WY: Data analysis, statistical analysis, manuscript writing, manuscript review. MC, AF, BG, AC, CBe, CBa, SM, NM, WC, RP, IF, RM, RR, SC: Data analysis, manuscript review. TP, BJ: Data analysis, statistical analysis, manuscript review. MA, MCP, NT, UB, JL: Data acquisition, manuscript review. AZ, MP, AT, CY: Statistical analysis, manuscript review. RB: Data analysis, manuscript review. JdB: Funding acquisition, Data acquisition, manuscript review. AM: Data acquisition, manuscript writing, manuscript review, guarantor Funding This work was supported by Merck and Astex Pharmaceuticals. This study represents independent research supported by the National Institute for Health Research (NIHR) Biomedical Research Centre at the Royal Marsden NHS Foundation Trust, the Institute of Cancer Research and Imperial College. The authors acknowledge funding support through a Cancer Centre grant from Cancer Research UK, and from the Experimental Cancer Medicine Centre (ECMC) Initiative to The Institute of Cancer Research and Royal Marsden.
Publisher Copyright:
© Author(s) (or their employer(s)) 2022. Re-use permitted under CC BY-NC. No commercial re-use. See rights and permissions. Published by BMJ.
PY - 2022/6/18
Y1 - 2022/6/18
N2 - Background Data suggest that immunomodulation induced by DNA hypomethylating agents can sensitize tumors to immune checkpoint inhibitors. We conducted a phase 1 dose-escalation trial (NCT02998567) of guadecitabine and pembrolizumab in patients with advanced solid tumors. We hypothesized that guadecitabine will overcome pembrolizumab resistance. Methods Patients received guadecitabine (45 mg/m 2 or 30 mg/m 2, administered subcutaneously on days 1-4), with pembrolizumab (200 mg administered intravenously starting from cycle 2 onwards) every 3 weeks. Primary endpoints were safety, tolerability and maximum tolerated dose; secondary and exploratory endpoints included objective response rate (ORR), changes in methylome, transcriptome, immune contextures in pre-treatment and on-treatment tumor biopsies. Results Between January 2017 and January 2020, 34 patients were enrolled. The recommended phase II dose was guadecitabine 30 mg/m 2, days 1-4, and pembrolizumab 200 mg on day 1 every 3 weeks. Two dose-limiting toxicities (neutropenia, febrile neutropenia) were reported at guadecitabine 45 mg/m 2 with none reported at guadecitabine 30 mg/m 2. The most common treatment-related adverse events (TRAEs) were neutropenia (58.8%), fatigue (17.6%), febrile neutropenia (11.8%) and nausea (11.8%). Common, grade 3+ TRAEs were neutropaenia (38.2%) and febrile neutropaenia (11.8%). There were no treatment-related deaths. Overall, 30 patients were evaluable for antitumor activity; ORR was 7% with 37% achieving disease control (progression-free survival) for ≥24 weeks. Of 12 evaluable patients with non-small cell lung cancer, 10 had been previously treated with immune checkpoint inhibitors with 5 (42%) having disease control ≥24 weeks (clinical benefit). Reduction in LINE-1 DNA methylation following treatment in blood (peripheral blood mononuclear cells) and tissue samples was demonstrated and methylation at transcriptional start site and 5' untranslated region gene regions showed enriched negative correlation with gene expression. Increases in intra-tumoural effector T-cells were seen in some responding patients. Patients having clinical benefit had high baseline inflammatory signature on RNAseq analyses. Conclusions Guadecitabine in combination with pembrolizumab is tolerable with biological and anticancer activity. Reversal of previous resistance to immune checkpoint inhibitors is demonstrated.
AB - Background Data suggest that immunomodulation induced by DNA hypomethylating agents can sensitize tumors to immune checkpoint inhibitors. We conducted a phase 1 dose-escalation trial (NCT02998567) of guadecitabine and pembrolizumab in patients with advanced solid tumors. We hypothesized that guadecitabine will overcome pembrolizumab resistance. Methods Patients received guadecitabine (45 mg/m 2 or 30 mg/m 2, administered subcutaneously on days 1-4), with pembrolizumab (200 mg administered intravenously starting from cycle 2 onwards) every 3 weeks. Primary endpoints were safety, tolerability and maximum tolerated dose; secondary and exploratory endpoints included objective response rate (ORR), changes in methylome, transcriptome, immune contextures in pre-treatment and on-treatment tumor biopsies. Results Between January 2017 and January 2020, 34 patients were enrolled. The recommended phase II dose was guadecitabine 30 mg/m 2, days 1-4, and pembrolizumab 200 mg on day 1 every 3 weeks. Two dose-limiting toxicities (neutropenia, febrile neutropenia) were reported at guadecitabine 45 mg/m 2 with none reported at guadecitabine 30 mg/m 2. The most common treatment-related adverse events (TRAEs) were neutropenia (58.8%), fatigue (17.6%), febrile neutropenia (11.8%) and nausea (11.8%). Common, grade 3+ TRAEs were neutropaenia (38.2%) and febrile neutropaenia (11.8%). There were no treatment-related deaths. Overall, 30 patients were evaluable for antitumor activity; ORR was 7% with 37% achieving disease control (progression-free survival) for ≥24 weeks. Of 12 evaluable patients with non-small cell lung cancer, 10 had been previously treated with immune checkpoint inhibitors with 5 (42%) having disease control ≥24 weeks (clinical benefit). Reduction in LINE-1 DNA methylation following treatment in blood (peripheral blood mononuclear cells) and tissue samples was demonstrated and methylation at transcriptional start site and 5' untranslated region gene regions showed enriched negative correlation with gene expression. Increases in intra-tumoural effector T-cells were seen in some responding patients. Patients having clinical benefit had high baseline inflammatory signature on RNAseq analyses. Conclusions Guadecitabine in combination with pembrolizumab is tolerable with biological and anticancer activity. Reversal of previous resistance to immune checkpoint inhibitors is demonstrated.
KW - drug therapy, combination
KW - guadecitabine
KW - methylation
KW - pembrolizumab
UR - https://www.scopus.com/pages/publications/85132406128
U2 - 10.1136/jitc-2022-004495
DO - 10.1136/jitc-2022-004495
M3 - Article
C2 - 35717027
AN - SCOPUS:85132406128
SN - 2051-1426
VL - 10
JO - Journal for ImmunoTherapy of Cancer
JF - Journal for ImmunoTherapy of Cancer
IS - 6
M1 - e004495
ER -