Humanized anti-DEspR IgG4S228P antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu model

Abstract Background Pancreatic peritoneal carcinomatosis (PPC), with the worst median overall-survival (mOS), epitomizes the incurability of metastatic cancer. Cancer stem cells (CSCs) underpin this incurability. However, inhibitors of CSC-stemness fail to increase mOS in cancer patients despite pre...

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Main Authors: Christopher M. Gromisch, Glaiza L. A. Tan, Khristine Amber Pasion, Ann-Marie Moran, Matthew S. Gromisch, Mark W. Grinstaff, Francis J. Carr, Victoria L. M. Herrera, Nelson Ruiz-Opazo
Format: Article
Language:English
Published: BMC 2021-04-01
Series:BMC Cancer
Subjects:
Online Access:https://doi.org/10.1186/s12885-021-08107-w
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spelling doaj-5ea42cacfaf84367ad190f7c6d297db52021-04-18T11:48:59ZengBMCBMC Cancer1471-24072021-04-0121112110.1186/s12885-021-08107-wHumanized anti-DEspR IgG4S228P antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu modelChristopher M. Gromisch0Glaiza L. A. Tan1Khristine Amber Pasion2Ann-Marie Moran3Matthew S. Gromisch4Mark W. Grinstaff5Francis J. Carr6Victoria L. M. Herrera7Nelson Ruiz-Opazo8Department of Pharmacology, Boston University School of MedicineWhitaker Cardiovascular Institute and Department of Medicine, Boston University School of MedicineWhitaker Cardiovascular Institute and Department of Medicine, Boston University School of MedicineWhitaker Cardiovascular Institute and Department of Medicine, Boston University School of MedicineWhitaker Cardiovascular Institute and Department of Medicine, Boston University School of MedicineDepartment of Chemistry, Boston UniversityAbtelum Biomedical, Inc., now NControl Therapeutics, Inc.Whitaker Cardiovascular Institute and Department of Medicine, Boston University School of MedicineWhitaker Cardiovascular Institute and Department of Medicine, Boston University School of MedicineAbstract Background Pancreatic peritoneal carcinomatosis (PPC), with the worst median overall-survival (mOS), epitomizes the incurability of metastatic cancer. Cancer stem cells (CSCs) underpin this incurability. However, inhibitors of CSC-stemness fail to increase mOS in cancer patients despite preclinical tumor-reduction. This shortfall reinforces that preclinical efficacy should be defined by increased mOS in the presence of cancer comorbidities, CSC-heterogeneity and plasticity. The primary objectives of this study are: to test the dual endothelin-1/signal peptide receptor, DEspR, as a nodal therapeutic target in PPC, given DEspR induction in anoikis-resistant pancreatic CSCs, and to validate humanized anti-DEspR antibody, hu-6g8, as a potential therapeutic for PPC. Methods We used heterogeneous pools of CSCs selected for anoikis resistance from reprogrammed Panc1 and MiaPaCa2 tumor cells (TCs), and adherent TCs reprogrammed from CSCs (cscTCs). We used multiple anti-DEspR blocking antibodies (mAbs) with different epitopes, and a humanized anti-DEspR recombinant mAb cross-reactive in rodents and humans, to test DEspR inhibition effects. We measured DEspR-inhibition efficacy on multiple prometastatic CSC-functions in vitro, and on tumorigenesis and overall survival in a CSC-derived xenograft (CDX) nude rat model of PPC with comorbidities. Results Here we show that DEspR, a stress-survival receptor, is present on subsets of PDAC Panc1-TCs, TC-derived CSCs, and CSC-differentiated TCs (cscTCs), and that DESpR-inhibition decreases apoptosis-resistance and pro-metastatic mesenchymal functions of CSCs and cscTCs in vitro. We resolve the DNA-sequence/protein-function discordance by confirming ADAR1-RNA editing-dependent DEspR-protein expression in Panc1 and MiaPaCa2 TCs. To advance DEspR-inhibition as a nodal therapeutic approach for PPC, we developed and show improved functionality of a recombinant, humanized anti-DEspR IgG4S228P antibody, hu-6g8, over murine precursor anti-DEspR mabs. Hu-6g8 internalizes and translocates to the nucleus colocalized with cyto-nuclear shuttling galectins-1/3, and induces apoptotic cell changes. DEspR-inhibition blocks transperitoneal dissemination and progression to peritoneal carcinomatosis of heterogeneous DEspR±/CD133 ± Panc1-derived CSCs in xenografted nude rats, improving mOS without chemotherapy-like adverse effects. Lastly, we show DEspR expression in Stage II-IV primary and invasive TCs in the stroma in PDAC-patient tumor arrays. Conclusion Collectively, the data support humanized anti-DEspR hu-6g8 as a potential targeted antibody-therapeutic with promising efficacy, safety and prevalence profiles for PPC patients.https://doi.org/10.1186/s12885-021-08107-wDual endothelin-1/signal peptide receptorDEspRCancer stem cellsPancreatic cancerPeritoneal carcinomatosisNude rat xenograft tumor model
collection DOAJ
language English
format Article
sources DOAJ
author Christopher M. Gromisch
Glaiza L. A. Tan
Khristine Amber Pasion
Ann-Marie Moran
Matthew S. Gromisch
Mark W. Grinstaff
Francis J. Carr
Victoria L. M. Herrera
Nelson Ruiz-Opazo
spellingShingle Christopher M. Gromisch
Glaiza L. A. Tan
Khristine Amber Pasion
Ann-Marie Moran
Matthew S. Gromisch
Mark W. Grinstaff
Francis J. Carr
Victoria L. M. Herrera
Nelson Ruiz-Opazo
Humanized anti-DEspR IgG4S228P antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu model
BMC Cancer
Dual endothelin-1/signal peptide receptor
DEspR
Cancer stem cells
Pancreatic cancer
Peritoneal carcinomatosis
Nude rat xenograft tumor model
author_facet Christopher M. Gromisch
Glaiza L. A. Tan
Khristine Amber Pasion
Ann-Marie Moran
Matthew S. Gromisch
Mark W. Grinstaff
Francis J. Carr
Victoria L. M. Herrera
Nelson Ruiz-Opazo
author_sort Christopher M. Gromisch
title Humanized anti-DEspR IgG4S228P antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu model
title_short Humanized anti-DEspR IgG4S228P antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu model
title_full Humanized anti-DEspR IgG4S228P antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu model
title_fullStr Humanized anti-DEspR IgG4S228P antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu model
title_full_unstemmed Humanized anti-DEspR IgG4S228P antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu model
title_sort humanized anti-despr igg4s228p antibody increases overall survival in a pancreatic cancer stem cell-xenograft peritoneal carcinomatosis rat nu/nu model
publisher BMC
series BMC Cancer
issn 1471-2407
publishDate 2021-04-01
description Abstract Background Pancreatic peritoneal carcinomatosis (PPC), with the worst median overall-survival (mOS), epitomizes the incurability of metastatic cancer. Cancer stem cells (CSCs) underpin this incurability. However, inhibitors of CSC-stemness fail to increase mOS in cancer patients despite preclinical tumor-reduction. This shortfall reinforces that preclinical efficacy should be defined by increased mOS in the presence of cancer comorbidities, CSC-heterogeneity and plasticity. The primary objectives of this study are: to test the dual endothelin-1/signal peptide receptor, DEspR, as a nodal therapeutic target in PPC, given DEspR induction in anoikis-resistant pancreatic CSCs, and to validate humanized anti-DEspR antibody, hu-6g8, as a potential therapeutic for PPC. Methods We used heterogeneous pools of CSCs selected for anoikis resistance from reprogrammed Panc1 and MiaPaCa2 tumor cells (TCs), and adherent TCs reprogrammed from CSCs (cscTCs). We used multiple anti-DEspR blocking antibodies (mAbs) with different epitopes, and a humanized anti-DEspR recombinant mAb cross-reactive in rodents and humans, to test DEspR inhibition effects. We measured DEspR-inhibition efficacy on multiple prometastatic CSC-functions in vitro, and on tumorigenesis and overall survival in a CSC-derived xenograft (CDX) nude rat model of PPC with comorbidities. Results Here we show that DEspR, a stress-survival receptor, is present on subsets of PDAC Panc1-TCs, TC-derived CSCs, and CSC-differentiated TCs (cscTCs), and that DESpR-inhibition decreases apoptosis-resistance and pro-metastatic mesenchymal functions of CSCs and cscTCs in vitro. We resolve the DNA-sequence/protein-function discordance by confirming ADAR1-RNA editing-dependent DEspR-protein expression in Panc1 and MiaPaCa2 TCs. To advance DEspR-inhibition as a nodal therapeutic approach for PPC, we developed and show improved functionality of a recombinant, humanized anti-DEspR IgG4S228P antibody, hu-6g8, over murine precursor anti-DEspR mabs. Hu-6g8 internalizes and translocates to the nucleus colocalized with cyto-nuclear shuttling galectins-1/3, and induces apoptotic cell changes. DEspR-inhibition blocks transperitoneal dissemination and progression to peritoneal carcinomatosis of heterogeneous DEspR±/CD133 ± Panc1-derived CSCs in xenografted nude rats, improving mOS without chemotherapy-like adverse effects. Lastly, we show DEspR expression in Stage II-IV primary and invasive TCs in the stroma in PDAC-patient tumor arrays. Conclusion Collectively, the data support humanized anti-DEspR hu-6g8 as a potential targeted antibody-therapeutic with promising efficacy, safety and prevalence profiles for PPC patients.
topic Dual endothelin-1/signal peptide receptor
DEspR
Cancer stem cells
Pancreatic cancer
Peritoneal carcinomatosis
Nude rat xenograft tumor model
url https://doi.org/10.1186/s12885-021-08107-w
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