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PMID: 23607800 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Matrix metalloproteinases inhibition promotes the polyfunctionality of human natural killer cells in therapeutic antibody-based anti-tumour immunotherapy.

Clinical and experimental immunology ·Vol. 173 ·No. 1 ·2013-07-00 ·Pages 131-9

Zhou Q, Gil-Krzewska A, Peruzzi G, Borrego F

Abstract

Activation of human natural killer (NK) cells is associated with the cleavage of CD16 from the cell surface, a process mediated by matrix metalloproteinases (MMPs). In this report, we examined whether inhibition of MMPs would lead to improved NK cell antibody-dependent cell-mediated cytotoxicity (ADCC) function. Using an in-vitro ADCC assay, we tested the anti-tumour function of NK cells with three different therapeutic monoclonal antibodies (mAbs) in the presence of MMPs inhibitor GM6001 or its control. Loss of CD16 was observed when NK cells were co-cultured with tumour targets in the presence of specific anti-tumour antibodies, and was found particularly on the majority of degranulating NK responding cells. Treatment with MMPs inhibitors not only prevented CD16 down-regulation, but improved the quality of the responding cells significantly, as shown by an increase in the percentage of polyfunctional NK cells that are capable of both producing cytokines and degranulation. Furthermore, MMPs inhibition resulted in augmented and sustained CD16-mediated signalling, as shown by increased tyrosine phosphorylation of CD3ζ and other downstream signalling intermediates, which may account for the improved NK cell function. Collectively, our results provide a foundation for combining MMPs inhibitors and therapeutic mAbs in new clinical trials for cancer treatment.

MeSH Terms
Antibodies, Monoclonal, Humanized/pharmacology Antibodies, Monoclonal, Murine-Derived/pharmacology Antibody-Dependent Cell Cytotoxicity/drug effects Antigens, Surface/metabolism Antineoplastic Agents/pharmacology CD3 Complex/metabolism Cell Degranulation/drug effects Cell Line, Tumor Cetuximab Coculture Techniques Cytokines/blood Dipeptides/pharmacology Down-Regulation/drug effects GPI-Linked Proteins/metabolism Humans Killer Cells, Natural/drug effects,immunology Lymphocyte Activation/drug effects Matrix Metalloproteinase Inhibitors/pharmacology Matrix Metalloproteinases/physiology Phosphorylation/drug effects Protein Processing, Post-Translational/drug effects Receptors, IgG/metabolism Rituximab Signal Transduction/drug effects Trastuzumab
Chemicals
Antibodies, Monoclonal, Humanized Antibodies, Monoclonal, Murine-Derived Antigens, Surface Antineoplastic Agents CD3 Complex CD3 antigen, zeta chain Cytokines Dipeptides FCGR3B protein, human GPI-Linked Proteins Matrix Metalloproteinase Inhibitors N-(2(R)-2-(hydroxamidocarbonylmethyl)-4-methylpentanoyl)-L-tryptophan methylamide Receptors, IgG Rituximab Matrix Metalloproteinases Trastuzumab Cetuximab
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Zhou Q
Laboratory of Molecular and Developmental Immunology, Division of Monoclonal Antibodies, Office of Biotechnology Products, Center for Drug Evaluation and Research, Food and Drug Administration, Bethesda, MD, USA.
Gil-Krzewska A
Peruzzi G
Borrego F
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Article Info
Journal
Clinical and experimental immunology
Abbr.
Clin Exp Immunol
ISSN
1365-2249
Published
2013-07-00
Pages
131-9
Language
English
Region
England
NLM ID
0057202
PMCID
PMC3694543
Subset
IM
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