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IRX-2, a Novel Immunotherapeutic, Enhances Functions of Human Dendritic Cells
Authors
A Lopez-Albaitero
A Pinzon-Charry
+46 more
AD Rapidis
B Almand
B Schilling
Bastian Schilling
C Reis e Sousa
C Sadhu
C Visus
D Agnello
Derya Unutmaz
DI Gabrilovich
DS Heo
DY Ma
E Procko
GG Kim
GT Wolf
H Jonuleit
H Jonuleit
H Okada
IK Poon
J Banchereau
James Egan
JE Egan
JM Kirkwood
L Frasca
LH Butterfield
M Ahmadi
M Temponi
Malgorzata Harasymczuk
MC Dieu
MR Young
N Bandoh
NL Berinstein
P Chaux
P Kalinski
P Langlade-Demoyen
Patrick Schuler
R Muthuswamy
S Amigorena
Soldano Ferrone
T Ogino
Theresa L. Whiteside
TK Hoffmann
TK Hoffmann
TL Whiteside
TL Whiteside
X Wang
Publication date
7 February 2013
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
Background: In a recent phase II clinical trial for HNSCC patients, IRX-2, a cell-derived biologic, promoted T-cell infiltration into the tumor and prolonged overall survival. Mechanisms responsible for these IRX-2-mediated effects are unknown. We hypothesized that IRX-2 enhanced tumor antigen-(TA)-specific immunity by up-regulating functions of dendritic cells (DC). Methodology/Principal Findings: Monocyte-derived DC obtained from 18 HNSCC patients and 12 healthy donors were matured using IRX-2 or a mix of TNF-α, IL-1β and IL-6 ("conv. mix"). Multicolor flow cytometry was used to study the DC phenotype and antigen processing machinery (APM) component expression. ELISPOT and cytotoxicity assays were used to evaluate tumor-reactive cytotoxic T lymphocytes (CTL). IL-12p70 and IL-10 production by DC was measured by Luminex® and DC migration toward CCL21 was tested in transwell migration assays. IRX-2-matured DC functions were compared with those of conv. mix-matured DC. IRX-2-matured DC expressed higher levels (p<0.05) of CD11c, CD40, CCR7 as well as LMP2, TAP1, TAP2 and tapasin than conv. mix-matured DC. IRX-2-matured DC migrated significantly better towards CCL21, produced more IL-12p70 and had a higher IL12p70/IL-10 ratio than conv. mix-matured DC (p<0.05 for all). IRX-2-matured DC carried a higher density of tumor antigen-derived peptides, and CTL primed with these DC mediated higher cytotoxicity against tumor targets (p<0.05) compared to the conv. mix-matured DC. Conclusion: Excellent ability of IRX-2 to induce ex vivo DC maturation in HNSCC patients explains, in part, its clinical benefits and emphasizes its utility in ex vivo maturation of DC generated for therapy. © 2013 Schilling et al
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