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Development of an Fn14 agonistic antibody as an anti-tumor agent.

Authors :
Michaelson JS
Amatucci A
Kelly R
Su L
Garber E
Day ES
Berquist L
Cho S
Li Y
Parr M
Wille L
Schneider P
Wortham K
Burkly LC
Hsu YM
Joseph IB
Source :
MAbs [MAbs] 2011 Jul-Aug; Vol. 3 (4), pp. 362-75. Date of Electronic Publication: 2011 Jul 01.
Publication Year :
2011

Abstract

TWEAK, a TNF family ligand with pleiotropic cellular functions, was originally described as capable of inducing tumor cell death in vitro. TWEAK functions by binding its receptor, Fn14, which is up-regulated on many human solid tumors. Herein, we show that intratumoral administration of TWEAK, delivered either by an adenoviral vector or in an immunoglobulin Fc-fusion form, results in significant inhibition of tumor growth in a breast xenograft model. To exploit the TWEAK-Fn14 pathway as a therapeutic target in oncology, we developed an anti-Fn14 agonistic antibody, BIIB036. Studies described herein show that BIIB036 binds specifically to Fn14 but not other members of the TNF receptor family, induces Fn14 signaling, and promotes tumor cell apoptosis in vitro. In vivo, BIIB036 effectively inhibits growth of tumors in multiple xenograft models, including colon (WiDr), breast (MDA-MB-231), and gastric (NCI-N87) tumors, regardless of tumor cell growth inhibition response observed to BIIB036 in vitro. The anti-tumor activity in these cell lines is not TNF-dependent. Increasing the antigen-binding valency of BIB036 significantly enhances its anti-tumor effect, suggesting the contribution of higher order cross-linking of the Fn14 receptor. Full Fc effector function is required for maximal activity of BIIB036 in vivo, likely due to the cross-linking effect and/or ADCC mediated tumor killing activity. Taken together, the anti-tumor properties of BIIB036 validate Fn14 as a promising target in oncology and demonstrate its potential therapeutic utility in multiple solid tumor indications.

Details

Language :
English
ISSN :
1942-0870
Volume :
3
Issue :
4
Database :
MEDLINE
Journal :
MAbs
Publication Type :
Academic Journal
Accession number :
21697654
Full Text :
https://doi.org/10.4161/mabs.3.4.16090