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Tumor stroma-targeted antibody-drug conjugate triggers localized anticancer drug release.

Authors :
Szot, Christopher
Saha, Saurabh
Zhang, Xiaoyan M.
Zhongyu Zhu
Hilton, Mary Beth
Morris, Karen
Seaman, Steven
Dunleavey, James M.
Kuo-Sheng Hsu
Guo-Jun Yu
Morris, Holly
Swing, Deborah A.
Haines, Diana C.
Yanping Wang
Hwang, Jennifer
Yang Feng
Welsch, Dean
DeCrescenzo, Gary
Chaudhary, Amit
Zudaire, Enrique
Source :
Journal of Clinical Investigation. Jul2018, Vol. 128 Issue 7, p2927-2943. 17p. 2 Charts, 6 Graphs.
Publication Year :
2018

Abstract

Although nonmalignant stromal cells facilitate tumor growth and can occupy up to 90% of a solid tumor mass, better strategies to exploit these cells for improved cancer therapy are needed. Here, we describe a potent MMAE-linked antibody-drug conjugate (ADC) targeting tumor endothelial marker 8 (TEM8, also known as ANTXR1), a highly conserved transmembrane receptor broadly overexpressed on cancer-associated fibroblasts, endothelium, and pericytes. Anti-TEM8 ADC elicited potent anticancer activity through an unexpected killing mechanism we term DAaRTS (drug activation and release through stroma), whereby the tumor microenvironment localizes active drug at the tumor site. Following capture of ADC prodrug from the circulation, tumor-associated stromal cells release active MMAE free drug, killing nearby proliferating tumor cells in a target-independent manner. In preclinical studies, ADC treatment was well tolerated and induced regression and often eradication of multiple solid tumor types, blocked metastatic growth, and prolonged overall survival. By exploiting TEM8+ tumor stroma for targeted drug activation, these studies reveal a drug delivery strategy with potential to augment therapies against multiple cancer types. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219738
Volume :
128
Issue :
7
Database :
Academic Search Index
Journal :
Journal of Clinical Investigation
Publication Type :
Academic Journal
Accession number :
130556172
Full Text :
https://doi.org/10.1172/JCI120481