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Clinical Cancer Research Vol. 11, 5590-5594, August 1, 2005
© 2005 American Association for Cancer Research


Cancer Therapy: Preclinical

Prevention of Cancer Cachexia by a Novel Nuclear Factor {kappa}B Inhibitor in Prostate Cancer

Kenji Kuroda1, Yutaka Horiguchi1, Jun Nakashima1, Eiji Kikuchi1, Kent Kanao1, Akira Miyajima1, Takashi Ohigashi1, Kazuo Umezawa2 and Masaru Murai1

Authors' Affiliations: 1 Department of Urology, Keio University, School of Medicine, Tokyo, Japan and 2 Department of Applied Chemistry, Faculty of Science and Technology, Keio University, Yokohama, Japan

Requests for reprints: Jun Nakashima, Department of Urology, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan. Phone: 81-3-5363-3825; Fax: 81-3-3225-1985; E-mail: njun{at}sc.itc.keio.ac.jp.

Purpose: To investigate the association between serum interleukin-6 (IL-6) and cachexia in patients with prostate cancer and the inhibitory effect of a new nuclear factor {kappa}B (NF-{kappa}B) inhibitor, dehydroxymethylepoxyquinomicin (DHMEQ), on IL-6 production and cachexia in an animal model of hormone-refractory prostate cancer.

Experimental Design: The association between serum IL-6 levels and variables of cachexia was evaluated in 98 patients with prostate cancer. The inhibitory effects of DHMEQ on IL-6 secretion and cachexia were investigated in in vitro and in vivo studies using JCA-1 cells derived from human prostate cancer.

Results: Serum IL-6 levels were significantly elevated and cachexia developed in JCA-1 tumor-bearing mice as well as in prostate cancer patients with progressive disease. IL-6 secretion was significantly inhibited in JCA-1 cells exposed to DHMEQ. Intraperitoneal administration of DHMEQ (8 mg/kg) to tumor-bearing mice produced a significant amelioration of the reduction in body weight, epididymal fat weight, gastrocnemius muscle weight, hematocrit, and serum levels of triglyceride and albumin when compared with administration of DMSO or no treatment. DHMEQ caused a significant decrease of serum IL-6 level in JCA-1 tumor-bearing mice (all P < 0.05).

Conclusions: These results suggested an association between serum IL-6 and cachexia in patients with prostate cancer and in JCA-1 tumor-bearing mice and that a new NF-{kappa}B inhibitor, DHMEQ, could prevent the development of cachexia in JCA-1 tumor-bearing mice presumably through the inhibition of IL-6 secretion. DHMEQ seems to show promise as a novel and unique anticachectic agent in hormone-refractory prostate cancer.




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Copyright © 2005 by the American Association for Cancer Research.