Antiandrogen Withdrawal Syndrome (antiandrogen + withdrawal_syndrome)

Distribution by Scientific Domains


Selected Abstracts


Antiandrogen withdrawal syndrome and alternative antiandrogen therapy associated with the W741C mutant androgen receptor in a novel prostate cancer xenograft

THE PROSTATE, Issue 3 2010
Naoki Terada
Abstract BACKGROUND The mechanisms underlying antiandrogen withdrawal syndrome (AWS) and alternative antiandrogen therapy (AAT) effectiveness were assumed to be mutations in the androgen receptor (AR), which resulted in an altered response to antiandrogens. The aim of the present study was to test this assumption using the novel prostate cancer xenograft model KUCaP-1 harboring the W741C mutant AR (Yoshida et al., Cancer Res 2005; 65(21): 9611,9616). METHODS Mice bearing xenograft tumors were castrated, and the long-term sequential changes in tumor volume were observed. To determine whether AWS was observed in this model, bicalutamide (BCL) was orally administered to the castrated mice and then withdrawn. The effect of flutamide (FLT) on the W741C mutant AR was examined with transactivation assays in vitro and with the oral administration of FLT to non-castrated mice harboring KUCaP-1 in vivo. The AAT efficacy against KUCaP-1 was evaluated by changing BCL with FLT. RESULTS KUCaP-1 regressed significantly after castration and did not re-grow. KUCaP-1 treated with BCL continued to grow even after castration and started regressing 2 months after BCL withdrawal, replicating clinically recognized AWS. The antagonistic effect of FLT against the W741C mutant AR was revealed in vitro and in vivo. AAT with FLT suppressed tumor growth after BCL withdrawal. CONCLUSIONS KUCaP-1 was an entirely androgen-dependent xenograft and mimicked the clinical phenomena of AWS and AAT caused by the agonistic and antagonistic activity of BCL and FLT, respectively. KUCaP-1 could be an in vivo model for screening novel antiandrogens for the treatment of BCL resistant prostate cancer harboring the W741C mutation in the AR. Prostate 70: 252,261, 2010. © 2009 Wiley-Liss, Inc. [source]


Effects of flutamide as a second-line agent for maximum androgen blockade of hormone refractory prostate cancer

INTERNATIONAL JOURNAL OF UROLOGY, Issue 3 2007
Kenji Nishimura
Abstract: We analyzed clinical effects of flutamide as a second-line agent for maximum androgen blockade (MAB) in patients with relapsing prostate cancer who received bicalutamide as the first-line MAB agent. This study included 13 patients with progressive prostate cancer who had relapsed after first-line MAB, with bicalutamide at 80 mg/day. After checking for antiandrogen withdrawal syndrome, they were given flutamide at 375 mg/day as second-line MAB. The effectiveness of that therapy was evaluated by changes in prostatic specific antigen (PSA) levels, with response defined as a decrease of greater than 50% from the start of therapy. We also compared several factors between responders and non-responders. Nine (69.2%) of the 13 patients showed a decrease in PSA levels, of whom five (38.5%) had a greater than 50% decrease and were defined as responders. The median duration of PSA response was 11.0 months (range 5,20 months). Patients who had a longer duration of response to first-line MAB had a significantly greater response to second-line MAB. For advanced prostate cancer patients who progressed on first-line MAB with bicalutamide, flutamide administration as a second-line antiandrogen was found to be relatively effective, especially for those who showed a longer duration of response to the first-line MAB. Our results confirm previous findings that MAB using flutamide is an effective second-line hormonal therapy. [source]


Molecular basis for the antiandrogen withdrawal syndrome

JOURNAL OF CELLULAR BIOCHEMISTRY, Issue 1 2004
Hiroshi Miyamoto
Abstract In patients with prostate cancer who manifest disease progression during combined androgen blockade therapy, discontinuation of antiandrogen treatment might result in prostate-specific antigen decline, often associated with clinical improvement. The response called antiandrogen withdrawal syndrome is thus acknowledged as a general phenomenon. However, molecular mechanisms responsible for this syndrome are not completely understood. This article outlines the proposed mechanisms, including alterations of androgen receptor gene and its coregulatory proteins and activation of the signal transduction pathway, and the potential therapeutic approaches based on the specific mechanisms. © 2003 Wiley-Liss, Inc. [source]