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Targeting castration-resistant prostate cancer with androgen receptor antisense oligonucleotide therapy
Marco A. De Velasco, Yurie Kura, Kazuko Sakai, Yuji Hatanaka, Barry R. Davies, Hayley Campbell, Stephanie Klein, Youngsoo Kim, A. Robert MacLeod, Koichi Sugimoto, Kazuhiro Yoshikawa, Kazuto Nishio, Hirotsugu Uemura
Marco A. De Velasco, Yurie Kura, Kazuko Sakai, Yuji Hatanaka, Barry R. Davies, Hayley Campbell, Stephanie Klein, Youngsoo Kim, A. Robert MacLeod, Koichi Sugimoto, Kazuhiro Yoshikawa, Kazuto Nishio, Hirotsugu Uemura
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Research Article Endocrinology Therapeutics

Targeting castration-resistant prostate cancer with androgen receptor antisense oligonucleotide therapy

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Abstract

Sustained therapeutic responses from traditional and next-generation antiandrogen therapies remain elusive in clinical practice due to inherent and/or acquired resistance resulting in persistent androgen receptor (AR) activity. Antisense oligonucleotides (ASO) have the ability to block target gene expression and associated protein products and provide an alternate treatment strategy for castration-resistant prostate cancer (CRPC). We demonstrate the efficacy and therapeutic potential of this approach with a Generation-2.5 ASO targeting the mouse AR in genetically engineered models of prostate cancer. Furthermore, reciprocal feedback between AR and PI3K/AKT signaling was circumvented using a combination approach of AR-ASO therapy with the potent pan-AKT inhibitor, AZD5363. This treatment strategy effectively improved treatment responses and prolonged survival in a clinically relevant mouse model of advanced CRPC. Thus, our data provide preclinical evidence to support a combination strategy of next-generation ASOs targeting AR in combination with AKT inhibition as a potentially beneficial treatment approach for CRPC.

Authors

Marco A. De Velasco, Yurie Kura, Kazuko Sakai, Yuji Hatanaka, Barry R. Davies, Hayley Campbell, Stephanie Klein, Youngsoo Kim, A. Robert MacLeod, Koichi Sugimoto, Kazuhiro Yoshikawa, Kazuto Nishio, Hirotsugu Uemura

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Figure 9

Molecular characterization of in vivo combination therapy with ISIS581088 and AZD5363 in mouse Pten-deficient prostate cancer models.

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Molecular characterization of in vivo combination therapy with ISIS58108...
Western blot analysis of AR, AKT, phosphorylation of AKT downstream molecules, and cleaved caspase-3 was performed in prostate tumors from representative mice in Figure 8. Prostates from mice in castration-naive (A) and castration-resistant (B) prostate cancer intervention trial were collected 4 hours after the indicated treatment. qPCR analysis of mRNA of Ar in prostate tumors from representative mice used in the castration-naive (C) and castration-resistant (D) prostate cancer drug intervention trials in Figure 8. (E) qPCR analysis of mRNA of core AR-responsive genes in prostate tumors from C. Horizontal bars represent mean ± SEM, and diamonds represent individual samples; n = 4 mice/group. Significance represent Student-Newman-Keuls post hoc test for individual comparisons, upon significant 1-way ANOVA. Ar mRNA levels are shown in C. Tmprss2 and Klk4 were statistically significant for 1-way ANOVA and could not proceed to post hoc individual comparison. One-way ANOVA P values are listed on the plot. *P < 0.05; ** P < 0.01; ***P < 0.001.

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