HSP70 Inhibition Synergistically Enhances the Effects of Magnetic Fluid Hyperthermia in Ovarian Cancer

卵巢癌 热疗 癌症研究 体内 癌症 热休克蛋白70 生物 热休克蛋白 癌细胞 体外 药理学 基因 生物化学 遗传学 生物技术 古生物学
作者
Karem A. Court,Hiroto Hatakeyama,Sherry Y. Wu,Mangala S. Lingegowda,Cristian Rodriguez‐Aguayo,Gabriel Lopez‐Berestein,Lee Ju-Seog,Carlos Rinaldi,Eduardo J. Juan,Anil K. Sood,Madeline Torres‐Lugo
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:16 (5): 966-976 被引量:55
标识
DOI:10.1158/1535-7163.mct-16-0519
摘要

Hyperthermia has been investigated as a potential treatment for cancer. However, specificity in hyperthermia application remains a significant challenge. Magnetic fluid hyperthermia (MFH) may be an alternative to surpass such a challenge, but implications of MFH at the cellular level are not well understood. Therefore, the present work focused on the examination of gene expression after MFH treatment and using such information to identify target genes that when inhibited could produce an enhanced therapeutic outcome after MFH. Genomic analyzes were performed using ovarian cancer cells exposed to MFH for 30 minutes at 43°C, which revealed that heat shock protein (HSP) genes, including HSPA6, were upregulated. HSPA6 encodes the Hsp70, and its expression was confirmed by PCR in HeyA8 and A2780cp20 ovarian cancer cells. Two strategies were investigated to inhibit Hsp70-related genes, siRNA and Hsp70 protein function inhibition by 2-phenylethyenesulfonamide (PES). Both strategies resulted in decreased cell viability following exposure to MFH. Combination index was calculated for PES treatment reporting a synergistic effect. In vivo efficacy experiments with HSPA6 siRNA and MFH were performed using the A2780cp20 and HeyA8 ovarian cancer mouse models. A significantly reduction in tumor growth rate was observed with combination therapy. PES and MFH efficacy were also evaluated in the HeyA8 intraperitoneal tumor model, and resulted in robust antitumor effects. This work demonstrated that HSP70 inhibition combination with MFH generate a synergistic effect and could be a promising target to enhance MFH therapeutic outcomes in ovarian cancer. Mol Cancer Ther; 16(5); 966-76. ©2017 AACR.

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