PO.MCB10.01 · 分子与细胞生物学

开发miR-888簇成员作为侵袭性前列腺癌的抗miRNA疗法

Developing the miR-888 cluster members as an antimiRNA therapy for aggressive prostate cancer

海报缩略图:开发miR-888簇成员作为侵袭性前列腺癌的抗miRNA疗法
编号 2053 展板 13 时间 4/20 09:00–12:00 区域 Section 25 主讲 Alex Cain, BA;BS
分会场 MicroRNAs as Cancer Biomarkers, Therapeutic Targets, and Modulators of Treatment Response
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作者与单位 Authors & Affiliations

Alex Cain1, Katherine Routon Stanton1, Vishal Kasina2, Raman Bahal2, Aurora Esquela Kerscher1

1Biomedical and Translational Sciences, Macon and Joan Brock Virginia Health Sciences at Old Dominion University, Norfolk, VA,2Department of Pharmaceutical Sciences, University of Connecticut, Storrs, CT

摘要 Abstract

中文摘要
转移性前列腺癌(PCa)代表着一项未满足的治疗需求,其5年生存率仅为30%。microRNA(miRNA)是小的非编码RNA,对PCa具有治疗前景,并在前列腺中作为重要的抑癌因子和促癌因子发挥作用。Kerscher实验室发现,与低级别或非癌患者相比,miR-888簇在人转移性PCa细胞系以及高级别PCa患者的前列腺液中优先富集。我们发现该簇成员在体外促进前列腺生长和侵袭性,尤其是miR-888和miR-891a,且这些miRNA加速了小鼠的肿瘤负荷。反过来,使用反义寡核苷酸失活miR-888和miR-891a逆转了这些效应,凸显了它们作为PCa抗miR靶点的潜力。抗miR是抑制miRNA功能的宝贵工具,但当前的抗miR疗法需要高剂量且组织特异性差。为解决这些不足,Kerscher实验室与Raman Bahal博士的团队合作,测试其酸感应肽pHLIP(pH low insertion peptide,pH低插入肽)作为一种新型前列腺肿瘤递送试剂、与设计用于抑制miR-888或miR-891a的肽核酸(PNA)偶联的效果。我们假设,针对miR-888/-891a的pHLIP-PNA-抗miR能够高效递送至前列腺肿瘤(其固有的酸性微环境)并抑制向致死性疾病的进展。我们还预测在去势抵抗性PCa中效果更为显著。事实上,当通过qRT-PCR在代表该疾病谱系的一组人PCa细胞系中分析内源性miR-888/891a水平时,我们注意到miR-888和miR-891a的表达在去势抵抗性、神经内分泌型PCa系中尤为升高。pHLIP-PNA-抗miR-888和抗miR-891a试剂在体外进一步得到验证,可降低miRNA水平并抑制PCa细胞系中的癌症表型。在这些实验中,PCa细胞在pH 6.0培养基中用4 uM pHLIP-PNA-抗miR或对照试剂处理3小时,恢复24-48小时,然后收获用于qRT-PCR、WST-1(增殖)和软琼脂(非锚定依赖性生长)实验。正如预测的那样,pHLIP-PNA-抗miR处理在转移性PC3-ML细胞中比在惰性LNCaP细胞中更有效地抑制生长。最终,我们试图确定pHLIP-PNA-抗miR在异种移植小鼠模型中的疗效。我们首先验证了单独的cy5-pHLIP在小鼠中高效靶向PC3-ML异种移植瘤,且在肾和肝中信号较低。在一项初步疗效研究中,我们随后将PC3-ML细胞注射到小鼠的胁腹。当肿瘤体积达到约300 mm³时,动物在第1、4、8和11天经尾静脉注射pHLIP-PNA-抗miR-891a或-NC67对照。这项初步研究表明,抗miR-891a减少了肿瘤负荷。这些新型pHLIP-PNA-抗miR试剂展示了对晚期PCa的临床前景。
查看英文原文 English abstract
Metastatic prostate cancer (PCa) represents an unmet treatment need, with a 5-year survival rate of only 30%. MicroRNAs (miRNAs) are small noncoding RNAs that hold therapeutic promise for PCa and act as important tumor suppressors and pro-oncogenic factors in the prostate. The Kerscher lab identified the miR-888 cluster as preferentially enriched in human metastatic PCa cell lines and prostatic fluids from patients with high-grade PCa compared to low-grade or non-cancer patients. We showed that cluster members promoted prostate growth and aggressiveness in vitro, particularly miR-888 and miR-891a, and these miRNAs accelerated tumor load in mice. Reciprocally, inactivation of miR-888 and miR-891a using antisense oligos reversed these effects, highlighting their potential as antimiR targets for PCa. AntimiRs are valuable tools for inhibiting miRNA function, but current antimiR therapies require high dosage and suffer from poor tissue specificity. To address these shortcomings, the Kerscher lab collaborated with Dr. Raman Bahal's group to test the efficacy of their acid-sensing peptide pHLIP (pH low insertion peptide) as a novel prostate tumor delivery reagent conjugated to peptide nucleic acids (PNAs) designed to inhibit miR-888 or miR-891a. We hypothesized that pHLIP-PNA-antimiRs against miR-888/-891a would allow efficient delivery to prostate tumors (with inherently acidic microenvironments) and inhibit progression to lethal disease. We also predicted more pronounced effects in castration-resistant PCa. Indeed, when endogenous miR-888/891a levels were analyzed by qRT-PCR across a panel of human PCa cell lines representing the spectrum of this disease, we noted that miR-888 & miR-891a expression was especially elevated in castration-resistant, neuroendocrine PCa lines. pHLIP-PNA-antimiR-888 and antimiR-891a reagents were further validated in vitro to reduce miRNA levels and suppress cancer phenotypes in PCa cell lines. For these experiments, PCa cells were treated with 4 uM pHLIP-PNA-antimiR or control reagents in pH 6.0 media for 3 hours, recovered for 24-48 hours, and harvested for qRT-PCR, WST-1 (proliferation), and soft agar (anchorage-independent growth) assays. As predicted, pHLIP-PNA-antimiR treatment reduced growth more effectively in metastatic PC3-ML than in indolent LNCaP cells. Ultimately, we sought to determine pHLIP-PNA-antimiR efficacy in a xenograft mouse model. We first validated that cy5-pHLIP alone efficiently targeted PC3-ML xenografts in mice, with low signal in kidney and liver. In a pilot efficacy study, we then injected PC3-ML cells into the flanks of mice. When tumor volume reached ~300 mm³, animals were injected with pHLIP-PNA-antimiR-891a or -NC67 controls by tail vein on days 1, 4, 8, and 11. This preliminary study showed that antimiR-891a reduced tumor load. These novel pHLIP-PNA-antimiR reagents demonstrate clinical promise for late-stage PCa.
利益披露 Disclosure
A. Cain, None.. K. Stanton, None.. V. Kasina, None.. R. Bahal, None.. A. Kerscher, None.

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