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检测治疗抵抗性卵巢癌的分子诊断和分子分析。

Molecular diagnosis and molecular profiling to detect treatment-resistant ovarian cancer.

机构信息

a Department of Obstetrics and Gynecology, Division of Gynecologic Oncology , Stanford University , Stanford , CA , USA.

b Department of Obstetrics, Gynecology & Reproductive Sciences, Division of Gynecologic Oncology , Yale University School of Medicine , New Haven , CT , USA.

出版信息

Expert Rev Mol Diagn. 2016 Jul;16(7):769-82. doi: 10.1080/14737159.2016.1188692. Epub 2016 May 27.

Abstract

INTRODUCTION

Epithelial ovarian cancer remains the gynecologic tumor with the highest rate of recurrence after initial optimal cytoreductive surgery followed by adjuvant chemotherapy. Unfortunately, with the development of recurrent ovarian cancer often comes the discovery of chemo-resistant disease. The absence of improvement in long term survival, notwithstanding the use of newer agents as is seen in other cancers, emphasizes the need for improved understanding of the processes that lead to chemo-resistant disease.

AREAS COVERED

This review will cover the following topics: 1. Molecular and cellular mechanisms in platinum and paclitaxel resistance 2. Other molecular mediators of chemo-resistance 3. Expression of stem cell markers in ovarian cancer and relationship to chemo-resistance 4. MicroRNA and long non-coding RNA expression in chemo-resistant ovarian cancer 5. Determination of chromosomal aberrations as markers of chemo-resistance 6. Molecular profiling in chemo-resistant disease. A standard MEDLINE search was performed using the key words; ovarian cancer, chemo-resistant disease, molecular profiling, cancer stem cells and chemotherapy. Expert Commentary: Over the next few years the challenge remains to precisely determine the mechanisms responsible for the onset and maintenance of chemo-resistance and to effectively target these mechanisms.

摘要

简介

上皮性卵巢癌仍然是妇科肿瘤,在初始最佳减瘤手术后进行辅助化疗后,复发率最高。不幸的是,随着复发性卵巢癌的发展,往往会发现化疗耐药性疾病。尽管使用了新的药物(如在其他癌症中所见),但长期生存并未得到改善,这强调了需要更好地了解导致化疗耐药性疾病的过程。

涵盖领域

这篇综述将涵盖以下主题:1. 铂类和紫杉醇耐药的分子和细胞机制 2. 化疗耐药的其他分子介质 3. 卵巢癌中干细胞标志物的表达及其与化疗耐药性的关系 4. 化疗耐药性卵巢癌中的 microRNA 和长非编码 RNA 表达 5. 染色体畸变作为化疗耐药性标志物的确定 6. 化疗耐药性疾病的分子谱分析。使用关键词“卵巢癌、化疗耐药性疾病、分子谱分析、癌症干细胞和化疗”进行了标准的 MEDLINE 搜索。

专家评论

在未来几年,仍然面临的挑战是精确确定导致化疗耐药性发生和维持的机制,并有效地针对这些机制。

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