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The present and future of serum diagnostic tests for testicular germ cell tumours

医学 卵黄囊 绒毛膜癌 恶性肿瘤 人绒毛膜促性腺激素 生殖细胞肿瘤 生物标志物 睾丸癌 病理 HMGA2型 睾丸切除术 内科学 生殖细胞 肿瘤科 精原细胞瘤 小RNA 胚胎癌 癌症 生物 细胞分化 胚胎 化疗 基因 细胞生物学 激素 生物化学
作者
Matthew J. Murray,Robert Huddart,Nicholas Coleman
出处
期刊:Nature Reviews Urology [Nature Portfolio]
卷期号:13 (12): 715-725 被引量:188
标识
DOI:10.1038/nrurol.2016.170
摘要

A need for improved serum diagnostic tests for testicular germ cell tumours (GCTs) exists owing to the unsatisfactory performance of currently used markers. In this Review, Murray and colleagues discuss the current serum diagnostic tests for testicular GCTs, including α-fetoprotein, human chorionic gonadotrophin and lactate dehydrogenase, and the future use of novel universal biomarkers such as microRNAs. Testicular germ cell tumours (GCTs) are the most common malignancy occurring in young adult men and the incidence of these tumours is increasing. Current research priorities in this field include improving overall survival for patients classified as being 'poor-risk' and reducing late effects of treatment for patients classified as 'good-risk'. Testicular GCTs are broadly classified into seminomas and nonseminomatous GCTs (NSGCTs). The conventional serum protein tumour markers α-fetoprotein (AFP), human chorionic gonadotrophin (hCG) and lactate dehydrogenase (LDH) show some utility in the management of testicular malignant GCT. However, AFP and hCG display limited sensitivity and specificity, being indicative of yolk sac tumour (AFP) and choriocarcinoma or syncytiotrophoblast (hCG) subtypes. Furthermore, LDH is a very nonspecific biomarker. Consequently, seminomas and NSGCTs comprising a pure embryonal carcinoma subtype are generally negative for these conventional markers. As a result, novel universal biomarkers for testicular malignant GCTs are required. MicroRNAs are short, non-protein-coding RNAs that show much general promise as biomarkers. MicroRNAs from two 'clusters', miR-371–373 and miR-302–367, are overexpressed in all malignant GCTs, regardless of age (adult or paediatric), site (gonadal or extragonadal) and subtype (seminomas, yolk sac tumours or embryonal carcinomas). A panel of four circulating microRNAs from these two clusters (miR-371a-3p, miR-372-3p, miR-373-3p and miR-367-3p) is highly sensitive and specific for the diagnosis of malignant GCT, including seminoma and embryonal carcinoma. In the future, circulating microRNAs might be useful in diagnosis, disease monitoring and prognostication of malignant testicular GCTs, which might also reduce reliance on serial CT scanning. For translation into clinical practice, important practical considerations now need addressing.
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