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培育尿液液体活检与纳米诊断技术的结合,用于前列腺癌的精准尿液分析。

Nurturing the marriages of urinary liquid biopsies and nano-diagnostics for precision urinalysis of prostate cancer.

作者信息

Liao Caizhi, Wu Zhihao, Lin Chan, Chen Xiaofeng, Zou Yaqun, Zhao Wan, Li Xin, Huang Guangqi, Xu Baisheng, Briganti Giovanni E, Qi Yan, Wang Xianshu, Zeng Tao, Wuethrich Alain, Zou Hongzhi

机构信息

Creative Biosciences (Guangzhou) Co., Ltd Guangzhou China.

School of Environmental and Geographical Sciences Shanghai Normal University Shanghai China.

出版信息

Smart Med. 2023 Feb 14;2(1):e20220020. doi: 10.1002/SMMD.20220020. eCollection 2023 Feb.

Abstract

Prostate cancer remains the second-most common cancer diagnosed in men, despite the increasingly widespread use of serum prostate-specific antigen (PSA) screening. The controversial clinical implications and cost benefits of PSA screening have been highlighted due to its poor specificity, resulting in a high rate of overdiagnosis and underdiagnosis. Thus, the development of novel biomarkers for prostate cancer detection remains an intriguing challenge. Urine is emerging as a source for prostate cancer biomarker discovery. Currently, new urine biomarkers already outperform serum PSA in clinical diagnosis. Meanwhile, the advances in nanotechnology have provided a suite of diagnostic tools to study prostate cancer in more detail, sparking a new era of biomarker discoveries. In this review, we envision that future prostate cancer diagnosis will probably integrate multiplex nano-diagnostic approaches to detect novel urinary biomarkers. However, challenges remain in differentiating indolent from aggressive cancers to better inform treatment decisions, and clinical translation still needs to be overcome.

摘要

尽管血清前列腺特异性抗原(PSA)筛查的应用日益广泛,但前列腺癌仍是男性中第二常见的诊断癌症。由于PSA筛查特异性较差,导致过度诊断和漏诊率较高,其具有争议的临床意义和成本效益已受到关注。因此,开发用于前列腺癌检测的新型生物标志物仍然是一个具有吸引力的挑战。尿液正成为前列腺癌生物标志物发现的一个来源。目前,新的尿液生物标志物在临床诊断中已经优于血清PSA。与此同时,纳米技术的进步提供了一系列诊断工具,以便更详细地研究前列腺癌,开启了生物标志物发现的新时代。在本综述中,我们设想未来前列腺癌诊断可能会整合多重纳米诊断方法来检测新型尿液生物标志物。然而,在区分惰性癌和侵袭性癌以更好地指导治疗决策方面仍存在挑战,并且临床转化仍有待克服。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a00/11236013/a5d3c214dd27/SMMD-2-e20220020-g018.jpg

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