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基于微流控技术的去势抵抗性前列腺癌评估方法

Microfluidics-Based Technologies for the Assessment of Castration-Resistant Prostate Cancer.

机构信息

Institute of Biomedical Engineering, University of Toronto, Toronto, ON M5S 3G9, Canada.

Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, ON M5S 3G9, Canada.

出版信息

Cells. 2024 Mar 26;13(7):575. doi: 10.3390/cells13070575.

Abstract

Castration-resistant prostate cancer remains a significant clinical challenge, wherein patients display no response to existing hormone therapies. The standard of care often includes aggressive treatment options using chemotherapy, radiation therapy and various drugs to curb the growth of additional metastases. As such, there is a dire need for the development of innovative technologies for both its diagnosis and its management. Traditionally, scientific exploration of prostate cancer and its treatment options has been heavily reliant on animal models and two-dimensional (2D) in vitro technologies. However, both laboratory tools often fail to recapitulate the dynamic tumor microenvironment, which can lead to discrepancies in drug efficacy and side effects in a clinical setting. In light of the limitations of traditional animal models and 2D in vitro technologies, the emergence of microfluidics as a tool for prostate cancer research shows tremendous promise. Namely, microfluidics-based technologies have emerged as powerful tools for assessing prostate cancer cells, isolating circulating tumor cells, and examining their behaviour using tumor-on-a-chip models. As such, this review aims to highlight recent advancements in microfluidics-based technologies for the assessment of castration-resistant prostate cancer and its potential to advance current understanding and to improve therapeutic outcomes.

摘要

去势抵抗性前列腺癌仍然是一个重大的临床挑战,患者对现有的激素治疗没有反应。标准的治疗方法通常包括使用化疗、放射治疗和各种药物的积极治疗方案,以抑制其他转移灶的生长。因此,迫切需要开发创新技术来诊断和治疗这种疾病。传统上,前列腺癌及其治疗选择的科学探索严重依赖于动物模型和二维(2D)体外技术。然而,这两种实验室工具往往无法重现动态肿瘤微环境,这可能导致药物疗效和副作用在临床环境中的差异。鉴于传统动物模型和 2D 体外技术的局限性,微流控技术作为前列腺癌研究的工具出现,显示出巨大的潜力。具体而言,基于微流控的技术已成为评估前列腺癌细胞、分离循环肿瘤细胞以及使用肿瘤芯片模型研究其行为的强大工具。因此,本综述旨在强调基于微流控的技术在评估去势抵抗性前列腺癌方面的最新进展,以及其提高当前理解和改善治疗结果的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec3c/11011521/f10c600db30c/cells-13-00575-g001.jpg

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