Materials Engineering, Department of Mechanical Engineering, Auburn University, Auburn, AL, 36849, USA.
Department of Mechanical and Aerospace Engineering, New York University, Brooklyn, NY, 11201, USA; Department of Biomedical Engineering, New York University, Brooklyn, NY, 11201, USA.
Biosens Bioelectron. 2023 Apr 1;225:115064. doi: 10.1016/j.bios.2023.115064. Epub 2023 Jan 5.
Real-time monitoring in the tumor microenvironment provides critical insights of cancer progression and mechanistic understanding of responses to cancer treatments. However, clinical challenges and significant questions remain regarding assessment of limited clinical tissue samples, establishment of validated, controllable pre-clinical cancer models, monitoring of static versus dynamic markers, and the translation of insights gained from in vitro tumor microenvironments to systematic investigation and understanding in clinical practice. State-of-art tumor-on-a-chip strategies will be reviewed herein, and emerging real-time sensing and monitoring platforms for on-chip analysis of tumor microenvironment will also be examined. The integration of the sensors with tumor-on-a-chip platforms to provide spatiotemporal information of the tumor microenvironment and the associated challenges will be further evaluated. Though optimal integrated systems for in situ monitoring are still in evolution, great promises lie ahead that will open new paradigm for rapid, comprehensive analysis of cancer development and assist clinicians with powerful tools to guide the diagnosis, prognosis and treatment course in cancer.
实时监测肿瘤微环境可为癌症进展提供关键见解,并深入了解癌症治疗的反应机制。然而,在评估有限的临床组织样本、建立经过验证和可控的临床前癌症模型、监测静态与动态标志物,以及将体外肿瘤微环境中获得的见解转化为临床实践中的系统研究和理解方面,仍存在临床挑战和重大问题。本文将回顾最先进的肿瘤芯片策略,并探讨用于芯片分析肿瘤微环境的新兴实时传感和监测平台。还将进一步评估传感器与肿瘤芯片平台的集成,以提供肿瘤微环境的时空信息及其相关挑战。尽管用于原位监测的最佳集成系统仍在不断发展,但前景广阔,有望为癌症发展的快速、全面分析开辟新范例,并为临床医生提供强大的工具,以指导癌症的诊断、预后和治疗过程。