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创新的关键质量属性定量分析

Innovative Quantification of Critical Quality Attributes.

机构信息

Centre for Biosensors, Bioelectronics and Biodevices (ToC3Bio) and Department of Electronic & Electrical Engineering, University of Bath, Bath, UK.

出版信息

Adv Exp Med Biol. 2023;1420:97-115. doi: 10.1007/978-3-031-30040-0_7.

Abstract

Potency testing is an important part of the evaluation of cellular therapy products. In vitro quantification of identified quality-related biomarkers is a technique often used at the laboratory. Nonetheless, the limited stability of most cellular therapy products, the lot variability and the limited time within which to perform testing are currently hindering their widespread use. Fortunately, within the last two decades, the evolution of material technology and miniaturisation processes has enabled the research community to shift the spotlight of attention towards the Lab-on-Chip concept for diagnostic applications. Such devices enable portable, rapid, sensitive, automated and affordable biochemical analyses aiming to advance the healthcare services across a broad application spectrum. However, it could be argued that the aspirations on their affordability are far from being exceeded, mainly due to the lack of a practical manufacturing technology. The Lab-on-Printed Circuit Board (Lab-on-PCB) approach has demonstrated enormous potential for developing economical diagnostic platforms leveraging the advantage provided by economy of scale manufacturing of the long-standing PCB industry. The integration capabilities that the PCB platform introduces to the Lab-on-Chip concept concerning the electronics and microfluidics seem to be unique. In this chapter, we will be reviewing the progress of Lab-on-PCB prototypes quantifying within miniaturised microchips a range of critical quality attributes with potential in potency testing. We will focus on their technology and applications whilst addressing the potential of this approach in practical use and commercialisation.

摘要

效力测试是细胞治疗产品评估的重要组成部分。在实验室中,经常使用体外定量鉴定的与质量相关的生物标志物技术。尽管如此,大多数细胞治疗产品的稳定性有限、批次间的差异较大以及进行测试的时间有限,这在一定程度上限制了其广泛应用。幸运的是,在过去的二十年中,材料技术和微型化工艺的发展使研究界将注意力转向了用于诊断应用的芯片实验室(Lab-on-Chip)概念。这些设备可实现便携、快速、灵敏、自动化和经济实惠的生化分析,有望在广泛的应用范围内推进医疗保健服务。然而,可以说,它们在价格方面的优势远未得到充分发挥,主要是因为缺乏实用的制造技术。印刷电路板上的实验室(Lab-on-PCB)方法已经展示了巨大的潜力,可以利用历史悠久的 PCB 行业的规模化制造优势,开发经济实惠的诊断平台。PCB 平台为 Lab-on-Chip 概念带来的电子和微流控集成能力似乎是独一无二的。在本章中,我们将回顾利用小型化微芯片对潜在效力测试的一系列关键质量属性进行定量分析的 Lab-on-PCB 原型的进展。我们将重点关注它们的技术和应用,同时探讨这种方法在实际应用和商业化中的潜力。

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