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先进技术在功效测定中的应用。

Advanced Technologies for Potency Assay Measurement.

机构信息

Department of Biomedical Sciences, Mercer University School of Medicine, Savannah, GA, USA.

出版信息

Adv Exp Med Biol. 2023;1420:81-95. doi: 10.1007/978-3-031-30040-0_6.

Abstract

Crucial for their application, cell products need to be well-characterized in the cell manufacturing facilities and conform to regulatory approval criteria before infusion into the patients. Mesenchymal Stromal Cells (MSCs) are the leading cell therapy candidate in clinical trials worldwide. Early phase clinical trials have demonstrated that MSCs display an excellent safety profile and are well tolerated. However, MSCs have also exhibited contradictory efficacy in later-phase clinical trials with reasons for this discrepancy including poorly understood mechanism of MSC therapeutic action. With likelihood that a number of attributes are involved in MSC derived clinical benefit, an assay that measures a single quality of may not adequately reflect potency, thus a combination of bioassays and analytical methods, collectively called "assay matrix" are favoured for defining the potency of MSC more adequately. This chapter highlights advanced technologies and targets that can achieve quantitative measurement for a range of MSC attributes, including immunological, genomic, secretome, phosphorylation, morphological, biomaterial, angiogenic and metabolic assays.

摘要

对于它们的应用来说,细胞产品需要在细胞制造设施中进行充分的表征,并符合监管批准标准,然后才能输注到患者体内。间充质基质细胞(MSCs)是全球临床试验中领先的细胞治疗候选物。早期临床试验表明,MSCs 具有极好的安全性和耐受性。然而,MSCs 在后期临床试验中也表现出了矛盾的疗效,其原因包括对 MSC 治疗作用机制的了解不足。由于有许多属性可能与 MSC 产生的临床益处有关,因此测量单个质量的测定方法可能无法充分反映效力,因此,生物测定和分析方法的组合,统称为“测定矩阵”,更适合于更充分地定义 MSC 的效力。本章重点介绍了一些先进技术和靶点,可以对一系列 MSC 特性进行定量测量,包括免疫学、基因组学、分泌组学、磷酸化、形态学、生物材料、血管生成和代谢测定。

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