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具有临床相关性的T细胞扩增培养基激活与细胞功能解偶联的不同代谢程序。

Clinically relevant T cell expansion media activate distinct metabolic programs uncoupled from cellular function.

作者信息

MacPherson Sarah, Keyes Sarah, Kilgour Marisa K, Smazynski Julian, Chan Vanessa, Sudderth Jessica, Turcotte Tim, Devlieger Adria, Yu Jessie, Huggler Kimberly S, Cantor Jason R, DeBerardinis Ralph J, Siatskas Christopher, Lum Julian J

机构信息

Trev and Joyce Deeley Research Centre, BC Cancer, Victoria, BC V8R6V5, Canada.

Department of Biochemistry and Microbiology, University of Victoria, Victoria, BC, Canada.

出版信息

Mol Ther Methods Clin Dev. 2022 Feb 15;24:380-393. doi: 10.1016/j.omtm.2022.02.004. eCollection 2022 Mar 10.

Abstract

expansion conditions used to generate T cells for immunotherapy are thought to adopt metabolic phenotypes that impede therapeutic efficacy . The comparison of five different culture media used for clinical T cell expansion revealed unique optima based on different output variables, including proliferation, differentiation, function, activation, and mitochondrial phenotypes. The extent of proliferation and function depended on the culture media rather than stimulation conditions. Moreover, the expanded T cell end products adapted their metabolism when switched to a different media formulation, as shown by glucose and glutamine uptake and patterns of glucose isotope labeling. However, adoption of these metabolic phenotypes was uncoupled to T cell function. Expanded T cell products cultured in ascites from ovarian cancer patients displayed suppressed mitochondrial activity and function irrespective of the expansion media. Thus, T cell expansion media have profound impacts on metabolism and function.

摘要

用于生成免疫治疗T细胞的扩增条件被认为会采用阻碍治疗效果的代谢表型。对用于临床T细胞扩增的五种不同培养基的比较显示,基于不同的输出变量(包括增殖、分化、功能、激活和线粒体表型)存在独特的最佳条件。增殖和功能的程度取决于培养基而非刺激条件。此外,如葡萄糖和谷氨酰胺摄取以及葡萄糖同位素标记模式所示,当转换为不同的培养基配方时,扩增的T细胞终产物会调整其代谢。然而,这些代谢表型的采用与T细胞功能无关。在卵巢癌患者腹水中培养的扩增T细胞产物无论扩增培养基如何,均表现出线粒体活性和功能受到抑制。因此,T细胞扩增培养基对代谢和功能有深远影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e48/8897702/6c6073ca6b2f/fx1.jpg

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