Zhao Jialin, Han Xuling, Li Helian, Luo Yali, Fang Yan, Wang Yun, Gao Jian, Zhao Yiran, Han Jingxuan, Qian Feng
State Key Laboratory of Genetic Engineering, Shanghai Public Health Clinical Center, Human Phenome Institute, Zhangjiang Fudan International Innovation Center and School of Life Sciences, Fudan University, Shanghai, 200438 China.
Ministry of Education Key Laboratory of Contemporary Anthropology, School of Life Sciences, Fudan University, Shanghai, 200438 China.
Phenomics. 2023 Sep 12;4(1):81-89. doi: 10.1007/s43657-023-00114-0. eCollection 2024 Feb.
The immune system defends the body from infection and plays a vital role in a wide range of health conditions. Metabolism affects a series of physiological processes, including those linked to the function of human immune system. Cellular metabolism modulates immune cell activation and cytokine production. Understanding the relationship between metabolism and immune response has important implications for the development of immune-based therapeutics. However, the deployment of large-scale functional assays to investigate the metabolic regulation of immune response has been limited by the lack of standardized procedures. Here, we present a protocol for the analysis of immune response using standardized whole-blood stimulation with metabolism modulation. Diverse immune stimuli including pattern recognition receptor (PRR) ligands and microbial stimuli were incubated with fresh human whole blood. The metabolic inhibitors were used to modulate metabolic status in the immune cells. The variable immune responses after metabolic interventions were evaluated. We described in detail the main steps involved in the whole-blood stimulation and cytokines quantification, namely, collection and treatment of whole blood, preparation of samples and controls, cytokines detection, and stimulation with metabolic interventions. The metabolic inhibitors for anabolic pathways and catabolic pathways exert selective effects on the production of cytokines from immune cells. In addition to a robust and accurate assessment of immune response in cohort studies, the standardized whole-blood stimulation with metabolic regulation might provide new insights for modulating immunity.
The online version contains supplementary material available at 10.1007/s43657-023-00114-0.
免疫系统保护身体免受感染,并在多种健康状况中发挥至关重要的作用。新陈代谢影响一系列生理过程,包括与人类免疫系统功能相关的过程。细胞代谢调节免疫细胞的激活和细胞因子的产生。了解新陈代谢与免疫反应之间的关系对基于免疫的治疗方法的开发具有重要意义。然而,由于缺乏标准化程序,用于研究免疫反应代谢调节的大规模功能测定方法的应用受到了限制。在此,我们提出了一种使用标准化全血刺激并进行代谢调节来分析免疫反应的方案。将包括模式识别受体(PRR)配体和微生物刺激在内的多种免疫刺激物与新鲜的人类全血一起孵育。使用代谢抑制剂来调节免疫细胞中的代谢状态。评估代谢干预后的不同免疫反应。我们详细描述了全血刺激和细胞因子定量所涉及的主要步骤,即全血的采集和处理、样品和对照的制备、细胞因子检测以及代谢干预刺激。合成代谢途径和分解代谢途径的代谢抑制剂对免疫细胞产生细胞因子具有选择性作用。除了在队列研究中对免疫反应进行强大而准确的评估外,具有代谢调节的标准化全血刺激可能为调节免疫提供新的见解。
在线版本包含可在10.1007/s43657-023-00114-0获取的补充材料。