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用于全血细胞裂解物和上清液生物标志物分析以及纯全血培养物中病原体反应的多重免疫测定。

Multiplex Immunoassay for Biomarker Profiling of Whole Blood Cell Lysates and Supernatants and Pathogen Response in Neat Whole Blood Cultures.

作者信息

Balan Irina, Lopez Alejandro G, Morrow A Leslie

机构信息

Bowles Center for Alcohol Studies, School of Medicine, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

Department of Psychiatry, School of Medicine, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

Methods Protoc. 2025 May 1;8(3):46. doi: 10.3390/mps8030046.

Abstract

Replicating in vivo conditions is essential for understanding immune responses and measuring immune biomarkers in blood. Sampling immune biomarkers in plasma or serum often fails to detect disease-relevant signals, possibly because these markers are sequestered in immune cells or extracellular vesicles. Furthermore, traditional whole blood cultures using external media may not accurately mimic the physiological environment of blood cells. To address these limitations, we developed a strategy using whole blood cell lysates and supernatants to optimize biomarker detection. Additionally, we employed neat whole blood culture methods, preserving the natural cellular and biochemical environment to assess sensitivity to immune modulators, such as lipopolysaccharide (LPS). This cost-effective approach minimizes variability and contamination risks. By utilizing Luminex multiplex immunoassays, we profiled immune biomarkers with higher sensitivity and efficiency than traditional ELISAs. Blood samples from individuals with high alcohol consumption validated our method by assessing biomarker levels before and after LPS stimulation, providing insights into intracellular responses and inflammatory pathways. This method enhances our understanding of inflammatory processes in blood cells, demonstrating the advantages of cell lysates, supernatants, and advanced multiplex assays in immunological research.

摘要

在体内条件下进行复制对于理解免疫反应和测量血液中的免疫生物标志物至关重要。在血浆或血清中采样免疫生物标志物往往无法检测到与疾病相关的信号,这可能是因为这些标志物被隔离在免疫细胞或细胞外囊泡中。此外,使用外部培养基的传统全血培养可能无法准确模拟血细胞的生理环境。为了解决这些局限性,我们开发了一种使用全血细胞裂解物和上清液来优化生物标志物检测的策略。此外,我们采用纯全血培养方法,保留天然的细胞和生化环境,以评估对免疫调节剂(如脂多糖 (LPS))的敏感性。这种经济高效的方法最大限度地减少了变异性和污染风险。通过使用Luminex多重免疫测定,我们对免疫生物标志物的分析比传统ELISA具有更高的灵敏度和效率。高酒精摄入量个体的血液样本通过评估LPS刺激前后的生物标志物水平验证了我们的方法,为细胞内反应和炎症途径提供了见解。这种方法增强了我们对血细胞炎症过程的理解,证明了细胞裂解物、上清液和先进的多重测定在免疫学研究中的优势。

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