AUTHOR=Rocha-Hasler Marianne , Müller Lena , Wagner Anja , Tu Aldine , Stanek Victoria , Campion Nicholas James , Bartosik Tina , Zghaebi Mohammed , Stoshikj Slagjana , Gompelmann Daniela , Zech Andreas , Mei Henrik , Kratochwill Klaus , Spittler Andreas , Idzko Marco , Schneider Sven , Eckl-Dorna Julia TITLE=Using mass cytometry for the analysis of samples of the human airways JOURNAL=Frontiers in Immunology VOLUME=13 YEAR=2022 URL=https://www.frontiersin.org/journals/immunology/articles/10.3389/fimmu.2022.1004583 DOI=10.3389/fimmu.2022.1004583 ISSN=1664-3224 ABSTRACT=
Mass cytometry (MC) is a powerful method for mapping complex cellular systems at single-cell levels, based on the detection of cellular proteins. Numerous studies have been performed using human blood, but there is a lack of protocols describing the processing and labeling of bronchoalveolar lavage fluid (BALF) and nasal polyps (NP) for acquisition by MC. These specimens are essential in the investigation of immune cell characteristics in airway diseases such as asthma and chronic rhinosinusitis with NP (CRSwNP). Here we optimized a workflow for processing, labeling, and acquisition of BALF and NP cells by MC. Among three methods tested for NP digestion, combined enzymatic/mechanical processing yielded maximum cell recovery, viability and labeling patterns compared to the other methods. Treatment with DNAse improved sample acquisition by MC. In a final step, we performed a comparison of blood, BALF and NP cell composition using a 31-marker MC antibody panel, revealing expected differences between the different tissue but also heterogeneity among the BALF and NP samples. We here introduce an optimized workflow for the MC analysis of human NP and BALF, which enables comparative analysis of different samples in larger cohorts. A deeper understanding of immune cell characteristics in these samples may guide future researchers and clinicians to a better disease management.