Eight-color panel for immune phenotype monitoring by flow cytometry

被引:8
作者
Cardoso, Chandra Chiappin [1 ,2 ]
Santos-Silva, Maria Claudia [1 ,2 ,3 ]
机构
[1] Fed Univ Santa Catarina UFSC, Flow Cytometry Serv, Div Clin Anal, Univ Hosp, BR-88040900 Florianopolis, SC, Brazil
[2] Fed Univ Santa Catarina UFSC, Postgrad Program Pharm, BR-88040900 Florianopolis, SC, Brazil
[3] Fed Univ Santa Catarina UFSC, Clin Anal Dept, Hlth Sci Ctr, BR-88040900 Florianopolis, SC, Brazil
关键词
Immune cells; Peripheral blood; Immunophenotyping; Flow cytometry; REGULATORY DENDRITIC CELLS; HUMAN-LEUKOCYTE ANTIGEN; HUMAN PERIPHERAL-BLOOD; EXPRESSING HLA-DR; MEMORY T-CELLS; SUBSET; LYMPHOCYTES; MOLECULES; DIAGNOSIS; PROFILE;
D O I
10.1016/j.jim.2019.03.010
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Flow cytometry (FC) is a fast and highly informative technology that has gained prominence in immune phenotype monitoring. FC standardization is crucial to obtain reliable results that are comparable among laboratories and immune monitoring studies, as this method is influenced by several variables, including equipment, reagents, staining procedures, and pre-analytical and analytical factors. Recent studies have standardized antibody panels and analytical procedures to analyze circulating immune cells in peripheral blood (PB). However, these panels cannot be adapted for laboratories that perform eight-color FC with liquid reagents. The aim of this study was to design and test an eight-color panel, intended to phenotype the main immune cell subsets in PB using liquid reagents and fresh whole blood samples. Samples were collected from healthy individuals recruited from staff and students and from six chemotherapy patients with leukopenia. The antibody panel was designed on the basis of previous studies. Quality controls comprised antibody titration, fluorescence minus one controls, internal controls, and compensation controls. Samples were analyzed by two operators using an eight-color three-laser FACSCanto II flow cytometer (BD Biosciences, USA) and Infinicyt software (Cytognos, Spain). The proposed eight-color panel is composed of six tubes. Analysis of these tubes allowed evaluation of frequencies and classification of various immune cells, such as naive T, central memory T, effector memory T, CDRA(+) effector memory T, activated T, and regulatory T cells; class-switched B, non-switched B, memory B, regulatory B cells, and plasmablasts; myeloid and plasmacytoid dendritic cells, classical and non-classical monocytes; and immature neutrophils. Immunophenotyping of leukocytes using the proposed panel was efficient to correctly differentiate the majority of immune cell subtypes. It is a promising tool to determine the immunological profile of patients in clinical trials and establish associations with disease prognosis, complications, and outcomes.
引用
收藏
页码:40 / 48
页数:9
相关论文
共 50 条
  • [41] Discriminant function analysis as decision support system for the diagnosis of acute leukemia with a minimal four color screening panel and multiparameter flow cytometry immunophenotyping
    Ratei, R.
    Karawajew, L.
    Lacombe, F.
    Jagoda, K.
    Del Poeta, G.
    Kraan, J.
    De Santiago, M.
    Kappelmayer, J.
    Bjorklund, E.
    Ludwig, W-D
    Gratama, J. W.
    Orfao, A.
    LEUKEMIA, 2007, 21 (06) : 1204 - 1211
  • [42] The use of flow cytometry in the diagnosis and monitoring of malignant hematological disorders
    Ward, MS
    PATHOLOGY, 1999, 31 (04) : 382 - 392
  • [43] Sepsis-Induced Immune Alterations Monitoring by Flow Cytometry as a Promising Tool for Individualized Therapy
    Monneret, Guillaume
    Venet, Fabienne
    CYTOMETRY PART B-CLINICAL CYTOMETRY, 2016, 90 (04) : 376 - 386
  • [44] Clinical validation of a 10-color flow cytometry panel to detect measurable residual disease in acute myeloid leukemia
    Ikoma-Colturato, Maura R. V.
    Severino, Alef Rafael
    Tosi, Juliana Fernanda dos Santos
    Bertolucci, Camila Marques
    Cuoco, Yeda Midori Nakamura
    de Mattos, Ederson Roberto
    Colturato, Iago
    Silva, Fernanda Barbieri Rodrigues
    de Souza, Mair Pedro
    Simione, Anderson Joao
    Colturato, Vergilio Antonio Rensi
    LEUKEMIA RESEARCH, 2024, 140
  • [45] Application of Flow Cytometry for Early Diagnosis and Monitoring in Cats with Immune-mediated Hemolytic Anemia
    Limlenglert, Parkorn
    Rungsipipat, Anudep
    Pusoonthornthum, Rosama
    THAI JOURNAL OF VETERINARY MEDICINE, 2011, 41 (02): : 185 - 191
  • [46] Characterization of Immune Cells in Human Adipose Tissue by Using Flow Cytometry
    Wetzels, Suzan
    Bijnen, Mitchell
    Wijnands, Erwin
    Biessen, Erik A. L.
    Schalkwijk, Casper G.
    Wouters, Kristiaan
    JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2018, (133):
  • [47] OMIP-098: A 26 parameter, 24 color flow cytometry panel for human memory NK cell phenotyping
    Creegan, Matthew
    Degler, Justin
    Paquin-Proulx, Dominic
    Eller, Michael A.
    Machmach, Kawthar
    CYTOMETRY PART A, 2023, 103 (12) : 941 - 946
  • [48] OMIP-105: A 30-color full-spectrum flow cytometry panel to characterize the immune cell landscape in spleen and tumor within a syngeneic MC-38 murine colon carcinoma model
    DeNiro, Gabriel
    Que, Kathryn
    Fujimoto, Trevor
    Koo, Soo Min
    Schneider, Bridget
    Mukhopadhyay, Anandaroop
    Kim, Jeong
    Sawant, Anandi
    Nguyen, Tuan Andrew
    CYTOMETRY PART A, 2024, 105 (09) : 659 - 665
  • [49] Evaluation of a 10color protocol as part of a 2tube screening panel for flow cytometric assessment of peripheral blood leukocytic subsets
    Gounari, Evdoxia
    Tsavdaridou, Vasiliki
    Ioakeimidou, Aliki
    Haidich, Anna-Bettina
    Skoura, Lemonia
    SCANDINAVIAN JOURNAL OF CLINICAL & LABORATORY INVESTIGATION, 2019, 79 (07) : 475 - 483
  • [50] OMIP-050: A 28-color/30-parameter Fluorescence Flow Cytometry Panel to Enumerate and Characterize Cells Expressing a Wide Array of Immune Checkpoint Molecules
    Nettey, Leonard
    Giles, Amber J.
    Chattopadhyay, Pratip K.
    CYTOMETRY PART A, 2018, 93A (11) : 1094 - 1096