1.The consensus of Chinese experts on refined analysis of immune cell subsets in peripheral blood by multi-parameter flow cytometry.
Chinese Journal of Preventive Medicine 2023;57(11):1729-1747
The detection of immune cell subsets plays a very important role in the clinical diagnosis and treatment of various benign and malignant diseases and health management. In order to better carry out in-depth research on different functional immune cell subsets, establish reference intervals for clonality related indicators, establish special reference intervals for immune aging, individualized dynamic monitoring and treatment recovery, and discover the clinical significance of immune cells other than lymphocytes, it is urgent to analyze the peripheral blood immune cell subsets in a refined way. Multiparameter flow cytometry is an important technical method to detect immune cell subsets and evaluate immune function. In order to standardize the refined detection methods and protocols of peripheral blood immune cell subsets by flow cytometry, and further promote its application in clinical diagnosis and treatment of diseases and health management, Laboratory Medicine Committee of Chinese Association of Integrative Medicine (LMC-CAIM) organized experts to formulate this expert consensus.
Humans
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Consensus
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East Asian People
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Flow Cytometry/methods*
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Immune System/cytology*
2.A human circulating immune cell landscape in aging and COVID-19.
Yingfeng ZHENG ; Xiuxing LIU ; Wenqing LE ; Lihui XIE ; He LI ; Wen WEN ; Si WANG ; Shuai MA ; Zhaohao HUANG ; Jinguo YE ; Wen SHI ; Yanxia YE ; Zunpeng LIU ; Moshi SONG ; Weiqi ZHANG ; Jing-Dong J HAN ; Juan Carlos Izpisua BELMONTE ; Chuanle XIAO ; Jing QU ; Hongyang WANG ; Guang-Hui LIU ; Wenru SU
Protein & Cell 2020;11(10):740-770
Age-associated changes in immune cells have been linked to an increased risk for infection. However, a global and detailed characterization of the changes that human circulating immune cells undergo with age is lacking. Here, we combined scRNA-seq, mass cytometry and scATAC-seq to compare immune cell types in peripheral blood collected from young and old subjects and patients with COVID-19. We found that the immune cell landscape was reprogrammed with age and was characterized by T cell polarization from naive and memory cells to effector, cytotoxic, exhausted and regulatory cells, along with increased late natural killer cells, age-associated B cells, inflammatory monocytes and age-associated dendritic cells. In addition, the expression of genes, which were implicated in coronavirus susceptibility, was upregulated in a cell subtype-specific manner with age. Notably, COVID-19 promoted age-induced immune cell polarization and gene expression related to inflammation and cellular senescence. Therefore, these findings suggest that a dysregulated immune system and increased gene expression associated with SARS-CoV-2 susceptibility may at least partially account for COVID-19 vulnerability in the elderly.
Adult
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Aged
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Aged, 80 and over
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Aging
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genetics
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immunology
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Betacoronavirus
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CD4-Positive T-Lymphocytes
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metabolism
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Cell Lineage
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Chromatin Assembly and Disassembly
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Coronavirus Infections
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immunology
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Cytokine Release Syndrome
;
etiology
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immunology
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Cytokines
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biosynthesis
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genetics
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Disease Susceptibility
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Flow Cytometry
;
methods
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Gene Expression Profiling
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Gene Expression Regulation, Developmental
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Gene Rearrangement
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Humans
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Immune System
;
cytology
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growth & development
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immunology
;
Immunocompetence
;
genetics
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Inflammation
;
genetics
;
immunology
;
Mass Spectrometry
;
methods
;
Middle Aged
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Pandemics
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Pneumonia, Viral
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immunology
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Sequence Analysis, RNA
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Single-Cell Analysis
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Transcriptome
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Young Adult
3.Romance of the three kingdoms: RORgammat allies with HIF1alpha against FoxP3 in regulating T cell metabolism and differentiation.
Andy TSUN ; Zuojia CHEN ; Bin LI
Protein & Cell 2011;2(10):778-781
Regulatory T (Treg) cells play an essential role in immune homeostasis by controlling the function of various immune effector cells, including RAR-related orphan receptor gammat(+) (RORγt(+)) T helper 17 (Th17) cells. Foekhead box P(3) (FoxP(3)) is the master regulator of Treg cell function, while RORγt is the key transcription factor for the induction of the interleukin (IL)-17 family of cytokines during Th17 cell differentiation. FoxP3 can directly interact with and negatively regulate the function of RORγt, to determine the balance between induced Treg (iTreg) and Th17 cell polarization. Two recent independent studies from the Pan and Chi Labs have shown how hypoxia-inducible factor 1 alpha (HIF1α) is able to tip the balance of T cell differentiation toward the Th17 lineage by responding to the local changes in metabolic shift or an increase in proinflammatory mediators in the microenvironment. By allying with HIF1α, RORγt wins the fight against FoxP3 and Treg cell commitment.
Animals
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Cell Differentiation
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Forkhead Transcription Factors
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metabolism
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Gene Expression Regulation
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Humans
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Hypoxia-Inducible Factor 1, alpha Subunit
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metabolism
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Immune System
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cytology
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metabolism
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Nuclear Receptor Subfamily 1, Group F, Member 3
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metabolism
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T-Lymphocytes, Regulatory
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metabolism
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physiology
4.Mast Cells in Allergic Asthma and Beyond.
Sebastian REUTER ; Michael STASSEN ; Christian TAUBE
Yonsei Medical Journal 2010;51(6):797-807
Mast cells have been regarded for a long time as effector cells in IgE mediated type I reactions and in host defence against parasites. However, they are resident in all environmental exposed tissues and express a wide variety of receptors, suggesting that these cells can also function as sentinels in innate immune responses. Indeed, studies have demonstrated an important role of mast cells during the induction of life-saving antibacterial responses. Furthermore, recent findings have shown that mast cells promote and modulate the development of adaptive immune responses, making them an important hinge of innate and acquired immunity. In addition, mast cells and several mast cell-produced mediators have been shown to be important during the development of allergic airway diseases. In the present review, we will summarize findings on the role of mast cells during the development of adaptive immune responses and highlight their function, especially during the development of allergic asthma.
Animals
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Anti-Infective Agents/pharmacology
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Asthma/*immunology/metabolism
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Cytokines/metabolism
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Histamine/metabolism
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Humans
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Hypersensitivity/*immunology/metabolism
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Immune System
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Immunoglobulin E/immunology
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Leukotrienes/metabolism
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Mast Cells/*cytology
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Mice
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Models, Biological
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Prostaglandins/metabolism
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Tumor Necrosis Factor-alpha/metabolism
5.Mechanism of Humoral and Cellular Immune Modulation Provided by Porcine Sertoli Cells.
Hak Mo LEE ; Byoung Chol OH ; Dong Pyo LIM ; Dong Sup LEE ; Hong Gook LIM ; Chun Soo PARK ; Jeong Ryul LEE
Journal of Korean Medical Science 2008;23(3):514-520
The understanding of main mechanisms that determine the ability of immune privilege related to Sertoli cells (SCs) will provide clues for promoting a local tolerogenic environment. In this study, we evaluated the property of humoral and cellular immune response modulation provided by porcine SCs. Porcine SCs were resistant to human antibody and complement-mediated formation of the membrane attack complex (38.41+/-2.77% vs. 55.02+/-5.44%, p=0.027) and cell lysis (42.95+/-1.75% vs. 87.99 +/-2.25%, p<0.001) compared to immortalized aortic endothelial cells, suggesting that porcine SCs are able to escape cellular lysis associated with complement activation by producing one or more immunoprotective factors that may be capable of inhibiting membrane attack complex formation. On the other hand, porcine SCs and their culture supernatant suppressed the up-regulation of CD40 expression (p<0.05) on DCs in the presence of LPS stimulation. These novel findings, as we know, suggest that immune modulatory effects of porcine SCs in the presence of other antigen can be obtained from the first step of antigen presentation. These might open optimistic perspectives for the use of porcine SCs in tolerance induction eliminating the need for chronic immunosuppressive drugs.
Animals
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Antibodies, Heterophile/immunology
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Antibody Formation/*immunology
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Antigens, CD40/immunology
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Aorta/cytology
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Cell Line, Transformed
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Cell Survival/immunology
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Complement Membrane Attack Complex/immunology
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Complement System Proteins/immunology
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Dendritic Cells/cytology/immunology
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Endothelial Cells/cytology/immunology
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Epitopes/immunology
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Humans
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Immune Tolerance/*immunology
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Immunity, Cellular/*immunology
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Male
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Mice
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Mice, Inbred C57BL
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Sertoli Cells/cytology/*immunology
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Swine
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*Tissue Engineering
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Transplantation, Heterologous
6.Cloning, expression, and antibody preparation of nestin with immunohistochemical analysis.
Xin-lin CHEN ; Yong LIU ; Xin-li XIAO ; Jin ZHANG ; Hai-xia LÜ ; Peng-bo ZHANG ; Jian-xin LIU ; Jian-jun ZHAO
Journal of Southern Medical University 2006;26(2):196-200
OBJECTIVETo obtain recombinant nestin and prepare anti-nestin polyclonal antibody (mAb) to explore the biological roles of nestin in the central nervous system development.
METHODSThe nestin cDNA was cloned from human neural stem cells by RT-PCR and ligated to prokaryotic expression plasmid pQE30 for construction of the recombinant vector pQE30-nestin. After sequencing, the recombinant vector was transformed into E.coli M15 and His-tagged nestin was induced by IPTG. The nestin was purified by Ni-NTA affinity chromatography column and characterized by SDS-PAGE and Western blotting. BALB/c mice were immunized with the purified recombinant protein to prepare the antiserum, which was analyzed by Western blotting, enzyme-linked immunosorbent assay (ELISA) and immunohistochemistry.
RESULTSThe nestin gene was successfully cloned from human neural stem cells, which was identical to that reported in GenBank. After IPTG induction, the E.coli transformed with pQE30-nestin plasmid expressed a 25,000 His-tagged protein, which was successfully purified and identified as nestin by Western blotting. Western blotting, ELISA and immunohistochemistry demonstrated that the antiserum could specifically bind to the recombinant nestin as well as to nestin in fetal human and rat brains.
CONCLUSIONWe successfully cloned the nestin gene and expressed the nestin, and nestin mAb prepared can specifically recognize not only the recombinant nestin, but also nestin from human and rats brain tissues.
Adult Stem Cells ; cytology ; metabolism ; Animals ; Antibodies, Monoclonal ; immunology ; isolation & purification ; Blotting, Western ; Cloning, Molecular ; Electrophoresis, Polyacrylamide Gel ; Enzyme-Linked Immunosorbent Assay ; Gene Expression ; Humans ; Immune Sera ; immunology ; Immunohistochemistry ; Intermediate Filament Proteins ; biosynthesis ; genetics ; immunology ; Mice ; Mice, Inbred BALB C ; Nerve Tissue Proteins ; biosynthesis ; genetics ; immunology ; Nervous System ; cytology ; metabolism ; Nestin ; Recombinant Proteins ; biosynthesis ; immunology ; Reverse Transcriptase Polymerase Chain Reaction

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