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1,207
result(s) for
"T-Lymphocytes - ultrastructure"
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Role and Function of T Cell-Derived Exosomes and Their Therapeutic Value
2021
Exosomes are membrane-bound extracellular vesicles that are produced in the endosomal compartment of most eukaryotic cells. Containing proteins, RNA, and DNA, exosomes mediate intercellular communication between different cell types by transferring their contents and thus are involved in numerous physiological and pathological processes. T cells are an indispensable part of adaptive immunity, and the functions of T cell-derived exosomes have been widely studied. In the more than three decades since the discovery of exosomes, several studies have revealed that T cell-derived exosomes play a novel role in cell-to-cell signaling, especially in inflammatory responses, autoimmunity, and infectious diseases. In this review, we will summarize the function of T cell-derived exosomes and their therapeutic potential.
Journal Article
Spread of HTLV-I between Lymphocytes by Virus-Induced Polarization of the Cytoskeleton
by
Stinchcombe, Jane C.
,
Osame, Mitsuhiro
,
Tanaka, Yuetsu
in
Adult T-cell leukemia-lymphoma
,
B lymphocytes
,
Biological and medical sciences
2003
Cell contact is required for efficient transmission of human T cell leukemia virustype 1 (HTLV-I) between cells and between individuals, because naturally infected lymphocytes produce virtually no cell-free infectious HTLV-I particles. However, the mechanism of cell-to-cell spread of HTLV-I is not understood. We show here that cell contact rapidly induces polarization of the cytoskeleton of the infected cell to the cell-cell junction. HTLV-I core (Gag protein) complexes and the HTLV-I genome accumulate at the cell-cell junction and are then transferred to the uninfected cell. Other lymphotropic viruses, such as HIV-1, may similarly subvert normal T cell physiology to allow efficient propagation between cells.
Journal Article
Genome-wide association study of individual differences of human lymphocyte profiles using large-scale cytometry data
by
Nakamura, Naotoshi
,
Tabara, Yasuharu
,
Setoh, Kazuya
in
B-Lymphocytes - classification
,
B-Lymphocytes - immunology
,
B-Lymphocytes - ultrastructure
2021
Human immune systems are very complex, and the basis for individual differences in immune phenotypes is largely unclear. One reason is that the phenotype of the immune system is so complex that it is very difficult to describe its features and quantify differences between samples. To identify the genetic factors that cause individual differences in whole lymphocyte profiles and their changes after vaccination without having to rely on biological assumptions, we performed a genome-wide association study (GWAS), using cytometry data. Here, we applied computational analysis to the cytometry data of 301 people before receiving an influenza vaccine, and 1, 7, and 90 days after the vaccination to extract the feature statistics of the lymphocyte profiles in a nonparametric and data-driven manner. We analyzed two types of cytometry data: measurements of six markers for B cell classification and seven markers for T cell classification. The coordinate values calculated by this method can be treated as feature statistics of the lymphocyte profile. Next, we examined the genetic basis of individual differences in human immune phenotypes with a GWAS for the feature statistics, and we newly identified seven significant and 36 suggestive single-nucleotide polymorphisms associated with the individual differences in lymphocyte profiles and their change after vaccination. This study provides a new workflow for performing combined analyses of cytometry data and other types of genomics data.
Journal Article
A CD8+ NK cell transcriptomic signature associated with clinical outcome in relapsing remitting multiple sclerosis
by
McKinney, Eoin F.
,
Zamvil, Scott S.
,
Smith, Kenneth G. C.
in
45/91
,
631/378/371
,
692/617/375/1666
2021
Multiple sclerosis (MS) is an inflammatory demyelinating disease of the central nervous system (CNS) with the majority of cases characterised by relapsing/remitting (RRMS) attacks of neurologic dysfunction followed by variable resolution. Improving clinical outcomes in RRMS requires both a better understanding of the immunological mechanisms driving recurrent demyelination and better means of predicting future disease course to facilitate early targeted therapy. Here, we apply hypothesis-generating network transcriptomics to CD8
+
cells isolated from patients in RRMS, identifying a signature reflecting expansion of a subset of CD8
+
natural killer cells (NK8
+
) associated with favourable outcome. NK8
+
are capable of regulating CD4
+
T cell activation and proliferation in vitro, with reduced expression of HLA-G binding inhibitory receptors and consequent reduced sensitivity to HLA-G-mediated suppression. We identify surrogate markers of the NK8
+
signature in peripheral blood leucocytes and validate their association with clinical outcome in an independent cohort, suggesting their measurement may facilitate early, targeted therapy in RRMS.
A better understanding of how multiple sclerosis (MS) can relapse and remit is needed for the identification of biomarkers and better therapeutics. Here the authors identify a CD8 + NK cell population in patients with relapsing remitting MS and validate its association with clinical outcome.
Journal Article
In vivo imaging of CD8⁺ T cell-mediated elimination of malaria liver stages
by
Ménard, Robert
,
Mac-Daniel, Laura
,
Kuo, Scot C.
in
adaptive immunity
,
Adaptive immunology
,
Adoptive Transfer
2013
CD8 ⁺ T cells are specialized cells of the adaptive immune system capable of finding and eliminating pathogen-infected cells. To date it has not been possible to observe the destruction of any pathogen by CD8 ⁺ T cells in vivo. Here we demonstrate a technique for imaging the killing of liver-stage malaria parasites by CD8 ⁺ T cells bearing a transgenic T cell receptor specific for a parasite epitope. We report several features that have not been described by in vitro analysis of the process, chiefly the formation of large clusters of effector CD8 ⁺ T cells around infected hepatocytes. The formation of clusters requires antigen-specific CD8 ⁺ T cells and signaling by G protein-coupled receptors, although CD8 ⁺ T cells of unrelated specificity are also recruited to clusters. By combining mathematical modeling and data analysis, we suggest that formation of clusters is mainly driven by enhanced recruitment of T cells into larger clusters. We further show various death phenotypes of the parasite, which typically follow prolonged interactions between infected hepatocytes and CD8 ⁺ T cells. These findings stress the need for intravital imaging for dissecting the fine mechanisms of pathogen recognition and killing by CD8 ⁺ T cells.
Journal Article
3D visualization of HIV transfer at the virological synapse between dendritic cells and T cells
by
Lifson, Jeffrey D.
,
Estes, Jacob D.
,
Lowekamp, Bradley C.
in
3-D technology
,
Abrasion
,
Antigen-presenting cells
2010
The efficiency of HIV infection is greatly enhanced when the virus is delivered at conjugates between CD4⁺ T cells and virus-bearing antigen-presenting cells such as macrophages or dendritic cells via specialized structures known as virological synapses. Using ion abrasion SEM, electron tomography, and superresolution light microscopy, we have analyzed the spatial architecture of cell-cell contacts and distribution of HIV virions at virological synapses formed between mature dendritic cells and T cells. We demonstrate the striking envelopment of T cells by sheet-like membrane extensions derived from mature dendritic cells, resulting in a shielded region for formation of virological synapses. Within the synapse, filopodial extensions emanating from CD4⁺ T cells make contact with HIV virions sequestered deep within a 3D network of surface-accessible compartments in the dendritic cell. Viruses are detected at the membrane surfaces of both dendritic cells and T cells, but virions are not released passively at the synapse; instead, virus transfer requires the engagement of T-cell CD4 receptors. The relative seclusion of T cells from the extracellular milieu, the burial of the site of HIV transfer, and the receptor-dependent initiation of virion transfer by T cells highlight unique aspects of cell-cell HIV transmission.
Journal Article
Telomere length dynamics in human lymphocyte subpopulations measured by flow cytometry
by
Dragowska, Wieslawa
,
Lansdorp, Peter M.
,
Thornbury, Gayle
in
Adult
,
Agriculture
,
Bioinformatics
1998
To measure the average length of telomere repeats at chromosome ends in individual cells we developed a flow cytometry method using fluorescence in situ hybridization (flow FISH) with labeled peptide nucleic acid (PNA) probes. Results of flow FISH measurements correlated with results of conventional telomere length measurements by Southern blot analysis (
R
=0.9). Consistent differences in telomere length in CD8
+
T-cell subsets were identified. Naive and memory CD4
+
T lymphocytes in normal adults differed by around 2.5 kb in telomere length, in agreement with known replicative shortening of telomeres in lymphocytes in vivo. T-cell clones grown in vitro showed stabilization of telomere length after an initial decline and rare clones capable of growing beyond 100 population doublings showed variable telomere length. These results show that flow FISH can be used to measure specific nucleotide repeat sequences in single cells and indicate that the very large replicative potential of lymphocytes is only indirectly related to telomere length.
Journal Article
Metabolic characteristics of CD8+ T cell subsets in young and aged individuals are not predictive of functionality
by
van de Sandt, Carolien E.
,
McConville, Malcolm J.
,
Lam, Wai K.
in
13/31
,
14/19
,
631/250/1619/554/1834/1269
2020
Virtual memory T (T
VM
) cells are antigen-naïve CD8
+
T cells that exist in a semi-differentiated state and exhibit marked proliferative dysfunction in advanced age. High spare respiratory capacity (SRC) has been proposed as a defining metabolic characteristic of antigen-experienced memory T (T
MEM
) cells, facilitating rapid functionality and survival. Given the semi-differentiated state of T
VM
cells and their altered functionality with age, here we investigate T
VM
cell metabolism and its association with longevity and functionality. Elevated SRC is a feature of T
VM
, but not T
MEM
, cells and it increases with age in both subsets. The elevated SRC observed in aged mouse T
VM
cells and human CD8
+
T cells from older individuals is associated with a heightened sensitivity to IL-15. We conclude that elevated SRC is a feature of T
VM
, but not T
MEM
, cells, is driven by physiological levels of IL-15, and is not indicative of enhanced functionality in CD8
+
T cells.
Fatty acid oxidation (FAO) is thought to contribute to high spare respiratory capacity (SRC), which in turn affects CD8
+
T cell function. Here, the authors show that ex vivo virtual memory T cells (and not antigen experienced memory T cells) have high SRC, a metabolic state that it is affected by ageing and IL-15 signalling and not directly by FAO.
Journal Article
Visualizing the innate and adaptive immune responses underlying allograft rejection by two-photon microscopy
by
Albert, Matthew L
,
Bousso, Philippe
,
Celli, Susanna
in
631/1647/328/2057
,
631/250/1854
,
631/250/2152
2011
Whether graft rejection occurs by direct or indirect presentation of antigen is still controversial. However, using a mouse ear skin allograft model and a two-photon intravital imaging approach, Susanna Celli and her colleagues have been able to dissect some of the dynamic processes involved in graft rejection, including early- and late-stage events at the transplant site, as well as intermediate events in the draining lymph node.
Transplant rejection involves a coordinated attack of the innate and the adaptive immune systems of the host. To investigate this dynamic process and the contributions of both donor and host cells, we developed an ear skin graft model suitable for intravital imaging. We found that donor dermal dendritic cells (DCs) migrated rapidly from the graft and were replaced by host CD11b
+
mononuclear cells. The infiltrating host cells captured donor antigen, reached the draining lymph node and cross-primed graft-reactive CD8
+
T cells. Furthermore, we defined the mechanisms by which host T cells target graft cells. We found that primed T cells entered the graft from the surrounding tissue and localized selectively at the dermis-epidermis junction. Later, CD8
+
T cells disseminated throughout the graft and many became arrested. These results provide insights into the antigen presentation pathway and the stepwise progression of CD8
+
T cell activity, thereby offering a framework for evaluating how immunotherapy might abrogate the key steps in allograft rejection.
Journal Article
Transendothelial migration of lymphocytes mediated by intraendothelial vesicle stores rather than by extracellular chemokine depots
2012
Endothelium-presented chemokines are critical for the entry of lymphocytes into tissues. Alon and colleagues show that transendothelial migration, but not adhesion, of effector lymphocytes on inflamed endothelium is dependent on chemokine signals.
Chemokines presented by the endothelium are critical for integrin-dependent adhesion and transendothelial migration of naive and memory lymphocytes. Here we found that effector lymphocytes of the type 1 helper T cell (T
H
1 cell) and type 1 cytotoxic T cell (T
C
1 cell) subtypes expressed adhesive integrins that bypassed chemokine signals and established firm arrests on variably inflamed endothelial barriers. Nevertheless, the transendothelial migration of these lymphocytes strictly depended on signals from guanine nucleotide–binding proteins of the G
i
type and was promoted by multiple endothelium-derived inflammatory chemokines, even without outer endothelial surface exposure. Instead, transendothelial migration–promoting endothelial chemokines were stored in vesicles docked on actin fibers beneath the plasma membranes and were locally released within tight lymphocyte-endothelial synapses. Thus, effector T lymphocytes can cross inflamed barriers through contact-guided consumption of intraendothelial chemokines without surface-deposited chemokines or extraendothelial chemokine gradients.
Journal Article