High-sensitivity immunofluorescence for detection of the pro- and anti-inflammatory cytokines gamma interferon and interleukin-10 on the surface of cytokine-secreting cells.
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Biomedical subjects
Publications and source records attributed to A Scheffold.
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Flow cytometry is the method of choice for the analysis of single cells with respect to the expression of specific antigens. Antigens can be detected with specific antibodies either on the cell surface or within the cells, after fixation and permeabilization of the cell membrane. Using conventional fluorochrome-labeled antibodies several thousand antigens are required for clear-cut separation of positive and negative cells. More sensitive reagents, e.g., magnetofluorescent liposomes conjugated to specific antibodies permit the detection of less than 200 molecules per cell but cannot be used for the detection of intracellular antigens. Here, we describe an enzymatic amplification technique (intracellular tyramine-based signal amplification, ITSA) for the sensitive cytometric analysis of intracellular cytokines by immunofluorescence. This approach results in a 10 to 15-fold improvement of the signal-to-noise ratio compared to conventional fluorochrome labeled antibodies and permits the detection of as few as 300-400 intracellular antigens per cell.
BACKGROUND: The development of immature thymocytes is regulated by the pre-T-cell receptor (pre-TCR). The pre-TCR is involved in several developmental processes including rescuing cells from programmed cell death, allelic exclusion and alphabeta versus gammadelta T-cell lineage commitment. A major issue is how the pre-TCR functions to integrate these processes in developing thymocytes. RESULTS: We have used a sensitive immunofluorescence technique to reveal the surface-expression profile of the pre-TCR on immature thymocyte subsets. We show that early pre-T cells (CD25(+)CD44(-)) can be subdivided on the basis of the level of surface pre-TCR expression. Detectable surface pre-TCR expression identified a rapidly cycling population of early pre-T cells which had successfully undergone beta-selection and been rescued from programmed cell death. Late pre-T cells (CD25(-)CD44(-)), which had traversed the beta-selection checkpoint, expressed surprisingly heterogeneous surface levels of the pre-TCR: high levels of surface pre-TCR expression were associated with commitment to the alphabeta T-cell lineage, whereas late pre-T cells with lower levels of surface pre-TCR could develop along both the alphabeta or gammadelta T-cell lineages. CONCLUSIONS: These data demonstrate that the surface expression of the pre-TCR can be used to reveal newly identified stages of T-cell development and to provide insights into alphabeta T-cell lineage commitment. They show that, although pre-TCR expression does not act as a developmental switch per se, its level of surface expression on late pre-T cells predicts their developmental potential.
The purpose of this report is to demonstrate the expression of very recently identified surface antigens on CD34+ and AC133+ bone marrow (BM) cells. Coexpression analysis of AC133 and defined antigens on CD34+ BM cells revealed that the majority of the CD164+, CD135+, CD117+, CD38low, CD33+, and CD71low cells resides in the AC133+ population. In contrast, most of the CD10+ and CD19+ B cell progenitors and a fraction of the CD71high population are AC133-, indicating that CD34+AC133+ cells are enriched in primitive and myeloid progenitor cells, whereas CD34+AC133- cells mainly consist of B cell and late erythroid progenitors. This corresponds to the highly reduced percentage of CD10+ B cells and the absence of CD71high erythroid progenitors on AC133+ selected BM cells. A portion of 0.2-0.7% of the AC133+ selected cells do not coexpress CD34. These cells are very small and define a uniform CD71-, CD117-, CD10-, CD38low, CD135+, HLA-DRhigh, CD45+ population with unknown delineation. Four color analysis on CD34+CD38- BM cells revealed that virtually all of these primitive cells express AC133. Using an improved liposome-enhanced labeling technique for the staining of weakly expressed antigens, subsets of this population could be identified which express the angiopoietin receptors TIE (67.6%) and TEK (36.8%), the vascular endothelial growth factor receptors FLT1 (7%), FLT4 (3.2%), and KDR (10.4%), or the receptor tyrosine kinases HER-2 (15.4%) and FLT3 (CD135; 77.6%). Our results suggest that the CD34+CD38- population is heterogeneous with respect to the expression of the analyzed receptor tyrosine kinases.
Commitment of Th lymphocytes to the Th1 phenotype, as characterized by the expression of the major proinflammatory cytokine IFN-gamma, may be critically involved in the establishment of chronic inflammation and inflammatory autoimmune disease. To date, it has been shown that in IL-12-stimulated murine Th cell lines containing a major fraction of Th1 cells, Th2 cells can be induced by IL-4 until about 2 wk after initial activation, but not later. Here we analyze, based on the magnetic isolation of viable Th1 cells according to their specific expression of IFN-gamma, the cytokine commitment of individual Th1 cells. After activation of naive Th cells with Ag and IL-12 for up to 5 wk, isolated IFN-gamma-producing cells were restimulated with Ag and IL-4. Within the first 3 to 4 wk of IL-12 stimulation, some IFN-gamma+ cells stopped expression of IFN-gamma when restimulated with IL-4. However, within only 1 to 2 wk of IL-12 stimulation, few IFN-gamma+ cells could be converted to produce IL-4. Others continued to express IFN-gamma and thus were already committed to a proinflammatory, Th1-like phenotype. Surprisingly, within 3 wk of IL-12 stimulation, many of the IFN-gamma-producing cells responded to IL-4 restimulation by expression of IL-10, but neither IFN-gamma nor IL-4, i.e., by conversion to a suppressive, anti-inflammatory phenotype.
Upon primary activation, T helper (Th) cell populations express different cytokines transiently and with different kinetics. Stimulation of naive murine splenic Th cells with the bacterial superantigen Staphylococcus aureus enterotoxin B (SEB) in vitro results in expression of IL-2, IFN-gamma and IL-10 with fast, intermediate and slow kinetics, respectively. This first report of a functional analysis of cells separated alive according to cytokine expression shows that these cytokines are not produced by different Th cell subpopulations, but can be expressed sequentially by individual Th cells. Th cells, activated with SEB for 1 day and isolated according to expression of IL-2, using the cellular affinity matrix technology, upon continued stimulation with SEB later secrete most of the IFN-gamma and IL-10. Likewise, after 2 days of SEB culture, cells expressing IFN-gamma, separated according to specific surface-associated IFN-gamma as detected by magnetofluorescent liposomes, 1 day later secrete IL-10. Thus, individual Th1 cells can contribute to the control of their own IFN-gamma expression by sequential expression of first IL-2, supporting their proliferation, and later IL-10, down-regulating the production of IFN-gamma-inducing monokines and limiting the pro-inflammatory effects of IFN-gamma.
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Functional distinct populations of T helper cells can be defined according to the expression of cytokines. A remarkable diversity of cytokine expression has been demonstrated in single T cells even from clonal populations and up to now no stable surface markers have been described which on the single-cell level directly correlate with the secretion of a certain cytokine. Since cytokines are the major parameters of T cell effector function we have developed strategies which now allow to separate cells according to the specific cytokines they secrete. The "affinity matrix technology"--secreted molecules are relocated to the cell surface by an artificially created antibody matrix--allows to isolate cells according to a distinct secreted product. In addition to this universal, but laborious technology, we could demonstrate by high-sensitivity immunofluorescence that IFN-gamma and IL-10 but not IL-2 and IL-4 are specifically expressed in low copy number on the surface of cells secreting these cytokines. Surface IFN-gamma and IL-10 are the first unambiguous surface markers for pro-inflammatory IFN-gamma-secreting Th 0/1 cells and IL-10-producing anti-inflammatory Th2/3 cells. We have used purified cytokine-secreting T cells to study in individual T cells the sequential production of IL-2, IFN-gamma, and IL-10, the stability of IFN-gamma expression and the selective homing of IFN-gamma-producing cells into inflamed tissues.
When activated, T helper cells differentiate into one of two subsets, Th1 and Th2, characterized by distinct profiles of cytokine production. Th1 cells activate pro-inflammatory effector mechanisms involved in protection and autoimmunity, whereas Th2 cells induce humoral and allergic responses and downregulate local inflammation. Apart from differences in the repertoire of cytokines, no phenotypic attributes are established that distinguish the two subsets. Here we show that Th1 cells, but not Th2 cells, are able to bind to P-selectin and E-selectin. Moreover, only Th1 cells can efficiently enter inflamed sites in Th1-dominated models, such as sensitized skin or arthritic joints, but not in a Th2-dominated allergic response. Immigration of Th1 cells into inflamed skin can be blocked by antibodies against P- and E-selectin. These results provide evidence for adhesion mechanisms to distinguish between the two T helper subsets and mediate their differential trafficking. They indicate that selective recruitment is an additional level of regulation for both effector function profile and character of a local immune response.
Interferon (IFN)-gamma is a potent immunoregulatory protein secreted by CD4+ and CD8+ T cells and by natural killer cells. Here, we show that IFN-gamma is specifically displayed at a low concentration on the cell surface of those activated T cells from mouse and man which express IFN-gamma. It is transiently expressed on the cell surface with kinetics similar to those of intracellular IFN-gamma expression. Detectable surface IFN-gamma is not expressed by activated T helper (Th) cells producing other cytokines but which do not express IFN-gamma. Thus, surface IFN-gamma is the first available marker for live T lymphocytes expressing IFN-gamma, e.g. Th1 cells.
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BACKGROUND: Immunofluorescence and immunomagnetism are important technologies for analysis and sorting of cells according to specific marker molecules. Due to the limited sensitivity at least several thousands of antigens per cell are required for optical detection. Molecules expressed at low copy numbers cannot be analysed, although they may be of considerable functional importance. OBJECTIVES: Development of a magnetic and fluorescent staining reagent for analysis and sorting of cells according to antigens expressed at low number. To this end, uniformly sized, antibody-conjugated liposomes loaded with large amounts of dye molecules and small magnetic particles were generated. STUDY DESIGN: A method for the preparation of homogeneously sized large unilamellar liposomes which contain carboxyfluorescein, magnetic particles and surface-bound antibodies had to be developed. These liposomes were then tested for their ability to enhance immunofluorescence compared to conventional staining in a model system and by staining of CD25 on resting B and T cells. RESULTS AND CONCLUSION: Large unilamellar liposomes, homogeneous in size and loaded with fluorescein and magnetic beads can be prepared by combining membrane extrusion and magnetic filtration. Hapten-specific antibodies conjugated to their surface make them a universal tool for immunofluorescence. With such liposomes, intensity of fluorescent staining can be increased 100-1000-fold without increased background fluorescence, compared to conventional fluorochrome-conjugated antibodies. Due to the simultaneous magnetic labelling, stained cells can easily be isolated by MACS. The magnetofluorescent liposomes proved to be useful for improvement of sensitivity of detection and physical separation in general and to visualize and sort cells according to antigens expressed at low levels. The high affinity IL2 receptor CD25 is expressed in low copy number on a significant fraction of resting B and T lymphocytes in human peripheral blood, as can be shown exclusively by the magnetofluorescent liposomes.