Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: UNIPROT:P06126 (CD1a)
2,221 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Ultraviolet (UV) radiation impairs cutaneous immune functions and induces antigen-specific tolerance both locally at the irradiated skin site, as well as at distant skin sites and systemically. It has been postulated that in the local model, altered Langerhans' cells (LC) provide tolerogenic signals, and studies in vitro have indicated that UV radiation may down-regulate the expression of co-stimulatory molecules on the surface of these cells. To examine the effect of UV radiation on LC co-stimulatory molecules in vivo, we irradiated human volunteers with erythematogenic doses of solar-simulating UV radiation (SSR), and analyzed the expression of cell surface markers in dermatome skin samples obtained 1-72 h post-irradiation. For flow cytometric analysis, epidermal cell (EC) suspensions were prepared and double labeled with monoclonal antibodies against CD1a or HLA-DR, and B7-1 (CD80), B7-2 (CD86), ICAM-1 (CD54), ICAM-3 (CD50), LFA-3 (CD58), E-cadherin, or integrin-beta4 (CD104). In unirradiated control skin samples, keratinocytes (KC) expressed high levels of E-cadherin. LC expressed high levels of both E-cadherin and ICAM-3, and low levels of B7-2, LFA-3, ICAM-1, and integrin-beta4. Following SSR, a triphasic reaction pattern was seen: an immediate, down-regulatory phase prevailing 2-6 h post-irradiation, when the number of DR+ and CD1a+ cells were temporarily reduced; a delayed, up-regulatory phase in which the number of LC was increased and the expression intensities of CD1a, HLA-DR, B7-1, and B7-2 were strongly up-regulated, maximally evident 12-24 h after irradiation, but no more seen at 48 h; and a late phase at 72 h, in which an influx of monocytes and a concomitant rise in DR+ cells was recorded. We conclude that to understand real-life cutaneous UV immunology, studies in vitro need to be complemented with studies in vivo. In the case of LC, the effects of erythematogenic UV radiation in vivo on human LC B7 co-stimulatory molecules include an up-regulatory stage.
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PMID:Up-regulation of human epidermal Langerhans' cell B7-1 and B7-2 co-stimulatory molecules in vivo by solar-simulating irradiation. 913 Jun 54

The association between the atopic dermatitis, eczema and T-cell immunodeficiency disorders are well known, thus suggesting that bone marrow T-precursors could use the micro-environment of the skin as an extrathymic site for compensatory ontogenesis. In keeping with this hypothesis, we analyzed the atopic dermatitis skin lymphocytic infiltrate phenotypes to establish their ontogenetic stage of development. Cryostatic sections (4 microns) obtained from acute lesional skin biopsies of six patients with extrinsic atopic dermatitis were processed with indirect immunoperoxidase, using a panel of first-step monoclonal antibodies (mAb) specific to CD104 (integrin beta 4 chain), CD90w (Thy 1 antigen), CD44 (phagocytic glycoprotein-1; Pgp-1), CD1a and the DNA polymerase terminal deoxynucleotidyl transferase (TdT). Within the lymphocytic dermal infiltrate different levels of immunoreactivity were observed with respect to CD104, CD90w and CD1a. A strong, spread staining was also detected for mAb specific to Pgp-1 and TdT. Together, the reported features indicate that the atopic dermatitis skin-homing lymphocytes express immunophenotypes which are distinctive of the early T-ontogeny.
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PMID:Expression of T-lineage early developmental markers by cells establishing atopic dermatitis skin infiltrates. 1002 83

We have recently shown the expression of lymphoid early developmental markers, including CD104, Thy 1, CD1a, Pgp-1 and TdT, by the cells constituting atopic dermatitis skin infiltrates. To further characterize the cellular phenotypes we used an indirect immunoperoxidase assay to analyze sections from two atopic dermatitis lesion skin biopsies using the following as first step monoclonal antibodies (MAB): anti-CD34, CD2, CD5 and CD7. CD34+ mononuclear cells and endothelial cells were identified. A strong immunoreaction was observed for the T-lineage marker CD2 and CD5, but a poor reaction, if any, was seen for the CD7. Since CD34+ marrow and blood cells are currently believed to be the major source of the hemopoietic precursors, our data provide further substantial evidence supporting the hypothesis that the atopic dermatitis skin cell infiltrate represents an ongoing T-lineage in situ differentiation process regulated by the skin epithelial microenvironment. The observed defective expression of the CD7 antigen requires further investigation for its confirmation as a possible constant feature in atopic dermatitis.
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PMID:Hemopoietic progenitor cells in atopic dermatitis skin lesions. 1066 34

Three hundred and seventy six monoclonal antibodies (mAbs) raised against human leukocyte surface antigens were analyzed by flow cytometry for cross reactivities against mink leukocytes. We found 53 mAbs (14%) to cross react. This study defined cross reactions to the following human markers: CD1a, CD9 (4 mAbs), CD10, CD11a (2 mAbs), CD14 (3 mAbs), CD18 (5 mAbs), CD20 (atypical reaction), CD21, CD25 (atypical reaction), CD29 (3 mAbs), CD32, CD41, CD42a, CD44 (4 mAbs), CD45, CD45RO, CD47 (2 mAbs), CD49d (3 mAbs), CD61 (2 mAbs), CD62P, CD66abcd, CD71, CD75s, CD79b (2 mAbs), CD86, CD88, CD104 (atypical reaction), CD172a, CD236R (glycophorin C, (atypical reaction)), Xg(a) carbohydrate antigen, Rhesus antigen and two unspecified PAN-reactive mAbs. In order to characterize the molecular mass of the corresponding cross reacting mink markers, the mAbs were used to immunoprecipitate the surface antigens. Fourteen mAbs out of the 53 mAbs reactive with mink leukocytes gave reproducible IP findings. The masses of the precipitated antigens were generally in good agreement with those of the homologous human markers. We also performed immunohistochemical staining analyses on formalin fixed, paraffin embedded mink tissue from lymph node and spleen, and found 7 out of 22 mAbs to give a positive signal. Generally, the immunohistological analyses resulted in expected staining patterns.
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PMID:Reactivity of monoclonal antibodies to human CD antigens with cells from mink. 1768 85