PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Hypersensitivity, Delayed”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 55 records · Page 3Linked to original sources

Loss of cutaneous delayed hypersensitivity reactions in nevus anemicus. Evidence for close concordance of cutaneous delayed hypersensitivity and endothelial E-selectin expression.

BACKGROUND: The relationship of adhesion molecules in the dermis to immunologically mediated cutaneous inflammation can be understood by focusing on a serendipitous phenomenon: a lack of dermatitis within the margins of a nevus anemicus (NA) in generalized contact dermatitis. The expression and induction of endothelial and epithelial adhesion molecules with intradermally injected cytokines were investigated. OBSERVATIONS: Nevus anemicus without dermatitis lacked histopathological changes consistent with inflammatory cellular infiltration. The surrounding skin of the dermatitic lesion expressed HLA-DR, intercellular adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule 1, and E-selectin on endothelial cells, and HLA-DR and ICAM-1 in the epidermis. However, the skin of the NA lacked endothelial E-selectin and epidermal HLA-DR and ICAM-1 expression. Interferon gamma, injected intradermally, induced endothelial and epidermal HLA-DR and ICAM-1 expression in the NA and surrounding normal skin. While interferon gamma strongly induced E-selectin expression on endothelial cells in normal skin, it failed to induce endothelial E-selectin expression in the NA. CONCLUSIONS: This study suggests that vessels in the NA do not respond normally to proinflammatory cytokines, at least at the level of E-selectin expression. The absence of keratinocyte ICAM-1 and HLA-DR expression in the NA lesion in contact dermatitis is likely caused by the absence of infiltrating lymphocytes, rather than by the intrinsic unresponsiveness of keratinocytes to interferon gamma. Among the endothelial cell adhesion molecules in delayed hypersensitivity, E-selectin appears to be indispensable in recruiting circulating T lymphocytes to the skin.

Antigens, CD↗

Evaluation of immunity to feline infectious peritonitis in cats with cutaneous viral-induced delayed hypersensitivity.

Delayed-type hypersensitivity (DTH)-like reactions to feline infectious peritonitis (FIP) virus (FIPV) were induced in the skin of nine cats that were asymptomatic after a previous challenge-exposure with FIPV. Four of the nine previously challenge-exposed cats were negative for virus-neutralizing antibodies against FIPV at the time of intradermal (ID) testing for DTH. Two other cats tested for DTH when acutely ill with clinical FIP did not have cutaneous DTH responses to FIPV. Gross skin reactions to FIPV injected ID were observed in six of nine asymptomatic cats (67%) at postintradermal inoculation hours (PIH) 24, 48, and/or 72. The reactions consisted of focal, 1-5-mm to 2.5-cm diameter indurated or semi-firm, nonerythematous, slightly raised nodules. Microscopically, DTH-like reactions were observed in biopsies taken from the FIPV-inoculated skin of asymptomatic cats at PIH 24 to 72. The lesions consisted of perivascular and diffuse dermal infiltrations by macrophages, lymphocytes, and polymorphonuclear leukocytes (PMN). The dermal infiltrates, which were maximal at PIH 48 or 72, were predominantly mixed inflammatory cells (five of nine cats) or PMN (four of nine cats) at PIH 24, but later were predominantly mononuclear cells (six of nine cats) or mixed inflammatory cells (two of nine cats) at PIH 72. Five of nine cats (56%) with positive DTH skin responses had increased survival times after lethal ID challenge-exposure with FIPV compared to mean survival times in FIPV-naive, non-immune control cats that were DTH-negative when ID challenge-exposed. Four of nine DTH-positive cats (44%) resisted an ID challenge-exposure dose of FIPV that was fatal in both control cats, and two of the four remaining DTH-positive cats survived a third challenge-exposure with highly lethal doses of FIPV given intraperitoneally. Four of the six DTH-positive cats (67%) that died after re-challenge and were necropsied had lesions of noneffusive FIP, suggesting that cellular immunity may also be involved in the pathogenesis of noneffusive disease, whereas both control cats and both DTH-negative cats with clinical disease succumbed to effusive FIP. Seemingly, DTH responses to FIPV can be associated with an increased level of resistance to disease; however, this state of immunity is variable and apparently can be lost with time in some cats.

Animals↗

Delayed hypersensitivity reactions provoked by ribosomes from acid-fast bacilli. I. Ribosomal isolation, characterization, delayed hypersensitivity, and specificity.

Ribosomes and ribosomal subunits of Mycobacterium bovis (strain BCG) and M. smegmatis have been isolated and employed as skin test antigens in guinea pigs sensitized with homologous or heterologous organisms. Ribosomes and ribosomal subunits were found to be potent antigens for skin test purposes, and the 30S subunits were found to be more specific and active than the 50S subunits.

Animals↗

IN VITRO STUDIES OF CELLULAR HYPERSENSITIVITY. II. RELATIONSHIP OF DELAYED HYPERSENSITIVITY AND INHIBITION OF CELL MIGRATION BY PICRYLATED PROTEINS.

Some characteristics of inhibition of cell migration induced in tissue culture by the addition of specific antigen were studied. The following characteristics were found to be shared by this type of cellular hypersensitivity and delayed cutaneous sensitivity: 1. Specificity for the carrier moiety of haptene protein conjugates. The picryl protein conjugate used to sensitize guinea pigs inhibited migration of monocytic cells from these animals. Other picrylated proteins produced little inhibition. 2. Enhancement by mycobacterial adjuvants. Incorporation of tubercle bacilli with picrylated proteins in adjuvant-antigen emulsions stimulated the development of this cellular hypersensitivity to antigen. 3. Independence of circulating antibody. In contrast to cellular hypersensitivity, serum antibody (a) reacted with any of a number of picrylated proteins, (b) developed well in the absence of mycobacterial adjuvant, and (c) persisted in unchanged titer for 5 weeks in animals sensitized with saline solutions of antigen. During this time cellular hypersensitivity decreased remarkably. The in vitro system described provides a direct method to measure cell-antigen interaction and permits study of an aspect of the immune response not mediated by humoral antibody. The relation of cellular hypersensitivity to antibody formation and delayed hypersensitivity is discussed.

Adjuvants, Immunologic↗

Systemic anaphylaxis immediately following delayed hypersensitivity skin tests.

Delayed hypersensitivity skin tests are performed frequently for other than primary immunologic disorders. Systemic anaphylaxis occurred during delayed hypersensitivity skin testing on a healthy, non-atopic individual. This reaction appeared to be IgE mediated. Anaphylactic recovery sets must be readily available whenever such testing is performed.

Anaphylaxis↗

Delayed hypersensitivity. I. Effect of in vitro exposure of cells to antigen upon leukocytic transfer of delayed hypersensitivity.

Exposure to picryl guinea pig albumin with 3-6 picryl groups per mole failed to affect the ability of peritoneal exudate or peripheral blood leukocytes from sensitized donors to transfer delayed sensitivity to normal recipients. In contrast, conjugates containing 40-48 picryl groups per mole altered the ability of exposed leukocytes to transfer delayed sensitivity. Evidence is presented that highly conjugated guinea pig albumin is self-aggregating. Lightly conjugated albumin, previously heat-aggregated, also was effective in "desensitization." The properties of antigen size, cell association of antigen after exposure, and desensitization appear to be associated.

Animals↗

Anergy and delayed hypersensitivity skin testing.

Delayed hypersensitivity skin tests, when properly planned and performed, are both practical and sensitive in determining the status of cell-mediated immunity. They can be diagnostic of specific exposure, such as tuberculosis, or they can rule out anergy. Pitfalls include poor selection of antigens, inappropriate application and poor timing of test interpretation. The transparent tape method is preferred for recording the results.

Antigens↗

Overexpression of vascular permeability factor (VPF/VEGF) and its endothelial cell receptors in delayed hypersensitivity skin reactions.

Delayed hypersensitivity (DH) is a T cell-mediated form of immune response characterized by a predominantly perivascular, mononuclear cell infiltrate. The venules in DH reactions are hyperpermeable to plasma proteins, leading to extravasation of plasma fibrinogen and its extravascular clotting to form a fibrin gel that promotes induration and angiogenesis. The mechanisms responsible for microvascular hyperpermeability in DH are unknown. Recently, a cytokine named vascular permeability factor (VPF, also known as vascular endothelial growth factor or VEGF) has been implicated in the chronic vascular hyperpermeability and angiogenesis of solid and ascites tumors, healing wounds, rheumatoid arthritis, and psoriasis. These findings suggested that VPF/VEGF might also have a role in the pathogenesis of DH. Two model systems were studied: allergic contact dermatitis to poison ivy in human volunteers and classical tuberculin hypersensitivity in rats. In both, in situ hybridization revealed that the mRNAs encoding VPF/VEGF were strikingly overexpressed in keratinocytes of the epidermis; scattered mononuclear cells infiltrating the dermis also overexpressed VPF/VEGF mRNA, to a greater extent in rat tuberculin than in human contact reactions. In contact reactions, mRNAs for two VPF/VEGF vascular endothelial cell receptors, flt-1 and KDR, were also strikingly overexpressed. Abundant fibrin deposition in both models confirmed that dermal microvessels were indeed hyperpermeable to plasma fibrinogen. These results implicate VPF/VEGF as a potentially important mediator in the pathogenesis of cell-mediated immunity and provide further evidence that products of epithelial cells may regulate the inflammatory response.

Animals↗

Effects of cyclophosphamide on the expression and induction of delayed hypersensitivity.

Erythematous delayed reactions without induration, presumably assigned to Jones-Mote type, were characterized by the resistance to treatment with cyclophosphamide (CY) before elicitation or immunization in guinea pigs immunized with BGG in IFA or CFA. CY-treatment before elicitation converted delayed erythematous reactions from negative to positive at late intervals after immunization with BGG in IFA. Such a treatment augmented erythematous delayed reactions in animals immunized with BGG in CFA, but abolished induration at the reaction sites. CY-treatment before elicitation or immunization reduced the numbers of basophils at the reaction sites, although erythematous delayed reactions were augmented. Effector T cells responsible for delayed erythematous reaction without induration appear to persist for a long period of time after immunization in the presence of antibody production or tuberculin hypersensitivity and the expression of their function may be inhibited by suppressive mechanisms.

Animals↗

The effect of angrod on the delayed hypersensitivity response in rats.

Delayed hypersensitivity was induced in rats by means of sheep erythrocytes and bovine serum albumin-lipid conjugate. Administration of heparin to rats sensitized to either antigen resulted in diminution of the delayed hypersensitivity reaction. Administration of ancrod, however, failed to inhibit the delayed cellular reaction to either antigen. Granuloma formation remained unaffected when rats were injected with either heparin or ancrod. The lack of ancrod effect, in contrast to heparin effect, on delayed hypersensitivity is discussed.

Ancrod↗