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Biomedical subjects

N Yawalkar

Publications and source records attributed to N Yawalkar.

At least 19 recordsLinked to original sources

Oral prednisolone induced acute generalized exanthematous pustulosis due to corticosteroids of group A confirmed by epicutaneous testing and lymphocyte transformation tests.

BACKGROUND: Acute generalized exanthematous pustulosis (AGEP) is a rare cutaneous eruption which is often provoked by drugs. CASE REPORT: We report 2 cases of AGEP which showed rapidly spreading pustular eruptions accompanied by malaise, fever and neutrophilia after the administration of systemic prednisolone (corticosteroid of group A, hydrocortisone type). The histological examination showing neutrophilic subcorneal spongiform pustules was consistent with the diagnosis of AGEP. In both cases the rash cleared within a week upon treatment with topical steroids (corticosteroid of group D1, betamethasonedipropionate type and corticosteroid of group D2, hydrocortisone-17-butyrate type). Three months after recovery, the sensitization to corticosteroids of group A was confirmed by epicutaneous testing and positive lymphocyte transformation tests. CONCLUSION: These cases show that systemic corticosteroids can induce AGEP and demonstrate that epicutaneous testing and lymphocyte transformation tests may be helpful in identifying the causative drug. Our data support previous reports indicating an important role for drug-specific T cells in inducing neutrophil inflammation in this disease.

Administration, Oral↗

Characterization of the cellular infiltrate during successful topical treatment of lentigo maligna with imiquimod.

Lentigo maligna (LM) is an in situ melanoma which usually occurs in sun-damaged skin on the head and neck of elderly patients. Depending on the anatomical site and its size treatment of LM can be problematic and usually includes surgical excision or radiotherapy. Recent reports indicate that topical imiquimod may be an effective treatment. However, no data on the underlying immune response in the skin during treatment of LM with topical imiquimod are available so far. We report a 62-year-old caucasian woman with a histologically verified LM which was successfully treated with topical imiquimod 5% cream. Skin biopsy specimens were obtained before, during (at week 10) and 4 weeks after cessation of topical treatment with imiquimod 5% cream. Histological and immunohistochemical examination was performed in order to detect residual atypical melanocytes and to characterize the inflammatory infiltrate. A complete clinical and histological clearance of the skin lesion was achieved, with no recurrence up to 9 months after the end of treatment. During topical application of imiquimod 5% cream a depletion of epidermal and dermal CD1a+ dendritic cells was observed. The inflammatory infiltrate consisted of CD68+ macrophages and mainly of CD3+ T cells with a slight predominance of CD8+ T cells. An enhanced expression of granzyme B and TIA-1 was also noted particularly in the epidermis and near the dermoepidermal junction. In conclusion, our data indicate that imiquimod 5% cream induces a cytotoxic T-cell-mediated immune response in situ which may account for the complete destruction of the malignant melanocytes in LM. Further clinical trials and longer follow-up periods on the use of imiquimod for LM are warranted.

Aminoquinolines↗

Scratch-patch and patch testing in drug allergy--an assessment of specificity.

BACKGROUND: Adverse drug reactions occur frequently in daily practice, but the identification of the eliciting drugs is difficult due to a lack of standardized procedures. The aim of this study was to evaluate and compare scratch-patch and patch tests prospectively with frequently used drugs in persons exposed or not exposed to the drug in order to define a nonirritating concentration. MATERIALS AND METHODS: Altogether, 23 different drugs, mainly antibiotics and analgesics, were evaluated. Any contraindications for patch tests were excluded by a questionnaire. Sixty-one healthy individuals were tested. They were divided into two groups: Group 1 consisted of individuals who hadn't been exposed to the drug; Group 2 was comprised of individuals who had been exposed to the drug, without side effects. Each individual was tested with 10-20 scratch-patch and patch tests. The tests were performed on the upper back. Freshly prepared drug solutions were applied, on one side after scarification of the epidermis, on the other side without. Scratch-patch tests were read at 24 and 48 h, patch tests after 48 and 72 h. In addition, we included 73 individuals with a drug allergy to illustrate that the chosen drug concentrations are able to elicit a positive reaction in truly sensitized individuals. RESULTS: A positive reaction in the non-exposed and nonallergic individuals was considered to be an irritant reaction (IR). In Group 1 (non-exposed individuals), 341 scratch-patch tests were performed, with 22 showing a reaction at the first reading, 3 at the second. Of the 341 patch tests performed in this group, 21 reactions were observed at the first reading, and 7 at the second. In Group 2 (exposed individuals), 141 scratch-patch tests were performed, with 5 IR at the first reading and 1 at the second. Of the 138 patch tests performed in this group, 6 individuals showed an IR at the first, 2 at the second reading. The majority of IR were four drugs, namely cefuroxim, acetylsalicylic acid, propyphenazone/drofenin-HCl, and celecoxib. Lowering the concentration did not reduce the unspecified irritant skin reaction, while a change of the solvent (petrolatum instead of PBS) did reduce the IR. CONCLUSIONS: Our data show concentrations of 23 drugs suitable for scratch-patch or patch tests, as they do not elicit IR. Fourteen of these test preparations elicited a positive reaction in truly sensitized individuals, demonstrating that the test preparation is suitable to identify sensitized persons. Scratch-patch tests are an interesting alternative to patch tests, as they do not elicit more IR than patch tests but can be evaluated earlier. Certain drugs solved in PBS are irritant over a wide dosage range and need to be applied in petrolatum.

Adult↗

Zafirlukast has no beneficial effects in the treatment of chronic urticaria.

BACKGROUND: Leukotriene receptor antagonists have shown some efficacy in t he treatment of asthma. Injection of LTC4, LTD4 and LTE4 into the skin leads to a weal-and-flare reaction, suggesting an involvement of leukotrienes in the pathogenesis of urticaria. Indeed, various reports have indicated a beneficial effect for leukotriene receptor antagonists in patients with chronic urticaria. OBJECTIVE: To determine the therapeutic effect of the leukotriene receptor antagonist zafirlukast in patients with chronic urticaria. METHODS: The study was a double-blind, placebo-controlled, cross-over study lasting for 12 weeks. Fifty-two patients with chronic urticaria were investigated at a university hospital. The patients were randomized to receive 20 mg zafirlukast b.i.d. or placebo and cross-over was scheduled after 6 weeks. The efficacy of the treatment was evaluated by a daily symptom score, six physical examinations, the requirement of rescue antihistamines (acrivastine) and an overall assessment by the patient andthe investigating physician. RESULTS: Forty-six patients completed the study: zafirlukast was well tolerated without alteration of the investigated laboratory parameters. In comparison with placebo, treatment with zafirlukast resulted in no significant positive effect for any of the efficacy measures. Moreover, we were unable to identify any subgroup of patients with chronic urticaria responding with a therapeutic benefit. CONCLUSIONS: The leukotriene receptor antagonist zafirlukast does not provide a significant therapeutic benefit at a dose of 20 mg b.i.d. in patients with chronic urticaria.

Adolescent↗

CD1a-positive dendritic cells transport the antigen DNCB intracellularly from the skin to the regional lymph nodes in the induction phase of allergic contact dermatitis.

Dendritic cells are potent stimulators of T cell-mediated immune responses. In contact hypersensitivity reactions in animals dendritic cells have been reported to transport antigens to the regional lymph nodes. In this study we investigated whether skin-derived dendritic cells transport contact antigens via the afferent lymph in humans. By means of a microsurgical technique lymph cells were collected after painting a defined skin region with a 2% concentration of the sensitizing agent 2,4-dinitrochlorobenzene on the leg of 14 volunteers. There was no significant change in flow, output or composition of cells after antigen painting. Using flow cytometric analysis we were able to detect the antigen in CD1a+ dendritic cells of the afferent lymph 15-25 h after antigen application. The antigen could only be detected after permeabilizing the dendritic cells, indicating that the main part of the antigen is transported intracellularly and not on the surface of these cells. Further analysis of cell surface antigens such as CD80, CD86, HLA-DR, CD11a, CD14, CD23, CD25 and CD54 revealed that in the course of cutaneous sensitization the phenotype of the dendritic cells was not altered in the afferent lymph. These results provide direct evidence that during the induction phase of allergic contact dermatitis in humans antigen-bearing dendritic cells internalize the antigen and migrate from the skin via the afferent lymph vessels to the lymph nodes.

Adult↗

A comparative study of the expression of cytotoxic proteins in allergic contact dermatitis and psoriasis: spongiotic skin lesions in allergic contact dermatitis are highly infiltrated by T cells expressing perforin and granzyme B.

Recent reports indicate that cytotoxic T cells are critically involved in contact hypersensitivity reactions in animals. In this study we sought to investigate the in vivo expression of cytotoxic granule proteins in the elicitation phase of allergic contact dermatitis in humans. Skin biopsy specimens were obtained from patients with allergic contact dermatitis (n = 8) and psoriasis (n = 6) and from controls with normal skin (n = 6). Expression of perforin and granzyme B was investigated by in situ hybridization and immunohistochemistry. In contrast to normal skin and psoriasis, a significant enhancement of perforin and granzyme B gene expression and immunoreactivity was observed in the mononuclear cell infiltrate of allergic contact dermatitis. Immunoreactivity for perforin and granzyme B was mainly found in the cytoplasm of lymphocytic cells, which were located in the dense perivascular infiltrate as well as at sites of marked spongiosis in the epidermis. Double immunostaining revealed that both CD4+ and CD8+ T cells are capable of expressing perforin and granzyme B. In conclusion, our data suggest that T-cell-mediated mechanisms involving cytotoxic granule proteins may elicit epidermal cell injury in vivo and thereby strongly contribute to the development of allergic contact dermatitis in humans.

Adult↗

Perforin and granzyme B may contribute to skin inflammation in atopic dermatitis and psoriasis.

BACKGROUND: Infiltration of the skin by pathogenic T cells is regarded as a key factor in the development of inflammatory skin diseases such as atopic dermatitis (AD) and psoriasis. OBJECTIVES: To investigate whether T cells containing cytotoxic proteins may contribute to the generation of skin inflammation in these skin diseases. METHODS: Skin biopsy specimens were obtained from non-lesional and lesional skin of patients with chronic AD (n = 8) and psoriasis (n = 6), and from non-atopic controls with normal skin (n = 6). Expression of perforin and granzyme B was investigated by immunohistochemistry. RESULTS: A significant enhancement of perforin and granzyme B expression was observed in lesional AD skin as compared with normal skin, non-lesional AD skin and psoriasis. Expression of these cytotoxic proteins was also increased in psoriasis as compared with normal skin and non-lesional psoriatic skin. Immunoreactivity for perforin and granzyme B was mainly found in the cytoplasm of lymphocytic cells located in the perivascular infiltrate. In AD increased numbers of positive cells were also observed focally at sites of spongiosis in the epidermis. Double immunostaining revealed that both CD4+ and CD8+ T cells are capable of expressing perforin and granzyme B. CONCLUSIONS: Our data suggest that cytotoxic CD4+ and CD8+ T cells containing perforin and granzyme B may play an integral part in eliciting cutaneous inflammation in AD.

Adolescent↗

T cell involvement in cutaneous drug eruptions.

BACKGROUND: The most frequent side-effects of drug therapy are skin eruptions. Their pathomechanism is rather unclear. OBJECTIVE: In this prospective study we investigated the T cell activation and drug specificity in different forms of drug-induced exanthemas from 22 patients. METHODS: During acute drug allergy, liver parameters and T cell subset activation in the circulation (up-regulation of CD25 and HLA-DR) were evaluated and skin biopsies of the acute lesion performed. After recovery, the causative drug was identified by lymphocyte transformation (LTT) and scratch-patch tests. RESULTS: Seventeen of 22 (17/22) patients had maculo-papular exanthema, 4/22 bullous exanthema and 1/22 urticaria. The causative drugs were mainly antibiotics, anti-epileptics and anti-hypertensives. Up-regulation of HLA-DR on circulating CD4(+) and/or CD8(+) T cells was detected in 17 patients, being most marked in patients with bullous reactions or hepatic involvement. The LTT was positive in 14/21 analysed and the patch test in 7/15. All patients showed lymphocytic infiltration in the skin biopsy of the acute lesion. Generally CD4(+) T cells dominated; a higher percentage of circulating CD8(+) T cells was found in patients with bullous skin reactions or hepatic involvement. CONCLUSION: Our data demonstrate activation and drug specificity of T cells in drug-induced skin eruptions. A predominant CD8(+) T cell activation leads to more severe (bullous) skin symptoms or liver involvement, while predominant activation of CD4(+) cells elicits mainly maculo-papular reactions.

Administration, Cutaneous↗

Immunohistology of drug-induced exanthema: clues to pathogenesis.

Hypersensitivity reactions to drugs can cause a variety of different skin disorders, the most frequent being maculopapular eruptions. In recent years increasing evidence has indicated the important involvement of T cells in this drug reaction. Histopathological changes typically show a dominant T-cell infiltration together with vacuolar interface dermatitis. Immunohistochemical studies demonstrate the presence of cytotoxic CD4+ and CD8+ T cells, which contain perforin and granzyme B, in close proximity to keratinocytes showing signs of cell destruction. Expression of Fas ligand is barely detectable, which suggests that cytotoxic granule exocytosis may be the dominant pathway leading to keratinocyte cell damage. In addition, drug-specific T cells may orchestrate the inflammatory skin reaction through the release and induction of various cytokines (i.e. IL-5, IL-6, TNF-alpha, IFN-gamma) and chemokines (i.e. regulated on activation, normal T-cell expressed and secreted; eotaxin). These mediators contribute to the generation of eosinophilia, which may amplify the underlying immune response through the release of further proinflammatory mediators in drug-induced maculopapular exanthema.

CD4-Positive T-Lymphocytes↗

T-cell involvement in drug-induced acute generalized exanthematous pustulosis.

Acute generalized exanthematous pustulosis (AGEP) is an uncommon eruption most often provoked by drugs, by acute infections with enteroviruses, or by mercury. It is characterized by acute, extensive formation of nonfollicular sterile pustules on erythematous background, fever, and peripheral blood leukocytosis. We present clinical and immunological data on four patients with this disease, which is caused by different drugs. An involvement of T cells could be implied by positive skin patch tests and lymphocyte transformation tests. Immunohistochemistry revealed a massive cell infiltrate consisting of neutrophils in pustules and T cells in the dermis and epidermis. Expression of the potent neutrophil-attracting chemokine IL-8 was elevated in keratinocytes and infiltrating mononuclear cells. Drug-specific T cells were generated from the blood and skin of three patients, and phenotypic characterization showed a heterogeneous distribution of CD4/CD8 phenotype and of T-cell receptor Vbeta-expression. Analysis of cytokine/chemokine profiles revealed that IL-8 is produced significantly more by drug-specific T cells from patients with AGEP compared with drug-specific T cells from patients that had non-AGEP exanthemas. In conclusion, our data demonstrate the involvement of drug-specific T cells in the pathomechanism of this rather rare and peculiar form of drug allergy. In addition, they indicate that even in some neutrophil-rich inflammatory responses specific T cells are engaged and might orchestrate the immune reaction.

Acute Disease↗

T-cell reactions to drugs in distinct clinical manifestations of drug allergy.

BACKGROUND: Recent data indicate that T cells play a major role in different forms of drug allergies. OBJECTIVE: To show that T-cell reactions are involved in various forms of adverse reactions to different kinds of drugs, and that lymphocyte transformation and skin tests may be positive in patients who had distinct clinical manifestations of drug allergies. METHODS: We collected data of 44 patients with a highly suggestive history for adverse drug reaction who had on subsequent investigations a positive lymphocyte transforrmation test. In 41/44 patients (93%) skin tests with the suspected drugs were performed and in some cases drug-specific IgE-antibodies were determined. All patients were HLA typed. RESULTS: Clinical manifestations of the drug allergy were heterogeneous, comprising maculopapular and bullous exanthema, erythema exsudativum multiforme, vasculitis, serum sickness, urticaria, as well as involvement of internal organs. Maculopapular exanthemas formed the largest group (54%), followed by reactions more indicative of immediate hypersensitivity (28%), such as urticaria/angioedema. In most cases (63%), beta-lactam antibiotics were found to have caused the allergic reaction. Skin tests for immediate reactions were positive in 6/40 patients (15%) tested, those for late reactions in 24/38 patients (63%) tested. CONCLUSIONS: Our data provide evidence that drug-specific T cells can be detected in distinct clinical manifestations of drug allergy. A combined approach using a detailed case history, lymphocyte transformation tests, skin tests (immediate and delayed type) appears to be helpful to identifying the incriminated drug.

Adolescent↗

[Corticosteroid allergy: a paradox?].

Although corticosteroids have both antiinflammatory and immunosuppressive effects, they can occasionally induce allergic reactions when given topically or systemically. Since cross-reactions exist within the corticosteroid groups A-D, the corticosteroid should be changed to another group whenever suspicion arises. It makes sense to render an allergy-related diagnosis early so that a suitable corticosteroid is ready for an emergency.

Adrenal Cortex Hormones↗

Strong alpha beta and gamma delta TCR response in a patient with disseminated Mycobacterium avium infection and lack of NK cells and monocytopenia.

Infection with atypical mycobacteria occurs mainly in patients with a compromised cellular immune system, in particular in those with a defective T cell or monocyte function. Here we analyzed the specific immune response of an adolescent HIV-negative patient with disseminated mycobacterium avium infection and fatal varizella zoster virus infection. The patient presented with dysplastic hematopoesis of all cell lineage's and a bicytopenia of erythrocytes and leukocytes, but a hematological malignancy could not be found. We found a peripheral lymphopenia and monocytopenia, as well as a lack of NK-cells and B-cells. Lymphocytes consisted of 95% T cells, which contained up to 40% of TCR gammadelta+CD4-CD8-T-cells (mainly TCR gamma9delta2), few monocytes and B-cells. Approximately 50% of CD3+ T-cells showed a CD57+ NK-like phenotype. Functional analysis of PBMC revealed a good antigen-specific T cell function if antigen-presenting cells were supplemented from a HLA-matched donor. Moreover, a strong M. avium specific cytotoxicity mediated by TCR alphabeta+T-cells could be found in vitro and even ex vivo. In contrast, NK-killing was absent. No evidence for a defect in IL-12 or IFN-gamma production and signaling were found. The data indicate that a strong alphabeta and gammadelta T cell immunity tries to compensate for a deficient monocyte and NK cell function in this patient.

Adolescent↗

Human afferent lymph from normal skin contains an increased number of mainly memory / effector CD4(+) T cells expressing activation, adhesion and co-stimulatory molecules.

We investigated the T cell population in the afferent lymph and the peripheral blood with regard to expression of activation, adhesion and co-stimulatory molecules and cytokine profile by immunohistochemistry and flow cytometry. The majority of the lymphoid cell population in the afferent lymph were CD4(+), CD45RO(+) T cells expressing the alpha beta TCR. An increased percentage of the T cells expressed activation molecules like HLA-DR, CD25, CD26, CD69 as well as adhesion and co-stimulatory molecules like CD54, CD154 / 40 ligand. Furthermore, T cells in the afferent lymph predominantly expressed the type 1 cytokine IFN-gamma, whereas type 2 cytokines such as IL-4, IL-5, IL-10 were not or barely detectable. Interestingly, dendritic cells expressing IL-12 were also found in close association with some lymphocytes, indicating that these contacts may be important in promoting Th 1 cells. In conclusion, an increased number of mainly CD4(+) memory / effector T cells, expressing activation, adhesion and co-stimulatory molecules migrate through the afferent skin-derived lymph in humans. Furthermore, our data demonstrate the dominance of a type 1 cytokine profile in these T cells and suggest that they have an important function in the immune surveillance against pathogens or other antigens in the skin and its associated lymphoid tissue.

Antigens, CD↗

Antigen-presenting cells and keratinocytes express interleukin-12 in allergic contact dermatitis.

Interleukin-12 (IL-12) has previously been suggested as playing a major rôle in the activation of cytotoxic lymphocytes. Recent reports indicate that cytotoxic CD8+ cells are critically involved in the elicitation phase of contact hypersensitivity reactions. In this study, the in situ expression of IL-12 was investigated in normal human skin and in allergic contact dermatitis by immunohistochemistry. Skin biopsy specimens were obtained from allergic patch test reactions after 3 days, and from normal skin in 8 subjects. In contrast to normal skin, a strong enhancement of IL-12 immunoreactivity was observed in the mononuclear cell infiltrate of allergic contact dermatitis. IL-12 immunoreactivity was mainly located in the cytoplasm of dermal dendritic cells and macrophages as well as of some Langerhans cells. IL-12-positive cells were often found in close apposition to lymphocytes. Furthermore, positive immunostaining was also detected in keratinocytes at sites of marked exocytosis and spongiosis in the epidermis. In conclusion, the enhanced in situ expression of IL-12 may contribute to the activation of cytotoxic lymphocytes and thereby represent an important factor in the pathogenesis of contact hypersensitivity reactions in humans.

Adult↗

Infiltration of cytotoxic T cells in drug-induced cutaneous eruptions.

BACKGROUND: Previous in vitro data indicate that perforin containing drug-specific cytotoxic T cells are involved in cutaneous drug reactions. OBJECTIVE: The aim of this study was to investigate the in situ expression of perforin and granzyme B together with the nature of the inflammatory infiltrate in acute drug-induced exanthem. Furthermore, expression of interleukin (IL)-12 and interferon (IFN)-gamma, which are known to stimulate cytotoxic T cells, was investigated. METHODS: Skin biopsy specimens were obtained from 10 patients with a generalized maculopapular exanthem and from nine controls with normal skin. Expression of CD3, CD4, CD8, CD56, CD1a, CD68, CD25, HLA-DR, CD54, perforin, granzyme B, IL-12 and IFNgamma was analysed using immunohistochemistry. RESULTS: In contrast to the controls, the skin of patients with an exanthem was mainly infiltrated by T cells (CD4 > CD8) and showed a marked enhancement of perforin and granzyme B immunostaining. Double immunostaining revealed that perforin and granzyme B were expressed in both CD4+ and CD8+ cells, which were partly located at the dermoepidermal junction and in the epidermis. In addition, strong immunreactivity for IL-12 and IFNgamma was observed in the mononuclear cells infiltrate, indicating that these cytokines may be important in activation of these cytotoxic T cells. CONCLUSION: The increased numbers of perforin and granzyme B containing T cells infiltrating the dermoepidermal junction may contribute to the damage of epidermal cells, which is frequently observed as a typical feature of interface dermatitis in drug-induced exanthem. Our data provide further evidence that cytotoxic T cells play an essential role in cutaneous drug reactions.

Adult↗

T cells isolated from positive epicutaneous test reactions to amoxicillin and ceftriaxone are drug specific and cytotoxic.

In order to investigate the function of T cells in cutaneous adverse drug reactions, skin-derived T cells were analyzed in two patients with a drug-induced exanthem. Skin biopsy specimens were obtained from positive epicutaneous test reactions to amoxicillin and ceftriaxone. Immunohistochemical analysis revealed that the majority of the cell infiltrate in both biopsy specimens was composed of activated T cells, of which some expressed perforin. By limiting dilution 36 amoxicillin-specific and 10 ceftriaxone-specific T cell clones were raised. All of these T cell clones expressed CD4/T cell receptor alphabeta. Cytokine analysis after antigen stimulation of the seven best proliferating T cell clones (four specific for amoxicillin and three for ceftriaxone) revealed that these cells secrete high amounts of interleukin-5 and mostly lower or no amounts of tumor necrosis factor alpha, interleukin-4, and interferon-gamma. A part of these CD4+ T cell clones were cytotoxic, i.e., two selected ceftriaxone-specific T cell clones killed target cells after antigen stimulation. The amoxicillin-specific T cell clones failed to show drug-specific cytotoxicity, but killed target cells in the presence of concanavalin A, indicating a principal ability to be cytolytic. In correlation with the in situ expression of perforin on T cells, the ceftriaxone-specific T cell clones also expressed perforin in vitro. In conclusion, a substantial part of the T cells in drug-induced epicutaneous test reactions are drug specific and are composed of a heterogeneous cell population. Drug-specific T cells producing interleukin-5 may contribute to eosinophilia, whereas cytotoxic CD4+ T cells may account for tissue damage. These data underline the role of T cells in delayed-type cutaneous adverse drug eruptions and drug-induced epicutaneous test reactions.

Adult↗