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Biomedical subjects

J Krutmann

Publications and source records attributed to J Krutmann.

At least 73 records · Page 4Linked to original sources

Successful monotherapy of severe and intractable atopic dermatitis by photopheresis.

BACKGROUND: Patients with chronic atopic dermatitis can become unresponsive to standard immunosuppressive therapy and thus pose a serious therapeutic problem. OBJECTIVE: Our purpose was to evaluate the therapeutic effectiveness of photopheresis in the management of patients with severe and intractable atopic dermatitis. METHODS: Photopheresis was used as monotherapy in patients (n = 3) who previously did not respond to treatment with glucocorticosteroids, cyclosporine, phototherapy, or photochemotherapy. Patients were treated at 2-week intervals (total number of treatments = 10). RESULTS: In all patients, photopheresis induced clinical improvement and reduction of elevated serum levels of eosinophil cationic protein and total IgE. Prolongation of the intervals between treatments from 2 to 4 weeks caused worsening in one patient, whereas shortening of treatment-free intervals improved both clinical and laboratory findings. CONCLUSION: These studies indicate that photopheresis may be used as monotherapy for the treatment of patients with severe atopic dermatitis that has become intractable to standard therapeutic modalities.

Adult↗

High-dose UVA1 therapy for atopic dermatitis: results of a multicenter trial.

BACKGROUND: The results of an open, single-center study suggested that phototherapy with high doses of UVA1 radiation (UVA1R; 340-400 nm) is effective for acute, severe exacerbations of atopic dermatitis (AD). OBJECTIVE: The purpose of this study was to assess the effectiveness of high-dose UVA1 phototherapy for acute, severe AD in a randomized multicenter trial in direct comparison with topical glucocorticoid therapy. METHODS: Patients were treated with high-dose UVA1R (10 days, 130 J/cm2/day; n = 20), topically with fluocortolone (10 days, 1 x daily; n = 17), or with UVA-UVB therapy (10 days, 1 x daily, minimal erythema dose-dependent; n = 16). RESULTS: With a clinical scoring system, significant differences in favor of high-dose UVA1R and fluocortolone therapy were observed (p < 0.0001), as compared with UVA-UVB therapy. At day 10, high-dose UVA1R was superior to fluocortolone (p < 0.002) therapy. Serum levels of eosinophil cationic protein and the blood eosinophil count were significantly reduced after high-dose UVA1 or fluocortolone, but not UVA-UVB therapy. CONCLUSION: This study confirms the therapeutic effectiveness of high-dose UVA1 monotherapy for treatment of severe exacerbations of AD.

Administration, Topical↗

Induction of interleukin-6 production by ultraviolet radiation in normal human epidermal keratinocytes and in a human keratinocyte cell line is mediated by DNA damage.

The sunburn reaction is the most common consequence of human exposure to ultraviolet radiation (UVR), and is mediated at least in part by interleukin-6 (IL-6). The aim of this study was to determine if DNA is a major chromophore involved in the induction of IL-6 following UV irradiation of a human epidermoid carcinoma cell line (KB), and of normal human epidermal keratinocytes. We first confirmed that IL-6 release was associated with enhanced levels of IL-6 mRNA transcripts. The wavelength dependence for IL-6 release was then investigated by irradiating the cells at defined wavelengths (254, 302, 313, 334, and 365 nm) with a monochromator. The maximum effect on IL-6 release was observed at 254 nm with only low levels of induction observed at wavelengths above 313 nm. The wavelength dependence for UV-induced IL-6 release was similar to that for DNA absorption or for the induction of cyclobutane pyrimidine dimers (CPD). To determine whether UV-induced DNA damage mediated IL-6 secretion, the role of CPD was investigated by treating keratinocytes with photosomes (photolyase encapsulated in liposomes) followed by photoreactivating light. This photoreversal procedure led to a reduction in the levels of the UVC-induced secretion of IL-6, which in normal human keratinocytes was unambiguously associated with repair of CPD. We conclude that the release of IL-6 from human keratinocytes following short-wave UVC and UVB irradiation is mediated by DNA damage and that CPD play an important role in this process.

Carcinoma, Squamous Cell↗

Aberrant timing in epidermal expression of inducible nitric oxide synthase after UV irradiation in cutaneous lupus erythematosus.

Photosensitivity is a main criterion for the diagnosis of systemic lupus erythematosus (LE), and ultraviolet (UV) irradiation plays a key role in the pathogenesis of cutaneous LE. Patients with a tentative diagnosis of LE are routinely tested for skin lesion development after experimental UV irradiation, providing an ideal opportunity to evaluate early, preclinical events involved in the pathogenesis of LE. Several reports have shown expression of the cytokine-inducible nitric oxide synthase (iNOS) in autoimmune diseases. Therefore, we investigated the role of iNOS expression at mRNA and protein level in the pathogenesis of LE lesions. Skin biopsies from patients with different subtypes of LE were examined, and iNOS expression was found in six of 18 biopsies from cutaneous LE patients and two of three biopsies from systemic LE patients. In biopsies taken 4-20 d after UV irradiation, epidermal iNOS expression was seen in all patients (n = 10) after UVB and in four of 10 patients provoked by UVA. In healthy controls (n = 8) epidermal iNOS expression was detected 24 h after UV irradiation, persisting for another day before subsiding on day 3. In LE patients (n = 8) the exact reverse situation was seen: an iNOS-specific signal was undetectable in keratinocytes for 2 d after UV irradiation, but became positive on day 3 and persisted for up to 25 d in the evolving skin lesions. Our findings demonstrate a time-restricted, UV-induced iNOS expression in human skin; moreover, the results indicate that both the kinetics of iNOS induction as well as the time span of local iNOS expression may be critical to the development of cutaneous LE lesions.

Adult↗

The role of interleukin-10 (IL-10) in IL-15-mediated T-cell responses.

Interleukin-15 (IL-15) is a potent T-cell stimulating factor, which has recently been used for pre-clinical in vivo immunotherapy. Here, the IL-15 effect on CD3-stimulated peripheral human T cells was investigated. IL-15 induced a significant T-cell proliferation and upregulated CD25 expression. IL-15 significantly enhanced T-cell production of interferon-gamma (IFN-gamma), tumor necrosis factor-alpha (TNF-alpha), and IL-10. Between 10- and 100-fold greater concentrations of IL-15 were necessary to reach a biological effect equivalent to that of IL-2. Blockade of IL-2 binding to the high-affinity IL-2 receptor did not affect the IL-15 effects, suggesting that IL-15 did not act by inducing endogenous IL-2. Exogenously administered IL-10 significantly reduced the IL-15 and IL-2-mediated IFN-gamma and TNF-alpha production, whereas T-cell proliferation and CD25 expression were not affected. The inhibitory effects of exogenously administered IL-10 on T-cell cytokine production appeared indirect, and are likely secondary to decreased IL-12 production by accessory cells. Inhibition of endogenous IL-10 binding to the IL-10 receptor significantly increased IFN-gamma and TNF-alpha release from T cells. These data suggest that endogenous IL-10 can regulate activated T-cell production of IFN-gamma and TNF-alpha via a paracrine negative feedback loop. The observations of this study could be of relevance for the therapeutic use of IL-15 in vivo.

Cell Division↗

Evidence that singlet oxygen-induced human T helper cell apoptosis is the basic mechanism of ultraviolet-A radiation phototherapy.

Ultraviolet A (UVA) irradiation is effectively used to treat patients with atopic dermatitis and other T cell mediated, inflammatory skin diseases. In the present study, successful phototherapy of atopic dermatitis was found to result from UVA radiation-induced apoptosis in skin-infiltrating T helper cells, leading to T cell depletion from eczematous skin. In vitro, UVA radiation-induced human T helper cell apoptosis was mediated through the FAS/FAS-ligand system, which was activated in irradiated T cells as a consequence of singlet oxygen generation. These studies demonstrate that singlet oxygen is a potent trigger for the induction of human T cell apoptosis. They also identify singlet oxygen generation as a fundamental mechanism of action operative in phototherapy.

Antibodies, Blocking↗

Photocarcinogenesis and inhibition of intercellular adhesion molecule 1 expression in cells of DNA-repair-defective individuals.

Cells from patients with xeroderma pigmentosum complementation group D (XP-D) and most patients with trichothiodystrophy (TTD) are deficient in excision repair of ultraviolet (UV) radiation-induced DNA damage. Although in both syndromes this defect is based on mutations in the same gene, XPD, only XP-D, not TTD, individuals have an increased risk of skin cancer. Since the reduction in DNA repair capacity is similar in XP-D and TTD patients, it cannot account for the difference in skin cancer risk. The features of XP-D and TTD might therefore be attributable to differences in the immune response following UV-irradiation, a factor which is presumed to be important for photocarcinogenesis. We have measured the capacity of UVB radiation to inhibit expression of the immunological key molecule intercellular adhesion molecule 1 (ICAM-1) in cells from three healthy individuals in comparison to cells from three XP-D and three TTD patients. Cells from XP-D patients, but not from TTD patients, exhibited an increased susceptibility to UVB radiation-induced inhibition of ICAM-1 expression. Transfection of XP-D cells with the wild-type XPD cDNA, but not with XPC cDNA, corrected this abnormal phenotype. Thus, the skin cancer risk in DNA repair-defective individuals correlated with the susceptibility of their cells to UVB radiation-induced inhibition of ICAM-1 expression, rather than with their defect in DNA repair. The XPD protein has dual roles: in DNA repair and transcription. The transcriptional role might be important for the control of expression of immunologically relevant genes and thereby contribute to the skin cancer risk of a DNA-repair-deficient individual.

Cells, Cultured↗

[Cream PUVA photochemotherapy].

Bath-PUVA-photochemotherapy lacks systemic side effects and requires low cumulative UVA doses, but a major disadvantage is the logistical requirement for bath tubs in a practice. We have developed an alternative form of topical PUVA therapy using a lipophilic emulsion vehicle for the photosensitizer 8-MOP (cream-PUVA-photochemo-therapy). A 0.0006% 8-MOP containing water-in-oil emulsion (30% H2O) was optimal for inducing photosensitivity in treated skin areas without increasing 8-MOP plasma levels. Increased skin photosensitivity was maximal 1 hour after cream application and persisted for 3 hours. We next assessed the effectiveness of cream-PUVA-photochemotherapy in the treatment of patients with chronic recalcitrant palmoplantar eczema (n = 10). In seven patients complete, and in two patients partial, remissions were observed after 40 treatments. Thus, cream-PUVA-photochemotherapy, which is easier to perform than bath-PUVA-photochemotherapy, is an effective, safe and low-cost modality, which may prove to become the topical PUVA therapy of choice for dermatological practitioners.

Dose-Response Relationship, Drug↗

[Characterization of nonresponders in high dosage UVA1 therapy of acute exacerbated atopic dermatitis].

High-dose UVA1 therapy is an effective treatment of patients with acute atopic dermatitis. However, some patients do not respond well to this new therapy. We attempted to further characterize the non-responder population in a retrospective study. Two closely matched groups of responders (n = 20) and non-responders (n = 20) were compared. No significant differences were observed between both groups with respect to the following parameters: skin type, minimal erythema dose, single and cumulative doses of UVA1, and peripheral blood eosinophils. However, non-responders were characterized by a highly elevated atopic score, and by high levels of total IgE and of specific IgE. Furthermore, colonization of the skin with Staphylococcus aureus occurred at higher densities, and intestinal growth of Candida albicans was more frequently observed. These data indicate that high-dose UVA1 irradiation is not effective in all patients suffering from atopic dermatitis. We conclude that non-responders with complicating infections might benefit from the combination of high-dose UVA1 therapy and antibiotic or antimycotic treatment.

Adolescent↗

High-dose UVA1 radiation therapy for localized scleroderma.

BACKGROUND: Fibrotic skin lesions in patients with localized scleroderma can cause muscle atrophy, disfigurement, and flexion contractures. There is no effective therapy for this disease. Skin fibrosis is thought to be caused by decreased collagenase activity. Collagenase activity can be induced in dermal fibroblasts by UVA1 irradiation. OBJECTIVE: Our purpose was to assess whether UVA1 radiation therapy is effective for patients with localized scleroderma. METHODS: Patients with localized scleroderma (n = 17) were exposed 30 times to 130 J/cm2 UVA1 (high-dose UVA1 therapy; n = 10) or 20 J/cm2 UVA1 (low-dose UVA1 therapy; n = 7). Therapeutic effectiveness was assessed by evaluation of (1) clinical features, (2) thickness of sclerotic plaques, and (3) cutaneous elastometry. Sequential biopsy specimens from treated lesions were analyzed for collagenase I messenger RNA (mRNA) expression by semiquantitative reverse transcriptase-polymerase chain reaction. RESULTS: In all patients, high-dose UVA1 therapy softened sclerotic plaques, and complete clearance was observed in four of 10 patients. High-dose UVA1 therapy significantly reduced thickness and increased elasticity of plaques. These changes could not be detected in unirradiated control plaques and were still present in 9 of 10 patients 3 months after cessation of therapy. For all factors assessed, high-dose UVA1 was superior to low-dose UVA1 therapy (p = 0.001). High-dose UVA1 therapy increased collagenase I mRNA expression about 20-fold in treated plaques. CONCLUSION: High-dose UVA1 therapy is effective in the treatment of localized scleroderma. Effectiveness is UVA1 dose dependent and is associated with induction of collagenase I expression.

Adult↗

Induction of proinflammatory cytokines in human epidermoid carcinoma cells by in vitro ultraviolet A1 irradiation.

Ultraviolet radiation-induced expression of cytokines by keratinocytes is important for the pathogenesis of polymorphous light eruption (PLE). Because UVA1 radiation rather than UVB radiation might be a more important trigger for PLE, cells from the human epidermoid carcinoma cell line KB were exposed in vitro to UVA1 radiation (30 J/cm2) and subsequently analyzed for cytokine expression. Ultraviolet A1 irradiation induced tumor necrosis factor (TNF)-alpha and interleukin (IL)-8 expression in KB cells at the mRNA and protein level. Upregulation of cytokine mRNA levels followed a biphasic pattern. This effect was specific for TNF alpha and IL-8 because UVA1 radiation did not induce expression of IL-1 alpha or IL-6 in these cells. Ultraviolet A1 radiation-induced expression of intercellular adhesion molecule-1 in KB cells previously was found to depend on the thiol status of these cells. Therefore, KB cells were treated with DL-buthionine-[S,R]-sulfoximine (BSO), a specific inhibitor of de novo glutathione synthesis. Exposure of BSO-pretreated KB cells to UVA1 radiation significantly induced IL-1 alpha and IL-6 mRNA and protein expression. These studies demonstrate the capacity of UVA1 radiation to induce cytokine expression in human epidermoid carcinoma cells. This immunomodulatory effect may be mediated by thiol-status-dependent and -independent mechanisms.

Buthionine Sulfoximine↗

Chronically ultraviolet-exposed human skin shows a higher mutation frequency of mitochondrial DNA as compared to unexposed skin and the hematopoietic system.

Normal ageing processes are associated with an accumulation of mutations within the mitochondrial (mt) DNA. The most frequent mutation is a 4977 base pair (bp) deletion known as common deletion. In order to test the hypothesis that chronically sun-exposed skin is characterized by an increased mutation frequency of mtDNA, the mutation frequency of the common deletion between skin and another replicating tissue (the hematopoietic system) and chronically sun-exposed versus sun-protected skin was compared in the same individuals. This was done by comparing the amount of mutated mtDNA molecules with the whole mitochondrial genome in the same specimen with a semiquantitative polymerase chain reaction method, thus allowing direct comparison of different tissues. In all skin specimens the common deletion could be observed. In contrast only 3 of 10 blood samples revealed detectable amounts of the common deletion. Comparison of sun-exposed versus sun-protected skin exhibited a higher content of the common deletion in sun-exposed skin in 7 of 10 individuals. Additionally, a hitherto undescribed mtDNA mutation was detected exclusively in human skin. These studies indicate that exposure of human skin to solar radiation leads to an accumulation of mtDNA mutations, possibly via oxidative damage, which may play an important role in photoageing.

Adult↗

Ultraviolet A radiation-induced expression of human genes: molecular and photobiological mechanisms.

Increased gene expression as a consequence of environmental stress is typically observed in mammalian cells upon exposure to ultraviolet (UV) radiation. In previous years the cis- and trans-acting genetic elements responsible for gene induction by short wavelength UVC (< 280nm) and intermediate wavelength UVB (280 - 320 nm) radiation have been well characterized. More recently, progress has also been made in understanding the mechanisms by which long wavelength UVA (320 - 400 nm) radiation induces transcriptional activation of human genes. From these studies it is now known that the photobiological as well as the molecular mechanisms involved in UVA radiation-induced gene expression differ from those previously identified for UVB- or UVC-induced gene expression. In particular, the reactive oxygen species singlet oxygen was found to serve as the primary effector in UVA radiation-induced gene expression by inducing a signal transduction cascade that depends on activation of transcription factor AP-2. These studies indicate a previously unrecognized role of AP-2 in the mammalian stress response.

Animals↗