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Biomedical subjects

A Ohkawara

Publications and source records attributed to A Ohkawara.

At least 19 recordsLinked to original sources

A new case of alpha-N-acetylgalactosaminidase deficiency with angiokeratoma corporis diffusum, with Ménière's syndrome and without mental retardation.

alpha-N-acetylgalactosaminidase (alpha-NAGA) deficiency is a rare hereditary lysosomal storage disease, and only three alpha-NAGA-deficient patients with angiokeratoma corporis diffusum (Kanzaki) have been described. We report a further case in a 47-year-old Japanese woman, the product of a consanguineous marriage. The remarkable findings in this patient were her normal intelligence, Ménière's syndrome, disturbance of peripheral sensory nerves, hearing loss and cardiac hypertrophy. alpha-NAGA enzyme activity in her plasma was 0.77% of the normal value. Other enzyme activities, such as alpha-galactosidase, beta-galactosidase, alpha-L-fucosidase, beta-mannosidase and aspartylglucosaminidase, were within normal limits. A large quantity of amino acid O-glycans was detected in her urine. Gene analysis revealed a novel point mutation (G-->A transition) at nucleotide 11018 (986 in the cDNA) resulting in an Arg-329-Gln substitution. Kanzaki disease has the same enzyme defect as Schindler disease, but the manifestations are quite different.

Fabry Disease↗

Enhanced contact hypersensitivity in human monocyte chemoattractant protein-1 transgenic mouse.

Monocyte chemoattractant protein (MCP)-1 is a chemotactic cytokine for monocytes, memoryT cells and dendritic cells (DC). However, the precise role of MCP-1 in a variety of immunological responses remains unclear. In the present study, we analyzed contact hypersensitivity (CHS) using human MCP-1 transgenic mice (hMCP-1Tgm) that constitutively produce high levels of hMCP-1 in the sera. Following 2,4-dinitrofluorobenzene (DNFB) sensitization, enhancement of CHS was demonstrated in Tgm as compared with that in non-Tgm. Anti-hMCP-1 antibodies significantly inhibited the CHS in Tgm. A prominent accumulation of B7-1+I-Ad+ Langerhans' cells (LC) bearing haptens was detected in draining lymph nodes (DLN) of Tgm 24 h after DNFB or fluorescein isothiocyanate (FITC) sensitization. Similar results were obtained with BALB/c mice administrated recombinant (r) hMCP-1. Langerhans' cells (LC) in the epidermal sheets of Tgm increased in size and expressed high levels of I-Ad and B7-1 12 h after FITC application compared with those of non-Tgm. After 18 h, the number of LC in the epidermis was reduced in Tgm. It was also shown that the B7-1 expression on LC of BALB/c mice was augmented after culture with rhMCP-1. These findings demonstrate that MCP-1 not only accelerates LC migration from epidermis into the DLN after sensitization with haptens but also up-regulates the I-Ad and B7-1 expressions, which results in the enhanced T cell activation and CHS.

Animals↗

Enhancement of macrophage migration inhibitory factor (MIF) expression in injured epidermis and cultured fibroblasts.

After the cDNA of human macrophage migration inhibitory factor (MIF) was cloned in 1989, this protein has been re-evaluated as a pro-inflammatory cytokine, pituitary hormone and glucocorticoid-induced immunoregulatory protein. We previously reported the expression of MIF in the basal cell layers of the epidermis, but its pathophysiological function in the skin has not been well understood. In this study, we examined the expression of MIF during the wound healing of rat skin injured by excision. Reverse transcription-polymerase chain reaction in combination with Southern blot analysis revealed that the increase of MIF mRNA expression was biphasic. The maximum peaks were observed at 3 and 24 h after the injury. Similarly, maximal increases of the serum MIF level were observed at 3 and 24 h after the injury. Immunohistochemical analysis at 12 h after injury demonstrated enhanced expression of MIF protein in the whole epidermal lesion of the wound tissue. By the Boyden chamber assay, we demonstrated that MIF had a chemotactic effect on freshly prepared keratinocytes from rat skin. Additionally, cultured fibroblasts from the skin wound lesion secreted a higher amount of MIF in response to lipopolysaccharide compared to those of the normal skin. Furthermore, administration of anti-MIF antibodies induced a delay of wound healing in vivo. Taken together, these results suggest that MIF contributes to the wound healing process of skin tissue.

Animals↗

Atrophic dermatofibroma. Elastophagocytosis by the tumor cells.

A 55-year-old woman presented with an asymptomatic red plaque on the left upper back for 6 or 7 years. The lesion was depressed in response to finger pressure. The clinical diagnosis was anetoderma. Histopathologically, the characteristic cells of cellular dermatofibroma proliferated within the thinned dermis, which showed atrophy of about 60 or 70%. The proliferated cells were positive for factor XIIIa and negative for CD34. The involved dermis showed the loss of elastic fibers on elastica van Gieson stain. Electron microscopically, the proliferating cells phagocytized the elastic fibers. We report a typical case of atrophic dermatofibroma and show the possibility that the cause of this disease might be elastophagocytosis between the collagen fibers by the dermatofibroma cells.

Antigens, CD34↗

A case of intravascular large B-cell lymphoma mimicking erythema nodosum: the importance of multiple skin biopsies.

BACKGROUND: Intravascular lymphoma is a rare disease characterized by the proliferation of neoplastic monuclear cells within the lumens of small blood vessels. The neoplastic cells are usually of B-cell origin, and rarely of T-cell or histiocytic origin. Although this clinicopathological entity of lymphoma has not been listed in general pathological classifications such as REAL classification or the Working Formulation, it is recently in the WHO classification scheme, which is essentially an updated REAL scheme, and the EORTC classification scheme. METHODS: In this report, a 62-year-old woman with intravascular large B-cell lymphoma was observed by clinical, histopathological, immunohistochemical and molecular methods. RESULTS: A 62-year-old woman presented with large erythematous macules on the bilateral thighs and lower legs. The lesions were accompanied with hard, tender, intradermal or subcutaneous nodules mimicking erythema nodosum. Histopathological examination in the first biopsy revealed non-specific panniculitis compatible with erythema nodosum. The second biopsy revealed emboli of atypical lymphocytes within many of the dilated and proliferated vessels in the deep dermis and subcutaneous tissue. These cells were positive for L-26 and kappa light chain, and negative for lambda light chain, factor VIII-related antigen, CD30, CD34, CD68 and UCHL-1. These findings confirmed the diagnosis of intravascular large B-cell lymphoma. A laboratory examination showed a high level of LDH and abnormal cells in the bone marrow. An MRI of the brain and computed tomographic (CT) scans of the chest and abdomen revealed no evidence of malignancy. Before the treatment, the size of the nodules decreased spontaneously by about 50% in one month and significantly in two months. Although combination chemotherapy, which consisted of CHOP, brought her partial remission, she experienced neurological symptoms 6 months after the initial treatment and died of brain metastasis 9 months after the treatment. CONCLUSIONS: This is a unique case for two following reasons: 1) the first biopsy revealed non-specific findings compatible with erythema nodosum; and 2) before the treatment, the nodules regressed spontaneously. Dermatologists should take multiple skin biopsies for EN lesions with the non-specific histopathological findings not to refute the existence of this disease.

Biopsy↗

Ichthyosis follicularis with alopecia and photophobia in a mother and daughter.

A mother and daughter having ichthyosis follicularis with alopecia and photophobia (IFAP) are reported, with histopathological and electron microscopic findings. We have followed the clinical course of the mother for 26 years since she was 5 years old, and the daughter since birth. They have had almost all the classical and some of the minor symptoms of IFAP, including severe photophobia, extensive non-inflammatory follicular hyperkeratosis, generalized non-scarring alopecia, hyperkeratosis of the extensor aspect of the four extremities, nail deformity and recurrent cheilitis. In addition, their facial appearance greatly resembles that of previously reported patients. A consistent feature in the mother was florid keratotic inflammatory eruptions on the genital region during each of her pregnancies, which rapidly improved after the delivery. Skin biopsy of the genital lesion showed marked acanthosis with dyskeratosis and spongiotic changes. The electron microscopic examination of diseased skin showed damaged desmosomes with spongiosis. No obvious changes were found in normal appearing skin.

Adult↗

High expression of macrophage migration inhibitory factor in human melanoma cells and its role in tumor cell growth and angiogenesis.

Macrophage migration inhibitory factor (MIF) is known to function as a cytokine, hormone, and glucocorticoid-induced immunoregulator. In this study, we reported for the first time that human melanocytes and melanoma cells express MIF mRNA and produce MIF protein. Immunohistochemical analysis demonstrated that MIF was mostly localized in the cytoplasm of melanocytes and G361 cells, a widely available human melanoma cell line. In particular, strong positive staining was observed at the dendrites of these cells. Expression of MIF mRNA and production of MIF protein were much higher in human melanoma cells such as G361, A375, and L32 than in normal cultured melanocytes. To assess the role of MIF overexpression in melanoma cells, G361 cells were transfected with an antisense human MIF plasmid. The results demonstrated that the cell growth rate of the transfected cells was markedly suppressed, suggesting that MIF participates in the mechanism of proliferation of melanoma cells. To further evaluate the function of MIF, we employed the Boyden chamber method to examine the effect on tumor cell migration and found that MIF enhanced the migration of G361 cells in a dose-dependent manner. Furthermore, we administered anti-MIF antibody into tumor (G361 cells in a Millipore chamber)-bearing mice to assess the effect on tumor-associated angiogenesis. The anti-MIF antibody significantly suppressed tumor-induced angiogenesis. Taken together, these results indicated that it is likely that MIF may function as a novel growth factor that stimulates incessant growth and invasion of melanoma concomitant with neovascularization.

Animals↗

Increased production of macrophage migration inhibitory factor by PBMCs of atopic dermatitis.

BACKGROUND: Atopic dermatitis (AD) is a chronic pruritic inflammatory skin disorder. The underlying cause of AD is multifactorial, and several cytokines are considered to be involved in this severe inflammatory skin disease. Macrophage migration inhibitory factor (MIF) is an immunoregulatory cytokine essential for T-cell activation and delayed-type hypersensitivity. Recently we demonstrated that serum MIF content was significantly elevated in patients with AD. Consistent with this, expression of MIF messenger RNA in keratinocytes of the eczematous skin lesion was up-regulated. OBJECTIVE AND METHOD: Although keratinocytes are considered to be a potential source of increased serum MIF content in AD, precise evaluation has not been carried out in other tissues. MIF is ubiquitously expressed in various cells, including T cells and macrophages. In this study we examined MIF production and its messenger RNA level of PBMCs from patients with AD to investigate the contribution of these cells to elevated serum MIF content and to its pathologic characteristics. RESULTS: Consistent with our previous findings, the serum MIF content of patients with AD was significantly elevated compared with nonatopic healthy control subjects and patients with chronic urticaria without eczema. As for the MIF productivity of unstimulated PBMCs, the MIF content in the culture medium of PBMCs obtained from patients with AD (40.4 +/- 8.4 ng/mL) (mean +/- SEM) was significantly increased compared with that from healthy control subjects (6.6 +/- 1.1 ng/mL) and patients with chronic urticaria (8.5 +/- 1.4 ng/ml) (P <.0001). When PBMCs were stimulated by concanavalin A, MIF production by PBMCs of patients with AD was more enhanced than in control subjects or patients with chronic urticaria. The increased ratio of MIF production by PBMCs in response to concanavalin A was significantly correlated with the severity of clinical features of AD. Supporting these results, the level of MIF mRNA in PMBCs of patients with AD was significantly higher than in nonatopic healthy control subjects. CONCLUSIONS: The current results showed that PBMCs should be an important source of increased serum MIF in AD. Because MIF has the potential to induce local and systemic inflammatory and immune responses, it is conceivable that MIF produced by PBMCs may affect local and systemic pathologic features in AD.

Adolescent↗

H2 histamine receptor-mediated increase in intracellular Ca2+ in cultured human keratinocytes.

Histamine is present in the epidermis in intracellular and extracellular area and is released from mast cells and keratinocytes in the early stage of inflammation of the skin. Such release may contribute to common itching or intensify the inflammatory responses. Histamine binds to its receptors and participate in regulation of the inflammatory responses by acting on endothelial cells, nerve endings, lymphocytes, monocytes, and leukocytes. Histamine has direct effects on keratinocytes as well. Histamine modulates the proliferation of keratinocytes. The binding of histamine to the receptor on keratinocyte membrane induces activation of adenylate cyclase and phospholipase C through GTP binding protein. We previously reported that histamine induces transient increase in intracellular Ca2+ in cultured normal human epidermal keratinocytes (NHEK) and normal epidermis. H1 and H2 histamine receptors are widely distributed in many tissues and cells. In this study, we investigated which types of histamine receptors are related to the increase in intracellular Ca2+ by histamine stimulation in cultured human epidermal keratinocytes. NHEK were cultured in serum-free KGM medium. With H1 antihistamines, mepyramine and diphenhydramine, histamine responses were moderately but not statistically significantly inhibited. With H2 antihistamine, cimetidine, histamine response was significantly inhibited. Epinephrine response was not affected by these antihistamines. Thus, it is considered that H2 antihistamines specifically block histamine-mediated increase in intracellular Ca2+ of cultured normal human keratinocytes.

Calcium↗

Analysis of c-kit exon 11 and exon 17 of urticaria pigmentosa that occurred in monozygotic twin sisters.

Genomic DNA extracted from peripheral blood mononuclear cells of monozygotic twin patients with urticaria pigmentosa was investigated for mutations of proto-oncogene c-kit. Neither the patients nor their families had genomic mutations in exon 11 or exon 17 of c-kit. The patients did not have any systemic involvement or bone marrow abnormalities. There are indications that some genetic factors may participate in the pathogenesis of urticaria pigmentosa in monozygotic twins. In the present patients, factors other than genomic faults in exon 11 and exon 17 of c-kit may be responsible for the pathogenesis.

Adult↗

Ultraviolet B radiation upregulates the production of macrophage migration inhibitory factor (MIF) in human epidermal keratinocytes.

Human epidermal cells are capable of secreting various cytokines with immunologic, inflammatory, and proliferative properties. In a previous study, by reverse transcription-polymerase chain reaction and immunohistochemical analysis, we have shown that human epidermal keratinocytes express macrophage migration inhibitory factor and identified its presence in the cytoplasm. In this study, we detected an increased serum macrophage migration inhibitory factor level by enzyme-linked immunosorbent assay after a single total-body ultraviolet B exposure in vivo, indicating that human keratinocytes respond and release this cytokine in response to ultraviolet B irradiation. Moreover, we evaluated the effect of ultraviolet B on migration inhibitory factor production in cultured human epidermal keratinocytes and epidermal sheets. The results of enzyme-linked immunosorbent assay and northern blot analyses showed that migration inhibitory factor production of cultured keratinocytes was increased by ultraviolet B exposure. During the past few years, migration inhibitory factor was found to have a variety of biologic functions, such as being essential for T cell activation and induction of inflammatory cytokines. In this context, these results should encourage further investigation on the pathophysiologic role of migration inhibitory factor in cutaneous inflammatory reactions and immune responses.

Cell Survival↗

Alpha-thrombin stimulates expression of macrophage migration inhibitory factor in skin fibroblasts.

Macrophage migration inhibitory factor (MIF) is induced by various stimuli such as wounds and infection and regulates inflammatory and immunological responses. To date, we have found increased expression of MIF during the wound healing process in rat skin. Immunohistochemical analysis demonstrated enhanced expression of MIF in wound skin lesions. On the other hand, alpha-thrombin, a multifunctional serine protease, plays an important role in wound healing with regard to induction of inflammatory cytokines such as interleukin-6 (IL-6). Accordingly, we examined the effect of alpha-thrombin on MIF production in human skin fibroblasts. Alpha-thrombin significantly stimulated MIF secretion into culture medium of fibroblasts quantitated by an enzyme-linked immunosorbent assay (ELISA). Consistent with this, we observed the upregulation of MIF mRNA in response to alpha-thrombin by Northern blot analysis. Taken together, these results suggest that MIF produced by fibroblasts in response to alpha-thrombin plays an important regulatory role in wound repair.

Cell Culture Techniques↗