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Y Fujimura

Publications and source records attributed to Y Fujimura.

354 records · Page 20Linked to original sources

Low-dosage intravenous immunoglobulin in the management of a patient with acquired von Willebrand syndrome associated with monoclonal gammopathy of undetermined significance.

We report herein the case of a 69-year-old Japanese man with acquired von Willebrand syndrome associated with monoclonal gammopathy of undetermined significance who developed IgG1-kappa antibodies against von Willebrand factor (VWF). The patient was urged to undergo tooth extractions because of alveolar pyorrhea, and a low-dosage intravenous immunoglobulin (IV-Ig) therapy (0.3 g of IgG/kg/day for 3 days) was chosen for him. On the 4th day after the infusion, VWF antigen and VWF ristocetin cofactor increased to 40 and 78% of the control, respectively, and dental extractions were performed successfully. On the 7th day, these values reached a maximum, i.e. 95 and 160% of the control, respectively. Then, they quickly decreased to 35 and 75% on the 10th day, and 6 months later, they became 16 and <3% of the control, respectively. Upon analysis of plasma VWF multimers (VWFMs) in this patient, those with large to medium molecular masses more selectively disappeared before the IV-Ig infusion than did those with small molecular masses. On the 4th day, the pattern of VWFMs was completely normalized and appeared to persist until the 10th day. Six months later, a small amount of large to medium-sized VWFMs was still present, but at 7-8 months, the pattern of VWFMs became almost the same as that before infusion. Throughout the patient's clinical course, the activity of plasma VWF-cleaving protease, which specifically cleaves the Tyr842-Met843 bond of the subunit and reduces its multimeric sizes, was quite normal (95-119%). These results provided consistent evidence that the selective absence of VWFMs with large to medium molecular masses in this patient is caused by the heightened clearance of a complex of IgG inhibitor and VWFMs from the circulation, presumably through IgG binding to the Fc receptor of macrophages. Furthermore, these results also indicated that a low-dosage IV-Ig therapy is effective enough for hemostatic management for programmed surgery.

ADAM Proteins↗

Effect of cyclosporine on the uptake of monoclonal antibody to cardiac myosin.

Monoclonal antibody to cardiac myosin labeled with indium-111 diethylenetriamine pentaacetic acid holds promise as a noninvasive marker of cardiac graft rejection. Uptake of antibody has correlated with histologic evidence of rejection in nonimmunosuppressed animals. Whether this correlation will apply with immunosuppression has important clinical implications. Fifty-two heterotopic heart transplantations were performed between isogeneic and nonisogeneic strains of rats. Cyclosporine-treated (15 mg/kg day subcutaneously for 9 days) and untreated control animals were killed on day 9, 48 hours after injection of radiolabeled antibody. Donor and recipient hearts were submitted for scintillation scanning and histologic analysis. In untreated animals, antibody uptake was significantly greater in nonisogeneic than in isogeneic donor hearts, correlating with a significantly higher rejection score and increased myocyte necrosis in the former. Between isogeneic groups, cyclosporine-treated donor hearts had significantly higher antibody uptake and donor/native antibody uptake ratios than did untreated isogeneic hearts. There was, however, no significant difference in the histologic degree of rejection or myocyte necrosis between isogeneic groups. Between cyclosporine-treated and untreated nonisogeneic animals, donor heart antibody uptake and donor-native heart antibody uptake ratios were not significantly different. Nonetheless, the histologic grade of rejection and presence of myocyte necrosis was significantly greater in untreated than in treated nonisogeneic hearts. There were no abnormalities in the native hearts. In this model, cyclosporine treatment correlates with an increased uptake of antimyosin antibody in both isogeneic and nonisogeneic donor hearts, out of proportion to histologic evidence of rejection or myocyte necrosis. This effect may lead to false-positive results in clinical tests utilizing antimyosin antibody uptake as a marker of rejection in the presence of cyclosporine therapy.

Animals↗

Comparative anatomy and histochemistry of human and canine latissimus dorsi muscle.

Gross and histologic studies of human and canine latissimus dorsi muscle were carried out to identify anatomic and histochemical properties that may be relevant to its use as a resource muscle, particularly for heart reconstruction. In both human and canine latissimus dorsi, three distinct muscle segments were observed, differing in direction of fibers, fiber characteristics, thickness, and blood supply. The entire canine latissimus dorsi could also be separated into superficial and deep layers, whereas only the anterolateral segment of human latissimus dorsi was separated further by the neurovascular bundle. Histochemical studies suggested significant differences between the ratios of fast to slow fibers in the superior and anterolateral segments of human muscle. Variation in size, weight, and shape within and between subjects demonstrates a need for careful evaluation of the potential resource muscle.

Aged↗