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Biomedical subjects

Mitsuru Yanai

Publications and source records attributed to Mitsuru Yanai.

22 records · Page 2Linked to original sources

Modulation of hepatic granulomatous responses by transgene expression of DAP12 or TREM-1-Ig molecules.

DAP12 (also known as KARAP) is a novel ITAM-bearing transmembrane adapter molecule that is expressed on the cell surface of natural killer cells, monocytes, dendritic cells, and macrophages. Several myeloid cell-specific DAP12-associating receptors, such as TREM receptor family, SIRP-beta1, and MDL-1 have been identified. The in vivo function of DAP12 and its associating molecules in inflammation has remained primarily unknown. To investigate DAP12 signaling during chronic inflammation, we constructed two adenoviral gene transfer vectors to express FLAG/DAP12 (Ad-FDAP12) and the extracellular domain of mouse TREM-1 and the Fc portion of human IgG1 (Ad-TREM-1 Ig), respectively, and observed their modulatory activities in a mouse model of hepatic granulomatous inflammation elicited by zymosan A. Mice were injected with zymosan A intravenously and 24 hours after zymosan A, they were injected with Ad-FDAP12 or Ad-TREM-1 Ig. Zymosan A-induced hepatic granuloma formation peaked at day 7 and markedly declined by day 10. Although adenoviral-mediated DAP12 gene transfer did not enhance granuloma formation by day 7, it sustained and enhanced granuloma formation beyond day 7. However, an anti-FLAG monoclonal antibody used to potentiate the signaling of adenoviral-derived DAP12, enhanced granuloma formation at day 7. In sharp contrast to the effect by Ad-FDAP12, transgene expression in the liver of soluble form of extracellular domain of TREM-1 as an antagonist of DAP12 signaling, remarkably inhibited zymosan A-induced granuloma formation at all time points examined. Our findings thus suggest that both DAP12 and TREM-1 are involved in the development of granulomatous responses in the liver.

Adaptor Proteins, Signal Transducing↗

Dialysis-membrane-dependent reduction and adsorption of circulating hepatitis C virus during hemodialysis.

BACKGROUND/AIMS: Patients on chronic hemodialysis (HD) are often infected with hepatitis C virus (HCV), a common cause of chronic liver disease. In some cases, however, decreases in the serum HCV load after HD have been documented. To better understand this phenomenon, we investigated the effects of various types of dialysis membrane on virus load in the circulation in vivo and in vitro. METHODS: HCV RNA levels in patients' serum, filtrate and dialyzer membranes were analyzed semiquantitatively by reverse transcription-polymerase chain reaction (RT-PCR) before and after HD treatment with two to four different types of dialysis membrane. HCV RNA was also determined from each fraction in in vitro dialysis and ultrafiltration. RESULTS: In HD patients treated with a polysulfone (PS) membrane and a hemophan membrane, the HCV RNA titer reproducibly decreased by a factor of 10(-1)-10(-2). In contrast, a cuprophan (CU) membrane had no detectable effect on HCV viremia, and HD with the AN69 membrane reduced HCV RNA levels in only a subset of the patients. In addition, a PS membrane, but not a CU membrane, reduced the level of circulating HCV in an in vitro assay. In both in vivo and in vitro experiments, HCV RNA was recovered from the PS membrane itself, but not from the ultrafiltrate. CONCLUSIONS: Membrane-dependent adsorption of HCV occurs during HD, causing a transient reduction in HCV in the circulation of patients.

Adsorption↗

[Novel renal function marker, ATP--establishing the normal range, cases of anti-tumor drags administration for urinary-track tumor, diabetic diseases and a newborn baby].

Urinary free ATP assay by the firefly luciferin-luciferase method is a rapid and simple method for determining renal function, especially uriniferous tubule function. Normal range of urinary free ATP concentration, daily ATP excretion in urine, urinary ATP/creatinine value and ATP decomposition activity in urine is 1.1 x 10(-9)-3.4 x 10(-8) M, 4.0 x 10(-9)-4.1 x 10(-8) mole, 5.0 x 10(-13)-5.9 x 10(-11) mol/mgCr and 100-77% express for the remaining rate of additional ATP, respectively. A significant correlation was found between free ATP concentration and daily ATP excretion in urine with a correlation coefficient of 0.84. In cases of anti-tumor drug(cisplatin = cis-diamminedichloroplatinum II) administration for urinary-track tumor, abnormal urinary free ATP concentration and ATP decomposition activity in urine were clearly demonstrated after a few days of cisplatin administration. The appearance of a tendency toward abnormal relative ATP values were similar to changes in beta 2-MG and NAG values. Diabetic patients often demonstrate unusually high values of urinary free ATP concentration. In asphyxia of the newborn, urinary ATP/creatinine value were significantly higher than those in healthy newborn, but urinary NAG values did not differ.

Adenosine Triphosphate↗

[Costs and benefits in hospital infection control].

Economic concerns have taken on increasing importance in infection control since the mid 1970s in the US. The US studies on the economics of infection control have been mainly of the following types: 1) Cost estimates, 2) Effectiveness estimates, 3) Cost-effectiveness analysis, 4) Cost-benefit analysis, 5) Cost-utility analysis, 6) Cost-containment studies, 7) Cost minimization analysis and 8) Meta-analysis. The Japanese Society of Environmental Microbiology was established in 1986. There are, however, few papers on the economics of infection control in Japan. The main problems are shortage in human resources and the health care system. It is high time that a new research system of hospital infections will be established in Japan.

Cost-Benefit Analysis↗