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Toshihiro Okamoto

Publications and source records attributed to Toshihiro Okamoto.

5 recordsLinked to original sources

Osthole prevents anti-Fas antibody-induced hepatitis in mice by affecting the caspase-3-mediated apoptotic pathway.

Fas (Apo-1/CD95) ligand, which is a type II membrane protein, is a major inducer of apoptosis. Osthole is a coumarin derivative present in medicinal plants. The effect of osthole on hepatitis induced by anti-Fas antibody in mice was studied. Pretreatment of mice with osthole (10, 50, and 100 mg/kg, i.p.) prevented the elevation of plasma alanine aminotransferase (ALT) caused by anti-Fas antibody (175 microg/kg, i.v.). Administration of osthole to mice even at a dose of 10 mg/kg significantly inhibited of anti-Fas antibody-induced elevation of plasma ALT. Capase-3 is a cysteine protease, and treatment of mice with anti-Fas antibody caused an elevation of caspase-3 activity at 3.5 and 6 hr. Pretreatment of mice with osthole (100 mg/kg, i.p.) inhibited the elevation of caspase-3 activity caused by anti-Fas antibody. However, the addition of osthole (up to 10(-4)M) to a liver cytosol fraction isolated from mice treated with anti-Fas antibody did not inhibit caspase-3 activity in vitro. Thus, treatment of mice with osthole inhibited caspase-3 activity by an effect upstream of caspase-3 activation. The livers of mice treated with anti-Fas antibody contained apoptotic and dead cells; osthole attenuated the development of this apoptosis and cell death. The present results show that osthole prevented anti-Fas antibody-induced hepatitis by inhibiting the Fas-mediated apoptotic pathway.

Alanine Transaminase↗

A co-stimulatory molecule on activated T cells, H4/ICOS, delivers specific signals in T(h) cells and regulates their responses.

We examined the co-stimulatory activity of H4/ICOS on murine activated CD4(+) T cells and found that the cross-linking of H4/ICOS enhanced their proliferation, in addition to raising IFN-gamma, IL-4 and IL-10 production to levels comparable to those induced by CD28. However, IL-2 production was only marginally co-stimulated by H4/ICOS. This distinct pattern of lymphokine production appears to be induced by a specific intracellular signaling event. Compared with CD28, H4/ICOS dominantly elicited the Akt pathway via phosphatidylinositol 3-kinase. In addition, mitogen-activated protein kinase family kinases were activated in different ways by CD28 and H4/ICOS. The strong phosphorylation of p46 c-Jun N-terminal kinase was observed upon CD28 co-stimulation, but was less potently induced by H4/ICOS. The strain diversity in the induction of H4/ICOS was recognized. The expression of H4/ICOS on BALB/c activated CD4(+) T cells was >6-fold higher compared with C57BL/6 activated CD4(+) T cells. Furthermore, BALB/c activated CD4(+) T cells exhibited more T(h)2-deviated lymphokine production as compared with C57BL/6 activated CD4(+) T cells and signaling through H4/ICOS during the primary stimulation of naive CD4(+) T cells promoted the generation of T(h)2 cells. Thus, the difference in H4/ICOS expression on activated CD4(+) T cells, which is regulated among the mouse strains, may also regulate the polarization of T(h) cells.

Animals↗

NSAID zaltoprofen improves the decrease in body weight in rodent sickness behavior models: proposed new applications of NSAIDs (Review).

In infectious diseases and during inflammation, anorexia, loss of body weight, malaise, fatigue and depression are induced. These symptoms are correctively called 'sickness behaviors', and the central actions of cytokines play a role in their induction. The loss of body weight in cancer cachexia is also a result of development of sickness behaviors. It has been reported that the administration of NSAID ibuprofen to patients with cancer cachexia improves the loss in body weight. We studied the effect of NSAID on the loss of body weight by using rodent sickness behavior models. We have reported that sickness behaviors such as anorexia, decrease in body weight, and loss of locomotor activity are induced in concanavalin A (Con A)-induced mouse hepatitis and carbon tetrachloride-induced rat hepatitis. Zaltoprofen is a non-steroidal anti-inflammatory drug (NSAID) causes potent inhibition of cyclooxygenase-2 with fewer side effects on the gastrointestinal tract. Zaltoprofen improves the loss in body weight in both Con A-treated mice and carbon tetrachloride-treated rats. These results suggest the possible application of zaltoprofen for the treatment of sickness behaviors including loss of body weight occurring in cancer cachexia.

Animals↗

[Combination chemotherapy with nedaplatin (CDGP) and 5-FU for oral cancer].

Chemotherapy using CDGP plus 5-FU was evaluated in patients with oral cancer. The subjects were patients with squamous cell carcinoma of the oral cavity who had not received any therapy, comprising 7 patients with carcinoma of the tongue, 2 with buccal carcinoma, 2 with maxillary gingival carcinoma, and 1 with carcinoma of the oral floor. There were 4 patients in Stage II, 3 patients in Stage III and 5 patients in Stage IV. Patients with a PS < or = 1, WBC > or = 4,000/mm3, Hb > or = 10 g/dl, platelet count > or = 10 x 10/mm3, and normal liver, kidney, and heart function at baseline were selected for this study. In all patients, 5-FU was administered at a dose of 600 mg/m2/day for 5 days (day 1 to day 5) by continuous infusion, for a total dose of 3,000 mg/m2. CDGP was administered on day 1 at a dose of 80 mg/m2 in 8 patients and at 100 mg/m2 in 4 patients. This treatment was one course of therapy, and patients received 1 or 2 courses. Of 12 patients who were evaluable, there were 9 partial responses and 3 no changes, for a major response rate of 75%. Toxicities experienced by patients were mild (grade 2 or lower) gastrointestinal disorders (including nausea/vomiting) and renal impairment, while grade 3 leukopenia and thrombocytopenia developed in 1 patient each and grade 4 thrombocytopenia occurred in another patient. Thus, patients receiving CDGP + 5-FU therapy should be closely monitored for hematologic toxicity. Since CDGP + 5-FU therapy achieved a good response rate (75%) in the treatment of squamous cell carcinoma of the oral cavity, we plan to use this therapy in the future and assess its benefit in a larger number of patients.

Adult↗