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Biomedical subjects

Hideki Mizutani

Publications and source records attributed to Hideki Mizutani.

14 recordsLinked to original sources

Ganglioside GD3 promotes cell growth and invasion through p130Cas and paxillin in malignant melanoma cells.

Although ganglioside GD3 levels are highly elevated in malignant melanomas, the role of GD3 in melanomas' malignant properties has not been clearly shown. To investigate this problem, we genetically generated GD3-positive (GD3+) transfectant cells from a GD3-negative (GD3-) mutant line SK-MEL-28-N1 and analyzed the phenotypic changes in the transfected cells. GD3+ cells showed markedly increased cell growth and invasive characteristics. Two bands that underwent stronger tyrosine phosphorylation in GD3+ cell lines than in controls after treatment with FCS were found with molecular masses of 130 and 68 kDa. They were identified as p130Cas and paxillin by sequential immunoprecipitation. Their roles in cell growth and invasion were analyzed with a small interfering RNA (siRNA) approach. Cell growth, as analyzed by BrdUrd uptake, was strongly suppressed in GD3+ cells to near the levels of GD3- cells when treated with siRNA for p130Cas but not when treated with siRNA for paxillin. However, treatment with siRNAs of either p130Cas or paxillin resulted in the marked suppression of the invasive activity of GD3+ cells almost to the levels of control cells. These results suggested that these two molecules function as effectors of GD3-mediated signaling, leading to such malignant properties as rapid cell growth and invasion.

Cell Division↗

Mechanism of apoptosis induced by doxorubicin through the generation of hydrogen peroxide.

The main anticancer action of doxorubicin (DOX) is believed to be due to topoisomerase II inhibition and free radical generation. Our previous study has demonstrated that TAS-103, a topoisomerase inhibitor, induces apoptosis through DNA cleavage and subsequent H(2)O(2) generation mediated by NAD(P)H oxidase activation [H. Mizutani et al. J. Biol. Chem. 277 (2002) 30684-30689]. Therefore, to clarify whether DOX functions as an anticancer drug through the same mechanism or not, we investigated the mechanism of apoptosis induced by DOX in the human leukemia cell line HL-60 and the H(2)O(2)-resistant sub-clone, HP100. DOX-induced DNA ladder formation could be detected in HL-60 cells after a 7 h incubation, whereas it could not be detected under the same condition in HP100 cells, suggesting the involvement of H(2)O(2)-mediated pathways in apoptosis. Flow cytometry revealed that H(2)O(2) formation preceded the increase in Delta Psi m and caspase-3 activation. Poly(ADP-ribose) polymerase (PARP) and NAD(P)H oxidase inhibitors prevented DOX-induced DNA ladder formation in HL-60 cells. Moreover, DOX significantly induced formation of 8-oxo-7,8-dihydro-2'-deoxyguanosine, an indicator of oxidative DNA damage, in HL-60 cells at 1 h, but not in HP100 cells. DOX-induced apoptosis was mainly initiated by oxidative DNA damage in comparison with the ability of other topoisomerase inhibitors (TAS-103, amrubicin and amrubicinol) to cause DNA cleavage and apoptosis. These results suggest that the critical apoptotic trigger of DOX is considered to be oxidative DNA damage by the DOX-induced direct H(2)O(2) generation, although DOX-induced apoptosis may involve topoisomerase II inhibition. This oxidative DNA damage causes indirect H(2)O(2) generation through PARP and NAD(P)H oxidase activation, leading to the Delta Psi m increase and subsequent caspase-3 activation in DOX-induced apoptosis.

8-Hydroxy-2'-Deoxyguanosine↗

Effects of ovariectomy and estrogen replacement on rat oral mucosa.

OBJECTIVE: Although a close relationship between the oral discomfort and the menopause is suggested, it is not clear if the alteration of sex steroids would cause any histological or even pathological change in the oral mucosa. The aim of this study was to investigate the possible effect of sex steroid deficiency on the rat oral mucosa as well as the effect of its replacement. METHODS: The oral mucosa of ovariectomized rats was compared to that of sham-operated rats both histologically and immunohistochemically. The same evaluation was also performed after hormone replacement therapy for the ovariectomized rats. RESULTS: The ovariectomized animals presented reduced thickness of the mucosal epithelium with an irregular corneal (keratinised) surface. Partial disappearance of lingual papilla with irregular lete-peg was also noted. The corneal (keratinised) layer in the sublingual region was significantly thinner in ovariectomized animals. The results from immunohistochemistry showed the possibility that the turnover period was prolonged in ovariectomized rats. Estrogen replacement could compensate for the reduction in mucosal thickness in the animal model. CONCLUSIONS: The overall results suggest that sex steroids have a specific role in the maintenance of normal oral mucosa, and its deficiency possibly leads to the onset of oral discomfort in postmenopausal women.

Animals↗

Immunohistochemical study of vascular endothelial growth factor (VEGF) and bone morphogenetic protein-2, -4 (BMP-2, -4) on lengthened rat femurs.

BACKGROUND: With a hypothesis that "angiogenesis occurs before osteogenesis," an experimental study using a rat model was carried out. Histological and immunohistochemical examinations of vascular endothelial growth factor (VEGF) and bone morphogenetic protein-2, -4 (BMP-2, -4) were performed at the margins of bone formation after femoral bone lengthening. MATERIAL AND METHODS: Thirty-five Wistar rats weighing 380-400 g (11-week-old males) were used. An external fixator was applied on the femur, and an osteotomy performed under general anaesthesia. Five days after the operation, femoral lengthening was initiated at a rate of 0.8 mm/day for 8 days. The rats were sacrificed just after distraction was completed, and at 1, 3, 5, 7, 9 and 14 days after distraction. The specimens from these rats were stained with haematoxylin-eosin, VEGF, and BMP-2, -4 immunohistochemical staining, and were investigated. RESULTS: Expression of VEGF was observed in the woven bone at the osteogenetic front and near to osteoblasts around the newly formed bone. On the other hand, expressions of BMP-2, -4 were seen in the hypertrophic chondrocytes. In the same specimen, the VEGF area was further away from the bone stump than the BMP-2, -4 areas. CONCLUSION: These results confirm the hypothesis that angiogenesis is induced before osteogenesis.

Animals↗

GM1 expression in H-ras-transformed NIH3T3 results in the suppression of cell proliferation inducing the partial transfer of activated H-ras from non-raft to raft fraction.

c-H-ras is located in lipid/rafts and undergoes cholesterol dependent regulation. To analyze the regulatory effects of ganglioside GM1 on the proliferation of fibroblasts transformed with mutated ras gene, GM1 synthase cDNA was transfected into NIH3T3/H-ras cells containing mutation. In the transient expression system with EGFP-fused GM1 synthase, the ratio of BrdU-positive cells among EGFP-positive cells was compared between GM1(+) transfectant cells and control cells, indicating that the transient GM1 expression suppresses cell proliferation. Then, established transfectant cells C21 and C34 expressed definite levels of GM1, and analyzed for the cell growth with the control cells D2 and D4 expressing no GM1. GM1(+) cells showed reduced proliferation compared with controls. Phosphorylation levels of ERK1/2 after FCS treatment were examined, showing that those on the GM1(+) transfectant cells increased slowly, while those in the controls rapidly reached the plateau. Fractionation of Triton X-100 extracts with sucrose density gradient ultra-centrifugation revealed that activated H-ras proteins from controls as well as NIH3T3/H-ras were completely localized in non-GEM/raft fraction. On the other hand, some portions of activated H-ras were transferred to GEM/raft fraction, i.e., 32% in C21, and 8% in C34. Since the Ras effector Raf-1 was localized in non-GEM/raft, the growth suppression might be caused, at least partly, by the movement of activated H-ras to GEM/raft fraction.

Animals↗

Comparison of cyclosporine concentrations in renal transplant recipients using ACMIA and mFPIA methods.

OBJECTIVE: This study investigated the performance and data comparability of a new, relatively specific immunoassay method, affinity column mediated immunoassay (ACMIA) run on the Dimension Xpand-HM, and the established less specific monoclonal fluorescence polarization immunoassay (mFPIA) method on the TDx analyzer (mFPIA/TDx) in determining cyclosporine (CsA) concentrations. METHODS: Accuracy and within and between-run precision were tested. Then we measured CsA concentrations of 216 samples obtained from 51 patients and divided the 113 samples from 21 patients with renal transplants into two groups based on sampling time. RESULTS: Accuracy relative to the four weighed-in concentrations ranged from 99% to 104% and from 106% to 117% for ACMIA and mFPIA/TDx, respectively. The mean within-run precision (CV%) for the ACMIA and mFPIA/TDx methods was 4.31% and 2.57%, respectively. The mean recovery for ACMIA and mFPIA/TDx in the between-run study was 104.50% and 111.12%, respectively. The mFPIA/ACMIA ratio (the ratio of the concentration measured by mFPIA/TDx to that measured by ACMIA) of C2-3 (concentrations measured 2-3 h after oral administration) was 118.85%, which was significantly smaller than that (139.12%) of C8-12 (those measured more than 8 h after the administration) at each mean concentration. CONCLUSIONS: These results indicate that ACMIA is more accurate than mFPIA/TDx, and the difference in the mFPIA/ACMIA ratio between C2-3 and C8-12 was due to the difference in the relative cross-reactivity with CsA metabolites. Although mFPIA/TDx had an apparent calibration error, both methods had a clinically acceptable within and between-run precision.

Antibodies, Monoclonal↗

Weekly administration of irinotecan (CPT-11) plus cisplatin for refractory or relapsed small cell lung cancer.

PURPOSE: Weekly administrations of CPT-11 plus cisplatin together with an anti-diarrheal program, the Oral Alkalization and Control of Defecation [Int J Cancer 1999;83:491; Int J Cancer 2001;92:269; Cancer Res 2002;62:179], were evaluated in this phase II study for patients with refractory or relapsed small cell lung cancer. METHODS: Patients were treated by weekly administrations of 60 mg/m(2) CPT-11 plus 30 mg/m(2) cisplatin on Days 1, 8 and 15 over 4 weeks. Coinciding with the infusions and for 4 days thereafter, the anti-diarrheal program was practiced using orally administered sodium bicarbonate, magnesium oxide and basic water. RESULTS: Twenty-five patients who had prior treatments of etoposide and platinum containing regimens (16 refractory patients and nine relapsed patients) were entered. The mean dose-intensities of CPT-11 and cisplatin were 154.8 and 77.4 mg/m(2) per course, respectively. Therefore, 86% of the planned dose was delivered. There were 20 partial responses and an overall response rate of 80% (95% confidence interval, 62-96%) was obtained. The median time to progression and the median survival after starting this regimen were 3.6 and 7.9 months, respectively. The major toxicity was myelosuppression. Grades 3 and 4 neutropenia occurred in 24 and 12% of patients, respectively. One patient with febrile neutropenia was experienced, and Grade 3 diarrhea was observed in 8%. But there was no treatment death. CONCLUSION: Weekly administrations of CPT-11 plus cisplatin together with Oral Alkalization and Control of Defecation provide a practical and well tolerated regimen that was active for refractory or relapsed small cell lung cancer.

Aged↗

DNA intrastrand cross-link at the 5'-GA-3' sequence formed by busulfan and its role in the cytotoxic effect.

Busulfan (1,4-butanediol dimethanesulfonate) has been used widely for the treatment of patients with chronic myelogenous leukemia. Busulfan is bifunctional and thus may effectively induce DNA damage, which may play an important role in the cytotoxicity. In this study, we compared the cytotoxicity of bifunctional busulfan with that of monofunctional ethyl methanesulfonate (EMS) in human promyelocytic leukemia HL-60 cells. Busulfan showed a significant inhibitory effect on cell growth, whereas the cells grew in the presence of EMS. To clarify the mechanism of cytotoxicity of busulfan, we investigated DNA damage induced by busulfan using 32P-5'-end-labeled DNA fragments obtained from the human p16 tumor suppressor gene. Busulfan induced DNA damage dose-dependently, whereas EMS caused little DNA damage. DNA-sequencing experiments using piperidine and 3-methyladenine DNA glycosylase indicated that busulfan caused double-base lesions mainly at 5'-GA-3' and, to a lesser extent, at 5'-GG-3' sequences. Time of flight mass spectrometry confirmed that busulfan forms an intrastrand cross-link at the 5'-GA-3' sequence, in addition to mono-alkylation. The mechanism and the role of cross-linking at the 5'-GA-3' sequence are discussed in relation to the cytotoxicity induced by busulfan.

Antineoplastic Agents, Alkylating↗

Oxidative DNA damage induced by photodegradation products of 3(')-azido-3(')-deoxythymidine.

3(')-Azido-3(')-deoxythymidine (AZT) is carcinogenic to experimental animals and can cause the formation of 8-oxo-7,8-dihydro-2(')-deoxyguanosine (8-oxodG) in humans and animals. To clarify the mechanism of carcinogenesis by AZT, we investigated DNA damage induced by its photodegradation products, using 32P-5(')-end-labeled DNA fragments obtained from human genes. Following exposure to UVB, AZT induced DNA damage in the presence of Cu(II). Catalase inhibited DNA damage, indicating the involvement of H(2)O(2). UVB-exposed AZT plus Cu(II) induced 8-oxodG formation in a dose-dependent manner. Mass spectrum of UVB-exposed AZT demonstrated the generation of a hydroxylamine derivative. The colorimetric determination suggested that AZT was converted into the hydroxylamine derivative depending on UVB doses. UVB-exposed AZT induced double base damage at the 5(')-ACG-3(') sequence, complementary to a hot spot of the p53 gene. The basic compound, hydroxylamine, showed similar site specificity. The hydroxylamine derivative produced by photodegradation and/or possible metabolism of AZT induces oxidative DNA damage, which may participate in carcinogenesis.

8-Hydroxy-2'-Deoxyguanosine↗

Nerve terminals extend into the temporomandibular joint of adjuvant arthritic rats.

The innervation of the temporomandibular joint (TMJ) has attracted particular interest because of the close association with complex mandibular movement. Although the pathological changes of disk innervation may have a crucial role in the development of TMJ pain, the innervation of the TMJ disk by experimentally induced arthritis has rarely been examined in detail. Arthritic rats were induced by injection with 0.1ml solution of Complete Freund's adjuvant (CFA). We investigated three-dimensional distribution of nerve fibers in the TMJ disk using immunohistochemistry for protein gene product-9.5 (PGP-9.5) and calcitonin gene-related peptide (CGRP) in naive and arthritic rats. To clarify the possible role of nerve growth factor (NGF) and its receptor on changes in peripheral innervation of the TMJ, the expressions of trkA and p75 receptor in trigeminal ganglia were examined. Although PGP-9.5 and CGRP immunoreactive (ir) fibers were seen in the peripheral part of the TMJ disk, they were not seen in its central part. The total length and the length density of PGP-9.5 ir and CGRP ir nerve fibers increased in arthritic rats. The innervation area of fibers proliferating in the rostro-medial part merged with that of fibers in the rostro-lateral part in the arthritic rats. In addition, the ratio of trkA- and p75-positive small- and medium-sized cells increased in trigeminal ganglia. It is assumed that increasing innervation of the TMJ disk may be important for the pathophysiology of TMJ pain. NGF and its receptors are likely involved in pathological changes of the TMJ disk.

Animals↗

Distinct mechanisms of site-specific oxidative DNA damage by doxorubicin in the presence of copper(II) and NADPH-cytochrome P450 reductase.

The anticancer mechanism of doxorubicin (DOX), an anthracycline antibiotic, is believed to involve DNA damage through topoisomerase II inhibition and free radical generation. The free radical generation may also participate in genotoxicity, as well as cardiotoxicity, in normal human cells. The present study showed that DOX generates 8-oxo-7,8-dihydro-2'-deoxyguanosine (8-oxo-dG), an indicator of oxidative DNA damage, in HL-60 cells, but not in H(2)O(2)-resistant HP100 cells, suggesting the involvement of H(2)O(2) in cellular DNA damage. Since DOX has both p-quinone and p-hydroquinone residues, free radical generation can be initiated by either reduction or oxidation of DOX. To clarify whether the oxidized or reduced form is more important for DOX-induced H(2)O(2) generation, we investigated the site-specific DNA damage induced by DOX in the presence of Cu(II), in comparison with that in the presence of cytochrome P450 reductase, using (32)P-labeled DNA fragments. DOX caused DNA damage in the presence of Cu(II) or cytochrome P450 reductase. The degree of Cu(II)-mediated DNA damage, including 8-oxodG formation, was much greater than that of cytochrome P450 reductase-mediated DNA damage. DOX plus Cu(II) caused DNA damage specifically at guanine, thymine and cytosine residues, particularly at 5'-GG-3', 5'-GT-3' and 5'-TG-3' sequences. Scavenger experiments suggested the involvement of reactive species generated from H(2)O(2) and Cu(I). When cytochrome P450 reductase and NADPH were used instead of Cu(II), every nucleotide was uniformly damaged, suggesting the participation of.OH. We conclude that DOX may induce carcinostatic and genotoxic effects through oxidation of its p-hydroquinone moiety by metal ion rather than through p-quinone reduction by cytochrome P450 reductase.

8-Hydroxy-2'-Deoxyguanosine↗

Mechanism of apoptosis induced by a new topoisomerase inhibitor through the generation of hydrogen peroxide.

TAS-103, a new anticancer drug, induces DNA cleavage by inhibiting the activities of topoisomerases I and II. We investigated the mechanism of TAS-103-induced apoptosis in human cell lines. Pulsed field gel electrophoresis revealed that in the leukemia cell line HL-60 and the H(2)O(2)-resistant subclone, HP100, TAS-103 induced DNA cleavage to form 1-2-Mb fragments at 1 h to a similar extent, indicating that the DNA cleavage was induced independently of H(2)O(2). TAS-103-induced DNA ladder formation in HP100 cells was delayed compared with that seen at 4 h in HL-60 cells, suggesting the involvement of H(2)O(2)-mediated pathways in apoptosis. Flow cytometry revealed that H(2)O(2) formation preceded increases in mitochondrial membrane potential (DeltaPsim) and caspase-3 activation. Inhibitors of poly(ADP-ribose) polymerase (PARP) prevented both TAS-103-induced H(2)O(2) generation and DNA ladder formation. The levels of NAD(+), a PARP substrate, were significantly decreased in HL-60 cells after a 3-h incubation with TAS-103. The decreases in NAD(+) levels preceded both increases in DeltaPsim and DNA ladder formation. Inhibitors of NAD(P)H oxidase prevented TAS-103-induced apoptosis, suggesting that NAD(P)H oxidase is the primary enzyme mediating H(2)O(2) formation. Expression of the antiapoptotic protein, Bcl-2, in BJAB cells drastically inhibited TAS-103-induced apoptosis, confirming that H(2)O(2) generation occurs upstream of mitochondrial permeability transition. Therefore, these findings indicate that DNA cleavage by TAS-103 induces PARP hyperactivation and subsequent NAD(+) depletion, followed by the activation of NAD(P)H oxidase. This enzyme mediates O(2)(-)-derived H(2)O(2) generation, followed by the increase in DeltaPsim and subsequent caspase-3 activation, leading to apoptosis.

Aminoquinolines↗

[Sonic hedgehog].

We investigated ectopic cartilage and bone formation induced by transplantation of cells which were transfected with Sonic hedgehog (Shh) cDNA encoding amino-terminal peptide for gene therapy in bone regeneration. These results indicated Shh regulated early chondrogenesis and stimulation of prechondrocytes, and consequently the synergistic effects of Shh and BMP induced bone formation in vivo. In the future, further study of transfection of Shh combined with other gene groups regulating bone formation, or other bone-stimulating factors, or using new type of scaffold will be needed to confirm clinical application.

English Abstract↗