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Biomedical subjects

N Yamaguchi

Publications and source records attributed to N Yamaguchi.

At least 109 records · Page 6Linked to original sources

Mastoid pneumatization of the patulous eustachian tube.

The pathophysiology of the patulous eustachian tube (PET) remains unclear. The degree of mastoid cell pneumatization is considered an indicator of chronic inflammation of the middle ear. We used the mastoid cell area to investigate the relationship between past chronic inflammation of the middle ear cavity and a PET in 84 patients (20 to 83 years old). The mastoid cell size was calculated from radiographs and analyzed relative to the history of otitis media (OM). The controls were 100 normal ears. The patients' mastoid cell size was significantly suppressed versus that of the controls, in both 31 PET cases with and 53 PET cases without past OM. We surmise the possibility that the PET ears had experienced inflammation even when the patients had no history of OM and the tympanic membrane showed no OM sequelae. This study indicates the existence of some relationship between a history of chronic inflammation of the middle ear cavity and a PET.

Adult↗

The role of vascular endothelial growth factor in human dental pulp cells: induction of chemotaxis, proliferation, and differentiation and activation of the AP-1-dependent signaling pathway.

Vascular endothelial growth factor (VEGF) is a potent mitogen in endothelial cells, but little is known about its activity in other cell types. To clarify the role of VEGF in human dental pulp cells and pulp tissue, we investigated the effects of VEGF on the chemotaxis, proliferation, and differentiation of human dental pulp cells. VEGF induced a strong chemotactic response in human dental pulp cells in a dose-dependent manner. VEGF also marginally enhanced the proliferation of human dental pulp cells and induced an increase in alkaline phosphatase in human dental pulp cells. However, these effects of VEGF were not observed in reference to human skin fibroblasts. Analyses by the reverse-transcription/polymerase-chain-reaction method and flow cytometry showed that the mRNAs of two VEGF receptors, fins-like tyrosine kinase and kinase insert domain-containing receptor, were expressed in human dental pulp cells, whereas only fms-like tyrosine kinase mRNA was expressed in human skin fibroblasts. VEGF induced the activation of activator protein 1 (AP-1) and c-fos mRNA expression in human dental pulp cells. The AP-1 inhibitor curcumin strongly inhibited VEGF-induced alkaline phosphatase production in human dental pulp cells. In addition, VEGF antisense oligonucleotide suppressed the production of VEGF and alkaline phosphatase in human dental pulp cells. These results suggest that VEGF produced by human dental pulp cells acts directly upon human dental pulp cells in an autocrine manner, and may promote the chemotaxis, proliferation, and/or differentiation of human dental pulp cells via the utilization of kinase insert domain-containing receptor and in part through AP-1 by increasing c-fos.

Alkaline Phosphatase↗

Lipoprotein(a) is a potential coronary risk factor.

Lipoprotein(a) (Lp(a)) is recognized as a new coronary risk factor, but few studies have quantitatively assessed the relationship of serum Lp(a) levels with other coronary risk factors in many patients undergoing coronary cineangiography. Seventeen coronary risk factors were quantified (i.e., age, gender, hypertension, impaired glucose tolerance, cerebrovascular accident, hyperuricemia, smoking, family history of ischemic heart disease (IHD), history of hyperlipidemia, Lp(a), total cholesterol, high density lipoprotein (HDL)-cholesterol, triglyceride, low density lipoprotein-cholesterol, apolipoproteins(apo)A-I,B, E) to determine their relationship with the numbers of involved coronary vessels using multiple regression test in 1,006 patients who underwent coronary cineangiogram (280 non-IHD patients: 144 men, 136 women; 726 IHD patients: 460 men, 266 women; age 16-84 years, mean 60.5+/-0.3). Multiple regression test indicated R = 0.506 and items that showed high beta weight and significant p level were age, Lp(a), impaired glucose tolerance, total cholesterol, cerebrovascular accidents, HDL-cholesterol, smoking, gender, family history of IHD, and apo-A-I (0.221, p<0.001; 0.174, p<0.001; 0.616, p<0.001; 0.138, p<0.001; 0.122, p<0.001; -0.12, p<0.001; 0.092, p<0.01; 0.091, p<0.01; 0.067, p<0.05; -0.065, p<0.05; respectively). It was concluded that Lp(a) is an independent, potential, and modifiable coronary risk factor, and that reduction of serum Lp(a) is important in the clinical management of patients with IHD.

Adolescent↗

Collaborative work to evaluate toxicity on male reproductive organs by repeated dose studies in rats 12). Effects of cyclophosphamide on spermatogenesis.

To determine what is an appropriate administration period for evaluation of the testicular toxicity of cyclophosphamide, the compound was administered orally to male Crj:(CD)SD rats at doses of 5, 10, 20 and 40 mg/kg/day for 2 weeks and at doses of 2.5, 5 and 10 mg/kg/day for 4 weeks. All animals in the 2-week treatment group given 40 mg/kg/day died during the treatment period. After repeated dosing, weights of testes and epididymides did not change significantly in either 2-week or 4-week treatment groups. On conventional histopathological examination, changes in spermatogonia were too subtle to allow simple quantitative evaluation. Therefore the quantitative analysis described by Matsui et al. (1995) was employed. After 4-weeks treatment all types of germ cells decreased significantly in all stages of seminiferous tubules examined in the 10 mg/kg/day group. Spermatogonia type A in all stage seminiferous tubules examined and spermatogonia type B in stage V seminiferous tubules decreased significantly in the 5 mg/kg/day group. With 2-weeks treatment, spermatogonia type A in all stage seminiferous tubules examined were similarly decreased significantly in 10 mg/kg/day or more groups. Spermatogonia type B and pachytene spermatocytes in stage V, preleptotene spermatocytes in stage VII and zygotene spermatocytes in stage XII were decreased in 20 mg/kg/day group. Sertoli cells and the Leydig cells and epididymides were not affected in any treatment group. In conclusion, testicular toxicity induced by cyclophosphamide could be detectable after 2-weeks as well as after 4-weeks treatment if precise histopathological examination including quantitative analysis of spermatocytes are conducted.

Administration, Oral↗

Study of the smoking behavior of medical doctors in Fukui, Japan and their antismoking measures.

We conducted a survey on smoking among all members of the medical association in Fukui Prefecture, using a questionnaire to be filled in by the subjects. The survey was conducted from December of 1996 to February of 1997, and the return rate was 90.8%. The main results of this survey were as follows: the prevalence of current smoking among medical doctors was 26.0% (male: 27.8%, female: 5.2%), which was lower than that of adults in the general population. The prevalence of past smoking among doctors 20 to 34 years old by age cohort was highest and that among doctors 35 years old and higher declines as age cohort increased. Doctors' participation in activities for the prevention of smoking in the general society was also found to be at a low level.

Adult↗

Relationships between cigarette smoking, alcohol drinking, the ALDH2 genotype and adenomatous types of colorectal polyps in male self-defense force officials.

Alcohol drinking as well as cigarette smoking has been associated with development of colorectal polyps, Asians such, as Japanese, Chinese and Korean have high frequency of genetic polymorphism in low Km aldehyde dehydrogenase (ALDH2) gene which greatly regulates alcohol intake. In the present study, we investigated associations of this polymorphism and lifestyles with colorectal polyps in self-defense forces personnels in Japan. All subjects received colonoscopy at a retirement health examination. The ALDH2 genotype was determined using polymerase chain reaction and restriction fragment length polymorphism method. Frequency of the ALDH2 genotype was not different between those with colorectal polyps (n=69) and those without the polyps (n=131). Smoking was associated with development of colorectal polyps (OR=4.7, 95% confidence interval=1.9-11.5) in the ALDH2 proficient genotype. The association appeared to be enhanced by drinking alcohol since a synergistic effect of smoking and alcohol drinking (> or =60 ml/day) was indicated (OR=9.9, 95% confidence interval=2.9-34.1) by logistic regression analysis. In the ALDH2 deficient genotype, however, we could not evaluate interactions of smoking and alcohol drinking on colorectal polyp development because of the small sample size of heavy alcohol drinkers. The genotype analysis would be useful in evaluating effects of environmental factors on outcomes for each genetically defined subpopulation.

Adenomatous Polyps↗

[Cancer therapy and processing information].

The National Cancer Center Japan started to provide free, computer-based cancer information, through a service called the National Cancer Center--Cancer Information Service (NCC-CIS), to patients and their families, physicians and other health professionals via fax (telephone) and the Internet in 1996. NCC-CIS in Japanese is modeled on the Physician Data Query service produced by the National Cancer Institute in the United States and is produced from an independent standpoint adopted to the medical and social environment in Japan. NCC-CIS provides up-to-date cancer treatment information (staging, prognosis and state-of-the-art treatment by stage of disease), supportive care for each type of cancer, an image reference database, and a directory of organizations and lecture meeting reports in Japan in order to facilitate better understanding of cancer among people and support the decision-making process for physicians in order to achieve a reduction in cancer deaths.

Humans↗

Regulation of the ryanodine receptor calcium release channel: a molecular complex system.

Skeletal muscle contraction is regulated by Ca(2+) released from the sarcoplasmic reticulum (SR). The Ca(2+) release channel in the SR has been identified as the ryanodine receptor (RyR). Recently, it was found that the RyR is a large transmembrane protein that is regulated by many intrinsic factors. In this review, we mainly summarize our experimental results. We will first show that calsequestrin and the DIDS-binding 30-kDa protein work as intrinsic factors and regulate the RyR Ca(2+) release channel. Next, the DIDS-binding 30-kDa protein was identified as the ADT/ATP translocase (AAT) present in mitochondria, based on a cDNA analysis. This result shows that AAT is bifunctional and works as a transporter protein in mitochondria and as a regulator of Ca(2+) release in the SR. From these results, we propose a model in which calsequestrin, the DIDS-binding 30-kDa protein, and junctin form a ternary complex that regulates the RyR Ca(2+) release channel through interactions with triadin.

Journal Article↗

Novel association of the src family kinases, hck and c-fgr, with CCR3 receptor stimulation: A possible mechanism for eotaxin-induced human eosinophil chemotaxis.

The chemokine eotaxin is a potent and relatively eosinophil-specific chemoattractant implicated in the cell migration to inflammatory sites in allergic diseases. Eotaxin exerts its activity solely through the CCR3 receptor, but the signaling pathways are poorly defined. In this study, we show that eotaxin induces an increase in tyrosine phosphorylation of multiple cellular proteins in normal human eosinophils. Eotaxin-dependent tyrosine phosphorylation was detected 1 min after stimulation and increased for at least 15 min with kinetics similar to those of eotaxin-induced cell shape changes. Herbimycin A, a tyrosine kinase inhibitor, blocked both eotaxin-induced tyrosine phosphorylation and cell shape changes as well as chemotaxis. Immunofluorescence microscopy analyses showed that eotaxin-induced cell shape changes were accompanied by redistribution of tyrosine-phosphorylated proteins and F-actin reorganization that were sensitive to herbimycin A. Coimmunoprecipitation studies revealed that binding of eotaxin to CCR3 greatly enhanced association of the Src family kinases, Hck and c-Fgr, with CCR3 after internalization of CCR3. These results may indicate that recruitment of Hck and c-Fgr to CCR3 in a compartment triggers tyrosine phosphorylation, leading to rapid cell shape changes required for cell migration.

Benzoquinones↗

Histologic types of lung carcinoma and related family history of anatomic sites and histologic types of cancers.

BACKGROUND: Familial factors are suggested to play roles in lung carcinogenesis, but may well be different for each histologic cell type. METHODS: Information regarding smoking, past medical history, and family history of malignant diseases among first-degree relatives was collected from a total of 1188 patients with primary lung carcinoma (participants) who were treated in the thoracic oncology ward at the National Cancer Center Hospital, Tokyo, Japan. These data were analyzed for associations with the histologic type of the lung carcinoma. The main outcome measures were the relative risk of developing a malignancy, at any site or at certain specific sites, in first-degree relatives of participants who had a specific histologic type of lung carcinoma compared with the relative risk in those first-degree relatives of participants with other cell types. RESULTS: Participants with multiple malignant lesions reported significantly more first-degree relatives with a malignancy than those without multiple tumors (P = 0.008 by the Wilcoxon rank sum test). There was no statistically significant correlation between age, gender, smoking history, or histologic tumor type in the participant and the overall family history of malignancy. Site specific analyses revealed that participants with adenocarcinoma reported a family history of colorectal carcinoma, and those with squamous cell carcinoma reported a family history of head and neck carcinoma, more frequently than other participants (P = 0.041 and 0. 001, respectively, by chi-square analysis). CONCLUSIONS: The data from the current study suggest an association between familial factors and histologic type of lung carcinoma. Genetic factors to determine individual susceptibility to lung carcinogenesis should be investigated according to each histologic type.

Adenocarcinoma↗

Endostatin inhibits VEGF-induced endothelial cell migration and tumor growth independently of zinc binding.

Endostatin, produced as recombinant protein in human 293-EBNA cells, inhibits the migration of human umbilical vein endothelial cells (HUVECs) in response to vascular endothelial growth factor (VEGF) in a dose-dependent manner and prevents the subcutaneous growth of human renal cell carcinomas in nude mice at concentrations and in doses that are from 1000- to 100 000-fold lower than those previously reported. The inhibition of migration is not affected by mutations which eliminate Zn or heparin binding and inhibition of tumor growth does not depend on Zn binding. The results of the migration assays suggest that endostatin causes a block at one or more steps in VEGF-induced migration, while VEGF in turn can cause a block of the inhibition by endostatin of VEGF-induced migration of HUVECs.

Animals↗

Expression and function of TNF-related apoptosis-inducing ligand on murine activated NK cells.

TNF-related apoptosis-inducing ligand (TRAIL), a new member of TNF family, induces apoptotic cell death of various tumor cells. We recently showed that TRAIL mediates perforin- and Fas ligand (FasL)-independent cytotoxic activity of human CD4+ T cell clones. In the present study, we investigated the expression and function of TRAIL on murine lymphocytes by using newly generated anti-murine TRAIL mAbs. Although freshly isolated T, B, or NK cells did not express a detectable level of TRAIL on their surface, a remarkable level of TRAIL expression was induced preferentially on CD3- NK1.1+ NK cells after stimulation with IL-2 or IL-15. In contrast, TRAIL expression was not induced by IL-18, whereas it efficiently potentiated lymphokine-activated killer activity of NK cells. In addition to perforin inactivation and neutralization of FasL by anti-FasL mAb, neutralization of TRAIL by anti-TRAIL mAb was needed for the complete inhibition of IL-2- or IL-15-activated NK cell cytotoxicity against mouse fibrosarcoma L929 target cells, which were susceptible to both FasL and TRAIL. These results indicated preferential expression of TRAIL on IL-2- or IL-15-activated NK cells and its potential involvement in lymphokine-activated killer activity.

Animals↗

A common signaling pathway via Syk and Lyn tyrosine kinases generated from capping of the sialomucins CD34 and CD43 in immature hematopoietic cells.

The sialomucin CD34 is a useful marker for hematopoietic stem/progenitor cells. However, the role of CD34 remains poorly understood. Here we investigate the functions of CD34 and another sialomucin CD43 coexpressed on hematopoietic stem/progenitor cells. Stimulation of undifferentiated hematopoietic KG1a cells with anti-CD34 or anti-CD43 induced homotypic cytoadhesion, accompanied by formation of a long-lived cap of CD34 and CD43 respectively, which colocalized with F-actin. Stimulation with either antibody specifically increased tyrosine phosphorylation of the identical set of proteins of Lyn, Syk, pp60, pp69, and pp77 at the capping site. These events were similar to those observed in monocytic U937 cells ectopically expressing CD34. After stimulation of KG1a cells, coimmunoprecipitation of Lyn with pp69 and pp77 and of Syk with pp37 was detected in the membrane fraction. Blockade of antibody-induced cap formation by treatment with cytochalasin D leads to inhibition of tyrosine phosphorylation of Syk and pp77 and homotypic cytoadhesion. Moreover, normal human CD34(+) bone marrow cells showed cap formation of CD34 or CD43 after stimulation. These results suggest that crosslinking of either CD34 or CD43 activates the same signaling pathway for cytoadhesion through Lyn, Syk, and the novel tyrosine-phosphorylated proteins within hematopoiesis.

Antigens, CD↗

Induction of cell shape changes through activation of the interleukin-3 common beta chain receptor by the RON receptor-type tyrosine kinase.

The RON receptor-type tyrosine kinase, a member of the hepatocyte growth factor receptor family, is a receptor for macrophage-stimulating protein (MSP). Recently, we observed that MSP induces morphological changes in interleukin (IL)-3-dependent Ba/F3 cells ectopically expressing RON. We show here that stimulation of those cells with either MSP or IL-3 increases tyrosine phosphorylation of proteins of 130, 110, 90, 62, and 58 kDa and induces similar morphological changes, accompanied by unique nuclear shape and redistribution of F-actin. A tyrosine kinase inhibitor, genistein, blocked both the increase in tyrosine phosphorylation and morphological changes. Upon stimulation with either MSP or IL-3, prominent tyrosine-phosphorylated pp90 was similarly co-immunoprecipitated with the common beta chain of IL-3 receptor (betac). Unlike IL-3, stimulation with MSP increased tyrosine phosphorylation of betac without activation of JAK2, resulting in morphological changes with modest cell growth. Confocal immunofluorescence analyses showed colocalization of RON, betac, and tyrosine-phosphorylated proteins. In vitro kinase assays revealed that autophosphorylated RON phosphorylated betac. These results suggest that the signaling pathway for morphological changes through betac and its associated protein pp90 is distinct from the pathway for cell growth in the IL-3 signal transduction system.

Actins↗

Inhibition of the ryanodine receptor calcium channel in the sarcoplasmic reticulum of skeletal muscle by an ADP/ATP translocase inhibitor, atractyloside.

The effects of an inhibitor of ADP/ATP translocase (AAT) mainly expressed in the mitochondria inner membrane, atractyloside (ATR), on the gating property of the Ca2+ channels in the sarcoplasmic reticulum (SR) vesicles from the rabbit skeletal muscle were investigated using ion flux measurement and single channel recording. At 10 microM of cytoplasmic Ca2+, ATR decreased the rate constant of choline+ influx through the Ca2+ channels up to about 60% and perfectly inhibited about half the population of single Ca2+ channels incorporated into planar bilayers. Furthermore, the inhibition of the Ca2+ channels by ATR was effective at lower Ca2+. These results support the previous results that AAT exists in the skeletal muscle SR and plays a key role in the Ca2+ mobilization of the skeletal muscle cell [Yamaguchi, N., and Kasai, M. (1998) Biochem. J. 335, 541-547], and the number of Ca2+ channels regulated by AAT is thought to depend on the cytoplasmic Ca2+ concentration.

Animals↗

Type I interferons (IFNs) regulate tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) expression on human T cells: A novel mechanism for the antitumor effects of type I IFNs.

Tumor necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) is a proapoptotic member of the TNF family of type II membrane proteins, which constitutes one component of T cell cytotoxicity. In this study, we investigated the expression and function of TRAIL in human peripheral blood T (PBT) cells. Although freshly isolated PBT cells did not express a detectable level of TRAIL on their surface, a remarkable TRAIL expression was rapidly induced on the surface of both CD4(+) and CD8(+) PBT cells upon stimulation with anti-CD3 monoclonal antibody and type I interferons (IFNs). This enhancement of TRAIL expression was a unique feature of type I IFNs (IFN-alpha and IFN-beta), and neither type II IFN (IFN-gamma) nor various other cytokines enhanced TRAIL expression on anti-CD3-stimulated PBT cells. Type I IFNs have been used for clinical treatment of renal cell carcinomas (RCCs), and we found that most RCC cell lines were susceptible to TRAIL-induced apoptosis. Type I IFNs substantially augmented cytotoxic activity of anti-CD3-stimulated PBT cells against RCC cell lines in a TRAIL-dependent manner. These results indicate a unique feature of type I IFNs to regulate TRAIL-mediated T cell cytotoxicity, which may be involved in the antitumor effects of type I IFNs against various tumors.

Antineoplastic Agents↗