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Biomedical subjects

T Kameda

Publications and source records attributed to T Kameda.

At least 55 records · Page 3Linked to original sources

The effect of activin and FSH on the differentiation of rat granulosa cells.

The differentiation of granulosa cells is regulated by follicle-stimulating hormone (FSH) and local ovarian factors. To further analyze the role of FSH and activin in this process, we have examined the effect of FSH and activin on FSH and luteinizing hormone/human chorionic gonadotropin (LH/hCG) receptor induction in granulosa cells. Granulosa cells from diethylstilbestrol (DES)-primed immature rats produce activin and maintain FSH receptor without LH/hCG receptor expression in the absence of FSH. On the other hand, FSH induced granulosa cells to differentiate into more mature granulosa cells in which higher LH/hCG receptor expression and diminished activin production were observed.

Activins↗

Tyro 3 receptor tyrosine kinase and its ligand, Gas6, stimulate the function of osteoclasts.

Bone is continuously being formed and resorbed. This process is accomplished by the precise coordination of two cell types: osteoblasts and osteoclasts. Osteoclasts are large, multinucleated cells that are derived from the same hematopoietic precursors as macrophages. However, these bone-resorbing cells are difficult to study directly because of their relative inaccessibility. The purification of primary osteoclasts from rabbit bones by their adherent nature provides an opportunity for investigating the molecules in osteoclasts. We have examined the expression of receptor tyrosine kinase by polymerase chain reaction (PCR) and found that Tyro 3 was frequently identified from primary osteoclasts in PCR cloning. Immunohistochemistry revealed that Tyro 3 was expressed on the multinucleated osteoclasts which were positive for tartrate-resistant acid phosphatase (TRAP), but not on mononuclear TRAP-positive cells. The Tyro 3 ligand, Gas6, induced the phosphorylation of Tyro 3 receptors in osteoclasts in two to five min. Gas6 and protein S directly enhanced the bone resorbing activity of mature osteoclasts. This effect of Gas6 was inhibited by the addition of a tyrosine kinase inhibitor, herbimycin A. However, Gas6 did not affect the differentiation of osteoclasts from bone marrow cells. Gas6 and protein S are dependent on vitamin K, a cofactor for the enzyme responsible for carboxylation of glutamic acid residues. The findings in this study are the first to indicate a new biological activity of Gas6 and protein S as a direct regulator of osteoclastic function; they give an insight into the role of these vitamin K-dependent ligands in bone resorption in vivo.

Acid Phosphatase↗

New left main trunk reconstruction technique using a flap of the main pulmonary arterial wall.

A new technique is described for ostiumplasty of the left main coronary artery using a flap of the main pulmonary arterial wall. Venous or pericardial patches are conventionally used to enlarge coronary ostial lesions, we used a flap of the pulmonary arterial wall with expectation that it is viable over the long term. This technique seems to surpass conventional coronary artery bypass grafting.

Angina Pectoris↗

[Repair of mitral regurgitation caused by prolapse of the anterior mitral leaflet].

Mitral regurgitation caused by prolapse of the anterior mitral leafleft has been considered to be difficult for reconstruction. In Japan, these cases have been repaired mainly by replacement of chordae with artificial sutures. We have repaired them by Carpentier's technique. We report a series of 9 patients with pure mitral regurgitation caused by ruptured or elongated chordae of the anterior mitral leaflet. Two of them had lesions at both anterior and posterior leaflet. All patients underwent mitral valve repair by segmental transposition of the posterior leaflet. As for associated procedures, there were ring annuloplasty with Carpenter rings (9 cases), sliding technique (8 cases) reported by Carpentier, reinforcement by transposition of secondary chordae of the posterior leaflet (6 cases), commissuroplasty (1 case), and closure of leaflet perforation. All patients survived operations and all patients except one underwent left ventriculography postoperatively. In only 2 patients, residual mitral regurgitation classed as I/IV was observed. All patients returned home in New York Heart Association class I. Follow-up ranged from 7 to 45 months (mean follow-up 20 months). All patients were free from reoperation or thromboembolism. Although longer follow-up is necessary, this technique appears to be adequate for the repair of patients with anterior leaflet prolapse.

Adult↗

Lack of pharmacokinetic interaction between mexiletine and omeprazole.

OBJECTIVE: To investigate the effect of omeprazole on the pharmacokinetics of mexiletine. METHODS: Nine healthy male Japanese volunteers participated in a crossover study. On day 1, the subjects received mexiletine 200 mg. On days 2-7, they received omeprazole 40 mg, and on day 8 they received mexiletine 200 mg and omeprazole 40 mg concomitantly. Serum concentrations of mexiletine were determined just before drug administration and at 1, 2, 3, 4, 6, 8, 12, and 24 hours on day 1 and day 8. RESULTS: No differences in mexiletine concentrations were observed between the two phases of the study. The mean AUCs after administration of mexiletine alone and in combination with omeprazole 40 mg/d were 6.26 and 6.20 ng.h/L, respectively. CONCLUSIONS: These findings suggest that omeprazole does not affect mexiletine metabolism.

Administration, Oral↗

Follicle-stimulating hormone regulation on its receptor messenger ribonucleic acid levels in cultured rat granulosa cells.

Our studies using immature rat granulosa cells cultured in serum-free medium on collagen-coated dishes indicated that FSH receptor mRNA levels do not change for at least 4 days of culture in the absence of hormone treatment. Addition of FSH (30 ng ml[-1]) led to a reduction of FSH receptor mRNA for a short time (6 h), followed by an increase in FSH receptor mRNA levels that reached maximum of around 200% of the initial level within 2-3 days after the addition of FSH. Following the addition of 10 nM PMA, FSH receptor mRNA levels were decreased to 50% of the pretreatment levels. During prolonged exposure to PMA, gradual recovery of the FSH receptor mRNA level was observed, and it was significantly higher than the control level at 48 h. The inactive phorbol ester 4 alpha-phorbol-12,13-didecanoate did not depress FSH receptor mRNA levels. Downregulation of the FSH receptor mRNA was detectable at a PMA concentration of 1 nM. The two predominant FSH receptor mRNA transcripts, ca. 5.5 and 2.4 kb, respectively, appeared to be equally affected by SH and PMA treatments. To examine the role of PKC mediation of the effect of FSH on FSH receptor mRNA levels, granulosa cells were treated with the PKC inhibitor, H-7, and FSH. Although, FSH receptor mRNA levels decreased to 50% of control in the cells treated with FSH alone, the addition of H-7 (0.1 nM) caused no decline in FSH receptor mRNA levels relative to the control in the cells treated with FSH. On the other hand, inhibition of FSH receptor mRNA by FSH was partially suppressed by the PKC-selective inhibitor bisindolylmaleimide. The mRNA turnover experiments showed that the half-life of FSH receptor transcripts was unaffected by PMA exposure.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

High-level expression of exogenous genes by replication-competent retrovirus vectors with an internal ribosomal entry site.

We report the construction of two types of Rous sarcoma virus (RSV)-based replication-competent avian retrovirus vectors, IR1 and IR2 to express an exogenous gene at a very high level. In these vectors, the internal ribosomal entry site (IRES) derived from encephalomyocarditis virus (EMCV) was inserted between the env gene and an exogenous gene. The IR1 vector retains the splicing acceptor site that is present in the downstream of the env gene while the IR2 vector lacks it. Using a v-fos mutant (v-fos-CD3) as an example of exogenous genes, we show here that both IR1 and IR2 vectors expressed the gene product, CD3, at expression levels 5- and 8-fold higher than that of their parental vector without IRES, respectively. These vectors were moderately stable and kept a high-level expression of CD3 for at least three passages through the cells. Analysis of viral transcripts indicate that exogenous genes carried by both IR vectors were translated exclusively from the IRES that is present in all the species of the viral transcripts. High-level expression of exogenous genes was also observed in the case of the Hoxa-13 gene in the IR1 vector or the fra-2 gene in the IR2 vector, indicating that the extremely high-level expression characteristic of these vectors is applicable to several exogenous genes.

Animals↗

Estrogen inhibits bone resorption by directly inducing apoptosis of the bone-resorbing osteoclasts.

Estrogen deficiency causes bone loss, which can be prevented by estrogen replacement therapy. Using a recently developed technique for isolation of highly purified mammalian osteoclasts, we showed that 17 beta-estradiol (E2) was able to directly inhibit osteoclastic bone resorption. At concentrations effective for inhibiting bone resorption, E2 also directly induced osteoclast apoptosis in a dose- and time-dependent manner. ICI164,384 and tamoxifen, as pure and partial antagonists, respectively, completely or partially blocked the effect of E2 on both inhibition of osteoclastic bone resorption and induction of osteoclast apoptosis. These data suggest that the protective effects of estrogen against postmenopausal osteoporosis are mediated in part by the direct induction of apoptosis of the bone-resorbing osteoclasts by an estrogen receptor- mediated mechanism.

Animals↗

Chondrocytes as a specific target of ectopic Fos expression in early development.

The Finkel-Biskis-Jinkins murine sarcoma virus, which carries v-fos, induces osteosarcomas, whereas high-level expression of exogenous c-fos in transgenic and chimeric mice leads to postnatal development of osteogenic and chondrogenic tumors, respectively. To test whether such target cell specificity of an oncogene can be detected even in early development, we induced ectopic expression of fos in chicken limb buds by microinjecting replication-competent retrovirus into the presumptive leg field of stage 10 embryos. This caused cartilage truncation of all the long bones of the injected leg, which was mainly attributable to chondrodysplasia due to severe retardation of differentiation of the proliferating chondrocytes into mature or hypertrophic chondrocytes, as well as a slight delay in precartilagenous condensation. Expression of genes for all the other known members of chicken AP-1, which include such transforming genes as c-jun and fra-2, however, caused no macroscopic abnormalities in limb formation, indicating a specific function of Fos proteins in embryonic endochondral bone differentiation. The extent of truncation was stronger with v-Fos than with c-Fos, and comparative analysis of these proteins, as well as v-Fos mutants, revealed that strong transforming activity of Fos protein is necessary to cause dysplasia, suggesting that common molecular mechanisms are involved in both embryonic chondrodysplasia and bone tumor formation in postnatal mice.

Animals↗

Effect of phorbol ester on the regulation of LH/hCG receptors.

Granulosa cells have been used to study the regulation of LH/hCG receptor protein and mRNA expression. Phorbol 12-myristate 13-acetate (PMA) dose-dependently attenuates the increases in LH/hCG receptor mRNA and protein induced by FSH and forskolin (FSK). The presence of PMA caused a decrease in cAMP production stimulated by FSH and FSK. These results suggest that PMA-mediated decreases in cAMP are a major factor in PMA-mediated decreases in LH/hCG receptor mRNA. On the other hand, in the presence of 8-Br-cAMP, PMA significantly increased LH/hCG receptor mRNA and protein, with maximal stimulation between PMA concentrations of 3 to 30 nM (1.5 fold) with 8-Br-cAMP. These findings suggest that activation of protein kinase C by PMA attenuates the increase in cAMP accumulation induced by FSH but enhances the effect of cAMP on LH/hCG receptor expression, and that the inhibitory and stimulatory effects of PMA on LH/hCG receptor content are correlated with regulation of LH/hCG receptor mRNA levels. Since the half-life study revealed no change in the stability of the LH/hCG receptor mRNA following PMA treatment, a change in the rate of LH/hCG receptor gene transcription must be responsible for the change in the LH/hCG receptor mRNA levels.

8-Bromo Cyclic Adenosine Monophosphate↗

Prostaglandin F2alpha stimulates tyrosine phosphorylation and mitogen-activated protein kinase in osteoblastic MC3T3-E1 cells via protein kinase C activation.

PGF2alpha stimulates the proliferation of clonal osteoblastic MC3T3-E1 cells via PGF2alpha receptor linked to phospholipase C activation. To elucidate intracellular events elicited by this receptor, we examined the effects of PGF2alpha on tyrosine phosphorylation and mitogen-activated protein kinase (MAPK) activity in MC3T3-E1 cells. PGF2alpha rapidly raised the level of phosphotyrosine of cellular proteins with Mr values of 62, 68, 72, 76, 82, 125, and 150 kDa. This PGF2alpha-induced tyrosine phosphorylation of proteins (except for pp62) was blocked by down-regulating protein kinase C (PKC) by 12-O-tetradecanoylphorbol 13-acetate pretreatment and by GF 109203X, a potent specific PKC inhibitor. The addition of PGF2alpha also transiently activated MAPK in the same range of concentrations that stimulated tyrosine phosphorylation. In addition, PGF2alpha augmented the MAPK kinase kinase activity of Raf-1, whereas basal activity of MAPK/extracellular signal-regulated protein kinase kinase was less than that of Raf-1 and was little affected by PGF2alpha. Like the tyrosine phosphorylation, these activations of Raf-1 and MAPK activities were reduced by inhibition and down-regulation of PKC. Genistein, a potent inhibitor of tyrosine kinases, did not block the Raf-1 induced by PGF2alpha, indicating a tyrosine kinase-independent pathway for Raf-1 activation. However, the tyrosine kinase inhibitor partially inhibited the MAPK activity, suggesting an involvement of another Raf-1-independent kinase cascade for activation of MAPK by PGF2alpha. Fluprostenol, a specific agonist of PGF2alpha receptor, mimicked the actions of PGF2alpha consistent with a PGF2alpha receptor pathway. Thus, the action of PGF2alpha on osteoblastic MC3T3-E1 cells appears to involve a single receptor that uses diverse interacting signal transduction systems.

Calcium-Calmodulin-Dependent Protein Kinases↗

[Techniques for purification of rabbit osteoclasts and analysis of their functions].

In the process of bone remodeling or modeling, the balance between bone formation and bone resorption maintains normality of function and structures of bone. Major bone-resorbing cells, osteoclasts, are terminally differentiated from hematopoietic stem cells and multinucleate cells. However, direct effects of osteotropic factors on osteoclast function have been unclear. Attempts to obtain isolated mammalian osteoclasts of high purity have been unsuccessful so far. Initially we succeeded in isolating osteoclasts of high purity using tissue culture dishes because of their high affinity for the tissue culture dishes, but the shortcoming of this method is that it was impossible to detach osteoclasts from the dishes. Therefore, we could not estimate bone-resorbing activity of mature osteoclasts on mineralizing substratum without any influence of bone-cells other than osteoclasts. Recently we developed a method to avoid the defect in the above-described method by the use of collagen gel. Our new method may shed new light on our understanding of the cellular and molecular mechanisms of osteoclasts.

Acid Phosphatase↗

Down-regulation of gap junctional intercellular communication between osteoblastic MC3T3-E1 cells by basic fibroblast growth factor and a phorbol ester (12-O-tetradecanoylphorbol-13-acetate).

To address the relation between osteoblast growth and cell-to-cell communication, we examined the effects of basic fibroblast growth factor (bFGF) and 12-O-tetradecanoylphorbol-13-acetate (TPA), both potent stimulators of osteoblastic proliferation, on gap junctional intercellular communication between osteoblastic MC3T3-E1 cells. The level of intercellular communication was estimated by a photobleaching method. TPA inhibited the degree of intercellular communication in two different time-dependent manners. The early (< 1 h) inhibition by TPA was consistent with an increase in the phosphorylation of connexin 43 (Cx43). The later inhibition was caused by reduction in the total amount of Cx43 on the plasma membrane, due to the decrease in the level of Cx43 transcripts. These qualitative and quantitative modulations by TPA were inhibited by a selective inhibitor of protein kinase C, GF109203X. bFGF also attenuated the gap junctional intercellular communication. However, short exposure (< 5 h) to bFGF did not affect the communication. The fact that the growth factor immediately stimulated the phosphorylation of Cx43 indicates that the phosphorylation site(s) affected by bFGF was not involved in the inhibition of communication. The decrease in the intercellular communication level was detected by the longer exposure (> 8 h) to bFGF and paralleled the decline in the Cx-mRNA level. This inhibitory effect of bFGF was abolished by the addition of a tyrosine kinase inhibitor, herbimycin A. Thus, gap junctional intercellular communication between osteoblasts was down-regulated by osteoblastic mitogens through different mechanisms of the modulation of Cx43.

3T3 Cells↗

C-Jun and JunD suppress maturation of chondrocytes.

To analyze the function of AP-1 in cartilage formation, two types of primary chondrocytes, LS and US cells, were prepared from caudal (lower) and cephalic (upper) regions of chicken sterna, respectively. All the known components of chicken AP-1 (c-Fos, Fra-2, c-Jun, and JunD) were detected in both cell types, but the expression level of c-Jun was much higher in LS cells, which are rich in less mature chondrocytes than US cells. In the sterna, the expression level of c-Jun was also lower in the maturating or hypertropic chondrocytes than in proliferating chondrocytes. When US cells were treated with parathyroid hormone (PTH), which prevented maturation as judged from the maturation-associated markers such as alkaline phosphatase and type X collagen, the expression levels of c-Jun and JunD were constitutively elevated. To analyze the possible relationship between differentiation status and expression levels of Jun family proteins, they were exogenously introduced into the entire population of US cells within 2 days by using high titer, replication-competent retroviral vectors. Maturation-associated markers in US cells were specifically lowered by exogenous expression of c-Jun or JunD to similar levels to those of LS cells or US cells treated with PTH. When US cells were infected with the virus encoding a dominant negative mutant of AP-1 (supJunD-1), maturation markers were moderately increased 10 days after infection. The potent induction of alkaline phosphatase activity in US cells by all-trans retinoic acid was annulled by exogenous expression of either c-Jun or JunD. These results suggest that Jun family proteins negatively regulate the maturation process of chondrocytes.

Animals↗

[Surgical treatment of type A acute aortic dissection--experience of hypothermic circulatory arrest associated with the cerebroplegia].

From 1992 to July 1996, 19 patients (aged 39 to 78 years) were operated on for type A acute aortic dissection. Our operative strategy is that all patients in whom aortic dissection involves the segment of transverse aortic arch should undergo simultaneous replacement or repair of the aortic arch and ascending aorta. Among these 19 patients, 17 were operated on within 24 hours after onset. In 13 patients, graft replacement extended from the ascending aorta to the transverse portion of the arch. The aortic stumps were prepared with the Teflon left both inside and outside of the aortic wall. Recently these were reconstructed with the aid of the Gelatin-Resorcin-Formaling glue, instilled into the false lumen. Cerebral protection was achieved by hypothermic circulatory arrest associated with the cerebroplegia (thiopental, nicradipine and mannitol). In one patient associated with severe aortic regurgitation, a valved conduit was implanted and the coronary arteries were reimplanted. CABG was performed concomitantly in two patients for involvement of the proximal coronary arteries by the dissection process. The hospital mortality rate was 26% (5/19). However, in two of them, death was not directly related to the operative procedure. One patient died of graft versus host disease (GVHD), another patient died of acute epidural hemorrhage which was undetected until the repair was completed. During the postoperative course, in all but two patients, the false lumens of the aortic arch and/or descending thoracic aorta were confirmed to be totally thrombosed by the examination of CT scan and/or aortography. It is concluded that the surgical treatment of type A acute aortic dissection can be successfully performed, even if the graft replacement extended to the transverse aortic arch.

Acute Disease↗

Mammalian mature osteoclasts as estrogen target cells.

The decrease in estrogen levels that follows the onset of menopause causes rapid bone loss, resulting in osteoporosis. However, the mechanism by which this occurs remains unclear, especially concerning the regulation of osteoclasts, i.e. the bone-resorbing cells. Using a pit assay involving isolated mature osteoclasts from rabbit long bones, we found that estrogen inhibited the bone-resorbing activity in a dose- and time-dependent manner. Furthermore, we clarified by Northern analysis that estrogen down-regulated the mRNA levels of cathepsin K/OC-2 and that putative estrogen receptor (ER) mRNA was expressed in these osteoclasts. Moreover, other sizes of mRNAs that hybridized with ER cDNA probe were found in these cells. Our results suggest that osteoclasts may be indeed target cells for estrogen and that estrogen might regulate a part of bone metabolism through osteoclasts.

Animals↗

Vitamin K2 inhibits osteoclastic bone resorption by inducing osteoclast apoptosis.

In contrast to vitamin K1(VK1), vitamin K2(VK2) inhibited osteoclastic bone resorption by unfractionated bone cells and isolated osteoclasts. To investigate the mechanism of inhibition of osteoclastic bone resorption by VK2, we examined the effect of this vitamin on osteoclast apoptosis using a DNA-binding fluorescent dye, Hoechst 33258. In unfractionated bone cells and isolated osteoclasts on dentin slices, we first demonstrated that VK2 induced osteoclast apoptosis, but VK1 did not. Moreover, cycloheximide inhibited VK2-induced osteoclast apoptosis. These results suggest the possibility that VK2 inhibits osteoclastic bone resorption by targeting osteoclasts to undergo apoptosis, which leads to cell death.

Animals↗

BMP-2/-4 mediate programmed cell death in chicken limb buds.

During limb development, the mesenchymal cells in restricted areas of limb bud, anterior necrotic zone, posterior necrotic zone, opaque zone and interdigital necrotic zones, are eliminated by programmed cell death. The transcripts of bone morphogenetic protein (Bmp)-2 and -4 were first detected in the areas where cell death was observed, then showed overlapping expression with the programmed cell death zones except the opaque zone. To investigate the function of BMP-2 and BMP-4 during limb pattern formation, the dominant negative form of BMP receptor was overexpressed in chick leg bud via a replication-competent retrovirus to block the endogenous BMP-2/-4 signaling pathway. This resulted in excess web formation at the anterior and posterior regions of limb buds in addition to marked suppression of the regression of webbing at the interdigital regions. Significant reductions in the number of apoptotic cells in these three necrotic zones were found in the limb buds which received the virus carrying dominant negative BMP receptor. This indicates that extra tissue formation is due to suppression of programmed cell death in the three necrotic zones. Moreover, BMP-2/-4 protein induced apoptosis of mesenchymal cells isolated from the interdigital region in vitro. Other TGFbeta family proteins as TGFbeta1 and Activin did not show this effect. These results suggest that BMP-2 and BMP-4 are the apoptotic signal molecules of the programmed cell death process in the chick limb buds.

Animals↗