Search PubMed⌕ Search

Biomedical subjects

M Satoh

Publications and source records attributed to M Satoh.

At least 415 records · Page 23Linked to original sources

Exogenous motilin stimulates endogenous release of motilin through cholinergic muscarinic pathways in the dog.

BACKGROUND & AIMS: Exogenous motilin is believed to stimulate endogenous release of motilin, but this has not been studied in detail. The aim of this study was to investigate whether and by what mechanism exogenous motilin stimulates endogenous release of motilin in the dog. METHODS: Gastric and duodenal contractile activity in conscious dogs was monitored by chronically implanted force transducers. Plasma canine motilin (c-motilin) concentrations in response to exogenous porcine motilin (p-motilin) were determined by specific radioimmunoassay for c-motilin. The release of motilin from motilin cells obtained from canine duodenal mucosa was studied in vitro using a perifusion system. RESULTS: In vitro, c-motilin release was stimulated by carbachol but not by p-motilin, and the carbachol-induced c-motilin release was inhibited by atropine. In vivo, exogenous p-motilin stimulated endogenous c-motilin release and gastric and duodenal phase III-like contractions; this motilin-induced motilin release was inhibited by atropine, hexamethonium, and a 5-hydroxy-tryptamine 3 receptor antagonist. CONCLUSIONS: In the dog, exogenous motilin stimulates endogenous motilin release through muscarinic receptors on motilin-producing cells via preganglionic pathways involving 5-hydroxytryptamine 3 receptors.

Amino Acid Sequence↗

Dentin bond durability after three years using a dentin bonding agent with and without priming.

OBJECTIVES: This three-year study was conducted to evaluate the tensile bond strengths of a dual-cured bonding resin, with and without priming, to bovine dentin. METHODS: Superficial bovine dentin was conditioned with 37% phosphoric acid and left unprimed (control) or was primed with 5-NMSA. Clearfil Photobond (Kuraray Co., Japan) was placed and light-cured, a layer of Protect Liner (Kuraray Co.) was applied, cured, then covered with Photo Clearfil Bright (Kurary Co.) resin composite and cured. Bonds were stressed in tension to failure at 1 d, 1 mon, 3 mon, 6 mon, 1 y and 3 y after preparation. Ten specimens were made for each group. Results were analyzed using one-way ANOVA and Duncan's multiple range test. Visual and SEM observations determined mode of failure and were analyzed using the Mann-Whitney U-test. Separate 1 d and 3 y specimens were fractured across the bonded interface and observed using a Field Emission SEM. After observation, the photomicrographs were compared for visual qualitative changes between the two time periods. RESULTS: The control (non-primed) group showed only a small decrease in bond strengths over 3 y, but in the primed group, a significant decrease was observed (p < 0.05). The bond strength of the non-primed group (5.2 MPa) was less than the primed group (10.6 MPa) at 1 d (p < 0.01), but by 3 y, the bonds of both groups were similar, 4.3 MPa and 5.5 MPa, respectively. Fractography indicated that only adhesive failure occurred in the control group. Failure in the primed group was cohesive in dentin initially, but shifted to the base or top of the hybrid layer after 1 y. Field Emission SEM observations showed hybrid layer formation in the primed group, but minimal resin infiltration in the control group. SIGNIFICANCE: Initially greater bond strengths were obtained for the primed group compared to the unprimed group (p < 0.01). However, by 3 y, the bond strength had decreased markedly in the primed group (p < 0.01), being almost the same for both groups. It was concluded that priming may only be useful to achieve strong bonding in the short term. These results may have significant implications related to clinical longevity of restorations.

Analysis of Variance↗

Localization of mRNA for leukemia inhibitory factor receptor in the adult rat brain.

The distribution of leukemia inhibitory factor receptor (LIFR) mRNA in the adult rat brain was examined by in situ hybridization technique. The intense signals of LIFR mRNA were restricted to specific brain regions relevant to the motor and sensory systems. The moderate expression of LIFR mRNA was observed in several brain regions, including the cerebral cortex, hippocampus, thalamus, hypothalamus and cerebellum. Most of the signals of LIFR mRNA were detected on likely neuronal cells. These findings suggest the possibility that LIF has potential actions on the neuronal cells in the central nervous system of the adult rat.

Animals↗

Phase-Dependent effects of transforming growth factor beta 1 on osteoblastic markers of human osteoblastic cell line sV-HFO during mineralization.

A human osteoblastic cell line (SV-HFO) established in our laboratory expresses osteoblastic markers, including mineralization in vitro, in response to differentiation-inducing agents such as dexamethasone. In this study, we examined the effects of transforming growth factor beta 1 (TGF-beta 1) on the mineralization of SV-HFO cells and show that TGF-beta 1 inhibited the mineralization of the cells via down regulation of tetranectin and alkaline phosphatase without influencing other osteoblastic markers. To examine precisely the effects of TGF-beta 1 on the process of mineralization, we tentatively divided the whole process of mineralization into four phases: induced ALP activity (days 0-5), maximal ALP activity (days 5-10), early mineralization (days 10-15), and progressive mineralization (days 15-20). These inhibitory effects of TGF-beta 1 on the expression of tetranectin and alkaline phosphatase, like that on mineralization, were observed only when TGF-beta 1 was applied in the early phase of the process of mineralization. On the other hand, the other osteoblastic markers were not influenced by treatment with TGF-beta 1. These results suggest that TGF-beta 1 may inhibit mineralization of osteoblasts by the downregulation of tetranectin and alkaline phosphatase expression in the early phase. Thus, TGF-beta 1 has phase-dependent effects on a human osteoblastic cell line during the process of mineralization.

Alkaline Phosphatase↗

Autoantibodies that stabilize the molecular interaction of Ku antigen with DNA-dependent protein kinase catalytic subunit.

DNA-dependent protein kinase (DNA-PK) consists of a DNA binding subunit (Ku autoantigen), and a catalytic subunit (DNA-PKcs). In the present study, human autoantibodies that recognize novel antigenic determinants of DNA-PK were identified. One type of autoantibody stabilized the interaction of DNA-PKcs with Ku and recognized the DNA-PKcs -Ku complex, but not bio-chemically purified DNA-PKcs. Another type recognized purified DNA-PKcs. Autoantibodies to Ku (p70/p80 heterodimer), 'stabilizing' antibodies, and antibodies to DNA-PKcs comprise a linked autoantibody set, since antibodies recognizing purified DNA-PKcs were strongly associated with stabilizing antibodies, whereas stabilizing antibodies were strongly associated with anti-Ku. This hierarchical pattern of autoantibodies specific for components of DNA-PK (anti-Ku > stabilizing antibodies > anti-DNA-PKcs) may have implications for the pathogenesis of autoimmunity to DNA-PK and other chromatin particles. The data raise the possibility that altered antigen processing and/or stabilization of the DNA-PKcs-Ku complex due to autoantibody binding could play a role in spreading autoimmunity from Ku to the weakly associated antigen DNA-PKcs.

Antigen-Antibody Reactions↗

A subtype of kappa-opioid receptor mediates inhibition of high-affinity GTPase inherent in Gi1 in guinea pig cerebellar membranes.

The kappa-opioid receptor agonists including U-50,488H and dynorphin A (1-17) in ranges of 0.1-100 nM inhibited the hydrolysis of GTP to GDP (P(i) release) inherent in GTP-binding proteins (G proteins) in guinea pig cerebellar membranes. U-50,488H inhibited only high-affinity GTPase activity, not low-affinity activity. The action of this agonist was found to be biphasic, and there was no inhibition at concentrations > 1 microM. The inhibition was abolished by pretreatment with preactivated pertussis toxin (PTX) at concentrations > 1 micrograms/ml but not with preactivated cholera toxin (30 micrograms/ml). Similar blockade of kappa-receptor-mediated inhibition was also observed when membranes were pretreated with a low concentration (8 microM) of N-ethylmaleimide (NEM) at low temperature (4 degrees C), which alkylates the cysteine residue to be ADP-ribosylated by PTX; but this treatment caused no significant change in kappa-agonist binding. When purified Gi1, but not G(o), was reconstituted into membranes pretreated with NEM, the kappa-receptor-mediated inhibition was recovered. These findings suggest that a subtype of kappa-opioid receptor is coupled to inhibition of intrinsic activity of Gi1.

Animals↗

Effect of nonpeptide motilin agonist EM523 on release of gut and pancreatic hormones in conscious dogs.

BACKGROUND & AIMS: EM523, a nonpeptide motilin agonist, is being developed for clinical use to improve delayed gastric emptying. The aim of this study was to examine the effect of EM523 on endogenous release of gut and pancreatic hormones in conscious dogs. METHODS: Motility of the gastrointestinal tract was monitored using force transducers. Blood concentrations of gut and pancreatic hormones were measured using a specific radioimmunoassay. EM523 (3 micrograms/kg) or normal saline (5 mL) was given during the phase I period of the interdigestive state. RESULTS: A single injection of EM523 always induced phase III-like contractions in the intact gastric antrum and was accompanied by significant (P < 0.01) release of motilin, pancreatic polypeptide, and insulin; glucagon, gastrin, cholecystokinin, and secretin were not released by EM523. The significant release of these hormones was suppressed by pretreatment with atropine and completely eliminated by a 5-hydroxytryptamine 3 receptor antagonist and truncal vagotomy. CONCLUSIONS: The findings suggest that EM523 stimulates the release of pancreatic polypeptide, insulin, and motilin by activating the cholinergic parasympathetic nerve system, finally stimulating the endocrine pancreas through vagally cholinergic muscarinic receptors in the pancreatic islets. The participation of 5-hydroxytryptamine 3 receptors in this system is strongly suggested by the results.

Animals↗

Intracellular interaction of collagen-specific stress protein HSP47 with newly synthesized procollagen.

Heat shock protein 47 (HSP47), a collagen-specific stress protein, has been postulated to be a collagen-specific molecular chaperone localized in the ER. We previously demonstrated that HSP47 transiently associated with newly synthesized procollagen in the ER (Nakai, A., M. Satoh, K. Hirayoshi, and K. Nagata. 1992. J. Cell Biol. 117:903-914). In the present work, we examined the location where HSP47 binds to and dissociates from newly synthesized procollagen within the cells, and whether HSP47 associates with nascent single procollagen polypeptide chains and/or with mature triple-helix procollagen. This was accomplished by biochemical coprecipitation with anti-HSP47 and anticollagen antibodies, combined with pulse-label and chase experiments in the presence or absence of various inhibitors for protein secretion, as well as by confocal laser microscopic observation of the cells double stained with both antibodies. We further examined whether the RDEL (Arg-Asp-Glu-Leu) sequence at the COOH terminus of HSP47 can act as an ER-retention signal, as the KDEL sequence does. When the secretion of procollagen was inhibited by the presence of alpha, alpha'-dipyridyl, an iron chelator that inhibits procollagen triple-helix formation, or by the presence of brefeldin A. which inhibits protein transport between the ER and the Golgi apparatus, procollagen was found to be bound to HSP47 during the chase period in the intermediate compartment. In contrast, the dissociation of procollagen chains from HSP47 was not inhibited when procollagen secretion was inhibited by monensin or bafilomycin A1, both of which are known to be inhibitors of post-cis-Golgi transport. These findings suggest that HSP47 and procollagen dissociated between the post-ER and the cis-Golgi compartments. HSP47 was shown to bind to nascent, single-polypeptide chains of newly synthesized procollagen, as well as to the mature triple-helix form of procollagen. HSP47 with the RDEL sequence deleted was secreted out of the cells, which suggests that the RDEL sequence actually acts as an ER-retention signal, as the KDEL sequence does. This secreted HSP47 did not acquire endoglycosidase H resistance. The biological significance of the interaction between HSP47 and procollagen in the central secretory pathway, as well as possible mechanisms for this pathway, will be discussed.

2,2'-Dipyridyl↗

Pore formation on proliferating yeast Saccharomyces cerevisiae cell buds by HM-1 killer toxin.

The cytocidal effect of HM-1 produced by Hansenula mrakii on yeast Saccharomyces cerevisiae cells was studied. The HM-1 strongly inhibited the growth of S. cerevisiae cells at a low concentration (IC50: 2.1 x 10(-8) M) by reducing the number of viable cells. The killer action of HM-1 was most efficient when cells were actively proliferating. Cells in a resting state were resistant, but they became HM-1-sensitive after about 90 min of culturing at 30 degrees C, concomitantly with the increment of budding index. In association with the reduction of viable cell number, ultraviolet light-absorbing cellular components were discharged from sensitive cells. HM-1 molecules appear to bind to susceptible cells rather loosely since cells incubated with HM-1 were able to proliferate after having been washed. By phase-contrast light microscopy and scanning electron microscopy, discharge of cell material was observed at the budding portions of HM-1-treated cells. Addition of sorbitol to make the culture medium isotonic partially reduced the cell death induced by HM-1. These results suggest that HM-1 acts on the budding region of proliferating yeast cells, resulting in pore formation, leakage of cell material and eventual cell death.

Cell Division↗

Expression of p21(waf-1/cip-1) is significantly induced in the livers of LEC rats with chronic liver injury.

It is reported that hepatocytes isolated from LEC rats with chronic liver injury show reduced growth activity in primary culture. To elucidate the molecular basis of this phenomenon, we examined expression of p21(waf-1/ciP-1) and p27, cyclin-dependent kinase inhibitors, by northern blot analysis. The expression of p21(waf-1/cip-1 ) in the LEC rat liver was 3-fold higher than that of age-matched SD rat liver, while there was no significant difference in p27 expression level. Western blot analysis also revealed a significant increase in p21(waf-1/cip-1) in the nuclear matrix fraction of the LEC rat liver. Immunohistochemically, p21(waf-1/cip-1) was detected in the nuclei of normal LEC rat hepatocytes, but not in those of hepatocellular carcinoma cells, suggesting selective growth of neoplastic hepatocytes.

Animals↗

A case of angiomyolipoma diagnosed by thin slice non-enhanced CT and needle biopsy.

We report a case of a 52-year-old female with two intrarenal tumors in the left kidney and a contralateral non-functioning kidney. Two renal cell carcinomas were suspected on 10mm and 5mm thick slices of computed tomography (CT), while angiography could not exclude a diagnosis of angiomyolipoma. Thin section (2 mm thick) non-enhanced CT detected negative attenuation values (indicative of fat) within both tumors, but these values were higher than the value for normal fat tissue. Negative attenuation values within the tumor using non-enhanced thin sections are thought to be essential for a CT diagnosis of angiomyoplipoma, especially when angiomyolipoma is difficult to distinguish from renal cell carcinoma. We performed an ultrasonography-guided needle biopsy of the tumor and pathological examination confirmed the diagnosis of angiomyolipoma, consisting of rich angiomyomatous element and small amount of mature adipose tissue.

Adipose Tissue↗

Characterization of endothelin receptor subtypes mediating Ca2+ mobilization and contractile response in rabbit iris dilator muscle.

1. We investigated the characteristics of endothelin (ET)-induced contraction and changes in intracellular Ca2+ concentration ([Ca2+]i) using the fura-2-loaded and non-loaded rabbit iris dilator. ET-1 and ET-2 (3-100 nM) and ET-3 (30-100 nM) caused contraction in a concentration-dependent fashion. 2. The selective ETB-receptor agonists, IRL1620 and sarafotoxin S6c produced only a small contraction or no contraction at a concentration of 1 microM. The rank order of potencies for the contraction (pD2 value) was ET-1 = ET-2 > ET-3 >> sarafotoxin S6c = IRL1620. 3. The contractile response to ET-3 was antagonized by pretreatment with BQ-123 (10 nM), a selective ETA receptor antagonist. The contractile responses to ET-1 and ET-2 were antagonized by pretreatment with BQ-123 (10 microM), but not at a concentration of 10 nM. 4. ETs increased [Ca2+]i and sustained muscle contraction. ET-1 (100 nM), ET-2 (100 nM), and ET-3 (1 microM) induced an elevation of [Ca2+]i consisting of two components: first a rapid and transient elevation to reach a peak, followed by a second, sustained elevation; a sustained contraction was produced without a transient contraction. The ETB receptor-selective agonist, IRL1620 (1 microM) and sarafotoxin S6c (1 microM) also induced a rapid and transient elevation of [Ca2+]i to reach a peak and a sustained elevation, together with only a small contraction or no contraction. 5. ET-1 (100 nM) induced a transient increase in [Ca2+]i in a Ca(2+)-free, 2 mM EGTA-containing physiological saline solution (Ca(2+)-free PSS), and a small sustained contraction which was significantly different from that induced by ET-1 (100 nM) in normal PSS. The ET-1-induced increase in [Ca2+]i and sustained contraction were not affected by the voltage-dependent Ca2+ channel blocker, nicardipine (10 microM). The ET-1-induced transient increase in [Ca2+]i was significantly reduced by the sarcoplasmic reticulum (SR) Ca(2+)-ATPase inhibitor, cyclopiazonic acid (30 microM); however, the ET-1-induced sustained contraction was not affected by this agent. 6. The selective ETA receptor antagonist, BQ-123 (100 nM) reduced the ET-3 (100 nM)-induced contraction, but did not affect the transient increase or elevation of the second phase of [Ca2+]i. However, this antagonist at 1 microM did not affect the ET-1 (100 nM)- and ET-2 (100 nM)-induced elevation of [Ca2+]i and contractile response, or the IRL1620-induced elevation of [Ca2+]i. 7. The selective ETB receptor antagonist, BQ-788 (1 microM) reduced the transient increase in [Ca2+]i induced by ET-1 (30 nM), ET-2 (30 nM), ET-3 (100 nM) and IRL1620 (1 microM), but did not affect the sustained elevation of [Ca2+]i and contractile responses produced by ET-1, ET-2 and ET-3. 8. Pretreatment with IRL1620 (1 microM) reduced the increase in [Ca2+]i induced by IRL1620 (1 microM) and sarafotoxin S6c (1 microM), as well as the ET-1 (100 nM)-, ET-2 (100 nM)- and ET-3 (1 microM)-induced elevation of [Ca2+]i, whereas in the presence of IRL1620, ET-1-, ET-2- and ET-3-induced contractions were unaltered. 9. These results suggest that ETA and ETB receptor subtypes exist in the rabbit iris dilator muscle, and that the ETA receptor is divided into: (1) BQ-123-sensitive ETA subtypes activated by ET-1, ET-2 and ET-3, and (2) BQ-123-insensitive ETA subtypes activated by ET-1 and ET-2, which cause the sustained increase of [Ca2+]i and contraction; in contrast, ETB receptor subtypes are activated by ET-1, ET-2, ET-3, IRL1620 and sarafotoxin S6c and cause the transient and sustained increase in [Ca2+]i which is not able to contract the smooth muscle.

Animals↗

Veno-occlusive disease of the liver following bone marrow transplantation: a clinical-pathological study of autopsy cases.

A total of 28 patients with leukemia underwent intensive therapy with megadose chemotherapy and stem cell transplantation. Of 16 patients who had busulfan therapy, 2 developed the clinical syndrome of veno-occlusive disease of the liver (VOD) characterized by progressive abnormalities in liver function, abdominal pain, and ascites. Postmortem findings showed VOD of the central and sublobular hepatic vein. Immunohistochemical analysis using anti-actin and CD34 mAb was employed in an attempt to clarify the process of fibrosis. Actin positive cells had accumulated around the central vein. Ito cell activation might be responsible for secondary fibrosis following endothelial injury. We report autopsy findings and immunohistochemical results.

Adolescent↗

Age-related changes of the cementogenesis in the senescence-accelerated mouse (SAM).

Cementogenesis of the molars with aging was studied using senescence accelerated mouse (SAM) which included SAMP2/Iw and SAMP8@Iw as prone strains, and SAMR1/Iw as a resistant strain. Morphometric analysis was done for the cementum thickness at 2, 6, 12 and 16 months of age on 4 parts of the mice, i.e. at the mesial (M), the distal (D), the apical (A) and the furcational (F) cementum of the maxillary first molar. SAMR1/Iw was also studied at 20 months of age. Mean cementum thickness was statistically analyzed for age and strain differences. Mean thicknesses of the M and the D cementum in SAMP2/Iw and in SAMP8@Iw were usually higher than those in SAMR1/Iw. Furthermore, there were significant differences between SAMP2/Iw and SAMR1/Iw, and between SAMP8/Iw and SAMR1/Iw, both at 12 and 16 months of age. There was no difference in mean thickness in the F cementum in either strain and at any age. In the A cementum, SAMP2/Iw displayed significantly thicker cementum than SAMR1/Iw at 6, 12 and 16 months of age. The degree of molar eruption was thought to be more accelerated in SAMP2/Iw than in SAMR1/Iw. However, the thickness of the A cementum was not different for SAMP8@Iw and SAMR1/Iw in any age group. In this study, 2 conclusions were drawn as follows: first, that SAMP2/Iw and SAMP8@Iw exhibited more accelerated cementogenesis than SAMR1/Iw in the M and the D cementum. Secondly, several factors such as intrinsic factors, occlusal forces and degree of attrition affected the cementogenesis of the M and the D, the F and the A cementum, respectively.

Aging↗

Role of endogenous 5-hydroxytryptamine in the regulation of gastric contractions by motilin in dogs.

It has been suggested that 5-hydroxytryptamine3 (5-HT3) receptors are involved in the control of phase III contractions in the stomach. We examined the effect of depletion of endogenous 5-HT by p-chlorophenylalanine (pCPA) on spontaneously and motilin-induced phase III contractions in conscious dogs, and the effect of 5,6-dihydroxytryptamine (5,6-DHT) in an isolated perfused dog stomach. Three-day treatment with pCPA significantly reduced plasma 5-HT concentration and 5-HT content in the stomach, and strongly suppressed the spontaneous and motilin-induced phase III contractions in the stomach. When spontaneous phase III contractions recovered in the stomach after a 3-day treatment, exogenous motilin induced typical phase III-like contractions, and the 5-HT content in the muscle layer was recovered to the normal pretreatment level. In the perfused stomach, 5,6-DHT decreased 5-HT content in the muscle layer alone and abolished motilin-induced contractions. In conclusion, endogenous 5-HT, probably in 5-HT neurons, plays an important role in the control of interdigestive phase III activity by motilin in the stomach.

5,6-Dihydroxytryptamine↗

Age-related changes in alpha-adrenoceptor-mediated blood pressure in the rat: relationship between the potency for phenylephrine and the maximum number of binding sites.

To study the effects of aging on the blood pressure potency of phenylephrine, 6-, 10- and 40-week-old rats were used. In anesthetized rats, the potency (pD2 value) of phenylephrine on the blood pressure tended to increase with age from 6 to 10 weeks, but significantly decreased thereafter with age from 10 to 40 weeks. Similarly, in pithed rats, the potency of phenylephrine significantly increased, but decreased thereafter. In isolated rat thoracic aorta, the pD2 value of phenylephrine from the contractile responses significantly increased with age from 6 to 10 weeks, but decreased thereafter from 10 to 40 weeks. The change in the potency of phenylephrine on the blood pressure was proportional to the pD2 value of phenylephrine estimated in aortic preparations. The specific binding of [3H]prazosin to single smooth muscle cells of thoracic aorta from different aged rats was saturable. The maximum number of binding sites (Bmax) significantly increased with age from 6 to 10 weeks, but decreased thereafter from 10 to 40 weeks. However, the dissociation constant of [3H]prazosin (Kd) did not alter with age. The changes in the potencies (pD2 values) of phenylephrine on the pressure responses and on the contractile responses were proportional to the logarithm of the maximum number of binding sites. The present study suggests that age-related changes in blood pressure are due to changes in the maximum number of binding sites (receptor density) of alpha 1-adrenoceptors.

Adrenergic alpha-Agonists↗