Search PubMed⌕ Search

Biomedical subjects

M Miyagi

Publications and source records attributed to M Miyagi.

At least 19 recordsLinked to original sources

Use of hollow-core fibers to deliver nanosecond Nd:YAG laser pulses to form sparks in gases.

We report what is to our knowledge the first delivery of nanosecond laser pulses through flexible fibers to produce optical sparks in atmospheric-pressure gases. Our work employs a Nd:YAG laser beam (1.064 microm) delivered through a cyclic olefin polymer-coated silver hollow fiber. We studied the beam properties at the fiber exit as a function of the fiber launch geometry. We found that for a low-angle launch (approximately 0.01 rad half-angle), the exit beam has relatively high optical intensity (approximately 2 GW/cm2) and low light divergence (approximately 0.01 rad half-angle) and allows downstream spark formation. The effect of fiber bending on the exit beam and on the ability to make sparks is also investigated.

Journal Article↗

Baseline glomerular sclerosis influences morphological changes, but not level of serum creatinine.

The aim of this study was to investigate whether glomerular sclerosis (GS) at the time of engraftment affects subsequent morphology and clinical course of renal allografts. Eighty-one renal transplant recipients were recruited for this study. Protocol biopsies of the renal allografts were performed at engraftment, as well as at 1, 3, 5, and 7 years after transplantation. All cases were divided into 2 groups based on the presence of GS at engraftment, namely, non-GS and GS groups. Morphological changes in the renal allografts were graded from 0 to 3+ based on the severity of chronic allograft nephropathy (CAN) of the Banff classification based on 5 factors: percentage of GS, extent of interstitial fibrosis, tubular atrophy, arterial intimal thickening, and arteriolar hyalinosis. Furthermore, the level of serum creatinine (s-Cr) at each year was examined by recipient age and gender, donor age and gender, type of donor (living/cadaver), delayed graft function, acute rejection within 1 year after transplantation, mean blood pressure, and use of calcineurin inhibitors as well as the presence of GS at engraftment. The extent of GS at engraftment significantly correlated with donor age (P = .0038) but with a weak correlation coefficient. Although the severity of CAN developed gradually in both non-GS and GS groups, differences in morphological changes at engraftment between the 2 groups persisted throughout 7 years. Donor age and recipient gender influenced s-Cr significantly. In conclusion, the presence of GS at engraftment aggravates subsequent morphological changes and affects short-term but not long-term allograft prognosis.

Adolescent↗

Reversibility from delayed hyperacute rejection in ABO-incompatible renal transplantation: histopathological findings of renal allograft biopsy.

ABO-incompatible renal transplantation (ABOIRTx) tend to lead to blood type antibody-mediated rejection, the so-called delayed hyperacute rejection (DHAR), which results in short-term graft loss. To clarify the accurate incidence and prognostic value of DHAR among ABOIRTx, we reviewed biopsy specimens obtained from ABOKTx allografts with abrupt dysfunction during the early period after transplantation. Among 74 ABOIRTx patients, 34 patients displayed allograft dysfunction within 14 days following transplantation. The biopsy specimens were classified based on the Banff schema. The pathological diagnosis of ABO blood type antibody-mediated humoral rejection (ABO-AMHR) was made by the following 3 findings: Specimens with all of above-mentioned findings were categorized as severe ABO-AMHR; those with at least one findings, were categorized as mild ABO-AMHR. All patients were treated with steroid pulse therapy and/or modification of other immunosuppressants. Group 1 consisted of severe ABO-AMHR (n = 6); group 2 consisted of mild ABO-AMHR (n = 5); group 3 consisted of acute cellular rejection (n = 3); group 4 consisted of recovery phase of ATN (n = 11); group 5 consisted of calcineurin inhibitor toxicity (n = 2); and group 6 consisted of normal histology (n = 5). One of 6 patients (16%) in group 1 lost the graft because of DHAR irreversible by antirejection and anticoagulation therapy. However, there has been no clear definition of histpathological criteria for DHAR after ABO-incompatible kidney transplantation. The definition must prognosticate whether the rejection process is reversible.

ABO Blood-Group System↗

Construction of bacterial artificial chromosome libraries and their application in developing PCR-based markers closely linked to a major locus conditioning bruchid resistance in mungbean (Vigna radiata L. Wilczek).

Bacterial artificial chromosome (BAC) libraries have been widely used in different aspects of genome research. In this paper we report the construction of the first mungbean (Vigna radiata L. Wilczek) BAC libraries. These BAC clones were obtained from two ligations and represent an estimated 3.5 genome equivalents. This correlated well with the screening of nine random single-copy restriction fragment length polymorphism probes, which detected on average three BACs each. These mungbean clones were successfully used in the development of two PCR-based markers linked closely with a major locus conditioning bruchid (Callosobruchus chinesis) resistance. These markers will be invaluable in facilitating the introgression of bruchid resistance into breeding programmes as well as the further characterisation of the resistance locus.

Animals↗

Proteomic method identifies proteins nitrated in vivo during inflammatory challenge.

Inflammation in asthma, sepsis, transplant rejection, and many neurodegenerative diseases associates an up-regulation of NO synthesis with increased protein nitration at tyrosine. Nitration can cause protein dysfunction and is implicated in pathogenesis, but few proteins that appear nitrated in vivo have been identified. To understand how this modification impacts physiology and disease, we used a proteomic approach toward targets of protein nitration in both in vivo and cell culture inflammatory disease models. This approach identified more than 40 nitrotyrosine-immunopositive proteins, including 30 not previously identified, that became modified as a consequence of the inflammatory response. These targets include proteins involved in oxidative stress, apoptosis, ATP production, and other metabolic functions. Our approach provides a means toward obtaining a comprehensive view of the nitroproteome and promises to broaden understanding of how NO regulates cellular processes.

Animals↗

Simultaneous quantification of retinol, retinal, and retinoic acid isomers by high-performance liquid chromatography with a simple gradiation.

A new method of high-performance liquid chromatography (HPLC) analysis to quantify isomers of retinol, retinal and retinoic acid simultaneously was established. The HPLC system consisted of a silica gel absorption column and a linear gradient with two kinds of solvents containing n-Hexane, 2-propanol, and glacial acetic acid in different ratios. It separated six retinoic acid isomers (13-cis, 9-cis, all-trans, all-trans-4-oxo, 9-cis-4-oxo, 13-cis-4-oxo), three retinal isomers (13-cis-, 9-cis-, and all-trans) and two retinol isomers (13-cis- and all-trans). Human serum samples were subjected to this HPLC analysis and at least, all-trans retinol, 13-cis retinol, and all-trans retinoic acid were detectable. This HPLC system is useful for evaluating retinoic acid formation from retinol via a two-step oxidation pathway. Moreover, it could be applied to monitoring the concentrations of various retinoids, including all-trans retinoic acid in human sera.

Chromatography, High Pressure Liquid↗

Interphotoreceptor matrix in the fovea and peripheral retina of the primate Macaca mulatta: distribution and glycoforms of SPACR and SPACRCAN.

SPACR and SPACRCAN localization in the interphotoreceptor matrix (IPM) of the fovea and peripheral retina of Macaca mulatta was established with antibodies to these core proteins and the chondroitin sulfate epitopes and lectin binding properties of these molecules were defined. The IPM of both rods and cones labeled with anti-SPACR, anti-SPACRCAN, anti-Delta Di6S antibodies and wheat germ agglutinin (WGA). Whereas anti-SPACR and anti-SPACRCAN antibodies labeled rod and cone matrix compartments with similar intensity, the Delta Di6S chondroitin antibody labeling was more intense around cones than rods. Peanut lectin (PNA) labeling was present only around cones. No IPM labeling was observed with Delta Di0S-chondroitin or Delta Di4S-chondroitin antibodies. Western blots of undigested IPM extracts showed anti-SPACR immunoreactivity at 150 kDa, colocalizing with the position of WGA and PNA binding. In Western blots of the chondroitinase ABC digested sample and samples double digested with chondroitinase ABC and AC II, anti-SPACR immunoreactivity, WGA and PNA labeling intensity were virtually identical to that in the undigested sample, with prominent staining of the 150 kDa SPACR band. In contrast, anti-SPACRCAN immunoreactivity was not present in the undigested sample, but was evident in both the chondroitinase ABC and double digested samples as a broad band at approximately 230 kDa. Delta Di6S, Delta Di4S, WGA and PNA labeling colocalized with the anti-SPACRCAN immunoreactivity in the chondroitinase ABC digested sample. These findings indicate that SPACR and SPACRCAN are present around cones in the fovea and both rods and cones in the peripheral retina, but that the specific glycoforms of these molecules are different depending on whether present in the cone or rod associated IPM.

Animals↗

Proteome survey of proliferating and differentiating rat RPE-J cells.

The suitability of the rat derived SV-40T immortalized RPE-J cell line for identifying proteome changes associated with RPE differentiation was evaluated by surveying changes in protein expression levels. Rat RPE-J cells were induced to undergo differentiation in culture by growth at the nonpermissive temperature of 40 degrees C in the presence of retinoic acid. Total proteins were extracted from cells grown under proliferating or differentiating conditions and separated by 1D and 2D gel electrophoresis. Gel spots were excised, digested in situ with trypsin, and analysed by mass spectrometry to identify proteins. Computer assisted image analysis was used to align gel patterns and quantify spot intensities. Neither proliferating nor differentiating RPE-J cell cultures exhibited detectable levels of cellular retinaldehyde-binding protein, RPE65, 11- cis -retinol dehydrogenase or lecithin retinol acyl transferase, suggesting that RPE-J cells are not appropriate for visual cycle studies. About 18% of the 61 identified proteins appear to change expression levels with the cell growth conditions. Seven proteins appeared to be up-regulated and four proteins down-regulated when the cells were changed from proliferating to differentiating culture conditions. The majority of the apparent changes in protein expression levels were associated with stress response genes. Significant changes in the apparent mass and charge properties of proteins were also observed and for select proteins, the modifications appeared to be correlated with cell growth conditions. The results demonstrate that proteome differences in RPE-J cells associated with growth conditions can be identified and support the suitability of RPE-J cells for more targeted and/or more global proteome analysis of RPE differentiation.

Animals↗

Angiotensin-converting enzyme (ACE) I/D genotype and renal ACE gene expression.

BACKGROUND: The angiotensin-converting enzyme (ACE) I/D genotype affects serum ACE levels and the onset and progression of renal disease, but little is known about the mechanism. We investigated a possible association between the ACE I/D genotype and renal ACE mRNA levels in healthy subjects. METHODS: Renal biopsy samples were obtained from 50 healthy kidney donors. The ACE I/D genotype was determined by polymerase chain reaction (PCR). Renal ACE mRNA quantification was performed by competitive RNA-PCR. In situ hybridization (ISH) for ACE mRNA on renal biopsy specimens was also performed. RESULTS: The number of ACE transcripts in 100 ng of total RNA was significantly (P < 0.01) lower in subjects with II genotype (5.6 +/- 5.3 x 10(5), N = 20) compared with those with the ID (17.9 +/- 13.6 x 10(5), N = 23) or the DD genotype (36.9 +/- 14.6 x 10(5), N = 7) in healthy donors. The ISH studies showed that both tubular and glomerular ACE mRNA expressions were weak in subjects with the II genotype, intermediate in subjects with ID genotype, and strong in subjects with DD genotype. CONCLUSIONS: It is suggested that renal ACE gene expression is associated with the ACE I/D genotype in healthy Japanese subjects.

Biopsy↗

Alcohol and retinoids.

This article represents the proceedings of a symposium at the 2000 ISBRA Meeting in Yokohama, Japan. The chairs were Hirokazu Yokoyama and David Crabb. The presentations were (1) Roles of vitamin A, retinoic acid, and retinoid receptors in the expression of liver ALDH2, by J. Pinaire, R. Hasanadka, M. Fang, and David W. Crabb; (2) Alcohol, vitamin A, and beta-carotene: Adverse interactions, by M. A. Leo and Charles S. Lieber; (3) Retinoic acid, hepatic stellate cells, and Kupffer cells, by Hidekazu Tsukamoto, K. Motomura, T. Miyahara, and M. Ohata; (4) Retinoid storage and metabolism in liver, by William Bosron, S. Sanghani, and N. Kedishvili; (5) Characterization of oxidation pathway from retinol to retinoic acid in esophageal mucosa, by Haruko Shiraishi, Hirokazu Yokoyama, Michiko Miyagi, and Hiromasa Ishii; and (6) Ethanol in an inhibitor of the cytosolic oxidation of retinol in the liver and the large intestine of rats as well as in the human colon mucosa, by Ina Bergheim, Ina Menzl, Alexandr Parlesak, and Christiane Bode.

Aldehyde Dehydrogenase↗

Nicotinamide adenine dinucleotide-dependent retinoic acid formation from retinol in the human gastric mucosa: inhibition by ethanol, acetaldehyde, and H2 blockers.

All-trans retinoic acid formation from all-trans retinol (vitamin A) in the human gastric mucosa was studied. When all-trans retinol and the human gastric mucosa were incubated together, all-trans retinoic acid was formed in the presence of nicotinamide adenine dinucleotide (NAD). When the NAD was not added, hardly any formation was observed. The formation of all-trans retinoic acid tended to be attenuated by 10 mM ethanol. Moreover, it was significantly attenuated in a concentration-dependent manner by ethanol at concentrations of 100 mM and above. Acetaldehyde at concentrations of 50 microM and above also significantly attenuated its formation in a concentration-dependent manner. Some H2 blockers, which include ranitidine hydrochloride and cimetidine, significantly attenuated the formation of all-trans retinoic acid, whereas famotidine failed to suppress it. There is an NAD-dependent pathway by which all-trans retinoic acid is produced from all-trans retinol in the human gastric mucosa. Inhibitors of alcohol dehydrogenase, which include ethanol and some H2 blockers, and of aldehyde dehydrogenase, which include acetaldehyde, inhibit its production.

Acetaldehyde↗

Evaluation of the epidermal growth factor receptor (EGFR) and c-erbB-2 in superspreading-type and penetrating-type gastric carcinoma.

The expression of epidermal growth factor (EGF), epidermal growth factor receptor (EGFR), transforming growth factor alpha (TGF alpha), and of c-erbB-2 was immunohistochemically investigated in resected gastric carcinoma (in 39 cases of superspreading type and in 11 cases of penetrating type), to understand the differential biological features of these two types of gastric carcinoma. EGF, EGFR and c-erbB-2 positive cases were preferentially found in penetrating type rather than in superspreading type (p < 0.05, p < 0.01, and p < 0.05, respectively). The positive rates of EGFR and c-erbB-2 were significantly higher in submucosal gastric carcinoma than in intramucosal gastric carcinoma (p < 0.01, p < 0.05, respectively). These results suggested that the autocrine mechanism of the growth factors and the expression of c-erbB-2 were correlated to the degree of gastric wall invasion.

Adult↗

Advanced gastric cancer effectively treated by neoadjuvant continuous low-dosage 5-fluorouracil and cisplatin (FP regimen): a case report.

We have experienced a case of advanced gastric cancer with para-aortic lymph node metastasis effectively treated by neoadjuvant continuous low dosage 5-fluorouracil and cisplatin (FP regimen). The patient was a 67-year-old man diagnosed as having advanced gastric cancer type 4 with para-aortic lymph node metastasis. This patient was treated by continuous infusion of 5-fluorouracil (5-FU) 500 mg/day, for 28 days, and infusion of cisplatin 10 mg/day over 1 hr on days 1-5, 8-12, 15-19, and 22-26. At 4 weeks later, a CT revealed that swelling in the para-aortic lymph node had disappeared, and the thickening in the stomach wall had diminished. This patient underwent a curative operation, and both the serum level of carcinoembryonal antigen (CEA) and carbohydrate antigen (CA 19-9) decreased to normal. These results suggested that the FP regimen was an effective neoadjuvant treatment for advanced gastric cancer with para-aortic lymph node metastasis.

Aged↗

Long-term survival after gastric cancer with liver metastasis: a report of two cases.

We have experienced two cases of long-term survival after surgery for gastric cancer case with liver metastasis. One case was of a 66-year-old male patient diagnosed as having type 1 advanced gastric cancer located in the posterior wall of the lower body with liver metastasis. The stage of this case was P0H1N1T2M0 stage IV. This patient underwent distal gastrectomy with D2 lymph node resection, partial hepatectomy of the S3 region including the metastatic liver tumor and coagulation of metastatic liver tumors in the S6 and S7 regions. This patient was treated by intra-hepatic arterial infusion of 5-FU, CDDP and peroral administration of UFT after surgery. This patient has died at 3 years and 7 months after surgery. The other case was of a 55-year-old male patient diagnosed as having type 2 advanced gastric cancer located in the lesser curvature of the cardia with liver metastasis. The stage of this case was P0H1N1T3 M0 stage IV. This patient underwent total gastrectomy with D2 lymph node dissection, wedge resection of the S8 region including the metastatic liver tumor and coagulation of a metastatic liver tumor in the S4 region. This patient was treated by obstruction of the hepatic artery using coils, peroral administration of UFT, lentinan, MMC, and continuous low-dosage 5-FU and CDDP after surgery. This patient has died at 3 years and 6 months after surgery. These results suggest that for long-term survival in cases of gastric cancer with liver metastasis, hepatectomy or coagulation of the metastatic tumor with postoperative chemotherapy are indicated in cases that have no non-curative factors and only a few metastatic tumors.

Aged↗

Identification of the vitamin K-dependent carboxylase active site: Cys-99 and Cys-450 are required for both epoxidation and carboxylation.

The vitamin K-dependent carboxylase modifies and renders active vitamin K-dependent proteins involved in hemostasis, cell growth control, and calcium homeostasis. Using a novel mechanism, the carboxylase transduces the free energy of vitamin K hydroquinone (KH(2)) oxygenation to convert glutamate into a carbanion intermediate, which subsequently attacks CO(2), generating the gamma-carboxylated glutamate product. How the carboxylase effects this conversion is poorly understood because the active site has not been identified. Dowd and colleagues [Dowd, P., Hershline, R., Ham, S. W. & Naganathan, S. (1995) Science 269, 1684-1691] have proposed that a weak base (cysteine) produces a strong base (oxygenated KH(2)) capable of generating the carbanion. To define the active site and test this model, we identified the amino acids that participate in these reactions. N-ethyl maleimide inhibited epoxidation and carboxylation, and both activities were equally protected by KH(2) preincubation. Amino acid analysis of (14)C- N-ethyl maleimide-modified human carboxylase revealed 1.8-2.3 reactive residues and a specific activity of 7 x 10(8) cpm/hr per mg. Tryptic digestion and liquid chromatography electrospray mass spectrometry identified Cys-99 and Cys-450 as active site residues. Mutation to serine reduced both epoxidation and carboxylation, to 0. 2% (Cys-99) or 1% (Cys-450), and increased the K(m)s for a glutamyl substrate 6- to 8-fold. Retention of some activity indicates a mechanism for enhancing cysteine/serine nucleophilicity, a property shared by many active site thiol enzymes. These studies, which represent a breakthrough in defining the carboxylase active site, suggest a revised model in which the glutamyl substrate indirectly coordinates at least one thiol, forming a catalytic complex that ionizes a thiol to initiate KH(2) oxygenation.

Amino Acid Sequence↗

Structure of the dimerized hormone-binding domain of a guanylyl-cyclase-coupled receptor.

The atrial natriuretic peptide (ANP) hormone is secreted by the heart in response to an increase in blood pressure. ANP exhibits several potent anti-hypertensive actions in the kidney, adrenal gland and vascular system. These actions are induced by hormone binding extracellularly to the ANP receptor, thereby activating its intracellular guanylyl cyclase domain for the production of cyclic GMP. Here we present the crystal structure of the glycosylated dimerized hormone-binding domain of the ANP receptor at 2.0-A resolution. The monomer comprises two interconnected subdomains, each encompassing a central beta-sheet flanked by alpha-helices, and exhibits the type I periplasmic binding protein fold. Dimerization is mediated by the juxtaposition of four parallel helices, arranged two by two, which brings the two protruding carboxy termini into close relative proximity. From affinity labelling and mutagenesis studies, the ANP-binding site maps to the side of the dimer crevice and extends to near the dimer interface. A conserved chloride-binding site is located in the membrane distal domain, and we found that hormone binding is chloride dependent. These studies suggest mechanisms for hormone activation and the allostery of the ANP receptor.

Animals↗

Fluid shear stress induces lipocalin-type prostaglandin D(2) synthase expression in vascular endothelial cells.

Ligands for peroxisome proliferator-activated receptor gamma, such as the thiazolidinedione class of antidiabetic drugs and 15-deoxy-Delta(12,14)-prostaglandin J(2) (15d-PGJ(2)), modulate various processes in atherogenesis. In search of cells that generate prostaglandin D(2) (PGD(2)), the metabolic precursor of 15d-PGJ(2), we identified PGD(2) from culture medium of endothelial cells. To study how PGD(2) production is regulated in endothelial cells, we investigated the role of fluid shear stress in the metabolism of PGD(2). Endothelial cells expressed the mRNA for the lipocalin-type PGD(2) synthase (L-PGDS) both in vitro and in vivo. Loading laminar shear stress using a parallel-plate flow chamber markedly enhanced the gene expression of L-PGDS, with the maximal effect being obtained at 15 to 30 dyne/cm(2). The expression began to increase within 6 hours after loading shear stress and reached the maximal level at 18 to 24 hours. In contrast, shear stress did not alter the expression levels of PGI(2) synthase and thromboxane A(2) synthase. In parallel with the increase in the expression level of L-PGDS, endothelial cells released PGD(2) and 15d-PGJ(2) into culture medium. These results demonstrate that shear stress promotes PGD(2) production by stimulating L-PGDS expression and suggest the possibility that a peroxisome proliferator-activated receptor gamma ligand is produced in vascular wall in response to blood flow.

Arteries↗