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H Ohrui

Publications and source records attributed to H Ohrui.

36 records · Page 2Linked to original sources

Automatic determination of hydroperoxides of phosphatidylcholine and phosphatidylethanolamine in human plasma.

An automatic method for the determination of hydroperoxides of phosphatidylcholine (PC) and phosphatidylethanolamine (PE) is reported. Sample plasma was deproteinized with a fourfold volume of methanol. After centrifugation, the supernatant was injected directly into an HPLC system without further treatment. The hydroperoxides of PC and PE were concentrated and washed on an ODS column followed by introduction into two analytical columns, a silica gel and an aminopropylsilica gel column, which were connected in series, by column switching. After the separation, they were detected by postcolumn detection with diphenyl-1-pyrenylphosphine. The compounds were determined at picomole levels within 30 min with good reproducibilities. By using only a silica gel column as an analytical column, PC hydroperoxides were determined within 20 min, and samples could be injected into it at 15-min intervals. Those methods made it possible to inject a sample of up to 2 ml at one time and up to 8 ml by repeated injections and to determine phospholipid hydroperoxides in human plasma at picomole levels.

Chromatography, High Pressure Liquid↗

Protection of thyroid cancer cells by complement-regulatory factors.

BACKGROUND: Clinical and experimental studies have suggested that complement activation may play a role in tumor cytotoxicity. Little information is available concerning the presence of complement activation and the localization of complement-regulatory factors in cells or tissues of malignant tumors. The aim of the present study was to examine, using immunohistochemistry and immunoelectron microscopy, whether the complement system is activated in tissues of thyroid carcinoma and whether thyroid carcinoma cells are protected from cell lysis by in situ complement activation. METHODS: Fresh tissues were obtained by thyroidectomy from 15 patients with papillary carcinomas, 7 with follicular carcinomas, and 5 with follicular adenomas. In addition, five specimens of histologically normal thyroid tissue and five specimens of chronically inflamed tissue adjacent to thyroid neoplasms were studied. Immunohistochemical and immunoelectron microscopic localization of complement components, C3d and C5b-9, and the complement-regulatory factors, such as s-protein, decay-accelerating factor (CD55), membrane cofactor protein (CD46), complement receptor types 1 (CD35) and 2 (CD21), and protectin (CD59), were examined in these tissues. RESULTS: The staining patterns of C3d, C5b-9, and s-protein were positive and homogeneous in the nonneoplastic and most neoplastic thyroid tissues. Immunoelectron microscopy showed these antigens were localized mainly on the subepithelial and vascular basement membranes and attached to the cell surface of thyroid follicular cells. Decay-accelerating factor (CD55) was present homogeneously on the basement membranes, on the basal cell border of the thyroid follicular cells, and often on the luminal surface of carcinoma cells. Both membrane cofactor protein (CD46) and protectin (CD59) were expressed strongly on the cell surface of almost all benign and malignant thyroid follicular cells. Membrane cofactor protein was expressed on both the basal and lateral membrane, showing cell-to-cell interaction, but rarely on the luminal surface, whereas protectin was expressed strongly on the luminal surface and often on the basal cell border but rarely on the lateral membrane. Neither complement receptor type 1 (CD35) nor complement receptor type 2 (CD21) was expressed on any thyroid follicular cells. CONCLUSIONS: The present study confirmed the presence of complement activation with subsequent deposition of C3d and C5b-9 complexes in thyroid carcinomas. It also indicated that thyroid carcinoma cells are protected from cell lysis because of complement activation in multiple phases by complete coverage of the entire cell membrane surface with complement-regulatory factors. These findings were similar to those found in nonneoplastic thyroid follicular cells.

Adenoma↗

Simultaneous determination of hydroperoxides of phosphatidylcholine, cholesterol esters and triacylglycerols by column-switching high-performance liquid chromatography with a post-column detection system.

A method for the simultaneous determination of hydroperoxides of phosphatidylcholines (PC), triacylglycerols (TG) and cholesterol esters (CE) has been developed. A sample was separated into a combined TG and CE hydroperoxides fraction and a PC hydroperoxides fraction on a short silica column. The fractions were introduced into an ODS column and another silica column by a valve-switching device. The PC hydroperoxides were monitored by a post-column detection system with diphenyl-1-pyrenylphosphine, and the TG and CE hydroperoxides were monitored by another switching device. With this system, the hydroperoxides were determined at the picomole level within 32 min. Their detection limits were 2-4 pmol at a signal-to-noise ratio of 3, and the relative standard deviations of the peak areas were 1.6-3.1%. This method was successfully applied to determine lipid hydroperoxides in human plasma.

Cholesterol↗

Determination of triacylglycerol and cholesterol ester hydroperoxides in human plasma by high-performance liquid chromatography with fluorometric postcolumn detection.

Cholesterol ester (ChE) and triacylglycerol (TG) hydroperoxides in human plasma were determined by high-performance liquid chromatography with postcolumn detection with diphenyl-1-pyrenylphosphine. Human plasma was extracted once with n-hexane. 2,6-Di-tert.-butyl-4-methylphenol and N-stearylcinnamide were added to human plasma before extraction as an antioxidation agent and an internal standard, respectively. The detection limits of both ChE and TG hydroperoxides were 1 pmol. The sample size was minimized to 250 microliters for each run. The recoveries of ChE and TG hydroperoxides from fresh plasma were ca. 90 and 80%, respectively. The relative standard deviations (n = 8) of their values in frozen human plasma were 5.4% (ChE hydroperoxides, 298 nM) and 5.7% (TG hydroperoxides, 267 nM). No TG hydroperoxides and 24.5 +/- 9.6 nM (n = 15) ChE hydroperoxides were detected in fresh human plasma. The relative standard deviation (n = 8) of ChE hydroperoxides values in fresh plasma was 5.8% (27.1 nM).

Cholesterol Esters↗

A convenient evaluation of the stereoselectivity of lipase-catalyzed hydrolysis of tri-O-acylglycerols on a chiral-phase liquid chromatography.

A general method was developed using chiral-phase chromatography in order to evaluate the stereoselectivities of lipases-catalyzed hydrolysis of tri-O-acylglycerols independent of acyl groups. 1,2-Di-O-acyl-sn-glycerols or its enantiomer 2,3-di-O-acyl-sn-glycerols in the enzymatic reaction mixtures were derivatized to the key compound, 1,2-di-O-benzoyl-3-O-tert-butyldimethylsilyl-sn-glycerol 2 (+) or its enantiomer 2' (-), respectively. The enantiomers were separated on a chiral-phase HPLC, and the method was highly sensitive to determine the stereoselectivities of lipases.

Chromatography, High Pressure Liquid↗

Determination of the lipase stereoselectivities using circular dichroism (CD); lipases produce chiral di-O-acylglycerols from achiral tri-O-acylglycerols.

A general method was described to determine the optical purity of 1,2 (or 2,3)-di-O-acylglycerols via a key compound, 3 (or dibenzoyl-sn-glycerol (3 or 3'). The chiral di-O-acylglycerols were first silylated and the acyl groups were removed by the Grignard degradation to 3 (or 1) O-tert-butyldimethylsilyl-sn-glycerol and subsequent benzoylation lead to the key compound 3 or 3' without racemization. The optical purity was determined from the strong exciton Cotton effect of 3 (+) or 3' (-) at 238 nm in the concentration of ca. 1 mM. The method was successfully applied to determine the stereoselectivities of lipases (EC 3.1.1.3) from three origins, bacteria, mammal and fungus such as Pseudomonas (AP, 89% optical purity, sn-1 preference), porcine pancreatin (PPL, 9.3% optical purity, sn-3 preference) and Candida (CC, sn-2 preference) using tripalmitin. The similar studies were extended to tri-O-benzoylglycerol (6) and tri-O-(cyclohexanecarbonyl)glycerol (5). All the enzymes showed high stereoselectivities with tri-O-benzoylglycerol. PPL and AP showed high and low stereoselectivities with tri-O-(cyclohexanecarbonyl)glycerol, while low and high stereoselectivities with tri-O-palmitoylglycerol, respectively. The results show that the stereoselectivities are ruled by the origins of lipases and acyl groups. The structures of the recognition site might be associated with enantioselectivities of the enzymes.

Animals↗

Synthesis of 4'-C-methylnucleosides.

Several 4'-C-methylnucleosides were prepared. 1H-NMR studies on these nucleotides showed that they have the 3'-exo furanose ring conformation different from the 3'-endo conformation of natural nucleosides.

Magnetic Resonance Spectroscopy↗

High-performance liquid chromatography and post-column derivatization with diphenyl-1-pyrenylphosphine for fluorimetric determination of triacylglycerol hydroperoxides.

Triacylglycerol monohydroperoxides (TG-mHPO) were selectively detected at the picomole levels after post-column reaction with diphenyl-1-pyrenylphosphine (DPPP). TG-mHPO were separated on two types of reserved-phase columns, an ODS column and a phenylated silica gel column, which were useful for determining TG-mHPO at their molecular species levels and their class levels, respectively. After the separation, DPPP solution was mixed with the eluent followed by reaction in a stainless-steel coil 20 m x 0.5 mm I.D. at 80 degrees C, then the fluorescence intensity of DPPP oxide was measured (lambda ex. 352 nm, lambda em. 380 nm). Using these systems, TG-mHPO were determined in the range 2-1000 pmol. The relative standard deviations were 2.3-2.8%.

Chromatography, High Pressure Liquid↗

A new approach to determine the stereospecificity in lipase catalysed hydrolysis using circular dichroism (CD): lipases produce optically active diglycerides from achiral triglycerides.

We describe a sensitive CD method for determining the stereospecificity in lipase (E.C.3.1.1.3) catalysed hydrolysis of triacyl glycerols into diacyl glycerols. The diglycerols were converted to chiral tert-butyldimethylsilylated 1,2- or 2,3-di-O-benzoyl-sn-glycerol (5 or 5'), and their CD was measured. This approach showed for the first time that lipases produce optically active diacyl glycerides from achiral tripalmitin and tribenzoyl glyceride with a variable extent of enantioselectivity depending on the acyl groups and the enzymes.

Benzyl Alcohols↗

Tumor uptake study of 18F-labeled N-acetylneuraminic acids.

In order to develop positron-emitting tracers for imaging metabolic functions of tumors with positron emission tomography, tumor uptake of N-acetyl-3-[18F]fluoroneuraminic acid and N-acetyl-2-deoxy-2,3-di-[18F]fluoroneuraminic acid was investigated in mice or rats. The two tracers showed similar tissue distribution patterns. After i.v. injection of each tracer into mice with an FM3A tumor, the radioactivity was very rapidly cleared from normal and tumor tissues. Only tumor-to-brain and tumor-to-muscle uptake ratios were greater than 1.0 for 2 h. In 7 types of tumor models, no selective tumor uptake of tracers was observed 30 min after injection. The metabolic alteration rate of N-acetyl-3-[18F]fluoroneuraminic acid in FM3A, liver and kidney was very slow. Neither tracer may be suitable for tumor imaging in vivo.

Animals↗

Synthesis of C-5' chirally deuterated nucleosides with 100% optical purity.

The syntheses of chirally pure (5R)- and (5S)-[5-2H1]-D-ribose and (5R)-(5-2H1)-3-C-methyl-D-ribose and the syntheses of chirally pure (5'R)- and (5'S)-[5-2H1]-adenosine and (5'R)-[5'-2H1]-3'-C-methyladenosine are described. The 1H-NMR characteristics of these nucleosides and the mechanism of the reaction of adenosine and thionyl chloride-hexamethyl phosphoric triamide (HMPA) are also described. The stereospecific presence of deuterium in these nucleosides permits specific assignments for the resonances of 5'-protons. From the observed spin-spin coupling between H5' and H4', the estimates have been made of the rotamer population of the exocyclic 5'-carbinol groups of these nucleosides. It is shown that these nucleosides exist in gauche-gauche rotamer (ca. 70%) in aqueous solution. The SN2 mechanism of the chlorination reaction is suggested.

Deuterium↗

Taste response to 2,5-anhydro-D-hexitols; rigid stereospecificity of the furanose site in the sugar receptor of the flesh fly.

2,5-Anhydro-D-mannitol with a fixed furanose ring stimulated the sugar receptor of the flesh fly and reacted with the furanose site. This is the first direct evidence that a furanose can stimulate the sugar receptor and supports strongly the assumption that beta-D-fructofuranose is the only stimulatory component in the solution of D-fructose. Rigid stereospecificity of the furanose site in the sugar receptor is discussed according to the effectiveness of various synthetic 2,5-anhydro-D-hexitols and related compounds. At least four receptor sites are concluded to be in a single sugar receptor: a pyranose (P) site, a furanose (F) site, an aliphatic carboxylate (R) site and an aromatic amino acid (Ar) site.

Animals↗

Fluorometric determination of total and bound sulfite in wine by N-(9-acridinyl)maleimide.

N-(9-Acridinyl)maleimide (NAM) reacts with sulfite in wine and gives strong fluorescent derivatives that lead to highly sensitive fluorometry of both total and bound sulfite in wine. Values of free and bound sulfite in wine determined by the NAM method and the modified Rankine method agreed. Sulfite was determined in < 200 microL wine within 2 h.

Fluorometry↗