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S Shigeta

Publications and source records attributed to S Shigeta.

At least 37 records · Page 2Linked to original sources

Targets of anti-influenza chemotherapy other than neuraminidase and proton pump.

Antiviral chemotherapy for influenza started with treatment with amantadine and then progressed with finding the clinical efficacy of neuraminidase (NA) inhibitors. Beside amantadine and NA inhibitors, there are several compounds that attack novel targets of influenza virus (FluV) replication. Binding and penetration of FluV to cell membrane are important stages in the process of virus replication, and several compounds that inhibit these functions have been reported, although most of them have yet to be examined for clinical use. A polyoxometalate (PM523) was shown to be potent inhibitor of FluV A, respiratory syncytial virus and measles virus, and was shown to inhibit membrane fusion between FluV envelope and the cellular membrane. Strains of virus with acquired resistance to PM523 had mutations in the amino acids substrates in HA1 head, and amino acid changes occurred in the interface peptide of the trimers of HA. Cap formation of FluV-encoded mRNA is unique; it utilizes 5'-mGpppXm of host mRNA. Several substances which inhibit the cap formation of FluV (they are inhibitors of PB2 enzyme activity of FluV) are introduced and reviewed in this article. A metabolic product of ribavirn, 1,2,4 triazole carboxamide (T-CONH2) is inhibitory for FluV A growth in vitro. Peroral administration of TCONH2 also showed therapeutic effect in an experimental mouse infection model of FluV A as well as ribavirin. TCONH2 seems to be less toxic than ribavirin for mice, and may be useful as alternative chemotherapy of ribavirin. Other anti-FluV substances that have been reported to be effective for FluV infection in the mouse are discussed with respect to the possibility of their clinical potential.

Animals↗

Inhibitory effects of an antisense oligonucleotide in an experimentally infected mouse model of influenza A virus.

The antiviral effects of a 20-mer antisense phosphorothioate oligonucleotide, PB2-as, on influenza A virus infection in mice were examined and compared to those of PB2-as encapsulated with several cationic liposomes. Intravenous injection of PB2-as, as a complex with DMRIE-C, a cationic liposome, was most effective for prolonging the mean survival time in days (MSDs) and increasing the survival rates of mice infected with the influenza A virus. In addition, the liposomal PB2-as significantly inhibited viral growth in lung tissues. These results suggest that PB2-as encapsulated with DMRIE-C may be active against the influenza A virus infection through the inhibition of virus replication in the mouse lung.

Animals↗

Syntheses of 4'-C-ethynyl-beta-D-arabino- and 4'-C-ethynyl-2'-deoxy-beta-D-ribo-pentofuranosylpyrimidines and -purines and evaluation of their anti-HIV activity.

4'-C-Ethynyl-beta-D-arabino- and 4'-C-ethynyl-2'-deoxy-beta-D-ribo-pentofuranosylpyrimidine and -purine nucleosides were synthesized and evaluated for their in vitro anti-HIV activity. The key intermediate, 4-C-ethynyl- or 4-C-triethylsilylethynyl-D-ribo-pentofuranose, was prepared from D-glucose and glycosidated with various pyrimidine or purine bases. The arabinopyrimidine derivatives were prepared from the corresponding ribo derivatives via O(2),2'-anhydro nucleosides. The 2'-deoxy-ribo derivatives were synthesized by radical reduction of 2'-bromo or 2'- phenoxythiocarbonyloxy nucleosides. Among these 4'-C-ethynyl nucleosides, seven analogues proved to be potent against HIV-1 in vitro with EC(50) values ranging from 0.0003 to 0. 03 microM. These compounds also exerted activity against clinical and multi-dideoxy-nucleoside-resistant HIV-1 strains with comparable EC(50) values. Three such 4'-C-ethynyl-2'-deoxypurine analogues including 4'-C-ethynyl-2'-deoxyadenosine and 4'-C-ethynyl-2, 6-diamino-2'-deoxypurine were less cytotoxic [selectivity indices (SIs): 975-2733] than three 4'-C-ethynyl-2'-deoxycytidine analogues (SIs: 63-363). 4'-C-Ethynyl-5-fluoro-2'-deoxycytidine was least toxic (SI: >3333) and potent against all HIV strains tested.

Anti-HIV Agents↗

T-cell epitope analysis of Mag 3, an important allergen from the house dust mite, Dermatophagoides farinae.

Here we describe the detection of T-cell epitope region on the house dust mite allergen Mag 3, which has been shown to trigger T-cell proliferation in mite-allergic asthmatic patients. We first examined murine T-cell epitope using T-cell fraction prepared from recombinant Mag 3 (r-Mag 3)-primed H-2k mice. Initial proliferation assay with truncated r-Mag 3 indicated that N-terminal 113 amino acid region was required for triggering T-cell activation. Subsequent epitope scanning with synthetic overlapping peptides revealed that T-cell reactive region was assigned within amino acid range 56-75. We also explored human T-cell determinant using specific T-cells from mite-allergic patients. Intriguingly, we found that amino acid range 56-85, a portion partially overlapping with that identified in r-Mag 3-primed mice, was exclusively recognized by T-cells from different patients. Further investigation of unique T-cell epitope region found in this study would provide insight into the development of animal therapeutic model and/or peptide vaccine for asthma.

Allergens↗

Antiviral activity of NMSO3 against respiratory syncytial virus infection in vitro and in vivo.

NMSO3, a sulfated sialyl lipid was evaluated for its efficacy against respiratory syncytial virus (RSV) and other myxovirus infections in cell culture. The median effective concentration (50% effective concentration, EC(50)) of NMSO3 against replication of the Long strain of RSV in HEp-2 cells was 0.2 and 0.32 microM by optical ELISA and the plaque reduction method, respectively. On the other hand, the corresponding values for ribavirin were 10.5 and 11.2 microM, respectively. NMSO3 showed potent activity against other laboratory strains as well as fresh clinical isolates of RSV, and the average EC(50) was similar to that for Long strain. NMSO3 exhibited minimal cytotoxicity against HEp-2, MDCK, HMV-2 and Vero cells for which the median cytotoxic concentration (CC(50)) was more than 685 microM. The selectivity index [SI=(CC(50) for HEp-2/EC(50))] of NMSO3 for RSV exceeded 2978 and that of ribavirin was 6. The EC(50) of NMSO3 against influenza virus (FluV) A (H3N2) was 23.8 by the MTT method using HMV-2 cells, and 17.8 microM by the TCID(50) method using MDCK cells. NMSO3 did not inhibit replication of influenza B virus, parainfluenza virus type 2 and canine distemper virus at 103 microM. NMSO3 inhibited RSV infection of HEp-2 cells when it was added between 0 and 1.5 h after virus infection. By a temperature shift experiment during the period of contact between the virus and cells, NMSO3 inhibited both the binding of RSV to the cells and its penetration into the cells. Prophylactic and therapeutic efficacy of NMSO3 against RSV infection in cotton rats was examined. Intraperitoneal administration of 100 mg/kg per day of NMSO3 to cotton rats from 1 day before or 1 h after to 3 days after the RSV infection, once a day every day, decreased the RSV titer in lungs to 10(-1.26) to 10(-1.63) compared to the control rats which were infected with RSV and left untreated.

Animals↗

Purification and characterization of sea squirt alpha-N-acetylgalactosaminidase.

Sea squirt alpha-N-acetylgalactosaminidase was purified to homogeneity. Its molecular weight was estimated to be approximately 160,000 by gel filtration and 40,000 by SDS-polyacrylamide gel electrophoresis (SDS-PAGE) under reducing condition. The chromatographic and electrophoretic behaviors indicated that the enzyme was composed of four subunits. The optimum pH of the enzyme reaction was about 4.0 at 37 degrees C, while the enzyme was stable in the range of pH 5.0 to 6.0 during 4 h preincubation at 37 degrees C. Although the enzyme (0.1 unit) was stable at 0 degrees C for 30 min in the presence of 7.5 mM metal ions (Al3+, Ba2+, Ca2+, K+, Mn2+, Pb2+, Sr2+, and Zn2+), almost 40% of the enzyme activity was lost in the presence of Cu2+, Hg2+, monoiodoacetic acid, and EDTA. The enzyme hydrolyzed aryl N-acetyl-alpha-D-galactosaminide as well as GalNAcalpha1(-->4GalNAcalpha1-->)n 4GalNAc-p-aminobenzoic acid ethyl ester (ABEE) (n = 1-4), but GalNAcalpha1-->4GalNAc-ABEE only scarcely. Furthermore, an allergenic pentasaccharitol ABEE derivative, GalNAcalpha1-->2Fucalpha1-->3(GalNAcbeta1-->4) GlcNAcbeta1-->2(3-acetoamido-3-deoxy)L-threose-ABEE, the minimum structural unit for the sea squirt allergenicity was hydrolyzed to 95 mol% for 72 h incubation with the enzyme. The enzyme could be utilized as a powerful tool for the structural analyses of the carbohydrate epitopes of the sea squirt allergen molecules.

Journal Article↗

Recent progress in antiviral chemotherapy for respiratory syncytial virus infections.

The recent progress in antiviral chemotherapy against respiratory syncytial virus (RSV) infections was reviewed. RSV infections among high risk individuals, such as premature babies, infants with congenital disease of cardiopulmonary system or immune system and the aged, hospitalised patients with immunosuppressed status are threatened, with high mortality rates and thus need anti-viral chemotherapy. Clinical efficacy of ribavirin and humanized monoclonal antibody (mAb) against RSV infections as well as experimental reports of novel anti-RSV compounds under investigation such as membrane fusion inhibitors were introduced.

Amides↗

[Comparative studies on activities of antimicrobial agents against causative organisms isolated from patients with urinary tract infections (1998). I. Susceptibility distribution].

The frequencies of bacterial isolation and susceptibilities to antimicrobial agents were investigated on 538 bacterial strains isolated from patients with urinary tract infections (UTIs) in 9 hospitals during the period of June 1998 to May 1999. Of the above bacterial isolates, Gram-positive bacteria accounted for 30.3% and Gram-negative bacteria accounted for 69.7%. Susceptibilities of several isolated bacteria to antimicrobial agents were as follows; against Enterococcus faecalis isolated from patients with UTIs, vancomycin (VCM), ampicillin (ABPC) and imipenem (IPM) had strong activities. Among E. faecalis strains, those with low susceptibilities to all drugs have increased in 1998, compared with those in 1997. VCM showed the highest activity against MRSA isolated from patients with UTIs. The MICs of VCM for all 34 strains were equal to or lower than 2 micrograms/ml. Arbekacin (ABK) was also active against MRSA with the MIC90s of 2 micrograms/ml. Against Escherichia coli and Klebsiella pneumoniae, all drugs except penicillins were active. Particularly, meropenem (MEPM) showed the highest activity with the MICs of 0.125 micrograms/ml or below. Almost all the drugs except minocycline (MINO) showed high activities against Proteus mirabilis. Against Pseudomonas aeruginosa, all drugs were not so active, with the MIC90s of 16 micrograms/ml or above. MEPM, IPM and gentamicin (GM) showed high activities against Serratia marcescens. Generally, it seemed that resistant strains of S. marcescens had decreased since 1996.

Anti-Bacterial Agents↗

[Comparative studies on activities of antimicrobial agents against causative organisms isolated from patients with urinary tract infections (1998). II. Background of patients].

Clinical background was investigated on 449 patients with urinary tract infections (UTIs) from whom 591 bacterial strains were isolated in 9 hospitals during the period from June, 1998 through May, 1999. About distribution of age and sex of patients and type of infections, among males, patients less than 50 years old were few, and uncomplicated UTIs without indwelling catheters was most frequent. Among females, patients less than 20 years old were few, and uncomplicated was most frequent. Escherichia coli was the most frequently isolated in uncomplicated UTIs, and the higher the ages of patients, the higher were became the isolation frequencies of Enterococcus faecalis, Proteus spp. and Klebsiella spp. In complicated UTIs with indwelling catheters and without indwelling catheters, the types of pathogens had no relation with ages. The complication of infections had decreased E. coli but that had increased Proteus spp., Pseudomonas aeruginosa and Staphylococcus aureus. Until last year, use of antibiotics had decreased pathogens isolated from patients with uncomplicated UTIs drastically in our study. But, pathogens isolated after antibiotics had increased in 1998. As for surgical procedures and types of causative organisms in UTIs, E. faecalis were more isolated when surgical procedures were experienced, and E. coli were more isolated when they were not in uncomplicated and complicated UTIs without indwelling catheters. In complicated UTIs with indwelling catheters, types of causative organisms had no relationship with surgical procedures.

Adult↗

[Comparative studies on activities of antimicrobial agents against causative organisms isolated from patients with urinary tract infections (1998). III. Secular changes in susceptibility].

Susceptibilities to various antimicrobial agents were examined for Enterococcus faecalis, Staphylococcus aureus, Echerichia coli, Klebsiella spp. and Pseudomonas aeruginosa that were isolated from patients with urinary tract infections (UTIs) in 9 hospitals during June 1998 to May 1999, and the results were compared with those obtained during the same period from 1990 to 1997 in uncomplicated UTIs and complicated UTIs. Among E. faecalis strains, those with low susceptibilities to almost drugs have increased in the latest period. All 5 S. aureus strains isolated from uncomplicated UTIs were the most susceptible to gentamicin (GM). Over 50% of S. aureus strains isolated from complicated UTIs were susceptible to GM, and on the contrary the resistant strains have increased with the MIC90 of 256 micrograms/ml or above. Among S. aureus strains isolated from complicated UTIs, those with low susceptibilities to arbekacin (ABK) have increased in the latest period compared to those during period of 1996-1997, and the MIC90s of them have changed into the lower state from 1 microgram/ml in 1996-1997 to 4 micrograms/ml in 1998. S. aureus strains have continued high susceptibilities to vancomycin (VCM). The susceptibilities to minocycline (MINO) of E. coli showed MIC90: 4 micrograms/ml in 1997, but those have returned in the latest period in uncomplicated UTIs. The MIC90s of ofloxacin (OFLX) to E. coli isolated from uncomplicated and complicated UTIs have been lower 2-3 classes in the latest period than those in 1997. Among Klebsiella spp. strains isolated from uncomplicated UTIs, those with low susceptibilities to almost cephems had increased in 1997, but few of them were detected in the latest study. The sensitive strains of P. aeruginosa to almost drugs have increased during the latest period. The MIC50s of cefozopran (CZOP) and OFLX against P. aeruginosa were the best in our history. The sensitive strains of P. aeruginosa to ceftazidime (CAZ) have increased and its percentage was 30%. Piperacilline (PIPC), cefoperazone (CPZ), GM and OFLX resistant P. aeruginosa strains have increased in the latest period.

Anti-Bacterial Agents↗

[Current research status of anti-influenza chemotherapy].

Current progress in anti-influenzavirus chemotherapy has lead us to clinical use of amantadine and NA inhibitors such as zanamivir and oseltamivir. In order to overcome the problems of resistant virus which may appear for these drugs, we are in demand to develop new anti-influenza drugs which have other target points than uncoating or NA activity of the virus. Several compounds under investigation which inhibit conformational change of HA under low pH, endonuclease activity to provide cap of m-RNA, antisense oligonucleotide stable for digestion by endonuclease, artificially synthesized Zn-finger motif peptide etc were reviewed.

Animals↗

[Evaluation of antiviral agents for adenovirus using the MTT method in vitro].

PURPOSE: Currently, there is no effective treatment for adenoviral conjunctivitis. We evaluated the antiviral inhibitory effect of four antiviral agents against adenovirus (ADV) in vitro. METHODS: Viruses used for the experiment were ADV type 4 (ADV 4), type 8 (ADV 8) and type 37 (ADV 37). We examined four antiviral agents, i.e., cidofovir (HPMPC), zalcitabine (ddC), foscarnet (PFA), and acyclovir (ACV). 50% effective concentration (EC50), 50% cytotoxic concentration (CC50) and selectivity index (SI) of compounds were determined for ADV infection in HEp-2 cells using the 3-(4,5-dimetylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) method. RESULTS: HPMPC and ddC showed an inhibitory effect against all three ADVs. In particular, ddC showed more potent and selective inhibition against ADV than HPMPC. PFA and ACV were ineffective against ADV. CONCLUSIONS: HPMPC and ddC were inhibitory against ADV 4, ADV 8 and ADV 37 replication in vitro. The MTT method is rapid and simple for the screening of antiviral agents. We think this method is also very useful for the screening of anti-ADV agents.

Acyclovir↗

Nucleosides and nucleotides. 185. Synthesis and biological activities of 4'alpha-C-branched-chain sugar pyrimidine nucleosides.

A series of 4'alpha-C-branched-chain pyrimidine nucleosides was synthesized from 2'-deoxycytidine or uridine. In the 2'-deoxycytidine series, the substituent at the 4'alpha-position affected cytotoxicity against L1210 mouse leukemic cells in vitro in the order Me (23) > CN (22) > C(symbol)CH (21) > CH=CH(2) (19) > Et (24) > CH=CHCl (20). However, uridine and cytidine derivatives with ethynyl and cyano groups at the 4'alpha-position did not show any cytotoxicity. The antiviral activities of these nucleosides against HSV-1, HSV-2, and HIV-1 in vitro were also examined. Compounds 22 and 23 showed antiviral activities against HSV-1 and HSV-2 without showing significant toxicity to the host cells (MRC-5 cells). Although almost all of the nucleosides showed anti-HIV-1 activities, they were also cytotoxic to the host cells (MT-4).

Animals↗

Cloning and expression of Der f 6, a serine protease allergen from the house dust mite, Dermatophagoides farinae.

House dust mite allergen is thought to be a major cause of asthma. Characterization of these allergen molecules is therefore an important step for the development of effective diagnostic and therapeutic agents against mite-associated allergic disorders. Here we report molecular cloning and expression of the group 6 (chymotrypsin-like) allergen from the house dust mite, Dermatophagoides farinae. Sequencing analysis indicates that cloned cDNA, designated Der f 6, encodes a 279 amino acid polypeptide which conserves a primary structure characteristic for chymotrypsin-like serine proteases found in mammals. Recombinant Der f 6 expressed in Escherichia coli bound IgE in a pool made of 20 sera, and induced histamine release from patients' peripheral blood cells.

Allergens↗

Molecular cloning and functional characterization of rat delta-6 fatty acid desaturase.

Mammalian cDNA fragments putatively encoding amino acid sequences characteristic of the fatty acid desaturase were obtained using expressed sequence tag (EST) sequence informations. These fragments were subsequently used to screen a rat liver cDNA library, yielding a 1573-bp clone. Expression of DNA fragment containing either of two possible open reading frames (nucleotide numbers 97-1431 and 148-1431) of the isolated clone in yeast led to the accumulation of gamma-linolenic acid in the presence of exogenous linoleic acid. In this system, the addition of alpha-linolenic acid also resulted in the accumulation of its Delta-6 desaturated product whereas dihomo-gamma-linolenic acid failed to be a substrate. These results indicate that the protein encoded by the rat cDNA is Delta-6 fatty acid desaturase, and the first 17 amino acids corresponding to the coding region 97-147 of the clone are not required to function in yeast.

Amino Acid Sequence↗

Revelation of Antiviral Activities by Artificial Sulfation of a Glycosaminoglycan from a Marine Pseudomonas.

: Sulfated derivatives of a glycosaminoglycan containing l-glutamic acid produced by a marine Pseudomonas species, No. 42 strain, were prepared by the method of dicyclohexyl-carbodiimide-mediated reaction. Both low and high degrees of sulfation of the polysaccharides (products A1 and A2, respectively) were investigated for their antiviral activities against influenza virus type A (FluV-A) and B (FluV-B) in MDCK cells. Both preparations showed antiviral activity against FluV-A at the 50% antiviral effective concentration of 17.3 and 5.2 µg/ml, respectively, whereas they had no antiviral activity against FluV-B. No cytotoxicity of either product was noted against MDCK cells at the 50% cytotoxic concentration of 100 µg/ml.

Journal Article↗

Antiviral Activities of Marine Pseudomonas Polysaccharides and Their Oversulfated Derivatives.

: A marine Pseudomonas species WAK-1 strain simultaneously produces extracellular glycosaminoglycan and sulfated polysaccharide. Among the antiviral activities tested for these polysaccharides, the latter showed anti-HSV-1 activity in RPMI 8226 cells (50% effective concentration is 1.4 µg/ml). Oversulfated derivatives of these polysaccharides prepared by dicyclohexylcarbodiimide-mediated reaction for both polysaccharides showed antiviral activities against influenza virus type A (for glycosaminoglycan, 50% effective concentration is 11.0 µg/ml; for another, 2.9 µg/ml). Glycosaminoglycan, sulfated polysaccharide, and their chemically synthesized oversulfated derivatives did not show antiviral activities against influenza virus type B and human immunodeficiency virus type 1. No cytotoxicity of these products was noted against host cells at the 50% cytotoxic concentration of 100 µg/ml, except that naturally occurring sulfated polysaccharide had 50% cytotoxicity against MT-4 cells at 8-21 µg/ml.

Journal Article↗