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Masahiro Takahata

Publications and source records attributed to Masahiro Takahata.

13 recordsLinked to original sources

Pharmacodynamic evaluation of tosufloxacin against Streptococcus pneumoniae in an in vitro model simulating serum concentration.

We compared the antibacterial effects and the emergence of resistance to tosufloxacin or levofloxacin for Streptococcus pneumoniae by simulating the serum concentration according to the Japanese clinical regimens using an in vitro pharmacokinetic-pharmacodynamic model. For quinolone-susceptible strain ATCC49619, tosufloxacin showed bactericidal activity, given that both the AUC(0-24h)/MIC ratios at the dosage of 150 mg t.i.d. and 300 mg b.i.d. of tosufloxacin tosilate were 138 and 193, and the C(max)/MIC ranges were 7.93-10.2 and 15.9-17.6, respectively, which were greater than those of levofloxacin (100 mg t.i.d. and 200 mg b.i.d.). The greater area above the killing curves (AAKCs) or shorter time to achieve 99.9% killing (99.9% KT) in both models of tosufloxacin than those of levofloxacin was related to their larger AUC(0-24h)/MIC and C(max)/MIC. Exposure of only 100 mg t.i.d. of levofloxacin led to outgrowth of the parC mutants, which were twofold less susceptible to levofloxacin than the parent strain. Neither of the tosufloxacin tosilate regimens resulted in isolation of resistant mutants of this strain. For the parC mutant strain D-3197, both the AUC(0-24h)/MIC and C(max)/MIC ratios of tosufloxacin were greater than those of levofloxacin, which resulted in comparable or better bactericidal activity as compared to those of levofloxacin. However, both fluoroquinolones and both regimens led to outgrowth of resistant mutants, which possessed a mutation in gyrA in addition to parC. In conclusion, tosufloxacin is superior to levofloxacin in bactericidal activity against S. pneumoniae in the Japanese clinical regimens, especially in the quinolone-susceptible strain, without emergence of resistant subpopulations.

Anti-Bacterial Agents↗

Influence of inoculum size of Staphylococcus aureus and Pseudomonas aeruginosa on in vitro activities and in vivo efficacy of fluoroquinolones and carbapenems.

OBJECTIVES: We investigated the effect of inoculum size on MIC, bactericidal activity and the post-antibiotic effect (PAE) of carbapenems (imipenem, panipenem and meropenem) and injectable quinolones (pazufloxacin and ciprofloxacin) against Staphylococcus aureus and Pseudomonas aeruginosa, and also the relationship between in vivo systemic infection by changing the inoculum size injected in mice. RESULTS: Increasing the bacterial inoculum (10(5)-10(8) cfu/mL) had no significant effect on the MIC of any of the tested antimicrobial agents. With the standard inocula (10(6) cfu/mL) of both test strains, all the antimicrobial agents showed bactericidal activity; however, increasing the inoculum size to >10(8) cfu/mL resulted in a reduction in bactericidal activity of all the antimicrobial agents against S. aureus Smith. In contrast, increasing the inoculum size of P. aeruginosa exerted only a minimal influence on the bactericidal activity of fluoroquinolones, but resulted in a reduction in the bactericidal activity of carbapenems. With the standard inoculum size of S. aureus Smith, pre-incubation with fluoroquinolones and carbapenems, except for meropenem, was sufficient to produce PAEs. When the inoculum was increased, the duration of the PAEs of these antimicrobial agents was reduced; however, those of fluoroquinolones were longer than carbapenems. Inoculum size had a greater influence on the in vivo efficacy of carbapenems than that of fluoroquinolones. CONCLUSIONS: Our results suggest that decreased bactericidal activity, or the in vitro PAE of carbapenems and fluoroquinolones, is related to the reduced in vivo protective effect against infection caused by high inoculum with S. aureus or P. aeruginosa.

Animals↗

Exciton migration dynamics in a dendritic molecule: quantum master equation approach using ab initio molecular orbital configuration interaction method.

We investigate the exciton migration dynamics in a dendritic molecular model composed of pi-conjugation linear-leg units (acetylenes and diacetylene) and a benzene ring (branching point) using the quantum master equation approach with the ab initio molecular orbital (MO) configuration interaction (CI) method. The efficient migration of exciton from short-length linear legs (acetylenes) to long-length linear leg (diacetylene) via a benzene ring is observed. As predicted in previous studies, the exciton (electron and hole) distributions are relatively well localized in each generation segmented by the meta-branching point (meta-substituted benzene ring) though the electron and hole distributions are delocalized and are somewhat spatially different from each other within each generation. It is found that the excitons localized in the generation composed of short linear legs occupy in higher-lying exciton states, while those in the generation composed of long linear legs do in lower-lying ones. These features suggest the decoupling of pi-conjugation at the meta-branching point. On the other hand, the relaxation effect between exciton states is found to be caused by the exciton-phonon coupling, in which the existence of common configurations (electron-hole pairs) in CI wave functions between adjacent exciton states (having primary distributions on short and long linear-leg regions, respectively) is important for the relaxation between their exciton states. This feature indicates the importance of partial penetration of pi-conjugation through the meta-substituted benzene ring in excited states for such exciton migration.

Journal Article↗

Influence of various antimicrobial agents on the intestinal flora in an intestinal MRSA-carrying rat model.

Using an intestinal methicillin-resistant Staphylococcus aureus (MRSA)-carrying rat model, we compared the influence of piperacillin (PIPC) on the intestinal flora to those of cefazolin (CEZ), cefmetazole (CMZ), and flomoxef (FMOX). The number of MRSA did not increase after PIPC and CEZ administrations compared with the nontreated group. However, it significantly increased in the cases of FMOX and CMZ administration (P < 0.01). In the FMOX- and CMZ-treated groups, the intestinal flora was severely disrupted and the recovery of the number of Escherichia coli and Bacteroides spp. cells was delayed. On the other hand, in the PIPC- and CEZ-treated groups, the rapid recovery of bacteria that composed the intestinal flora was observed. The C(max)/MIC(50) and C(trough)/MIC(50) ratios in E. coli and Bacteroides spp. in the case of FMOX and CMZ were relatively higher than those in the case of the PIPC- and CEZ-treated groups.

Animals↗

Inhibitory activities of quinolones against DNA gyrase of Chlamydia pneumoniae.

The gyrA and gyrB genes of Chlamydia pneumoniae TW-183 were cloned, and their proteins were purified by use of a fusion system with a maltose-binding protein. The 50% inhibitory concentrations of garenoxacin, sparfloxacin, moxifloxacin, gatifloxacin, and levofloxacin were 10.1, 47.5, 39.6, 64.2, and 156.9 microg/ml, respectively, and the MICs against C. pneumoniae TW-183 were 0.008, 0.016, 0.063, 0.125, and 0.25 microg/ml, respectively.

Anti-Infective Agents↗

[Alteration of antibacterial activity of tosufloxacin and various antibacterial agents against Streptococcus pneumoniae].

The minimum inhibitory concentrations (MICs) of tosufloxacin (TFLX), levofloxacin (LVFX), ciprofloxacin (CPFX), gatifloxacin (GFLX), sparfloxacin (SPFX), azithromycin (AZM), cefteram (CFTM), cefdinir (CFDN) and cefpodoxime (CPDX) against 337 clinical isolates of Streptococcus pneumoniae isolated from Japanese hospital from 1997 to 2002 were investigated by agar plate method. The incidence of penicillin-susceptible S. pneumoniae (PSSP), penicillin-intermediate resistant S. pneumoniae (PISP), and penicillin-resistant S. pneumoniae (PRSP) in each year was studied, and the MICs of antibacterial agents against these strains were determined. As the results, the total incidence of PSSP, PISP, and PRSP was 51.0%, 40.4% and 8.6%, respectively. The incidences of PSSP from 1997 to 2002 were 46.0-55.9%, and were almost definite in each year. In quinolone antibiotics, the differences of antibacterial activity among TFLX, SPFX, and GFLX against PSSP, PISP, and PRSP, were not observed, and these 3 quinolones had potent antibacterial activity. Although CPFX and LVFX showed antibacterial activity as well as other quinolones by 2001, the CPFX-resistant or LVFX-intermediate resistant strains of PSSP were seen with 56.5% and 91.3% in 2002, respectively. Thirty percents of each PSSP, PISP, and PRSP strains were AZM-resistant strains. Such tendency of increase was recognized in PSSP. Against cephem antibiotics, the incidence of intermediate resistant and resistant strains was higher for PISP and PRSP than for PSSP. No difference in the incidence of resistant strains was noted among CFTM, CFDN, and CPDX.

4-Quinolones↗

Theoretical study on second hyperpolarizabilities of phenylacetylene dendrimer: toward an understanding of structure-property relation in NLO responses of fractal antenna dendrimers.

This contribution explores the relation between molecular second hyperpolarizabilities (gamma) and molecular architecture in phenylacetylene dendrimers using the semiempirical molecular orbital method, that is, INDO/S method. The orientationally averaged gamma of a large-size phenylacetylene dendrimer, which is composed of 24 units of phenylacetylenes and is referred to as D25, is found to be about 50 times as large as that of the diphenylacetylene monomer. In contrast, the gamma(s)() value of D25 is found to be about 6 times as small as that of the para-substituted phenylacetylene oligomer (L25) composed of 24 units of phenylacetylenes. To investigate the structure-property relation in gamma for D25 and L25, we examine the spatial contributions of electrons to gamma values using gamma density analysis. The present analysis reveals that the dominant contributions of electrons to gamma of D25 are localized in the linear-leg regions parallel to the applied electric field and the contributions are also well segmented at the meta-connected points (benzene rings), while the spatial distribution of the gamma density of L25 is extended over the whole region of the chain, and the dominant contribution stems from the both-end regions. It is found for D25 that the magnitude of contributions to gamma in the internal region is more enhanced than that in the outer region. We further found that the magnitudes of contributions in internal linear-leg regions of D25 are somewhat larger than those of the same-size isolated linear-leg molecules. This suggests that the slightly remaining pi-conjugations via the meta-branching points still enhance the contributions to gamma localized in the linear-leg regions. These features of spatial contributions to gamma of D25 are found to originate in the fractal architecture, in which pi-conjugation lengths in the linear-leg region increase on going from the periphery to the core. Finally, fractal antenna dendrimers are expected to be promising novel nonlinear optical (NLO) substances with a controllability of the magnitude and spatial contribution of the third-order NLO properties.

Journal Article↗

Synthesis, antibacterial activity, and toxicity of 7-(isoindolin-5-yl)-4-oxoquinoline-3-carboxylic acids. Discovery of the novel des-F(6)-quinolone antibacterial agent garenoxacin (T-3811 or BMS-284756).

The palladium-catalyzed cross-coupling reaction of 5-(tributylstannyl)isoindoline and its 1- and 3-methyl derivatives with 6-fluoro or 6-unsubstituted 7-bromo-1-cyclopropyl-8-methoxy (or difluoromethoxy)-4-oxoquinoline-3-carboxylate afforded the corresponding 1-cyclopropyl-7-(5-isoindolinyl)-4-oxoquinoline-3- carboxylic acids: 6-fluoro, 1a-7a and 6-nonfluoro, 1b-7b. The in vitro antibacterial spectra of the newly synthesized quinolones were mostly characterized by excellent Gram-positive activity against Staphylococcus aureus and Streptococcus pneumoniae including quinolone-resistant strains, and also by significant Gram-negative activity comparable to 7-(1-piperazinyl)fluoroquinolones. Comparative examinations of the in vitro antibacterial profiles and the in vivo toxicity in terms of intravenous lethality, micronuclei-inducing potential and convulsive activity provided 6-nonfluorinated 1-cyclopropyl-8-(difluoromethoxy)-7-(1-methylisoindolin-5-yl)-4- oxoquinoline-3-carboxylic acid [(+/-)-5b] as the candidate for evaluation of the stereoisomers. The enantiomers (R)-5b and (S)-5b were synthesized via the Suzuki coupling reaction of (R)- and (S)-1-methyl derivatives of 2-(triphenylmethyl)isoindolin-5-boronic acid with the corresponding 7-bromo-8-(difluoromethoxy)-4- oxoquinoline-3-carboxylate. The (R)-5b stereoisomer proved to be 2- to 4-fold more active than the (S)-5b stereoisomer against the organisms tested, with the exception of an equal potency observed with S. pneumoniae IID553 and Haemophilus influenzae ATCC49247. A noticeable in vitro antibacterial profile of (R)-5b was that it is 16- and 64-fold more active than levofloxacin (CAS 100986-85-4) and ciprofloxacin (CAS 86393-32-0), respectively, against Mycoplasma pneumoniae IID813 (MIC of 0.0313 microgram/ml), and 4-fold more active than ciprofloxacin and levofloxacin against Mycobacterium tuberculosis M-4 (MIC of 0.0313 microgram/ml). Additional studies indicate that (R)-5b (T-3811, CAS 194804-75-6) exhibits excellent antibacterial activity against a wide range of organisms including anaerobes and common respiratory pathogens, while demonstrating a high selectivity against the mammalian homolog topoisomerases. The methane-sulfonate of (R)-5b (T-3811ME, CAS 223652-90-2) is now undergoing clinical testings.

Animals↗

Mosaic-like structure of penicillin-binding protein 2 Gene (penA) in clinical isolates of Neisseria gonorrhoeae with reduced susceptibility to cefixime.

Neisseria gonorrhoeae strains with reduced susceptibility to cefixime (MICs, 0.25 to 0.5 micro g/ml) were isolated from male urethritis patients in Tokyo, Japan, in 2000 and 2001. The resistance to cephems including cefixime and penicillin was transferred to a susceptible recipient, N. gonorrhoeae ATCC 19424, by transformation of the penicillin-binding protein 2 gene (penA) that had been amplified by PCR from a strain with reduced susceptibility to cefixime (MIC, 0.5 micro g/ml). The sequences of penA in the strains with reduced susceptibilities to cefixime were different from those of other susceptible isolates and did not correspond to the reported N. gonorrhoeae penA gene sequences. Some regions in the transpeptidase-encoding domain in this penA gene were similar to those in the penA genes of Neisseria perflava (N. sicca), Neisseria cinerea, Neisseria flavescens, and Neisseria meningitidis. These results showed that a mosaic-like structure in the penA gene conferred reductions in the levels of susceptibility of N. gonorrhoeae to cephems and penicillin in a manner similar to that found for N. meningitidis and Streptococcus pneumoniae.

Amino Acid Sequence↗

Evaluation of T-3811ME (BMS-284756), a new des-F(6)-quinolone, for treatment of meningitis caused by penicillin-resistant Streptococcus pneumoniae in rabbits.

T-3811ME (BMS-284756) is a new des-F(6)-quinolone with high levels of activity against gram-positive bacteria, including penicillin-resistant Streptococcus pneumoniae (PRSP) strains. T-3811, the free base of T-3811ME, exhibited potent activity against 28 clinical strains of PRSP isolated clinically (MIC at which 90% of the isolates tested are inhibited, 0.0625 microg/ml). After the intravenous dosing of T-3811ME (20 mg/kg of body weight as T-3811) in rabbits with meningitis caused by PRSP, the area under the concentration-time curve (AUC) of T-3811 in cerebrospinal fluid (CSF) was 5.79 microg. h/ml and was 4.5-fold higher than that of T-3811in the CSF of rabbits without meningitis. In addition, the AUC/MIC for T-3811ME (20 mg/kg as T-3811) in CSF was 185, which was 4.3-fold higher than that for ceftriaxone (administered intravenously at 100 mg/kg). After the administration of any dose of T-3811ME (5, 10, and 20 mg/kg as T-3811), the viable cell counts in CSF decreased in a dose-dependent manner. In particular, after dosing of 20 mg/kg (as T-3811), the viable cell counts in CSF were significantly less than those in the nontreated group (P < 0.01). By histopathological evaluation, 6 h after the administration of T-3811ME (20 mg/kg as T-3811), the thickening of the cerebral meninx and the infiltration of neutrophils into the cerebral meninx were less severe in the treated group than in the nontreated group. T-3811ME (BMS-284756) may be expected to be evaluated for the management of meningitis caused by highly penicillin-resistant pneumococci.

Animals↗

[In vitro interaction of tazobactam/piperacillin combined with aminoglycosides against Pseudomonas aeruginosa, Klebsiella pneumoniae, Escherichia coli AND Staphylococcus aureus].

The in vitro combination effect of tazobactam/piperacillin (TAZ/PIPC) with aminoglycosides (amikacin (AMK) and isepamicin (ISP)) were investigated by the checkerboard dilution method against PIPC-resistant and TAZ/PIPC-susceptible Pseudomonas aeruginosa, Klebsiella pneumoniae, Escherichia coli and Methicillin-sensitive Staphylococcus aureus (MSSA). The following results were obtained. 1. The combination of TAZ/PIPC with AMK showed synergistic effect for 66.7% of P. aeruginosa and 9.1% of K. pneumoniae and additive effect for 76.9% of E. coli and 74.1% of MSSA. The antagonistic effect of TAZ/PIPC with AMK was not demonstrated for all tested strains. 2. The combination of TAZ/PIPC with ISP showed synergistic effect for 61.9% of P. aeruginosa and 22.7% of K. pneumoniae and additive effect for 84.6% of E. coli and 66.7% of MSSA. The antagonistic effect of TAZ/PIPC with ISP was not demonstrated for all tested strains. In conclusion, these results suggest that the combination therapies of TAZ/PIPC with aminoglycosides are useful for the clinical treatment of sepsis caused by above four species.

Amikacin↗

[In vitro and in vivo antibacterial activities of pazufloxacin mesilate, a new injectable quinolone].

We investigated the in vitro and in vivo antibacterial activities of pazufloxacin mesilate (PZFX mesilate), a new injectable quinolone, and obtained the following results. 1) The MIC50 and MIC90 values of PZFX against clinically isolated Gram-positive and -negative bacteria, ranged from 0.0125 to 12.5 micrograms/ml and 0.025 to 100 micrograms/ml, respectively. PZFX showed broad spectrum activity. The antibacterial activities of PZFX against quinolone-susceptible, methicillin-resistant Staphylococcus aureus, beta-lactamase-negative, ampicillin-resistant Haemophilus influenzae, extended spectrum beta-lactamase possessing Klebsiella pneumoniae and imipenem/cilastatine (IPM/CS)-resistant Pseudomonas aeruginosa were superior to those of ceftazidime (CAZ), ceftriaxone, IPM/CS, meropenem and panipenem/betamipron. 2) PZFX showed superior bactericidal activity against S. aureus, Escherichia coli, Proteus mirabilis, Serratia marcescens and P. aeruginosa to those of CAZ and IPM/CS after treatment for 15 minutes at the drug concentration equivalent to that in human serum at clinical dose to be continued for 15 minutes. 3) CAZ and IPM/CS had no bactericidal activity at the 16 times of MIC against P. aeruginosa in human polymorphonuclear leucocytes, while PZFX exhibited potent bactericidal activity in a dose-dependent manner against such bacteria. 4) PZFX inhibited both DNA gyrase and topoisomerase IV from S. aureus at nearly the same level. PZFX showed poor inhibitory activity against topoisomerase II from human placenta and showed high selectivity to bacterial topoisomerase. 5) PZFX mesilate showed superior therapeutic activity to that of CAZ with following infection model caused by S. aureus and P. aeruginosa or each; systemic infection with cyclophosphamide-treated mice, systemic infection in mice with high challenge doses, CMC pouch infection in rat, and calculus infection in rat bladder. 6) Intravenous administration of PZFX with high plasma concentration just after administration, showed more excellent therapeutic effect against the rat intraperitoneal infection, than p.o. and s.c. administration.

4-Quinolones↗

[In vitro combination effect of pazufloxacin with various antibiotics against Pseudomonas aeruginosa and methicillin-resistant Staphylococcus aureus].

The in vitro combination effects of pazufloxacin (PZFX) with various antibiotics were investigated by the checkerboard dilution method using piperacillin (PIPC), tazobactam/piperacillin (TAZ/PIPC), ceftazidime (CAZ), cefozoprane (CZOP), imipenem/cilastatin (IPM/CS), meropenem (MEPM), panipenem/betamipron (PAPM/BP), amikacin (AMK) and isepamicin (ISP) for clinical isolates of 27 Pseudomonas aeruginosa strains, vancomycin (VCM), teicoplanin (TEIC) and arbekacin (ABK) for clinical isolates of methicillin-resistant 26 Staphylococcus aureus (MRSA) strains, respectively. The following results were obtained. 1. For 27 P. aeruginosa strains, the synergistic effects were observed with the combination of PZFX and CAZ or MEPM (11.1%: 3 strains), and PZFX and CZOP or PAPM/BP (3.7%: 1 strain), respectively. The additive and synergistic effects of PZFX were observed with the combination in all beta-lactams tested in the strains more than 50%. No antagonistic effect was observed. The additive effects were also observed with the combination of PZFX and AMK or ISP in the strains more than 50% of the test strains and no antagonistic effect was observed. 2. For 26 MRSA strains, no antagonistic effect was observed with the combination of all antibiotics tested. The indifference was observed with the combination of PZFX and VCM or ABK in the strains more than 60%, and the additive effects were observed with the combination of TEIC in the strains more than 80%. In conclusion, no antagonistic effect was observed in PZFX with the combination of beta-lactams and anti-MRSA agents, suggesting that the combination therapy of PZFX with these antibiotics would be possible to use for the infections caused by P. aeruginosa and MRSA.

Anti-Bacterial Agents↗