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Hajime Goto

Publications and source records attributed to Hajime Goto.

9 recordsLinked to original sources

Antimicrobial therapy in community-acquired pneumonia among emergency patients in a university hospital in Japan.

As antimicrobial therapy for pneumonia has not been well established in Japan, this study was designed to obtain a more definitive standard for antimicrobial treatment of this condition. Two hundred and thirty-one emergency patients admitted to Kyorin University Hospital between January 1998 and December 2000 were retrospectively analyzed in respect to their age, underlying disease, causative organism, and primary treatment with antimicrobial agent. Furthermore, the severity and prognosis were analyzed for those patients who had not responded to initial treatment with antimicrobial agents. The majority of the patients were elderly (over 65 years old; mean overall age 66.7 +/- 15.2 years) and had severe pneumonia; underlying diseases were recognized at a high rate in patients with severe pneumonia (P < 0.05) and in those classified as elderly (P < 0.0001). The most common underlying conditions in elderly patients were respiratory, cardiovascular (P < 0.01), and cerebrovascular (P < 0.05) diseases. The most common causative organisms were Haemophilus influenzae, Staphylococcus aureus, Streptococcus pneumoniae, and Mycoplasma pneumoniae. In patients with severe pneumonia, S. aureus, Klebsiella pneumoniae, and Pseudomonas aeruginosa were identified as the most common causative organisms. Complications associated with antimicrobial treatment were observed in those patients with K. pneumoniae isolates who also had severe pneumonia and were frequently treated with penicillin. Furthermore, increased mortality rates were observed in patients not responding well to the initial treatment with antimicrobial agents. Thus, the selection of appropriate initial antimicrobial agents is an important factor affecting the prognosis of patients with community-acquired pneumonia.

Aged↗

Prevalence of viable Chlamydia pneumoniae in peripheral blood mononuclear cells of healthy blood donors.

BACKGROUND: Demonstration of viable Chlamydia (Chlamydophila) pneumoniae in peripheral blood mononuclear cells (PBMNCs) is essential to understand the involvement of C. pneumoniae in atherosclerosis. Nevertheless, the prevalence of viable C. pneumoniae in the blood of healthy donors has not yet been studied. STUDY DESIGN AND METHODS: The presence of C. pneumoniae transcript in PBMNCs from blood of healthy human donors was assessed by real-time reverse transcription-polymerase chain reaction (RT-PCR) with primers for C. pneumoniae 16S rRNA, which is more sensitive than genomic-DNA-based analysis, and by the use of staining with fluorescein isothiocyanate-conjugated chlamydia monoclonal antibody (MoAb). RESULTS: Thirteen of 70 donors (18.5%) showed the presence of bacterial transcript in cultured PBMNCs. The prevalence of bacterial detection and bacterial numbers was significantly increased in PBMNC cultures incubated with cycloheximide. Immunostaining of PBMNCs with antichlamydial MoAb also revealed the presence of bacterial antigen in the PBMNCs judged as positive. Nevertheless, cultivation of C. pneumoniae from all PCR-positive donors was unsuccessful. There was no significant correlation between the presence of chlamydia and either sex or current smoking habits. A possible age variation, however, in the presence of chlamydia in blood of healthy donors was suggested by the results obtained. CONCLUSION: The bacterial transcripts in PBMNCs obtained from healthy donors were detected by the RT-PCR method. Viable C. pneumoniae may be present in healthy human PBMNCs.

Adult↗

[Susceptibilities of bacteria isolated from patients with lower respiratory infectious diseases to antibiotics (2002)].

From October 2002 to September 2003, we collected the specimen from 476 patients with lower respiratory tract infections in 16 institutions in Japan, and investigated the susceptibilities of isolated bacteria to various antibacterial agents and patients' characteristics. Of 584 strains that were isolated from specimen (mainly from sputum) and assumed to be bacteria causing in inflammation, 578 strains were examined. The breakdown of the isolated bacteria were: Staphylococcus aureus 77, Streptococcus pneumoniae 103, Haemophilus influenzae 95, Pseudomonas aeruginosa (non-mucoid) 61, P. aeruginosa (mucoid) 23, Klebsiella pneumoniae 36, Moraxella subgenus Branhamella catarrhalis 29, etc. Of 77 S. aureus strains, those with 2 microg/ml or less of MIC of oxacillin (MPIPC) [methicillin-susceptible S. aureus: MSSA] was 34 strains (44.2%) and those with 4 microg/ml or more of MIC of oxacillin (methicillin-resistant S. aureus: MRSA) was 43 strains (55.8%). Against MSSA, imipenem (IPM) and minocycline (MINO) had the most potent antibacterial activity and inhibited the growth of all the strains at 0.25 microg/ml. Although clindamycin (CLDM) and aminoglycosides also had the potent activity, the resistant strains against those agents were detected. Cefotiam (CTM) inhibited the growth of all the strains at 1 microg/ml without the low sensitive strains. Against MRSA, vancomycin (VCM) showed the most potent activity and inhibited the growth of all the strains at 2 microg/ml. Arbekacin (ABK) also showed the relatively potent activity and inhibited the growth of all the strains at 4 microg/ml. Carbapenems showed the most potent activities against S. pneumoniae and inhibited the growth of all the strains at 0.25-0.5 microg/ml. Cefozopran (CZOP) also had a preferable activity (MIC90: 1 microg/ml) and inhibited the growth of all the strains at 2 microg/ml. In contrast, the resistant strains for cefaclor (CCL), erythromycin (EM), CLDM, and tetracycline (TC) were detected in 50.5%, 76.7%, 50.5%, and 80.6% of all the strains, respectively. Against H. influenzae, LVFX showed the most potent activity and inhibited the growth of 92 of all the strains (96.8%) at 0.063 microg/ml. Tobramycin (TOB) showed the most potent activity against P. aeruginosa (both mucoid and non-mucoid) and inhibited the growth of all the strains at 2 microg/ml. The antibacterial activity of CZOP was good and its MIC90 against mucoid and non-mucoid strains was 8 and 16 microg/ml, respectively. CZOP and cefpirome (CPR) were the most potent against K. pneumoniae with 0.125 microg/ml of MIC90. Also, all the agents generally showed potent activities against M. (B.) catarrhalis and the MIC90 of all drugs were 4 microg/ml or less. The approximately half the number (47.5%) of the patients with respiratory infection were aged 70 years or older. As for the incidence by the diseases, bacterial pneumonia and chronic bronchitis were the highest, being noted in 35.7 and 33.8% of all the patients, respectively. The bacteria frequently isolated from the patients with bacterial pneumonia were S. pneumoniae (22.6%). In contrast, S. aureus (16.6%) and P. aeruginosa (13.7%) were relatively frequently isolated from the patients with chronic bronchitis. Before the drug administration, the bacteria frequently isolated from all the patients were H. influenzae (24.5%) and S. pneumoniae (24.2%). In comparison of the isolated bacteria by pretreatment agents, P. aeruginosa was relatively frequently isolated from the patients pretreated with cephems or macrolides and H. influenzae was relatively frequently isolated from the patients pretreated with penicillins.

Anti-Bacterial Agents↗

[Alveolar hemorrhage as a possible adverse drug reaction by gefitinib (ZD1839, Iressa)].

We experienced a case in which severe alveolar hemorrhage occurred in the course of gefitinib therapy. A 56-year-old man with non-small cell lung cancer had been treated with CDDP + CPT-11, CDDP + GEM + VNR, CDDP + TXT. After the chemotherapy with these regimens was found to be ineffective, daily oral gefitinib was started. Four weeks later, the patient complained of cough, bloody sputum and dyspnea. Chest X-ray and CT showed bilateral infiltrations with air bronchogram. Fiberoptic bronchoscopy revealed alveolar hemorrhage with an increase of lymphocytes in the BALF. After the cessation of gefitinib therapy and the administration of steroid, he gradually recovered.

Adenocarcinoma↗

[Susceptibilities of bacteria isolated from patients with lower respiratory infectious diseases to antibiotics (2001)].

From October 2001 to September 2002, we collected the specimen from 370 patients with lower respiratory tract infections in 16 institutions in Japan, and investigated the susceptibilities of the isolated bacteria to various antibacterial agents and antibiotics and patients' characteristics. Of 458 strains that were isolated from specimen (mainly from sputum) and assumed to be bacteria causing in inflammation, 456 strains were investigated. The breakdown of the isolated bacteria were: Staphylococcus aureus 69, Streptococcus pneumoniae 72, Haemophilus influenzae 85, Pseudomonas aeruginosa (non-mucoid) 44, P. aeruginosa (mucoid) 13, Klebsiella pneumoniae 32, Moraxella subgenus Branhamella catarrhalis 32, and others. Of 69 S. aureus strains, those with 4 micrograms/mL or more of MIC of oxacillin (methicillin-resistant S. aureus: MRSA) occupied 43.5%. Vancomycin and arbekacin showed the most potent activities against MRSA as observed in 2000. The frequency of S. pneumoniae exhibiting low sensitivity to penicillin (penicillin-intermediate S. pneumoniae: PISP + penicillin-resistant S. pneumoniae: PRSP) was 59.7% and both rates of PISP and PRSP were the highest after 1992. Carbapenems had strong activities against S. pneumoniae. Especially, panipenem and imipenem inhibited the growth of all 72 strains at 0.125 and 0.5 microgram/mL, respectively. Generally, all drugs had strong activities against H. influenzae with MIC90s of 16 micrograms/mL or less. The drug that had the strongest activity against H. influenzae was levofloxacin, which inhibited the growth of 80 of the 85 strains at 0.063 microgram/mL. Against P. aeruginosa mucoid strain, meropenem had a strong activity with MIC90 of 0.5 microgram/mL while, against non-mucoid strain, tobramycin had a strong activity with MIC90 of 2 micrograms/mL. K. pneumoniae showed good susceptibilities to all drugs except ampicillin and minocycline, and the MIC90s were 4 micrograms/mL or less. Particularly, cefmenoxime, cefpirome, and imipenem had the strongest activity (MIC90: 0.125 microgram/mL), and cefozopran had a strong activity, inhibiting the growth of all strains at 0.25 microgram/mL. Also, all drugs generally had strong activities against M. (B.) catarrhalis. MIC90s of all drugs were 4 micrograms/mL or less. The drug that had the strongest activity was minocycline and levofloxacin inhibiting all 32 strains at 0.063 microgram/mL. Most of the patients with respiratory infection were aged 70 years or older, accounting for approximately a half of the total (40.5%). As for the incidence by the diseases, bacterial pneumonia and chronic bronchitis were the highest, being noted in 39.2% and 37.3% of all the patients, respectively. The bacteria frequently isolated from the patients with bacterial pneumonia were S. aureus (19.3%) and S. pneumoniae (19.9%). In contrast, H. influenzae (22.0%) were frequently isolated from the patients with chronic bronchitis. Before the drug administration, the bacteria frequently isolated from the patients were S. pneumoniae (20.8%) and H. influenzae (21.5%). S. pneumoniae and H. influenzae decreased after the initiation of drug administration while S. aureus increased. The isolation frequency of P. aeruginosa was higher after than before the initiation of drug administration. The bacteria were frequently isolated from the patients who had already treated with cephems were S. aureus and P. aeruginosa. From the patients who had already treated with macrolides, S. pneumoniae was the most frequently isolated while S. aureus was the most frequently isolated from the patients pre-treated with quinolones.

Adult↗

[Compromised host].

The number of immunocompromised host has been increasing recently. In this article, the defect of host-defence system, immune system and the way to prevent infections in these host were reviewed.

Antibiotic Prophylaxis↗