• Title/Summary/Keyword: Antibiotic resistant

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Identification of Toxin Gene and Antibiotic Resistance of Staphylococcus Aureus Isolated from Agricultural Product Cultivation Environments (농산물 생산 환경에서 분리된 Staphylococcus aureus의 항생제 내성 및 독소 유전자 확인)

  • Park, Su-Hee;Kim, Jeong-Sook;Kim, Kyeong-Yeol;Chung, Duck-Hwa;Shim, Won-Bo
    • Journal of Environmental Health Sciences
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    • v.39 no.5
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    • pp.465-473
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    • 2013
  • Objectives: This study was undertaken to analyze Staphylococcus aureus from cultivation environments for agricultural products and to confirm antibiotic resistance and enterotoxin genes for the isolated S. aureus. Methods: A total of 648 samples were collected from apple, peach, ginseng and balloon flower farms. S. aureus was isolated from soil, agricultural water, personal hygiene elements (hands, gloves and clothes) and work utensils (boxes). Results: S. aureus was detected in a total of 25 samples and 72 strains were isolated. The resistance rate of the isolated S. aureus strains was confirmed at 33.3%, with 24 resistant strains among the total of 72. Fourteen different patterns types were found, and three pattern types (NV, OX, VA) were confirmed most frequently. As result of the detection of enterotoxin gene type, four gene types (sea: 1, sed: 4, seg: all isolated S. aureus, sei: all isolated S. aureus) were analyzed among a total of nine types. Conclusions: This study demonstrates that personal hygiene techniques should be properly managed, such as washing and sterilization before or after work, because agricultural contamination by S. aureus frequently developed through improper management.

Transcription Analysis of Daptomyc in Biosynthetic Genesin Streptomyces roseosporus

  • Rhee, Ki-Hyeong;Davies, Julian
    • Journal of Microbiology and Biotechnology
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    • v.16 no.12
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    • pp.1841-1848
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    • 2006
  • Insights into gene expression have the potential for improvement of antibiotic yield and the development of robust production hosts for use in recombinant biomolecule production. $Cubicin^{TM}$ (daptomycin for injection) is a recently approved antibiotic active against many Gram(+) pathogens, including those resistant to methicillin, vancomycin, and fluoroquinolones. Daptomycin is produced as a secondary metabolite by Streptomyces roseosporus. A 128 kb region of DNA including the daptomycin biosynthetic gene cluster (dpt) has been cloned. and sequenced. Using a selected array of nucleic acid probes representing this region, we compared the expression levels of the dpt genes between S. roseosporus wild-type (WT) and derived S. roseosporus high-producer of daptomycin (HP). We observed that the majority of the biosynthetic genes were upregulated in HP compared with WT; a total of 12 genes, including those encoding daptomycin synthetase, showed consistently and significantly higher expression levels, at least 5-fold, in HP compared with WT. In contrast, some genes, flanking the dpt cluster, were expressed at higher levels in the WT strain. The expression of housekeeping genes such as S. roseosporus rpsL, rpsG, and 16S (positive controls) and presumptive intergenic regions in the dpt cluster (negative control) were identical in the two strains. In addition, we compared transcription during the early, mid-log, and early-stationary phases of growth in the HP strain. The same set of genes was upregulated and downregulated under all conditions examined; housekeeping genes showed no relative change in expression level over the periods of growth tested. Analyses of this type would be of value in studies of strain improvement and also for the identification of gene regulation processes that are important for secondary metabolite production.

Veterinary antibiotic oxytetracycline's effect on the soil microbial community

  • Danilova, Natalia;Galitskaya, Polina;Selivanovskaya, Svetlana
    • Journal of Ecology and Environment
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    • v.44 no.2
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    • pp.72-80
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    • 2020
  • Background: Antibiotics are widely used to treat animals from infections. After fertilizing, antibacterials can remain in the soil while adversely affecting the soil microorganisms. The concentration of oxytetracycline (OTC) in the soil and its effect on the soil microbial community was assessed. To assess the impact of OTC on the soil microbial community, it was added to the soil at concentrations of 50, 150, and 300 mg kg-1 and incubated for 35 days. Results: The concentration of OTC added to the soil decreased from 150 to 7.6 mg kg-1 during 30 days of incubation, as revealed by LC-MS. The deviations from the control values in the level of substrate-induced respiration on the 5th day of the experiment were, on average, 26, 68, and 90%, with OTC concentrations at 50, 150, and 300 mg kg-1, respectively. In samples with 150 and 300 mg kg-1 of OTC, the number of bacteria from the 3rd to 14th day was 2-3 orders of magnitude lower than in the control. The addition of OTC did not affect the fungal counts in samples except on the 7th and 14th days for the 150 and 300 mg kg-1 contaminated samples. Genes tet(M) and tet(X) were found in samples containing 50, 150, and 300 mg kg-1 OTC, with no significant differences in the number of copies of tet(M) and tet(X) genes from the OTC concentration. Conclusions: Our results showed that even after a decrease in antibiotic availability, its influence on the soil microbial community remains.

Correlation Between food Processing-Associated Stress Tolerance and Antimicrobial Resistance in Food Pathogens

  • Woode, Benjamin Kojo;Daliri, Frank;Daliri, Eric Banan-Mwine
    • Journal of Food Hygiene and Safety
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    • v.35 no.2
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    • pp.103-108
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    • 2020
  • Recently, consumer demand for safe but minimally processed food has rapidly increased. For this reason, many food processing industries are applying hurdle technology to enhance food safety, extend shelf life, and make foods appear minimally processed. Meanwhile, studies have shown that a treatment (stress) meant to inactivate foodborne pathogens may trigger adaptation mechanisms and could even offer cross protection against subsequent treatments. Also, certain routine farm practices such as antibiotic and herbicide use could result in the development of antibiotic-resistant pathogens. Such bacteria may be tolerant to food processing-associated stress and be more likely to remain viable in processed foods. In this review, we discuss the correlation between food processing-associated stress and antibiotic resistance. We also discuss molecular mechanisms such as the use of sigma factors, SOS response pathways and efflux pumps as means of cross protection against antimicrobial compounds and other food processing-associated stresses.

Transfer and genetic recombination of antibiotic resistance genes occurring in water environment (수질환경에서 일어나는 항생물질 내성유전자의 전이와 재조합)

  • 김치경;이성기;김영창
    • Microbiology and Biotechnology Letters
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    • v.14 no.3
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    • pp.245-250
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    • 1986
  • Antibiotic resistant bacteria isolated from the river water in Cheongju City were studied on the transfer of their R-plasmids in water environment. The R-plasmids were transferred by conjugation between the isolates ai the frequencies of 1.1$\times$10$^{-6}$ to 1.2$\times$10$^{-7}$ under laboratory condition and 1.2$\times$10$^{-7}$ to 1.0$\times$10$^{-9}$ in natural environment. The R-plasmids isolated from those bacteria were also transferred into the recipient cells of E. coli HB101 at the frequencies of 1.7-6.7$\times$10$^{-6}$. The AP$^{r}$Cm$^{r}$Tc$^{r}$-plasmid of isolate T-44 which were transformation by conjugation and transformation was determined to be 9.01 kilobses in molecular size. When the AP$^{r}$Cm$^{r}$Tc$^{r}$-plasmid DNA was treated with restriction endonuclease, the plasmid appeared to have one restriction site for EroRI and BamHI, respectively, and three sites for Pst I endonuclease.

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Increased Sensitivity to Chloramphenicol by Inactivation of manB in Streptomyces coelicolor

  • Rajesh, Thangamani;Song, Eunjung;Lee, Bo-Rahm;Park, Sung-Hee;Jeon, Jong-Min;Kim, Eunjung;Sung, Changmin;Lee, Jae-Hun;Yoo, Dongwon;Park, Hyung-Yeon;Kim, Yun-Gon;Kim, Byung-Gee;Yang, Yung-Hun
    • Journal of Microbiology and Biotechnology
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    • v.22 no.10
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    • pp.1324-1329
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    • 2012
  • Phosphomannomutase (ManB) is involved in the biosynthesis of GDP-mannose, which is vital for numerous processes such as synthesis of carbohydrates, production of alginates and ascorbic acid, and post-translational modification of proteins. Here, we discovered that a deletion mutant of manB (BG101) in Streptomyces coelicolor (S. coelicolor) showed higher sensitivity to bacteriostatic chloramphenicol (CM) than the wild-type strain (M145), along with decreased production of CM metabolites. Deletion of manB also decreased the mRNA expression level of drug efflux pumps (i.e., cmlR1 and cmlR2) in S. coelicolor, resulting in increased sensitivity to CM. This is the first report on changes in antibiotic sensitivity to CM by deletion of one glycolysis-related enzyme in S. coelicolor, and the results suggest different approaches for studying the antibiotic-resistant mechanism and its regulation.

Drug Use Evaluation of Vancomycin in Hospitalized Patients of Surgery Departments (외과계 입원환자에 대한 Vancomycin의 약물사용 평가)

  • Lee, Young Mee;Choi, Kyung Eob
    • Korean Journal of Clinical Pharmacy
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    • v.9 no.1
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    • pp.35-43
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    • 1999
  • Over the last 50 years, a number of antibiotic agents have been developed and clinically used in the area of infectious diseases. Due to antimicrobial resistance problems and increasing health care costs, the rational use of antibiotics has been required. As a drug of choice to treat infections caused by MRSA, vancomycin has been extensively prescribed since the late 1970's. Recently, reports of vancomycin-resistant organisms such as VRE and VRSA have been increased to draw medical concerns. The objectives of this study were to evaluate the rational use of vancomycin and the appropriateness of the Restrictional Program of Antibiotic Utilization (RPAU) which has been operated at Samsung Medical Center. A retrospective chart review was performed in 132 hospitalized patients treated with vancomycin in the surgery departments from. January to June 1998. The guidelines of ASHP and HICPAC for vancomycin were modified and used as our criteria to determine the vancomycin DUE. In one hundred out of the patients, uses of vancomycin were approved by the Department of Infectious Diseases (DID) based on the RPAU. Vancomycin was appropriately used in $62.5\%$ of the 100 patients according to the criteria of justification of use, while $60.0\%,\;60.0\%,\;79.0\%,\;and\;51.0\%$ of the patients showed appropriate according to those of lab reports such as applicable culture obtained, pretreatment SCr, WBC and serum drug concentration monitoring, respectively. Although the rest 32 patients were not approved to receive vancomycin by the DID, twenty two percent continued receiving vancomycin treatment. This might result from the fact that the RPAU was started not before the use of antibiotics but in the middle of antimicrobial therapy. Continual education should be provide to the related health professionals and the RPAU should be simultaneously modified in order to increase the rate of appropriate uses of antibiotics.

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Selection of indigenous starter culture for safety and its effect on reduction of biogenic amine content in Moo som

  • Tangwatcharin, Pussadee;Nithisantawakhup, Jiraroj;Sorapukdee, Supaluk
    • Asian-Australasian Journal of Animal Sciences
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    • v.32 no.10
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    • pp.1580-1590
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    • 2019
  • Objective: The aims of this study were to select one strain of Lactobacillus plantarum (L. plantarum) for a potential indigenous safe starter culture with low level antibiotic resistant and low biogenic amine production and evaluate its effect on biogenic amines reduction in Moo som. Methods: Three strains of indigenous L. plantarum starter culture (KL101, KL102, and KL103) were selected based on their safety including antibiotic resistance and decarboxylase activity, and fermentation property as compared with a commercial starter culture (L. plantarum TISIR543). Subsequently, the effect of the selected indigenous safe starter culture on biogenic amines formation during Moo som fermentation was studied. Results: KL102 and TISIR 543 were susceptible to penicillin G, tetracycline, chloramphenicol, erythromycin, gentamycin, streptomycin, vancomycin, ciprofloxacin and trimethoprim (MIC90 ranging from 0.25 to $4{\mu}g/mL$). All strains were negative amino acid-decarboxylase for lysis of biogenic amines in screening medium. For fermentation in Moo som broth, a relatively high maximum growth rate of KL102 and TISIR543 resulted in a generation time than in the other strains (p<0.05). These strain counts were constant during the end of fermentation. Similarly, KL102 or TISIR543 addition supported increases of lactic acid bacterial count and total acidity in Moo som fermentation. For biogenic amine reduction, tyramine, putrescine, histamine and spermine contents in Moo som decreased significantly by the addition KL102 during 1 d of fermentation (p<0.05). In final product, histamine, spermine and tryptamine contents in Moo som inoculated with KL102 were lower amount those with TISIR543 (p<0.05). Conclusion: KL102 was a suitable starter culture to reduce the biogenic amine formation in Moo som.

Strategy for salvaging infected breast implants: lessons from the recovery of seven consecutive patients

  • Yeo, Hyeonjung;Lee, Dongkyu;Kim, Jin Soo;Eo, Pil Seon;Kim, Dong Kyu;Lee, Joon Seok;Kwon, Ki Tae;Lee, Jeeyeon;Park, Ho Yong;Yang, Jung Dug
    • Archives of Plastic Surgery
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    • v.48 no.2
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    • pp.165-174
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    • 2021
  • Background In recent years, implant-based breast reconstruction has been performed because of its simplicity, short operation time, and rapid recovery of patients. Several studies have reported treatment methods for implant surgery-related infection, which is a serious complication. The aim of this study was to introduce our strategy for salvaging infected implants and to evaluate its effectiveness. Methods The authors performed a retrospective study of 145 cases from 132 patients who underwent implant-based breast reconstruction from January 2012 to December 2018. Empirical antibiotics were immediately administered to patients with suspected infections. The patients then underwent salvage treatment including appropriate antibiotics, ultrasonography-guided aspiration, debridement, antibiotic lavage, and implant exchange through a multidisciplinary approach. Patient demographics, operative data, duration until drain removal, adjuvant treatment, and complications were analyzed. Results The total infection rate was 5.5% (8/145). A longer indwelling catheter period and adjuvant treatment were significantly associated with infection. The salvage treatment showed a success rate of 87.5% (7/8). Seven patients who received early aggressive salvage treatment recovered from infection. One patient with methicillin-resistant Staphylococcus aureus, who received salvage treatment 11 days after symptom onset, did not respond to drainage and antibiotic treatment. That patient subsequently underwent explantation. Conclusions In implant-based breast reconstruction, prevention of infection is of the utmost importance. However, if an infection is suspected, proactive empirical antibiotic therapy and collaboration with the necessary departments are required. Through a multidisciplinary approach and proactive early management, swift and appropriate salvage should be performed.

Study on Convergence Technique Using the Antimicrobial Resistance and Virulence Genes Analysis in Escherichia coli (대장균의 항균제 내성과 독력 유전자의 분석을 활용한 융합기술연구)

  • Han, Jae-Il;Sung, Hyun-Ho;Park, Chang-Eun
    • Journal of the Korea Convergence Society
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    • v.6 no.5
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    • pp.77-84
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    • 2015
  • This study was conducted to investigate the characteristics of antibiotic resistant E. coli. its antibiotic susceptibility and pathogenicity were analyzed via molecular convergence technique, for the relationship of antibiotic susceptibility and pathogenicity. The 60 isolated strains consisted of ESBL(+)(8) and ESBL(-)(52) strains. The ESBL(+)(8) strains consisted of 2 strains without a pathogenic gene, stb(3), flich7(1), and flich7-eae(2). The ESBL(-)(52) strains consisted of 26 strains without a pathogenic gene, stx1(3), stb(10), flich7(2), eae(2), stx1-flich7(2), stx1-stb(4), flich7-stb(2), and flich7-stb-eae(1). In conclusion, antibiotic resistance is increasingly, Focused on molecular convergence, showed the correlation of pathogenicity with antibiotic resistance was poor. However, It will be able to find the exact pathogenic factor in the future through convergence technique including the analysis of virulence genes.