• Title/Summary/Keyword: antibacterial spectrum

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Antimicrobial Activity against Food-hazardous Microorganisms, Dermatophytes, and Pytopathogens and Antioxidative Activity of Sancho Oil (식품위해성균, 피부사상균 및 식물성 병원균에 대한 산초유의 항균 활성 및 항산화 활성)

  • Kim, Hak Gon;Kang, Seung Mi;Yong, Seong Hyeon;Seol, Yu Won;Choi, Eun Ji;Park, Jun Ho;Yu, Chan Yeol;Solomon, Tamirat;Choi, Myung Suk
    • Korean Journal of Medicinal Crop Science
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    • v.28 no.1
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    • pp.38-46
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    • 2020
  • Background: Although Sancho (Zanthoxylum schinifolium Siebold & Zucc) oil has traditionally been used for its antibiotics properties, there is currently a lack of scientific evidence regarding its biological activities. In this study, we investigated the antimicrobial and antioxidant activities of Sancho oil against food-hazardous microorganisms, phytopathogens, and dermatophytes. Methods and Results: We investiated the antimicrobial activity of Sancho oil against 11 food-hazardous microorganisms, nine phytopathogens, and six dermatophytes. The Sancho oil was found to show the strongest antibacterial activity against Shigella flexneri and Listeria spp. Sancho oil also showed high antifungal activity against plant pathogens, particularly Fusarium oxysporum, and showed antimicrobial activity against dermatophytes such as Trichophyton rubrum, Microsporum canis and Candida albicans. The antioxidant activity of Sancho oil was measured using the DPPH method, and was found to be stronger than that of unrefined oil. Moreover, this activity increased with increasing oil concentration. Conclusions: We found that Sancho oil showed differing antimicrobial activities against food-hazardous microorganisms, dermatophytes, and plant pathogens. The antimicrobial activity spectrum of Sancho oil was not broad and varied among microbial strains. On the basis of our findings, we consider that Sancho oil could be used an antibacterial material for food-borne S. flexneri and Listeria spp., a biopesticide for Fusarium spp., and a treatment for dermatophytes such as T. rubrum.

Micronucleus Test of DW-116, a Novel Antibacterial Quinolone (신규 퀴놀론 항균제 DW-116의 소핵시험)

  • Moon, Eun-Yi;Lee, Jin;Choi, Chung-Ha;Lee, Chi-Woo;Chung, Yong-Ho;Yoon, Sung-June;Lee, Dog-Keun
    • Biomolecules & Therapeutics
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    • v.4 no.3
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    • pp.239-243
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    • 1996
  • DW-116 {(1-(5-fluoro-2-pyridyl)-6-fluoro-7-(4-methyl-1-piperazinyl)-1,4-dihydro-4-oxoquinoline-3-carboxylic acid hydrochloride) is a new quinolone antibiotic with a broad antibacterial spectrum against G(+) and G(-) bacteria. DW-116 was evaluated for the appearance of micronucleus in polychromatic erythrocytes (PCEs) of mouse bone marrow cells after intraperitoneal and oral single administration. We prepared the bone marrow cells at 30hr after drug administration and they were used for measuring PCE with micronucleus. The results showed there was no statistically significant increase in the numbers of PCEs with micronucleus in all DW-116 administered groups compared with a negative control group. The results also showed that the ratio of normochromatic erythrocytes(NCEs) to PCEs of all DW-116 administered groups was not significantly different from that of a negative control group. These results suggested that DW-116 may not cause any chromosomal damage and it has no in vivo mutagenic potential under these experimental conditions.

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A Study on the Dyeing of Silk Fabrics Treated with Aplysia kurodai Extract (군소 추출색소를 이용한 견직물의 염색성에 관한 연구)

  • Kim, Hyun-Mi;Kim, Sang-Bum;Jang, Ae-Ran
    • Korean Journal of Human Ecology
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    • v.21 no.4
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    • pp.791-803
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    • 2012
  • This study intends to identify applicability of natural dye extracted from Aplysia kurodai, aiming to standardization of Aplysia kurodai natural dyeing through scientific validation by analyzing characteristics of pigment elements to review dyeability, colorfastness and antibacterial activity. Such material as silk fabrics that is animal fiber were used for this purpose, and derived following summarized results. UV/VIS spectrum analysis on the pigment of Aplysia kurodai that was extracted from purple gland showed that maximum absorbtion was near 540 nm. The silk fabric optimal dyeing can be achieved at a temperature of $55^{\circ}C$ with a colorant concentration of 5%. Dyed at $55^{\circ}C$ with interval of 10~90 minutes for identifying dye uptake over time to observed slow increase of dye uptake over time, and equilibrium occurred at 50 minutes. For dye uptake according to pH, while dye uptake was superior in acidity, it decreased rapidly in a base after pH 7. For color changes according to pH variation, it was reddish purple in acidity and was purplish red in a base. For color changes according to mordanting method, more clear color change had been obtained when process with aluminium pre-mordanting than non-mordanting and post-mordanting. The colorfastness to light, perspiration and washing was 1, 4~5, and 3~4 ratings respectively. The silk fabric dyed with Aplysia kurodai demonstrated excellent antimicrobial activity to Staphylococcus aureus and Klebsiella pneumoniae. The Aplysia kurodai can be used as a new colorant for the natural dyeing of silk.

Antibacterial Activity of Onion Pathogens and Isolation of Bacillus ehimensis YJ-4 from the Rhizosphere of Healthy Onion Roots (건전 양파 근권으로부터 Bacillus ehimensis YJ-4의 분리 및 양파 병원균들에 대한 길항력 조사)

  • 주길재;이인구
    • Food Science and Preservation
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    • v.10 no.2
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    • pp.224-229
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    • 2003
  • This study was carried out to isolate of antagonistic bacterium to Allium cepa L. pathogens. A total of 250 strains were isolated from A. cepa L. roots. The isolates were screened for antagonism to A. cepa L. pathogens and the isolated strain No. YJ-4 was selected among these bacteria. It was identified as Bacillus ehimensis based on morphological and physiological characteristics according to the Bergey's mannual of systematic bacteriology, Sherlock system of Microbial ID Int and 165 rDNA sequences methods. Bacillus ehimensis YJ-4 showed broad spectrum of antibacterial and antifungal activities against plant pathogens as Alternaria porri, Botrytis cinerea, Erwinia carotovora subsp. carotovora Fusarium of oxysporium, penicillium sp., Pseudomonas sp., Rhizoctonia solani, Sclerotium cepivotum, Septoria sp., Stemphylium botryosum. Speially B. ehimensis YJ-4 showed high antifungal activity on growth against F. oxysporium, the causal agent of onion Fusarium wilt.

Antibacterial and Whitening Activities of Coffea arabica Ethanol Extract (커피 에탄올 추출물의 항균 및 미백활성)

  • Kim, In Hae;Lee, Jae Hwa
    • Korean Chemical Engineering Research
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    • v.56 no.2
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    • pp.245-251
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    • 2018
  • In this study, Coffea arabica ethanol extract (CAE) was tested for possible functional cosmetic agent. Whitening effect was measured by tyrosinase inhibition assay, and anti-oxidant activity was checked by SOD-like activity. SOD-like activity of CAE showed $94.8{\pm}6.2%$ at $500{\mu}g/mL$. The anti-bacterial activities CAE was evaluated against three different gram-positive bacteria and six gram-negative bacteria including MRSA strains. CAE exhibited in vitro broad spectrum antimicrobial activities of gram-negative bacteria without antifungal activity. CAE was strong exhibited against MRSA CCARM3561. The tyrosinase and L-DOPA inhibitory activities of the CAE lower than those positive control arbutin. CAE reduced melanin contents of B16-F10 melanoma cell in a dose dependent manner and decrease about 89.2% at a concentration $100{\mu}g/mL$. These result highlight the potential of coffee extract as a naturally active and non-toxic antibacterial suitable for cosmetic applications.

Development of a Novel Short Synthetic Antibacterial Peptide Derived from the Swallowtail Butterfly Papilio xuthus Larvae

  • Kim, Seong Ryul;Choi, Kwang-Ho;Kim, Kee-Young;Kwon, Hye-Yong;Park, Seung-Won
    • Journal of Microbiology and Biotechnology
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    • v.30 no.9
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    • pp.1305-1309
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    • 2020
  • Insects possess biological defense systems that can effectively combat the invasion of external microorganisms and viruses, thereby supporting their survival in diverse environments. Antimicrobial peptides (AMPs) represent a fast-acting weapon against invading pathogens, including various bacterial or fungal strains. A 37-residue antimicrobial peptide, papiliocin, derived from the swallowtail butterfly Papilio xuthus larvae, showed significant antimicrobial activities against several human pathogenic bacterial and fungal strains. Jelleines, isolated as novel antibacterial peptides from the Royal Jelly (RJ) of bees, exhibit broad-spectrum protection against microbial infections. In this study, we developed a novel antimicrobial peptide, PAJE (RWKIFKKPFKISIHL-NH2), which is a hybrid peptide prepared by combining 1-7 amino acid residues (RWKIFKK-NH2) of papiliocin and 1-8 amino acid residues (PFKISIHL-NH2) of Jelleine-1 to alter length, charge distribution, net charge, volume, amphipaticity, and improve bacterial membrane interactions. This novel peptide exhibited increased hydrophobicity and net positive charge for binding effectively to the negatively charged membrane. PAJE demonstrated antimicrobial activity against both gram-negative and gram-positive bacteria, with very low toxicity to eukaryotic cells and an inexpensive process of synthesis. Collectively, these findings suggest that this novel peptide possesses great potential as an antimicrobial agent.

Chemical Composition and Antimicrobial Efficiency of Swietenia macrophylla Seed Extract on Clinical Wound Pathogens

  • Gopalan, Hanan Kumar;Md Hanafiah, Nor Faizzah;Ring, Leong Chean;Tan, Wen-Nee;Wahidin, Suzana;Hway, Teo Siew;Yenn, Tong Woei
    • Natural Product Sciences
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    • v.25 no.1
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    • pp.38-43
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    • 2019
  • Microbial wound infection prolonged the hospitalization and increase the cost for wound management. Silver is commonly used as antimicrobial wound dressing. However, it causes several adverse side effects. Hence, this study was aimed to evaluate the antimicrobial efficiency of Swietenia macrophylla seed extract on clinical wound pathogens. Besides, the bioactive constituents of the seed extract were also determined. S. macrophylla seeds were extracted with methanol by maceration method. The seed extract inhibited 5 test bacteria and 1 yeast on disc diffusion assay. The antibacterial activity was broad spectrum, as the extract inhibited both Gram positive and Gram negative bacteria. On kill curve analysis, the antibacterial activity of the seed extract was concentration-dependent, the increase of extract concentration resulted in more reduction of bacterial growth. The extract also caused 99.9% growth reduction of Bacillus subtilis relative to control. A total of 21 compounds were detected in gas chromatography- mass spectrometry analysis. The predominant compounds present in the extract were oleic acid (18.56%) and linoleic acid (17.72%). In conclusion, the methanolic extract of S. macrophylla seeds exhibited significant antimicrobial activity on clinical wound pathogens. Further investigations should be conducted to purify other bioactive compounds from the seeds of S. macrophylla.

Bactericidal Effect of Cecropin A Fused Endolysin on Drug-Resistant Gram-Negative Pathogens

  • Lim, Jeonghyun;Hong, Juyeon;Jung, Yongwon;Ha, Jaewon;Kim, Hwan;Myung, Heejoon;Song, Miryoung
    • Journal of Microbiology and Biotechnology
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    • v.32 no.6
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    • pp.816-823
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    • 2022
  • The rapid spread of superbugs leads to the escalation of infectious diseases, which threatens public health. Endolysins derived from bacteriophages are spotlighted as promising alternative antibiotics against multi-drug resistant bacteria. In this study, we isolated and characterized the novel Salmonella typhimurium phage PBST08. Bioinformatics analysis of the PBST08 genome revealed putative endolysin ST01 with a lysozyme-like domain. Since the lytic activity of the purified ST01 was minor, probably owing to the outer membrane, which blocks accessibility to peptidoglycan, antimicrobial peptide cecropin A (CecA) was fused to the N-terminus of ST01 to disrupt the outer membrane. The resulting CecA::ST01 has been shown to have increased bactericidal activity against gram-negative pathogens including Pseudomonas aeruginosa, Klebsiella pneumoniae, Acinetobacter baumannii, Escherichia coli, and Enterobacter cloacae and the most affected target was A. baumannii. In the presence of 0.25 µM CecA::ST01, A. baumannii ATCC 17978 strain was completely killed and CCARM 12026 strain was wiped out by 0.5 µM CecA::ST01, which is a clinical isolate of A. baumannii and resistant to multiple drugs including carbapenem. Moreover, the larvae of Galleria mellonella could be rescued up to 58% or 49% by the administration of CecA::ST01 upon infection by A. baumannii 17978 or CCARM 12026 strain. Finally, the antibacterial activity of CecA::ST01 was verified using 31 strains of five gram-negative pathogens by evaluation of minimal inhibitory concentration. Thus, the results indicate that a fusion of antimicrobial peptide to endolysin can enhance antibacterial activity and the spectrum of endolysin where multi-drug resistant gram-negative pathogens can be efficiently controlled.

Copper-based Surface Coatings and Antimicrobial Properties Dependent on Oxidation States (구리 기반 표면코팅 및 산화수에 따른 항균·항바이러스 특성)

  • Sangwon Ko
    • Applied Chemistry for Engineering
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    • v.34 no.5
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    • pp.479-487
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    • 2023
  • Copper is cost-effective and abundantly available as a biocidal coating agent for a wide range of material surfaces. Natural oxidation does not compromise the efficacy of copper, allowing it to maintain antimicrobial activity under prolonged exposure conditions. Furthermore, copper compounds exhibit a broad spectrum of antimicrobial activity against pathogenic yeast, both enveloped and non-enveloped types of viruses, as well as gram-negative and gram-positive bacteria. Contact killing of copper-coated surfaces causes the denaturation of proteins and damage to the cell membrane, leading to the release of essential components such as nucleotides and cytoplasm. Additionally, redox-active copper generates reactive oxygen species (ROS), which cause permanent cell damage through enzyme deactivation and DNA destruction. Owing to its robust stability, copper has been utilized in diverse forms, such as nanoparticles, ions, composites, and alloys, resulting in the creation of various coating methods. This mini-review describes representative coating processes involving copper ions and copper oxides on various material surfaces, highlighting the antibacterial and antiviral properties associated with different oxidation states of copper.

In vitro and in vivo Evaluations of LB 10517, a Novel Parenteral Broad-Spectrum Cephalosporin

  • Song, Hye-Kyong;Nishino, Takeshi;Seo, Mi-Kyeong;Kim, Mu-Yong;Lee, Yong-Hee;Kim, In-Chull;Kwak, Jin-Hwan
    • Archives of Pharmacal Research
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    • v.19 no.1
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    • pp.46-51
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    • 1996
  • The in vitro activity of LB 10517, a new catechol-substituted cephalosporin, was compared with those of E-1077, cefpirome and ceftazidime 1034 clinical isolates collected in Japan. LB10517 showed a broad-spectrum antibacterial activity against a wide range of grampositive and gram-negative bacteria including non-glucose fermenting rods, Pseudomonas aeruginosa. Against the methicillin-susceptible strains of Staphylococcus aureus (MSSA) and Strptoccus pyogenes, the $MIC_{90}$ values of LB10517 which required to inhibit 90% of the strains wre $3.13\mug/ml\; and\; 0.1\mug/ml$, respectively. It was as active as E-1077 but more active than cefpirome and ceftazidime. Methicillin-resistant strains of S.aureus (MRSA) and Enterococcus spp. were highly resistant to all the test compunds. LB10517 was highly active against most members of the family Enterobacteriaceae, 90% of which were inhibited at a concentration of less than $0.78\mug/ml$, except for Enterobacter cloacae ($1.56\mug/ml$) and Serratia marcescens ($3.13\mug/ml$)Its activity was comparable to those of E-1077 and cefpirome but it was greater than that of ceftazidime. Against Pseudomonas aeruginosa, LB10517 showed the most potent antibacterial activity among the compounds tested. Ninety percent of P. aeruginosa isolates were susceptible at the concentration of $0.39\mug/ml$. Its activity was 32-to 128 fold higher than those of E-1077, cefpirome and ceftazidime. Against imipenem- or ofloxacin-resistant P. aeruginosa, LB10517 with $MIC_{90}\; of\; 6.25 \\mug/ml\; and\; 3.13\mug/ml$, respectively, showed 16-fold more potent activity than the other test compounds. LB10517 showed a relatively high plasma level and long plasma elimination half-life in rats $(t_{1/2}(\beta,\; 52 min)\; and\; dogs\; (t_{1/2}(\beta),\; 103 min)$.

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