• Title/Summary/Keyword: antibacterial agents

Search Result 374, Processing Time 0.031 seconds

Bioprospecting of Endophytic Fungi as Promising Anti-MRSA Agents

  • Wei, Yee-Min;Tan, Joo-Shun;Tang, Hock-Wei;Tong, Woei-Yenn;Leong, Chean-Ring;Tan, Wen-Nee
    • Natural Product Sciences
    • /
    • v.28 no.3
    • /
    • pp.93-104
    • /
    • 2022
  • Methicillin-resistant Staphylococcus aureus (MRSA) is a serious threat to the global healthcare system. Ineffective and resistance to antibiotic treatments have increased morbidity and mortality rates worldwide. New and effective antibiotics are needed to combat against bacterial resistance. Endophytic fungi are crucial reservoirs of novel bioactive metabolites. In particular, the secondary metabolites show promising therapeutic potential, notably, antibacterial. This review discussed the emerging potential of endophytic fungi as anti-MRSA agents. The ecological sources of endophytic fungi were discussed with the synthesis of bioactive metabolites. The mode of antibacterial actions was elucidated to give a better understanding of the mechanisms involved. This review may serve as an important reference for future discovery and developments of anti-MRSA agents from endophytic fungi.

Antimicrobial Activities of Hydroxybiphenyl Derivatives (III) - The Antibacterial Activities of p-Phenylphenol Derivatives against a Cariogenic Bacterium Streptococcus mutans (Hydroxybiphenyl 유도체의 항균작용 (III) - 충치균 Streptococcus mutans에 대한 p-Phenylphenol 유도체의 항균작용)

  • 배기환;서원준;박종태
    • YAKHAK HOEJI
    • /
    • v.35 no.1
    • /
    • pp.7-10
    • /
    • 1991
  • For the purpose of developing of anticariogenic agents, P-phenylphenol derivatives were synthesized and determined their antibacterial activities against a cariogenic bacterium, Streptococcus mutans. Among synthetic compounds, 2-nitro-6-bromo-p-phenylphenol showed as potent antibacterial activity as magnolol and honokiol.

  • PDF

Studies of the Non-Mevalonate Pathway I. Biosynthesis of Menaquinone-7 in Bacillus subtilis II. Synthesis of Analogs of Fosmidomycin as Potential Antibacterial Agents

  • Kim, Dojung;Phillip J. Proteau
    • Proceedings of the Korean Society of Applied Pharmacology
    • /
    • 1998.11a
    • /
    • pp.158-158
    • /
    • 1998
  • The non-mevalonate pathway is a newly discovered isoprenoid biosynthetic pathway in some bacteria, cyanobacteria, algae and plants. Because isoprenoid metabolites (ubiquinone, menaquinone, undecaprenol) are essential for bacterial growth, this pathway may represent a novel target for antibacterial agents. Antibiotics with a unique mechanism of action are needed to combat the risk of antibiotic resistance that is a current worldwide problem. In order to study this pathway as viable target, it was necessary to verify use of the pathway in our model system, the bacterium Bacillus subtilis. Incubation experiments with [6,6-$^2$H$_2$]-D-glucose and [l-$^2$H$_3$]-deoxy-D-xylulose were conducted to provide labeled menaquinone-7 (MK -7), the most abundant isoprenoid in B. subtilis. $^2$H-NMR analysis of the MK-7 revealed labeling patterns that strongly support utilization of the non-mevalonate pathway. Another approach to study the pathway is by structure activity relationships of proposed inhibitors of the pathway. Fosmidomycin is a phosphonic acid with antibacterial activity known to inhibit isoprenoid biosynthesis in susceptible bacteria and may act by inhibiting the non-mevalonate pathway. Fosmidomycin and an N-methyl analog were synthesized and tested for antibacterial activity. Fosmidomycin was active against Escherichia coli and B. subtilis, while N-formyl-N-methyl-3-amino-propylphosphonic acid was inactive.

  • PDF

Clinical Evaluation of Residual Effectiveness of Antibacterial Agents (항균성분의 지속력에 대한 인체적용 시험 평가)

  • Choi, Suh Hee;Kim, Hyun Ju;Lee, Bum Chun;Moon, Tae Kee;Kim, Nam Soo
    • Journal of the Society of Cosmetic Scientists of Korea
    • /
    • v.39 no.2
    • /
    • pp.133-140
    • /
    • 2013
  • This in vivo study via ASTM E2752-10, cup scrub method, was performed to evaluated the residual effectiveness of PCMX and IPMP commonly used in antibacterial soap. The liquid soap having 5% of PCMX and 0.1% of IPMP showed statistically significant reduction of E. coli and S. aurues as compared with control in a trial of 80 healthy volunteers. And its efficacy was maintained for 27 h at least. We report the result of residual effectiveness of antibacterial agents for the first time in Korea.

Antibacterial Effect of Eucalyptus Oil, Tea Tree Oil, Grapefruit Seed Extract, Potassium Sorbate, and Lactic Acid for the development of Feminine Cleansers

  • Yuk, Young Sam
    • International Journal of Internet, Broadcasting and Communication
    • /
    • v.13 no.2
    • /
    • pp.82-92
    • /
    • 2021
  • Purpose: It has been reported that the diversity and abundance of microbes in the vagina decrease due to the use of antimicrobial agents, and the high recurrence rate of female vaginitis due to this suggests that a new treatment is needed. Methods: In the experiment, we detected that 10% potassium sorbate solution, 1% eucalyptus oil solution, 1% tea tree oil solution, 400 µL/10 mL grapefruit seed extract solution, 100% lactic acid, 10% acetic acid solution, and 10% lactic acid solution were prepared and used. After adjusting the pH to 4, 5, and 6 with lactic acid and acetic acid in the mixed culture medium, each bacterium was inoculated into the medium and incubated for 72 h at 35℃. Incubate and 0 h each. 24 h. 48 h. The number of bacteria was measured after 72 h. Results: In the mixed culture test between lactic acid bacteria and pathogenic microorganisms, lactic acid bacteria showed good results at pH 5-5.5. Potassium sorbate, which has varying antibacterial activity based on the pH, killed pathogenic bacteria and allowed lactic acid bacteria to survive at pH 5.5. Conclusion: The formulation ratio obtained through this study could be used for the development of a feminine cleanser that can be used as a substitute for antibacterial agents. Further, the findings of this study may be able to solve the problem of antimicrobial resistance in the future.

Antibacterial Activity of Zanthoxylum schinifolium

  • Choi, Ji-Yeon;Kim, Hye-Min;Lee, Jeong-Min;Choi, Kyung;Ku, Ja-Jung;Park, Kwang-Woo;Cho, Eun-Ju;Lee, Sang-Hyun
    • Natural Product Sciences
    • /
    • v.18 no.2
    • /
    • pp.137-140
    • /
    • 2012
  • The aim of this research was to investigate the industrial application of Zanthoxylum schinifolium. Antibacterial activities of the n-hexane, methylene chloride (MC), ethyl acetate, and butanol fractions of Z. schinifolium were tested against Escherichia coli, Staphylococcus aureus and Helicobacter pylori. Among the fractions, the n-hexane and MC fractions showed the stronger antibacterial activity against H. pylori, with an inhibition zone greater than 10 mm in disc assays. Further testing of bergapten and lupeol from the MC fraction of Z. schinifolium revealed the antibacterial effects against E. coli, S. aureus and H. pylori, suggesting their potential use as antibacterial agents.

Evaluation of the physical properties and antibacterial effects on Candida albicans of denture base resin containing silver sulfadiazine (실버 설파다이아진이 첨가된 의치상용 레진의 Candida albicans에 대한 항균평가 및 물성 평가)

  • Yu-Ri Choi;Min-Kyung Kang
    • Journal of Korean society of Dental Hygiene
    • /
    • v.23 no.6
    • /
    • pp.459-466
    • /
    • 2023
  • Objectives: The purpose of this study was to evaluate the physical properties and antibacterial activity of denture base resin with added silver sulfadiazine. Methods: Specimens were made from self-curing denture base resin and silver sulfadiazine as an inorganic antibacterial agent. For physical evaluation of the specimens, surface roughness, surface hardness, and contact angle were measured. Bacterial growth was assessed by optical densityat 600 nm (OD600) and colony forming units (CFU) measurements to confirm antibacterial activity. Results: There was no significant difference in surface roughness, surface hardness, and contact angle in the experimental group containing silver sulfadiazine compared to the control group. In contrast, the experimental group showed a significant decrease in antibacterial activity compared to the control group in terms of OD value. Analysis of CFU confirmed a significant decrease in colonies in the experimental group compared to the control group. Conclusions: Denture base resin containing silver sulfadiazine, an inorganic antibacterial agent, exhibited enhanced antibacterial activity without physical changes. In conclusion, the use of denture base resin containing inorganic antibacterial agents may be expected in the future.

Polysaccharide-based superhydrophilic coatings with antibacterial and anti-inflammatory agent-delivering capabilities for ophthalmic applications

  • Park, Sohyeon;Park, Joohee;Heo, Jiwoong;Lee, Sang-Eun;Shin, Jong-Wook;Chang, Minwook;Hong, Jinkee
    • Journal of Industrial and Engineering Chemistry
    • /
    • v.68
    • /
    • pp.229-237
    • /
    • 2018
  • Medical silicone tubes are generally used as implants for the treatment of nasolacrimal duct stenosis. However, side effects such as allergic reactions and bacterial infections have been reported following the silicone tube insertion, which cause surgical failure. These drawbacks can be overcome by modifying the silicone tube surface using a functional coating. Here, we report a biocompatible and superhydrophilic surface coating based on a polysaccharide multilayer nanofilm, which can load and release antibacterial and anti-inflammatory agents. The nanofilm is composed of carboxymethylcellulose (CMC) and chitosan (CHI), and fabricated by layer-by-layer (LbL) assembly. The LbL-assembled CMC/CHI multilayer films exhibited superhydrophilic properties, owing to the rough and porous structure obtained by a crosslinking process. The surface coated with the superhydrophilic CMC/CHI multilayer film initially exhibited antibacterial activity by preventing the adhesion of bacteria, followed by further enhanced antibacterial effects upon releasing the loaded antibacterial agent. In addition, inflammatory cytokine assays demonstrated the ability of the coating to deliver anti-inflammatory agents. The versatile nanocoating endows the surface with anti-adhesion and drug-delivery capabilities, with potential applications in the biomedical field. Therefore, we attempted to coat the nanofilm on the surface of an ophthalmic silicone tube to produce a multifunctional tube suitable for patient-specific treatment.