• 제목/요약/키워드: Non-toxic Antibacterial Agents

검색결과 6건 처리시간 0.017초

새로운 Tetrahydroquinazoline의 합성, 구조 결정 및 생물학적 평가 (Synthesis, Characterization and Bioevaluation of New Tetrahydroquinazolines)

  • Murthy, Y.L.N.;Acharyulu, P.V.N.;Dubey, P.K.;Sundari, T. Tirunala
    • 대한화학회지
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    • 제52권3호
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    • pp.257-265
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    • 2008
  • 새로운 다섯개의 tetrahydroquinazolines 의 합성과 구조 결정 및 생물학적 평가는 보고 되었다. 최초에 준비된 cyclohexanones는 목표분자를 얻기 위한 synthon으로 사용되어졌다. 이들은 치환된 벤즈알데히드와 결합되어졌고, 얻어진 chalcone은 구아니딘 염산염으로 처리했다. 모든 분자들은 인간세포에 무독하며 상당한 항균성을 보여줬다.

Broad Spectrum Antibacterial Activity of Allium cepa, Allium roseum, Trigonella foenum graecum and Curcuma domestica

  • Omoloso, A.D.;Vagi, J.K.
    • Natural Product Sciences
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    • 제7권1호
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    • pp.13-16
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    • 2001
  • In many parts of the world Allium cepa, Allium roseum, Trigonella foenum graecum and Curcuma domestica are extensively used as food and are popular in herbal medicine. The four were screened against 26 pathogens and all exhibited broad-spectrum anti-bacterial activity. The aqueous as well as fractionated methanol extract of Allium cepa and A. roseum demonstrated broader level of activity against most of the organisms. On the other hand the unfractionated methanol extracts as well as the fractions of both Trigonella foenum graecum and Curcuma domestica showed broad spectrum of activity. Fractionation was found to improve their level of activity. In both cases the ethyl acetate fractions exhibited higher level of activity. All the materials tested were inactive against any of the four moulds. Allium cepa, Allium roseum, Trigonella foenum graecum and Curcuma domestica are proposed as non toxic, safe, broad spectrum antibacterial agents.

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Momordica charantia and Allium sativum : Broad Spectrum Antibacterial Activity

  • Khan, M.R.;Omoloso, A.D.
    • 생약학회지
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    • 제29권3호
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    • pp.155-158
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    • 1998
  • In the Asian sub-continent Momordica charantia and Allium sativum are extensively used as food and are popular in herbal medicine. The two were screened against 15 pathogens and both exhibited broard spectrum antimicrobial activity. As compared to the standard antibiotics, M. charantia demonstrated broader and higher level of activity against most of the organisms. On the other hand A. sativum showed comparable activity to the standard antibiotics. Both M. Charantia and A. sativum are proposed as non toxic, safe, broad spectrum antibacterial agents.

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Effects of C-Terminal Residues of 12-Mer Peptides on Antibacterial Efficacy and Mechanism

  • Son, Kkabi;Kim, Jieun;Jang, Mihee;Chauhan, Anil Kumar;Kim, Yangmee
    • Journal of Microbiology and Biotechnology
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    • 제29권11호
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    • pp.1707-1716
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    • 2019
  • The development of new antimicrobial agents is essential for the effective treatment of diseases such as sepsis. We previously developed a new short peptide, Pap12-6, using the 12 N-terminal residues of papiliocin, which showed potent and effective antimicrobial activity against multidrug-resistant Gram-negative bacteria. Here, we investigated the antimicrobial mechanism of Pap12-6 and a newly designed peptide, Pap12-7, in which the 12th Trp residue of Pap12-6 was replaced with Val to develop a potent peptide with high bacterial selectivity and a different antibacterial mechanism. Both peptides showed high antimicrobial activity against Gram-negative bacteria, including multidrug-resistant Gram-negative bacteria. In addition, the two peptides showed similar anti-inflammatory activity against lipopolysaccharide-stimulated RAW 264.7 cells, but Pap12-7 showed very low toxicities against sheep red blood cells and mammalian cells compared to that showed by Pap12-6. A calcein dye leakage assay, membrane depolarization, and confocal microscopy observations revealed that the two peptides with one single amino acid change have different mechanisms of antibacterial action: Pap12-6 directly targets the bacterial cell membrane, whereas Pap12-7 appears to penetrate the bacterial cell membrane and exert its activities in the cell. The therapeutic efficacy of Pap12-7 was further examined in a mouse model of sepsis, which increased the survival rate of septic mice. For the first time, we showed that both peptides showed anti-septic activity by reducing the infiltration of neutrophils and the production of inflammatory factors. Overall, these results indicate Pap12-7 as a novel non-toxic peptide with potent antibacterial and anti-septic activities via penetrating the cell membrane.

Potential Roles of Essential Oils on Controlling Plant Pathogenic Bacteria Xanthomonas Species: A Review

  • Bajpai, Vivek K.;Kang, So-Ra;Xu, Houjuan;Lee, Soon-Gu;Baek, Kwang-Hyun;Kang, Sun-Chul
    • The Plant Pathology Journal
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    • 제27권3호
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    • pp.207-224
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    • 2011
  • Diseases caused by plant pathogenic bacteria constitute an emerging threat to global food security. Xanthomonas is a large genus of Gram-negative bacteria that cause disease in several host plants leading to considerable losses in productivity and quality of harvests. Despite the ranges of controlling techniques available, the microbiological safety of economically important crops and crop plants including fruits and vegetables continues to be a major concern to the agriculture industry. On the other hand, many of the currently available antimicrobial agents for agriculture are highly toxic, non-biodegradable and cause extended environmental pollution. Besides, the use of antibiotics has provoked an increased resistance among the bacterial pathogens and their pathovars. Thus, novel efficient and safe remedies for controlling plant bacterial diseases are necessary. There has been an increasing interest worldwide on therapeutic values of natural products such as essential oils, hence the purpose of this review is to provide an overview of the published data on the antibacterial efficacy of essential oils that could be considered suitable for application in agriculture as biocontrol measures against plant pathogenic bacteria of Xanthomonas species. The current knowledge on the use of essential oils to control Xanthomonas bacteria in vitro and in vivo models has been discussed. A brief description on the legal aspects on the use of essential oils against bacterial pathogens has also been presented. Through this review, a mode of antibacterial action of essential oils along with their chemical nature and the area for future research have been thoroughly discussed.

금속 나노입자의 생체 합성과 항균적 적용 (Biogenic Synthesis of Metallic Nanoparticles and Their Antibacterial Applications)

  • 마헤쉬쿠마 프라카쉬 파틸;김종오;서용배;강민재;김군도
    • 생명과학회지
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    • 제31권9호
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    • pp.862-872
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    • 2021
  • 최근 생물의학 분야에서의 광범위한 응용 가능성에 의하여 식물이나 미생물을 이용한 은(Ag), 금(Au), 백금(Pt), 세륨(Ce), 아연(Zn), 구리(Cu) 등의 금속 나노물질 합성에 관한 연구가 주목받고 있다. 식물은 플라보노이드, 알칼로이드, 사포닌, 스테로이드 탄닌과 각종 영양 성분과 같은 생리 활성 물질을 풍부하게 가지고 있으며, 유사하게 미생물들도 단백질과 같은 생리활성 대사산물이나 색소, 항생제 및 산과 같은 가치가 있는 화학물질을 분비한다. 최근 보고된 바에 의하면, 나노입자의 생체 합성은 무해한 방법일 뿐만 아니라 항균, 항진균, 세포 증식 억제 및 항플라스모디아 활성과 같은 생물의학 분야로서의 적용에 주요한 후보로 여겨진다. 나노입자의 이러한 생리 활성은 농도에 의존적이며, 나노입자의 모양과 크기에도 따라 달라질 수 있다. 미생물과 식물은 나노입자의 친환경적합성에 사용되는 대사산물이나 화학물질 등의 훌륭한 공급원으로서 생물 의학 분야에서 유용하게 사용된다. 미생물 또는 식물 원료를 사용하여 합성된 나노입자는 화학적인 방법으로 합성된 나노입자보다 더 낮은 독성을 나타낸다. 본 리뷰논문에서는 미생물이나 식물과 같은 생물학적 재료를 이용한 나노입자의 합성과, 합성에 사용되는 다양한 기술의 특성 및 나노입자의 항균 분야에서의 적용에 대하여 중점적으로 서술하였다.