• 제목/요약/키워드: biogenic synthesis

검색결과 8건 처리시간 0.017초

Controllable Biogenic Synthesis of Intracellular Silver/Silver Chloride Nanoparticles by Meyerozyma guilliermondii KX008616

  • Alamri, Saad A.M.;Hashem, Mohamed;Nafady, Nivien A.;Sayed, Mahmoud A.;Alshehri, Ali M.;El-Shaboury, Gamal A.
    • Journal of Microbiology and Biotechnology
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    • 제28권6호
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    • pp.917-930
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    • 2018
  • Intracellular synthesis of silver/silver chloride nanoparticles (Ag/AgCl-NPs) using Meyerozyma guilliermondii KX008616 is reported under aerobic and anaerobic conditions for the first time. The biogenic synthesis of Ag-NP types has been proposed as an easy and cost-effective alternative for various biomedical applications. The interaction of nanoparticles with ethanol production was mentioned. The purified biogenic Ag/AgCl-nanoparticles were characterized by different spectroscopic and microscopic approaches. The purified nanoparticles exhibited a surface plasmon resonance band at 419 and 415 nm, confirming the formation of Ag/AgCl-NPs under aerobic and anaerobic conditions, respectively. The planes of the cubic crystalline phase of the Ag/AgCl-NPs were confirmed by X-ray diffraction. Fourier-transform infrared spectra showed the interactions between the yeast cell constituents and silver ions to form the biogenic Ag/AgCl-NPs. The intracellular Ag/AgCl-NPs synthesized under aerobic condition were homogenous and spherical in shape, with an approximate particle size of 2.5-30nm as denoted by the transmission electron microscopy (TEM). The reaction mixture was optimized by varying reaction parameters, including temperature and pH. Analysis of ultrathin sections of yeast cells by TEM indicated that the biogenic nanoparticles were formed as clusters, known as nanoaggregates, in the cytoplasm or in the inner and outer regions of the cell wall. The study recommends using the biomass of yeast that is used in industrial or fermentation purposes to produce Ag/AgCl-NPs as associated by-products to maximize benefit and to reduce the production cost.

Synergistic Effect of Reductase and Keratinase for Facile Synthesis of Protein-Coated Gold Nanoparticles

  • Gupta, Sonali;Singh, Surinder P.;Singh, Rajni
    • Journal of Microbiology and Biotechnology
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    • 제25권5호
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    • pp.612-619
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    • 2015
  • We have synthesized gold nanoparticles (GNPs) using chicken feathers (poultry waste) and Bacillus subtilis RSE163. Disulfide reductase and keratinase produced by Bacillus subtilis during the degradation of chicken feather has been used to reduce Au3+ from HAuCl4 precursor to produce gold nanoparticles. The synthesized biogenic GNPs were characterized by UV-visible spectroscopy, transmission electron microscopy (TEM), and zeta potential measurements. Fourier transform infrared (FTIR) spectroscopy indicated the presence of protein capping on synthesized GNPs, imparting multifunctionality to the GNP surface. Furthermore, the nontoxic nature of biogenic GNPs was insured by interaction with Escherichia coli (ATCC11103), where TEM images and enhancement of growth rate of E. coli in log phase signified their nontoxic nature. The results indicate that the synthesis of biocompatible GNPs using poultry waste may find potential applications in drug delivery and sensing.

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.

Biogenic Nano-Synthesis; towards the Efficient Production of the Biocompatible Gold Nanoparticles

  • Ghodake, Gajanan;Eom, Chi-Yong;Kim, Si-Wouk;Jin, Eon-Seon
    • Bulletin of the Korean Chemical Society
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    • 제31권10호
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    • pp.2771-2775
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    • 2010
  • We present a rapid biogenic method for the production of nanoscale gold particles using pear extract. The formation and stability of pear-derived gold nanoparticles (Pear-AuNPs) were monitored by ultraviolet-visible spectroscopy. Their morphology, elemental composition and crystalline phase were determined by transmission electron microscopy, energy-dispersive X-ray spectroscopy and selected area electron diffraction. The average core size of crystalline Pear-AuNPs was in the range of $10{\pm}5\;nm$ and the observed morphology was spherical. The X-ray photoelectron spectrum showed a strong peak for the pure 'Au' phase. The circular dichroism spectrum indicated the natural capping ability of the pear extract, which generated peptide-gold nanoparticles. These nanoparticles were stable in aqueous solution for two months. A cell viability assay of Pear-AuNPs showed biocompatibility with human embryonic kidney 293 cells. Accordingly, this eco-friendly process for the bio-mimetic production of Pear-AuNPs is nontoxic in nature; consequently, it will find potential application in nano-biotechnology.

Polyamine Prevent Apoptotic Cell Death by Regulation of Apoptosis Related Gene Expression in Porcine Parthenotes

  • Cui, Xiang-Shun;Jin, Yong-Xun;Hwang, Kyu-Chan;Kim, Nam-Hyung
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2004년도 춘계학술발표대회
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    • pp.230-230
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    • 2004
  • Polyamines, namely putrescine, spermidine, and spermine, are biogenic low-molecular-weight aliphatic amines. Polyamines play important roles in DNA stabilization, RNA and protein synthesis, membrane stabilization, modulation of ion channels, and protection against oxygen radicals and are essential for cell homeostasis, cell growth, and tumorigenesis. (omitted)

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Biosynthesis of Silver Nanoparticles by Phytopathogen Xanthomonas oryzae pv. oryzae Strain BXO8

  • Narayanan, Kannan Badri;Sakthivel, Natarajan
    • Journal of Microbiology and Biotechnology
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    • 제23권9호
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    • pp.1287-1292
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    • 2013
  • Extracellular biogenic synthesis of silver nanoparticles with various shapes using the rice bacterial blight bacterium Xanthomonas oryzae pv. oryzae BXO8 is reported. The synthesized silver nanoparticles were characterized by UV-Vis spectroscopy, powder X-ray diffractometry (XRD), scanning electron microscopy, energy dispersive X-ray spectrometry, and high-resolution transmission electron microscopy (HR-TEM). Based on the evidence of HR-TEM, the synthesized particles were found to be spherical, with anisotropic structures such as triangles and rods, with an average size of 14.86 nm. The crystalline nature of silver nanoparticles was evident from the bright circular spots in the SAED pattern, clear lattice fringes in the high-resolution TEM images, and peaks in the XRD pattern. The FTIR spectrum showed that biomolecules containing amide and carboxylate groups are involved in the reduction and stabilization of the silver nanoparticles. Using such a biological method for the synthesis of silver nanoparticles is a simple, viable, cost-effective, and environmentally friendly process, which can be used in antimicrobial therapy.

낙농유제품인 치즈에 축적된 생체 아민의 다양한 영향 인자에 관한 연구: 총설 (The Role of Factors Controlling the Accumulation of Biogenic Amines in Various Cheeses as Milk-Based Products: A Review)

  • 천정환;김동현;김현숙;송광영;임종수;최다솜;김영지;이수경;서건호
    • Journal of Dairy Science and Biotechnology
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    • 제32권2호
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    • pp.77-92
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    • 2014
  • 발효식품은 식료품 중에서 생체 아민(biogenic amine, BA) 중독을 일으키는 문제점을 가지고 있는데, 우유 발효식품 중에서는 치즈가 티라민(tyramine), 히스타민(histamine), 푸트레신(putrescine) 등이 유해한 수치의 BA를 함유하고 있는 생산품이라고 추측되고 있다. 다시 말해서, 생체 아민(BA)은 생물학적 활동을 가진 유기 및 염기성, 질소 화합물로 주로 아미노산이 탈카르복실화 반응(decarboxylation)을 거쳐서 생성된다. 다양한 종류의 식품(예: 유제품) 은 높은 수치의 BA를 함유하고 있다. 치즈에서는 1 kg 당 1,000 mg 이상의 BA가 검출되기도 한다. BA 함유량이 높은 치즈를 섭취할수록 체내에 독성이 축적된다. 때문에 유제품 내의 BA 함유에 관한 특정한 규정이 없더라도 유제품 내에 BA가 축적되는 현상을 방지해야 한다. 높은 수치의 BA를 함유한 식품을 섭취하였을 경우에 발생하는 위험에 대한 인식이 점점 높아지고 있다. 유제품 제조 및 가공 시에 BA의 생합성 및 축적에 영향을 주는 요소를 과학기술적 측면에서 연구가 요구된다. 따라서 BA의 합성 및 축적에 영향을 미치는 요소에 대한 이해도가 높을수록 유제품의 BA 함유량을 감소시킬 수 있다. 이러한 BA는 3 가지의 조건이 만족될 때 합성이 이루어진다. (i) 이용 가능한 기질 아미노산(substrate amino acid)가 있어야 하며, (ii) 이화작용경로가 활성화된 미생물이 존재해야 하며, (iii) 탈카르복실화 반응활성 (decarboxylation activity)이 일어나기에 적합한 환경조건을 필요로 한다. 이 3가지의 조건들은 저온살균, starter culture의 사용, NaCl 농도, 시간, 숙성 및 보존 온도, pH, 온도, 숙성 후 기술적인 과정 등 여러 가지 요소에 영향을 받으며, 이 요소들에 대한 과학적인 이해가 요구된다. 또한 BA 생산과 관련된 요소들, 특히 환경 조건, BA 생산 미생물, 유전자 구성, BA 생산에 관여하는 생합성경로, 유제품 내에 존재하는 BA 및 BA 생산 미생물 검출 방법 등에 대한 연구가 집중적으로 향후 진행되어야 할 것이다.

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Microalga Scenedesmus sp.: A Potential Low-Cost Green Machine for Silver Nanoparticle Synthesis

  • Jena, Jayashree;Pradhan, Nilotpala;Nayak, Rati Ranjan;Dash, Bishnu P.;Sukla, Lala Behari;Panda, Prasanna K.;Mishra, Barada K.
    • Journal of Microbiology and Biotechnology
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    • 제24권4호
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    • pp.522-533
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    • 2014
  • Bionanotechnology has revolutionized nanomaterial synthesis by providing a green synthetic platform using biological systems. Among such biological systems, microalgae have tremendous potential to take up metal ions and produce nanoparticles by a detoxification process. The present study explores the intracellular and extracellular biogenic syntheses of silver nanoparticles (SNPs) using the unicellular green microalga Scenedesmus sp. Biosynthesized SNPs were characterized by AAS, UV-Vis spectroscopy, TEM, XRD, FTIR, DLS, and TGA studies and finally checked for antibacterial activity. Intracellular nanoparticle biosynthesis was initiated by a high rate of $Ag^+$ ion accumulation in the microalgal biomass and subsequent formation of spherical crystalline SNPs (average size, 15-20 nm) due to the biochemical reduction of $Ag^+$ ions. The synthesized nanoparticles were intracellular, as confirmed by the UV-Vis spectra of the outside medium. Furthermore, extracellular synthesis using boiled extract showed the formation of well scattered, highly stable, spherical SNPs with an average size of 5-10 nm. The size and morphology of the nanoparticles were confirmed by TEM. The crystalline nature of the SNPs was evident from the diffraction peaks of XRD and bright circular ring pattern of SAED. FTIR and UV-Vis spectra showed that biomolecules, proteins and peptides, are mainly responsible for the formation and stabilization of SNPs. Furthermore, the synthesized nanoparticles exhibited high antimicrobial activity against pathogenic gram-negative and gram-positive bacteria. Use of such a microalgal system provides a simple, cost-effective alternative template for the biosynthesis of nanomaterials in a large-scale system that could be of great use in biomedical applications.