• 제목/요약/키워드: Fluorescent quenching

검색결과 57건 처리시간 0.02초

Fluorescent Magnetic Silica Nanotubes with High Photostability Prepared by the Conventional Reverse Micro-Emulsion Method

  • Zhang, Yuhai;Son, Sang Jun
    • Bulletin of the Korean Chemical Society
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    • 제33권12호
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    • pp.4165-4168
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    • 2012
  • Magnetic fluorescent silica nanotubes were fabricated using reverse micro-emulsions coupled with conventional sol-gel methods. Anodic aluminum oxide templates were used to separate spatially the magnetic and the fluorescent moieties on individual nanotubes and so prevent quenching of the fluorescence. C18 and fluorescent layers were deposited sequentially on silica. Magnetism was then obtained by the introduction of pre-made magnetic nanoparticles inside the nanotubes. The photo- and chemical stabilities of nanotubes were demonstrated through dye release and photobleaching tests. The produced nanotubes did not show fluorescence quenching upon the addition of the nanoparticles, an advantage over conventional spherical fluorescent magnetic nanoparticles. High photostability of nanotubes, magnetism and biocompatiblily make them potentially useful in bioanalysis.

Characterization of Graphene Oxide Suspension for Fluorescence Quenching in DNA-Diagnostics

  • Kapitonov, A.N.;Alexandrov, G.N.;Vasileva, F.D.;Smagulova, S.A.;Timofeev, V.B.;Maksimova, N.R.;Kuznetsov, A.A.
    • 한국재료학회지
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    • 제26권1호
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    • pp.1-7
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    • 2016
  • The graphene oxides (GOs) were tested as a fluorescent quencher in the field of DNA-diagnostics. The various suspensions of GO nanoplates were prepared by changing the synthesis conditions. The suspensions were stable for at least 6 weeks by differing degrees of functionalization of various oxygen-containing groups of atoms. Depending on the properties of GO nanoplates, their fluorescent quenching abilities, which were determined by the amount of the tagged immobilized oligonucleotide, were also changed. GO suspension synthesized at $75^{\circ}C$ of reaction mixture showed the fluorescent quenching of 16.39 nmol/mg, which would be a potential substitution of molecular fluorescent quencher in test-systems for DNA-diagnostics.

A New-Generation Fluorescent-Based Metal Sensor - iLOV Protein

  • Ravikumar, Yuvaraj;Nadarajan, Saravanan Prabhu;Lee, Chong-Soon;Rhee, Jin-Kyu;Yun, Hyungdon
    • Journal of Microbiology and Biotechnology
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    • 제25권4호
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    • pp.503-510
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    • 2015
  • The iLOV protein belongs to a family of blue-light photoreceptor proteins containing a light-oxygen-voltage sensing domain with a noncovalently bound flavin mononucleotide (FMN) as its chromophore. Owing to advantages such as its small size, oxygen-independent nature, and pH stability, iLOV is an ideal candidate over other reporter fluorescent proteins such as GFP and DsRed. Here, for the first time, we describe the feasibility of applying LOV domain-based fluorescent iLOV as a metal sensor by measuring the fluorescence quenching of a protein with respect to the concentration of metal ions. In the present study, we demonstrated the inherent copper sensing property of the iLOV protein and identified the possible amino acids responsible for metal binding. The fluorescence quenching upon exposure to Cu2+ was highly sensitive and exhibited reversibility upon the addition of the metal chelator EDTA. The copper binding constant was found to be 4.72 ± 0.84 µM. In addition, Cu2+-bound iLOV showed high fluorescence quenching at near physiological pH. Further computational analysis yielded a better insight into understanding the possible amino acids responsible for Cu2+ binding with the iLOV protein.

Facile Preparation of Water Dispersible Red Fluorescent Organic Nanoparticles for Cell Imaging

  • Luo, Miao
    • Bulletin of the Korean Chemical Society
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    • 제35권6호
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    • pp.1732-1736
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    • 2014
  • Red fluorescent organic nanopaticles (FONs) based on a diarylacrylonitrile derivative conjugated molecule were facilely prepared by surfactant modification. Such red FONs showed excellent water solubility and biocompatibility, making them promising for cell imaging applications.

Barbiturates가 생체세포막 외측 단층의 소수성 부위와 친수성 부위에 분포되는 상대적 비율 (The Region of Distribution of Barbiturates in Synaptosomal Plasma Membrane Vesicles Isolated from Rat Brain as Studied by Fluorescence Quenching)

  • 윤일;이병우
    • 대한약리학회지
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    • 제31권3호
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    • pp.271-278
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    • 1995
  • Barbiturates의 분자적 약리학적 작용기전 연구에 기초자료를 제공키 위하여 본연구를 수행하였다. 분자적 약리작용 기전 연구에서는 무엇보다도 선행되어야 하는 것이 barbiturates가 신경세포막에서 어느 부위에 주로 분포되는가를 알아내는 데에 있다. 쥐(Rat)의 뇌로부터 분리한 synaptosomal plasma membrane vesicles (RSPMV)를 분리한 후 이 RSPMV 외측 단층(outer monolayer)의 소수성 부위와 친수성 부위에 barbiturates가 분포되는 경향을 형광 probe 법으로 검색하였다. 세포막 외측 단층의 친수성 부위에 분포되는 형광 probe N-octadecylnaphthyl-2-amino-6-sulfonic acid (ONS)와 소수성 부위에 분포되는 형광 probe12-(9-anthroyloxy)stearic acid (AS)를 각각 봉입한 후 형광소광법으로 barbiturates의 분포를 측정한 결과는 다음과 같다. 1) 대부분의 barbiturates가 RSPMV 외측 단층의 친수성 부위(표면)에 분포되고 소수성 부위 (hydrophobic region)에 극히 소량만이 분포된다는 것을 확인하였다. 2) 마취효과를 크게 일으키는 barbiturates일수록 소수성 부위에 분포되는 양이 증가하였다. barbiturates 종류에 따른 RSPMV 외측 단층 소수성 부위에의 분포 크기는 thiopental sodium > pentobarbital > hexobarbital > amobarbital > phenobarbital의 순위였다.

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One-pot synthesis of highly fluorescent amino-functionalized graphene quantum dots for effective detection of copper ions

  • Tam, Tran Van;Choi, Won Mook
    • Current Applied Physics
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    • 제18권11호
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    • pp.1255-1260
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    • 2018
  • In this work, a green and simple one-pot route was developed for the synthesis of highly fluorescent aminofunctionalized graphene quantum dots (a-GQDs) via hydrothermal process without any further modification or surface passivation. We synthesized the a-GQDs using glucose as the carbon source and ammonium as a functionalizing agent without the use of a strong acid, oxidant, or other toxic chemical reagent. The as-obtained aGQDs have a uniform size of 3-4 nm, high contents of amino groups, and show a bright green emission with high quantum yield of 32.8%. Furthermore, the a-GQDs show effective fluorescence quenching for $Cu^{2+}$ ions which can serve as effective fluorescent probe for the detection of $Cu^{2+}$. The fluorescent probe using the obtained aGQDs exhibits high sensitivity and selectivity toward $Cu^{2+}$ with the limit of detection as low as 5.6 nM. The mechanism of the $Cu^{2+}$ induced fluorescence quenching of a-GQDs can be attributed to the electron transfer by the formation of metal complex between $Cu^{2+}$ and the amino groups on the surface of a-GQDs. These results suggest great potential for the simple and green synthesis of functionalized GQDs and a practical sensing platform for $Cu^{2+}$ detection in environmental and biological applications.

High-Resolution Fluorescence Near-Field Imaging of Individual Nanoparticles via the Tip-Induced Quenching Technique

  • Park, Won-Hwa;Kim, Zee-Hwan
    • Bulletin of the Korean Chemical Society
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    • 제28권12호
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    • pp.2195-2199
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    • 2007
  • We demonstrate that high-resolution (~60 nm) near-field fluorescence images of fluorescent nanospheres can be obtained by utilizing the tip-induced fluorescence quenching process. A time-stamped photon counting (TSPC) technique employed enables us to efficiently measure the degree of fluorescence quenching caused by the dielectric or metallic atomic force microscopy tip. We find that the degree of quenching is not only determined by the tip-material but also by the local morphology of the tip. The fringe patterns around individual nanospheres observed are explained in terms of the interference between the excitation field that is directly induced by the laser source, and the scattered excitation field from the tip.

현장에서 초음파 파쇄와 형광시약을 이용한 단백질 독소의 조기 탐지 (The Early Detection of the Protein Toxin using Sanification and Fluorescent Dye in the Field)

  • 하연철;최기봉;김성주;최정도
    • KSBB Journal
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    • 제22권1호
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    • pp.48-52
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    • 2007
  • 본 연구에서는 sonificator를 장착하여 세포막을 파쇄하고 현장에서 형광을 이용하여 조작이 간편하고 단시간에 DNA와 단백질을 동시에 측정할 수 있는 자동화된 형광기를 개발하기 위하여 단백질을 측정하는데 최적의 파쇄조건을 확립하고자 하였다. 용액 중에 녹아 있는 공기 중의 oxygen은 collisional quenching을 일으키는데 sonification이나 가열처리를 시키면 oxygen이 제거되어 quenching 효과가 크게 감소되어 높은 형광값을 나타내었다. 0.7 X 이상의 형광시약 농도에서는 반응시작 후 1분 이내에 측정해야 하며, 0.3 X 이하의 형광시약 농도에서는 반응시작 후 2$\sim$3분 사이에 반응을 시킨 후 측정하는 것이 바람직한 것으로 나타났다. $100{\mu}g/m{\ell}$ 이상의 BSA 농도에서는 형광시약이 포화되었으며, 시료를 sonification시키면 단백질이 변성되어 눈에 보일 정도로 불투명해져서 시료 용액의 불투명도로 인해 형광 값이 감소되는 경향을 나타내었으며, $1{\mu}g/m{\ell}$ 이하의 BSA 시료에서는 sonification을 시키지 않은 시료보다 sonification을 시켰을 때 $0.125{\mu}g/m{\ell}$의 BSA를 훨씬 더 구분이 잘 되어 낮은 단백질 농도에서는 sonification시키는 것이 훨씬 유리한 것으로 나타났다.