• 제목/요약/키워드: Bioreceptors

검색결과 5건 처리시간 0.021초

Localized Surface Plasmon Resonance (LSPR) Biosensors on Metal Nanoparticles with the Design of Bioreceptors

  • Kim, Min-Gon;Park, Jin-Ho;Byun, Ju-Young;Shin, Yong-Beom
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.126-126
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    • 2014
  • Label-free biomolecular assay based localized surface plasmon resonance (LSPR) of noble metal nanoparticles enables simple and rapid detection with the use of simple equipment. Nanosized metal nanoparticles exhibit a strong absorption band when the incident light frequency is resonant with the collective oscillation of the electrons, which is known as the LSPR. Here we demonstrate localized surface plasmon resonance (LSPR) substrates such as plasmonic Au nanodisks fabricated by a nanoimprinting process and gold nanorod-immobilized surfaces and their applications to highly sensitive and/or label-free biosensing. To increase detection sensitivity various bioreceptors weree designed. A single chain variable fragment (scFv) was used as a receptor to bind C-reactive protein (CRP). The results of this effort showed that CRP in human serum could be quantitatively detected lower than 1 ng/ml. Aptamers, which were immobilized on gold nanorods, were used to detect mycotoxins. The specific binding of ochratoxin A (OTA) to the aptamer was monitored by the longitudinal wavelength shift of LSPR peak in the UV-Vis spectra resulting from the changes of local refractive index near the GNR surface induced by accumulation of OTA and G-quadruplex structure formation of the aptamer. According to our results, OTA could be quantitatively detected lower than 1 nM level. Additionally, aptamer-functionalized GNR substrate was quite robust and can be regenerated many times by rinsing at 70 OC to remove bound target. During seven times of washing steps, the developed OTA sensing system could be reusable. Moreover, the proposed biosensor exhibited selectivity over other mycotoxins with an excellent recovery for detection in grinded corn samples, suggesting that the proposed LSPR based aptasensor plays an important role in label-free detection of mycotoxins.

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노로바이러스 검출을 위한 측면유동면역분석법 기반의 바이오리셉터 선별기법 개발 (Norovirus Targeted Bioreceptor Screening Method based on Lateral Flow Immunoassay (LFIA))

  • 장희수;조현지;전태준;김선민
    • 한국가시화정보학회지
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    • 제20권3호
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    • pp.136-145
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    • 2022
  • Later flow immunoassay (LFIA) is a protein analytical method based on immunoreaction. On the LFIA based protein analytical method, bioreceptor molecule plays a key role, and so a system that evaluates and manages the binding affinity of bioreceptor is needed to secure detection reliability. In this study, Lateral Flow Immunoassay based rapid Bioreceptor Screening Method (rBSM) is presented that provide a simple and quick evaluating method for the binding affinity to the target protein of the antibody as model bioreceptor. To verify this evaluation method, Virus-like particles (VLP) and anti-VLP antibodies are selected as a model norovirus, which is target protein, and the candidate bioreceptors respectively. Among the 5 different candidate antibodies, appropriate antibody could be sorted out within 30 minutes through rBSM. In addition, selected antibodies were applied to two representative LFIA based techniques, sandwich assay and competitive assay. Among these methods, sandwich assay showed more effective VLP detection method. Through applying selected antibodies and techniques to the commercialized mass production lines, an VLP detecting LFIA kit was developed with a detection limit of 1012 copies/g of VLPs in real samples. Since this proposed method in this study could be easily transformable into other combinations with bioreceptors, it is expected that this technique would be applied to LFIA kit development system and bioreceptor quality management.

Enzyme Based Biosensors for Detection of Environmental Pollutants-A Review

  • Nigam, Vinod Kumar;Shukla, Pratyoosh
    • Journal of Microbiology and Biotechnology
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    • 제25권11호
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    • pp.1773-1781
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    • 2015
  • Environmental security is one of the major concerns for the safety of living organisms from a number of harmful pollutants in the atmosphere. Different initiatives, legislative actions, as well as scientific and social concerns have been discussed and adopted to control and regulate the threats of environmental pollution, but it still remains a worldwide challenge. Therefore, there is a need for developing certain sensitive, rapid, and selective techniques that can detect and screen the pollutants for effective bioremediation processes. In this perspective, isolated enzymes or biological systems producing enzymes, as whole cells or in immobilized state, can be used as a source for detection, quantification, and degradation or transformation of pollutants to non-polluting compounds to restore the ecological balance. Biosensors are ideal for the detection and measurement of environmental pollution in a reliable, specific, and sensitive way. In this review, the current status of different types of microbial biosensors and mechanisms of detection of various environmental toxicants are discussed.

Recent Trends of Advanced Biosensors for Mycotoxin Analysis

  • Shim, Won-Bo
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2016년도 춘계학술대회 및 임시총회
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    • pp.35-35
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    • 2016
  • A mycotoxin is a toxic secondary metabolite produced by organisms of the fungus kingdom, commonly known as molds and has been widely contaminated in agricultural products such as grains and cereals. Many methods including high performance liquid chromatography (HPLC) and gas chromatography (GC) have already been proposed and reviewed for mycotoxins. These methods are either expensive or time-consuming due to the complication of sample preparation and pre-concentration before determination. In addition, both methods are unsuitable for the routine screening of large sample numbers. A biosensor is a fictive analytical device that combines a biological component with a physicochemical detector for the detection of an analyte. Biosensors represent a rapidly expanding field, at the present time, with an estimated 60% annual growth rate; the major impetus coming from the health-care industry but with some pressure from other areas, such as food safety and environmental monitoring. Antibodies and aptamers are bioreceptors which have been used in the development of biosensors. There are many kinds of antibodies and aptamers specific to mycotoxin, and antibody (or aptamer)-based biosensors have been successfully developed for the detection of mycotoxin. The biosensors permit the rapid, sensitive, simple, and on-site detection of a range of mycotoxins and can be an alternative method to traditional methods such as HPLC and GC. This presentation provides the development trends of biosensors to mycotoxins and their application to food and agricultural products.

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폐암 진단에 적용 가능한 측면 유동 면역 형광 분석법 개발 (Development of Lateral Flow Immunofluorescence Assay Applicable to Lung Cancer)

  • 뮬야수피안토;임정민;이혜진
    • 공업화학
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    • 제33권2호
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    • pp.173-178
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    • 2022
  • 탄소나노점@실리카를 신호 형질 소재로 이용한 측면 유동 면역 형광 분석법을 개발하여 폐암 바이오마커 중에 하나인 레티놀 결합 단백질 4의 농도를 분석하는 데 적용하고자 하였다. 측면 유동 면역 형광 분석법에서 항원 검출을 위해 바이오리셉터로 주로 사용하였던 항체 대신 좀 더 경제적이고, 장기간 보관성이 용이하며, 특정 표적 단백질에 대해 친화력이 강한 압타머를 니트로셀룰로오스 멤브레인에 사용하였다. 레티놀 결합 단백질 4에 특이적이며 5' 말단을 비오틴으로 변형한 압타머를 뉴트라비딘과 반응시켜 비오틴과 뉴트라비딘의 강한 결합력에 의해 압타머가 니트로 셀룰로오스 멤브레인에 고정되도록 하였다. 압타머가 고정된 스트립에 레티놀 결합 단백질 4 항체를 공유결합으로 고정한 탄소나노점@실리카 블루 형광 신호 형질 나노입자와 레티놀 결합 단백질 4 항원을 측면 유동 방식으로 흘려 주어 샌드위치 복합체를 형성하였다. 이렇게 형성된 샌드위치 복합체에서 탄소나노점@실리카 나노입자에 의한 형광 신호를 측정하여 항원 농도를 분석하기 위한 최적의 조건을 선정하기 위해 전개 완충용액에 첨가된 계면활성제의 농도, 이온 세기를 변화시키면서 블로킹 시약을 추가적으로 사용하였다. 그 결과 150 mM NaCl 및 0.05% Tween-20을 포함하는 10 mM Tris 완충용액(pH 7.4)에서 0.6 M 에탄올아민을 블로킹 시약으로 사용하였을 때 니트로셀룰로오스 멤브레인에 도포된 압타머와 레티놀 결합 단백질 4 항원 및 탄소나노점@실리카 나노입자로 레이블링한 항체가 결합하여 최적의 형광분석신호를 내는 것을 확인 가능하였다. 이러한 결과는 현장진단검사 키트로 현재 각광을 받고 있는 측면 유동 면역 형광 분석법에서 항체 대신 압타머를 니트로셀룰로오스 멤브레인에 고정함으로써 좀 더 경제적이며, 장기간 보관이 용이한 측면 유동 면역 형광 분석 칩을 제작하여 폐암 질환 진단용 바이오마커 검출이 가능함을 시사하였다.