• 제목/요약/키워드: Biochip and Biosensor

검색결과 14건 처리시간 0.03초

Planar Hall Sensor Used for Microbead Detection and Biochip Application

  • Thanh, N.T.;Kim, D.Y.;Kim, C.G.
    • Journal of Magnetics
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    • 제12권1호
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    • pp.40-44
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    • 2007
  • The Planar Hall effect in a spin valve structure has been applied as a biosensor being capable of detecting $Dynabeads^{(R)}$ M-280. The sensor performance was tested under the application of a DC magnetic field where the output signals were obtained from a nanovoltmeter. The sensor with the pattern size of $50{\times}100{\mu}m^2$ has produced high sensitivity; especially, the real-time profiles by using that sensor revealed significant performance at external applied magnetic field of around 7.0 Oe with the resolution of 0.04 beads per $\mu m^2$. Finally, a successful array including 24 patterns with the single sensor size of $3{\times}3{\mu}m^2$ has shown the uniform and stable signals for single magnetic bead detection. The comparison of this sensor signal with the others has proved feasibility for biosensor application. This, connecting with the advantages of more stable and high signal to noise of PHR sensor's behaviors, can be used to detect the biomolecules and provide a vehicle for detection and study of other molecular interaction.

기술성장모형에 기반을 둔 기술수준평가 결과 및 시사점 - 바이오칩.센서기술을 중심으로 (Technology Level Evaluation Based On Technology Growth Model and Its Implication - In Case of 'Biochip and Biosensor Technology')

  • 한민규;김병수;유지연;변순천
    • 기술혁신학회지
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    • 제13권2호
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    • pp.252-281
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    • 2010
  • 2008년 기술수준평가 대상기술 중 하나인 '바이오칩 센서기술'은 바이오 분야의 중점과학기술로서 세 가지 세부기술로 구성되어있다. 본 평가에서는 앞선 다른 수준평가의 한계를 극복하기 위하여 델파이와 함께 동태적 방법론(기술성장모형)을 분석틀로 사용하였다. 그 결과 바이오칩 센서기술은 '궁극의 기술'을 기준으로 한국 51.5%, 최고선진국(미국) 75.1%, 두 국가의 기술격차는 6.1년으로 분석되었으며, 5년 후에는 각각 60.1%, 78.4%, 4.3년이 될 것으로 예측되었다. 바이오 분야의 다른 기술과 비교했을 때, 해당 기술은 수준격차가 상대적으로 작았으며, 격차 역시 빠르게 좁혀질 것으로 나타났다. 이러한 특징은 세부기술 수준에서도 마찬가지였다. 설문 분석 결과 해당 기술의 강점은 전문인력 및 연구자금의 효과에 기인하는 것으로 나타났으며, 기초지원의 미비가 취약한 측면으로 지적되었다. 그 외에 이 기술이 상대적으로 신흥 분야이며, 집중적인 연구 활동이 이뤄지고 있다는 점 역시 높은 기술 수준의 요인으로 볼 수 있다. 따라서 바이오칩 센서 기술의 발전을 위해서는 이러한 강점을 더욱 지원하고, 약점을 보완하는 정책 방안이 필요할 것이다.

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폐암 질환 진단에 활용 가능한 바이오마커 검출용 바이오칩 센서 연구 동향 (Research Trend of Biochip Sensors for Biomarkers Specific to Diagnostics of Lung Cancer Diseases)

  • 이상혁;고은서;이혜진
    • 공업화학
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    • 제29권6호
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    • pp.645-651
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    • 2018
  • 한국인의 암 사망률 1위를 차지하는 폐암은 발견되기 전까지 별다른 증상이 없어 환자는 병을 쉽게 인지하지 못하고, 기존의 진단법 또한 초기단계에는 적용이 어렵다. 해결책으로서, 분자수준에서의 체액분석을 폐암진단에 도입하는 방안이 제시되고 있다. 이를 위한 분석기기 가운데 대표적으로는 칩 기반 바이오센서가 있으며, 이 센서의 큰 장점으로는 고가의 분석장비나 숙련된 분석인력이 없이도 현장에서의 진단이 가능하다는 점이다. 본 미니총설에서는 폐암 진단에 활용가능한 혈액 내 바이오마커와 바이오칩 센서의 연구현황을 소개하고 이들의 발전가능성에 대해 논의하고자 한다.

마이크로머시닝 기술을 이용한 3차원 마이크로 챔버형 글루코스 센서의 개발 (Development of Three-dimensional Chamber-type Glucose Sensor Using Micromachining Technology)

  • 김성호;김창교
    • 한국산학기술학회논문지
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    • 제6권1호
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    • pp.24-28
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    • 2005
  • 3차원 실리콘 챔버를 갖는 $15.8{\times}15.8 mm^2$크기의 칩을 바이오 센서용으로 마이크로머시닝 기술을 이용하여 개발하였다. 비등방성 식각기술을 이용하여 (100)방향의 p형 실리콘 웨이퍼위에 마이크로 챔버를 형성하였다. 마이크로 챔버를 갖는 웨이퍼와 백금전극이 도포된 Pyrex 유리를 DGF-48S 접착제를 이용하여 접합하였다. 백금전극과 Ag/AgCl 기준전극에 의한 전기화학적 특성을 조사하였다.

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자기력과 Random Fluidic Self-assembly에 의한 신규 바이오칩의 개발 (Development of New Biochip using Magnetic Interaction and Random Fluidic Self-assembly)

  • 최용성;권영수;박대희
    • 한국전기전자재료학회논문지
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    • 제17권6호
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    • pp.615-621
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    • 2004
  • This paper describes a new constructing method of multifunctional biosensor using many kinds of biomaterials. A metal particle and an array was fabricated by photolithographic. Biomaterials were immobilized on the metal particle. The array and the particles were mixed in a buffer solution, and were arranged by magnetic force interaction and random fluidic self-assembly. A quarter of total Ni dots were covered by the particles. The binding direction of the particles was controllable, and condition of particles was almost with Au surface on top. The particles were successfully arranged on the array. The biomaterial activities were detected by chemiluminescence and electrochemical methods.

자기력에 의한 신규 바이오칩의 개발 (Development of New Biochip Using Magnetic Force)

  • 최용성;문종대;이경섭
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2006년도 영호남 합동 학술대회 및 춘계학술대회 논문집 센서 박막 기술교육
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    • pp.105-108
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    • 2006
  • This paper describes a new constructing method of multifunctional biosensor using many kinds of biomaterials. A metal particle and an array was fabricated by photolithographic. Biomaterials were immobilized on the metal particle. The array and the particles were mixed in a buffer solution, and were arranged by magnetic force interaction and random fluidic self-assembly. A quarter of total Ni dots were covered by the particles. The binding direction of the particles was controllable, and condition of particles was almost with Au surface on top. The particles were successfully arranged on the array. The biomaterial activities were detected by chemiluminescence and electrochemical methods.

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자기력에 의한 바이오칩의 개발 (Development of Biochip by Magnetic Force Interaction)

  • 최용성;박대희;권영수
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2003년도 추계학술대회 논문집 Vol.16
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    • pp.196-199
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    • 2003
  • In this paper, we have been described a new constructing method of multichannel biosensor using self-assembly by magnetic force interaction. A metal particle and an array was fabricated by photolithographic. Biomaterials were immobilized on the metal particle. The array and the particles were mixed in a buffer solution, and were arranged by magnetic force interaction and self-assembly. A quarter of total Ni dots were covered by the particles. The binding direction of the particles was controllable, and condition of particles was almost with Au surface on top. The particles were successfully arranged on the array. The biomaterial activities were detected by chemiluminescence.

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Bio-Electronics

  • 최정우
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 추계학술발표대회 및 bio-venture fair
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    • pp.123-126
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    • 2000
  • Bio-electronics has been considered as one of the most appropriate candidates to overcome the frequently encountered problems in the development of future electronic devices. It has some advantages such as ultra fast electron transfer rate and high-energy efficiency compared with the silicon-based electronic devices. In silicon-based electronics, there are some of limitations of manufacturing process and physical problems. Bio-electronics can overcome the limitation and problem of silicon-based electronics. Bio-electronics has possible application areas as biosensor, biochip, bio-transistor and bio-computer. In the future, bio-electronics can substitute the silicon-based electronics.

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Application of an Interferometric Biosensor Chip to Biomonitoring an Endocrine Disruptor

  • Kim, Byung-Woo;Lim, Sung-Hyuk
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제9권2호
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    • pp.118-126
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    • 2004
  • Recombinant E.coli ACV 1003 (recA::lacZ) releasing ${\beta}$-galactosidase by a SOS regulon system, when exposed to DNA-damaging compounds, have been used to effectively monitor endocrine disruptors. Low enzyme activity of less than 10 units/mL, corresponding to a $\mu\textrm{g}$/L(ppb) range of an endocrine disruptor (tributyl tin, bisphenol A. etc.), can be rapidly determined, not by a conventional time-consuming and tedious enzyme assay, but by an alternative interferometric biosensor. Heavily boron-doped porous silicon for application as an interferometer, was fabricated by etching to form a Fabry-Perot fringe pattern, which caused a change in the refractive index of the medium including ${\beta}$-galactosidase. In order to enhance the immobilization of the porous silicon surface, a calyx crown derivative (ProLinker A) was applied, instead of a conventional biomolecular affinity method using biotin. This resulted in a denser linked formation. The change in the effective optical thickness versus ${\beta}$-galactosidase activity, showed a linear increase up to a concentration of 150 unit ${\beta}$-galactosidase/mL, unlike the sigmoidal increase pattern observed with the biotin.

자기력과 self-assembly에 의한 3차원 바이오칩의 개발 (Development of 3-Dimensional Biochip Using Magnetic Interaction and Self-Assembly)

  • 최용성;박대희;권영수
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2003년도 하계학술대회 논문집 C
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    • pp.1909-1911
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    • 2003
  • This research describes a new constructing method of multifunctional biosensor using many kinds of biomaterials. A metal particle and an array was fabricated by photolithographic. Biomaterials were immobilized on the metal particle. The array and the particles were mixed in a buffer solution, and were arranged by magnetic force interaction and self-assembly. A quarter of total Ni dots were covered by the particles. The binding direction of the particles was controllable, and condition of particles was almost with Au surface on top. The particles were successfully arranged on the array. The biomaterial activities were detected by chemiluminescence and electrochemical methods.

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