• 제목/요약/키워드: Biosensors

검색결과 296건 처리시간 0.025초

SERS Immunoassay Using Microcontact Printing for Application of Sensitive Biosensors

  • Hong, Won-Jin;Seo, Hyeong-Kuyn;Jung, Young-Mee
    • Bulletin of the Korean Chemical Society
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    • 제32권12호
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    • pp.4281-4285
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    • 2011
  • We introduced a promising patterned substrate by using a microcontact printing method that can be used for SERS immunoassays based on antigen-antibody binding. SERS spectrum of the Raman reporter with antibody, which is rhodamine 6G (R6G) adsorbed on colloidal gold nanoparticles, was observed only for the surfaces in which prostate-specific antigen (PSA) is present on the substrate that is attached to an immobilized layer of antibody on the gold nanoparticles layer of the patterned substrate. Raman mapping images clearly showed that the antibodies on the Raman reporter were successfully and selectively conjugated with the antigen on the patterned substrate. This method could be potentially extended to multi-protein detections and ultrasensitive biosensors.

Flexible biosensors based on field-effect transistors and multi-electrode arrays: a review

  • Kim, Ju-Hwan;Park, Je-Won;Han, Dong-Jun;Park, Dong-Wook
    • Journal of Semiconductor Engineering
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    • 제1권3호
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    • pp.88-98
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    • 2020
  • As biosensors are widely used in the medical field, flexible devices compatible with live animals have aroused great interest. Especially, significant research has been carried out to develop implantable or skin-attachable devices for real-time bio-signal sensing. From the device point of view, various biosensor types such as field-effect transistors (FETs) and multi-electrode arrays (MEAs) have been reported as diverse sensing strategies. In particular, the flexible FETs and MEAs allow semiconductor engineering to expand its application, which had been impossible with stiff devices and materials. This review summarizes the state-of-the-art research on flexible FET and MEA biosensors focusing on their materials, structures, sensing targets, and methods.

Skin-interfaced Wearable Biosensors: A Mini-Review

  • Kim, Taehwan;Park, Inkyu
    • 센서학회지
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    • 제31권2호
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    • pp.71-78
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    • 2022
  • Wearable devices have the potential to revolutionize future medical diagnostics and personal healthcare. The integration of biosensors into scalable form factors allow continuous and noninvasive monitoring of key biomarkers and various physiological indicators. However, conventional wearable devices have critical limitations owing to their rigid and obtrusive interfaces. Recent developments in functional biocompatible materials, micro/nanofabrication methods, multimodal sensor mechanisms, and device integration technologies have provided the foundation for novel skin-interfaced bioelectronics for advanced and user-friendly wearable devices. Nonetheless, it is a great challenge to satisfy a wide range of design parameters in fabricating an authentic skin-interfaced device while maintaining its edge over conventional devices. This review highlights recent advances in skin-compatible materials, biosensor performance, and energy-harvesting methods that shed light on the future of wearable devices for digital health and personalized medicine.

Environmental Biosensors for Organochlorines, Cyanobacterial Toxins and Endocrine Disrupting Chemicals

  • Sadik, Omowunmi A.;Ngundi, Miriam M.;Yan, Fei
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제5권6호
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    • pp.407-412
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    • 2000
  • Environmental biosensors and related techniques for monitoring organochlorines, endocrine disrupting chemicals and cyanobacterial toxins are described. The practical requirements for an ideal environmental biosensor are analyzed. Specific case studies for environmental applications are reported for triazines, chlorinated phenols, PCBs, microcystins, and endocrine disrupting chemicals. A new promising approach is reported for microcystins and alkylphenols that utilize electrooptical detection.

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자성 나노바이오센서 기술 (Magnetic Nano-biosensor Technology)

  • 이정록
    • 진공이야기
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    • 제5권1호
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    • pp.4-8
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    • 2018
  • Many devices based on magnetism such as power generators and motors are frequently used in real life. Magnetic materials at nano-scale can be utilized as storage devices such as magnetic tapes and hard disk drives as well as spintronics. In addition to spintronics, magnetic biosensors are another interesting application of magnetic devices at nano-scale. Here, we briefly review magnetic nano-biosensors including Hall-effect sensors, giant magnetoresistive sensors, and tunnel magnetoresistive sensors for many biomedical applications.

광바이오센서용 효소를 함유한 PEG 수화젤 나노입자의 합성 (Synthesis of Enzyme-Containing PEG Hydrogel Nanospheres for Optical Biosensors)

  • 김범상
    • 폴리머
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    • 제29권6호
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    • pp.613-616
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    • 2005
  • 본 연구에서는 한 개의 세포와 같은 미세한 생체시료 내부의 분석 대상물질을 감지하는데 사용할 수 있는 광바이오센서를 개발하기 위한 첫 단계로서 효소가 함유된 고분자 수화젤 구형입자를 나노크기로 중합하는 방법을 확립하고 센서로서의 사용 가능성을 확인하였다. 현탁 광중합을 통하여 305 nm의 평균크기를 가지는 horseradish peroxidase(HRP)가 함유된poly(ethylene glycol)(PEG) 수화젤 구형입자를 합성하였으며, 중합반응 이후 입자내부의 효소의 존재 및 활성유지를 HRP와$\H_{2}O_{2}$의 효소반응에 의한 Amplex Red의 형광산화물 생성을 통하여 확인하였다. 합성된 HRP가 함유된 PEG 수화젤 입자는 Amplex Red의 존재하에 $\H_{2}O_{2}$의 농도가 0에서 11 nM로 미량 변화함에 따라서 형광세기가 약 300$\%$ 증가함을 보여 주었다. 이러한 결과는 효소가 함유된 PEG 수화젤 나노입자를 합성하는 본 기술이 향후 미세한 생체시료 내부의 다양한 분석대상물질을 감지할 수 있는 나노크기의 광바이오센서를 개발하는데 이용 될 수 있는 가능성을 보여준다.

농업 및 생물계에서의 바이오 센서 (BIOSENSORS IN AGRICULTURAL AND BIOLOGICAL SYSTEMS)

  • Delwiche, M.J.;Jenkins, D.M.;Tang, X.;Jackson, E.S.
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2000년도 THE THIRD INTERNATIONAL CONFERENCE ON AGRICULTURAL MACHINERY ENGINEERING. V.I
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    • pp.76-100
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    • 2000
  • 바이오 센서의 본질과 기능에 관한 일반적인 논의가 간단히 제시되었다. 바이오 센서개발에 대한 주 동기는 건강관리 산업이었지만, 최근의 연구 노력은 농업 및 생물 생산시스템에서의 문제로 확산되고 있다. 우리 실험실에서 연구된 것들을 설명하기 위하여 세 가지의 바이오 센서 예와 그들의 적용에 대해 소개한다. 첫째는 젖소의 번식관리 향상을 위해 프로게스테론 호르몬을 착유할 때 측정하는 면역센서이다. 둘째는 우유에 있는 요소(尿素, urea)의 측정을 위한 효소 센서로서, 투여되는 단백질의 우유 단백질로의 전환효율을 구하기 위한 도구이며 이로 인해 젖소의 사양관리를 향상시킬 수 있다. 셋째는 신선하며 최소 가공된 야채와 과일을 씻은 물에 있는 극소량의 병원성 박테리아를 검출하기 위한 PCR(중합효소연쇄반응)을 이용한 DNA 센서이다. 농업과 농업생물공학, 식품가공 그리고 환경 모니터링에 있어서의 바이오 센서의 적용 가능성은 이제 겨우 이해되고 있다.

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Physiological Data Monitoring of Physical Exertion of Construction Workers Using Exoskeleton in Varied Temperatures

  • Ibrahim, Abdullahi;Okpala, Ifeanyi;Nnaji, Chukwuma
    • 국제학술발표논문집
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    • The 9th International Conference on Construction Engineering and Project Management
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    • pp.1242-1242
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    • 2022
  • Annually, several construction workers fall ill, are injured, or die due to heat-related exposure. The prevalence of work-related heat illness may rise and become an issue for workers operating in temperate climates, given the increase in frequency and intensity of heatwaves in the US. An increase in temperature negatively impacts physical exertion levels and mental state, thereby increasing the potential of accidents on the job site. To reduce the impact of heat stress on workers, it is critical to develop and implement measures for monitoring physical exertion levels and mental state in hot conditions. For this, limited studies have evaluated the utility of wearable biosensors in measuring physical exertion and mental workload in hot conditions. In addition, most studies focus solely on male participants, with little to no reference to female workers who may be exposed to greater heat stress risk. Therefore, this study aims to develop a process for objective and continuous assessment of worker physical exertion and mental workload using wearable biosensors. Physiological data were collected from eight (four male and four female) participants performing a simulated drilling task at 92oF and about 50% humidity level. After removing signal artifacts from the data using multiple filtering processes, the data was compared to a perceived muscle exertion scale and mental workload scale. Results indicate that biosensors' features can effectively detect the change in worker physical and mental state in hot conditions. Therefore, wearable biosensors provide a feasible and effective opportunity to continuously assess worker physical exertion and mental workload.

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CRISPR/Cas 시스템 기술을 활용한 고위험성 식중독 세균 신속 검출을 위한 바이오센서 개발 (Development of Biosensors for Rapid Detection of Foodborne Pathogenic Bacteria using CRISPR/Cas)

  • 조선영;박종필
    • 한국식품위생안전성학회지
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    • 제38권5호
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    • pp.279-286
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    • 2023
  • Rapid and accurate detection of pathogenic bacteria is crucial for various applications, including public health and food safety. However, existing bacteria detection techniques have several drawbacks as they are inconvenient and require time-consuming procedures and complex machinery. Recently, the precision and versatility of CRISPR/Cas system has been leveraged to design biosensors that offer a more efficient and accurate approach to bacterial detection compared to the existing techniques. Significant research has been focused on developing biosensors based on the CRISPR/Cas system which has shown promise in efficiently detecting pathogenic bacteria or virus. In this review, we present a biosensor based on the CRISPR/Cas system that has been specifically developed to overcome these limitations and detect different pathogenic bacteria effectively including Vibrio parahaemolyticus, Salmonella, E. coli O157:H7, and Listeria monocytogenes. This biosensor takes advantage of the CRISPR/Cas system's precision and versatility for more efficiently accurately detecting bacteria compared to the previous techniques. The biosensor has potential to enhance public health and ensure food safety as the biosensor's design can revolutionize method of detecting pathogenic bacteria. It provides a rapid and reliable method for identifying harmful bacteria and it can aid in early intervention and preventive measures, mitigating the risk of bacterial outbreaks and their associated consequences. Further research and development in this area will lead to development of even more advanced biosensors capable of detecting an even broader range of bacterial pathogens, thereby significantly benefiting various industries and helping in safeguard human health

Electrochemical Immunosensor Using a Gas Diffusion Layer as an Immobilization Matrix

  • Kim, Yong-Tae;Oh, Kyu-Ha;Kim, Joo-Ho;Kang, Hee-Gyoo;Choi, Jin-Sub
    • Bulletin of the Korean Chemical Society
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    • 제32권6호
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    • pp.1975-1979
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    • 2011
  • The modification of a gas diffusion layer (GDL), a vital component in polymer electrolyte fuel cells, is described here for use in the electrochemical detection of antibody-antigen biosensors. Compared to other substrates (gold foil and graphite), mouse anti-rHBsAg monoclonal antibody immobilized on gold-coated GDL (G-GDL) detected analytes of goat anti-mouse IgG antibody-ALP using a relatively low potential (-0.0021 V vs. Ag/AgCl 3 M NaCl), indicating that undesired by-reactions during electrochemical sensing should be avoided with G-GDL. The dependency of the signal against the concentration of analytes was observed, demonstrating the possibility of quantitative electrochemical biosensors based on G-GDL substrates. When a sandwich method was employed, target antigens of rHBsAg with a concentration as low as 500 ng/mL were clearly measured. The detection limit of rHBsAg was significantly improved to 10 ng/mL when higher concentrations of the 4-aminophenylphosphate monosodium salt (APP) acting on substrates were used for generating a redox-active product. Additionally, it was shown that a BSA blocking layer was essential in improving the detection limit in the G-GDL biosensor.