• 제목/요약/키워드: Bio-potential sensing

검색결과 26건 처리시간 0.028초

Potential of fascaplysin and palauolide from Fascaplysinopsis cf reticulata to reduce the risk of bacterial infection in fish farming

  • Mai, Tepoerau;Toullec, Jordan;Wynsberge, Simon Van;Besson, Marc;Soulet, Stephanie;Petek, Sylvain;Aliotti, Emmanuelle;Ekins, Merrick;Hall, Kathryn;Erpenbeck, Dirk;Lecchini, David;Beniddir, Mehdi A.;Saulnier, Denis;Debitus, Cecile
    • Fisheries and Aquatic Sciences
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    • 제22권12호
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    • pp.30.1-30.11
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    • 2019
  • Marine natural products isolated from the sponge Fascaplysinopsis cf reticulata, in French Polynesia, were investigated as an alternative to antibiotics to control pathogens in aquaculture. The overuse of antibiotics in aquaculture is largely considered to be an environmental pollution, because it supports the transfer of antibiotic resistance genes within the aquatic environment. One environmentally friendly alternative to antibiotics is the use of quorum sensing inhibitors (QSIs). Quorum sensing (QS) is a regulatory mechanism in bacteria which control virulence factors through the secretion of autoinducers (AIs), such as acyl-homoserine lactone (AHL) in gram-negative bacteria. Vibrio harveyi QS is controlled through three parallel pathways: HAI-1, AI-2, and CAI-1. Bioassay-guided purification of F. cf reticulata extract was conducted on two bacterial species, i.e., Tenacibaculum maritimum and V. harveyi for antibiotic and QS inhibition bioactivities. Toxicity bioassay of fractions was also evaluated on the freshwater fish Poecilia reticulata and the marine fish Acanthurus triostegus. Cyclohexanic and dichloromethane fractions of F. cf reticulata exhibited QS inhibition on V. harveyi and antibiotic bioactivities on V. harveyi and T. maritimum, respectively. Palauolide (1) and fascaplysin (2) were purified as major molecules from the cyclohexanic and dichloromethane fractions, respectively. Palauolide inhibited QS of V. harveyi through HAI-1 QS pathway at 50 ㎍ ml-1 (26 μM), while fascaplysin affected the bacterial growth of V. harveyi (50 ㎍ ml-1) and T. maritimum (0.25 ㎍). The toxicity of fascaplysin-enriched fraction (FEF) was evaluated and exhibited a toxic effect against fish at 50 ㎍ ml-1. This study demonstrated for the first time the QSI potential of palauolide (1). Future research may assess the toxicity of both the cyclohexanic fraction of the sponge and palauolide (1) on fish, to confirm their potential as alternative to antibiotics in fish farming.

석류 껍질추출물이 식중독균 여시니아 엔테로콜리티카의 쿼럼센싱과 바이오필름 형성능 억제 (Pomegranate (Punica granatum L.) Peel Extract Inhibits Quorum Sensing and Biofilm Formation Potential in Yersinia enterocolitica)

  • 오수경;장현주;전향숙;김현진;이나리
    • 한국미생물·생명공학회지
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    • 제43권4호
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    • pp.357-366
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    • 2015
  • 쿼럼센싱은 세포 간의 의사소통 방법이며 박테리아의 병원성과 관련된 유전자들의 조절메커니즘이다. 박테리아는 다양한 생리학적 과정들을 제어하기 위해 이 쿼럼센싱 시스템을 활용한다. 본 연구에서 석류(Punica granatum L.) 껍질 추출물이 바이오 리포터 균주인 Chromobacterium violaceum 과 C. violaceum CV026에서 쿼럼센싱 억제능을 갖는 것으로 1차 선별되어 식중독균인 Y. enterocolitica에서 편모에 의한 운동능과 바이오필름형성 억제능에 대한 석류껍질 추출물의 효과에 대한 다음 실험을 수행하였다. 추가로 N-acylhomoserine lactones (AHLs)의 합성(yenI and yenR)과 편모 레귤론(fliA, fleB and flhDC) 에 관련된 특정유전자의 발현변화를 역전사 중합효소연쇄반응법으로 평가하였다. 결과는 석류껍질 추출물이 C. violaceum CV026에서 쿼럼센싱으로 제어되는 바이오레신 생산을 78.5%까지 억제하였으며, Y. enterocolitica에서는 세포의 성장에 영향을 주지 않고 바이오필름 형성과 편모 운동성을 현저히 감소시키는 것을 확인할 수 있었다. 이러한 억제 효과는 AHLs의 합성과 운동성에 관여하는 유전자 발현을 down-regulation 하는 결과와도 일치하였다. 본 연구의 결과는 석류껍질 추출물의 임상 적용을 위하여 생체 내 특성에 대한 추가적인 연구가 필요하다는 것뿐 아니라 석류껍질 추출물이 사람의 위장관염을 방지하기 위한 잠재적인 치료제가 될 수 있다는 것을 보여준다.

Investigation of AI-based dual-model strategy for monitoring cyanobacterial blooms from Sentinel-3 in Korean inland waters

  • Hoang Hai Nguyen;Dalgeun Lee;Sunghwa Choi;Daeyun Shin
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.168-168
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    • 2023
  • The frequent occurrence of cyanobacterial harmful algal blooms (CHABs) in inland waters under climate change seriously damages the ecosystem and human health and is becoming a big problem in South Korea. Satellite remote sensing is suggested for effective monitoring CHABs at a larger scale of water bodies since the traditional method based on sparse in-situ networks is limited in space. However, utilizing a standalone variable of satellite reflectances in common CHABs dual-models, which relies on both chlorophyll-a (Chl-a) and phycocyanin or cyanobacteria cells (Cyano-cell), is not fully beneficial because their seasonal variation is highly impacted by surrounding meteorological and bio-environmental factors. Along with the development of Artificial Intelligence (AI), monitoring CHABs from space with analyzing the effects of environmental factors is accessible. This study aimed to investigate the potential application of AI in the dual-model strategy (Chl-a and Cyano-cell are output parameters) for monitoring seasonal dynamics of CHABs from satellites over Korean inland waters. The Sentinel-3 satellite was selected in this study due to the variety of spectral bands and its unique band (620 nm), which is sensitive to cyanobacteria. Via the AI-based feature selection, we analyzed the relationships between two output parameters and major parameters (satellite water-leaving reflectances at different spectral bands), together with auxiliary (meteorological and bio-environmental) parameters, to select the most important ones. Several AI models were then employed for modelling Chl-a and Cyano-cell concentration from those selected important parameters. Performance evaluation of the AI models and their comparison to traditional semi-analytical models were conducted to demonstrate whether AI models (using water-leaving reflectances and environmental variables) outperform traditional models (using water-leaving reflectances only) and which AI models are superior for monitoring CHABs from Sentinel-3 satellite over a Korean inland water body.

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수정된 바이폴라 전극을 갖는 착용형 심장활동 모니터링 시스템 구현 및 임상 심전도와의 상관관계 분석 (Implementation of Wearable Heart Activity Monitoring System having Modified Bipolar Electrode and Correlation Analysis with Clinical Electrocardiograph(ECG))

  • 이강휘;이정환;이영재;김경섭;양희경;신건수;이명호
    • 전기학회논문지
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    • 제57권6호
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    • pp.1102-1108
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    • 2008
  • Wearable physiological signal monitoring systems are regarded as an important sensing unit platforms in ubiquitous/mobile healthcare application. In this paper, we suggested the modified bipolar electrodes implemented on the portable heart activity monitoring system, which minimized the distance of electrodes formed on a attachable pad. The proposed electrode configuration is useful in mobile measurement environments, but has a disadvantage of reduced amplitude of the heart action potential. In order to overcome the shortcoming of the suggested electrode configuration, we implemented the amplifying circuit to increase the signal-gain and decrease the artifacts. For evaluations, we analyzed the specificity of measured cardiography using the proposed electrodes through the comparing of heart activity monitoring system with standard clinical ECG(lead2) by pearson correlation coefficients. The result showed that the average correlation coefficient is $0.903{\pm}0.036,\;0.873{\pm}0.072$ at V3, V4 chest lead position, respectively. Thus, the modified bipolar electrode is quite suitable to monitor the electrical activity of the heart in the situation of the mobile environment, and could be considered having high similarity with standard clinical ECG.

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.

Electrode Characteristics of Non-contact Electrocardiographic Measurement

  • Mathias, Dakurah Naangmenkpeong;Kim, Sung-Il;Park, Jae-Soon;Joung, Yeun-Ho;Choi, Won Seok
    • Transactions on Electrical and Electronic Materials
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    • 제16권1호
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    • pp.42-45
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    • 2015
  • The ability to take electrocardiographic measurements while performing our daily activities has become the people-choice for modern age vital sign sensing. Currently, wet and dry ECG electrodes are known to pose threats like inflammations, allergic reactions, and metal poisoning due to their direct skin interaction. Therefore, the main goal in this work is to implement a very small ECG sensor system with a capacitive coupling, which is able to detect electrical signals of heart at a distance without the conductive gel. The aim of this paper is to design, implement, and characterize the contactless ECG electrodes. Under a careful consideration of factors that affect a capacitive electrode functional integrity, several different sizes of ECG electrodes were designed and tested with a pilot ECG device. A very small cotton-insulated copper tape electrode ($2.324cm^2$) was finally attained that could detect and measure bioelectric signal at about 500 um of distance from the subject's chest.

접착층을 고려한 플라즈모닉 금 나노 디스크의 광산란 특성 (Effect of Adhesion layer on the Optical Scattering Properties of Plasmonic Au Nanodisc)

  • 김주영;조규만;이경석
    • 대한금속재료학회지
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    • 제46권7호
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    • pp.464-470
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    • 2008
  • Metallic nanostructures have great potential for bio-chemical sensor applications due to the excitation of localized surface plasmon and its sensitive response to environmental change. Unlike the commonly explored absorption-based sensing, the optical scattering provides single particle detection scheme. For the localized surface plasmon resonance spectroscopy, the metallic nanostructures with controlled shape and size have been usually fabricated on adhesion-layer pre-coated transparent glass substrates. In this study, we calculated the optical scattering properties of plasmonic Au nanodisc using a discrete dipole approximation method and analyzed the effect of adhesion layer on them. Our result also indicates that there is a trade-off between the surface plasmon damping and the capability of supporting nanostructures in determining the optimal thickness of adhesion layer. Marginal thickness of Ti adhesion layer for supporting Au nanostructures fabricated on a silica glass substrate was experimentally analyzed by an adhesion strength test using a nano-indentation technique.

CLIMATE CHANGE IMPACT OVER INDIAN AGRICULTURE - A SPATIAL MODELING APPROACH

  • Priya, Satya;Shibasaki, Ryosuke
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 1999년도 Proceedings of International Symposium on Remote Sensing
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    • pp.107-114
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    • 1999
  • The large-scale distribution of crops Is usually determined by climate. We present the results of a climate-crop prediction based on spatial bio-physical process model approach, implemented in a GIS (Geographic Information System) environment using several regional and global agriculture-environmental databases. The model utilizes daily climate data like temperature, rainfall, solar radiation being generated stocastically by in-built model weather generator to determine the daily biomass and finally the crop yield. Crops are characterized by their specific growing period requirements, photosynthesis, respiration properties and harvesting index properties. Temperature and radiation during the growing period controls the development of each crop. The model simulates geographic/spatial distribution of climate by which a crop-growing belt can also be determined. The model takes both irrigated and non-irrigated area crop productivity into account and the potential increase in productivity by the technical means like mechanization is not considered. All the management input given at the base year 1995 was kept same for the next twenty-year changes until 2015. The simulated distributions of crops under current climatic conditions coincide largely with the current agricultural or specific crop growing regions. Simulation with assumed weather generated derived climate change scenario illustrate changes in the agricultural potential. There are large regional differences in the response across the country. The north-south and east-west regions responded differently with projected climate changes with increased and decreased productivity depending upon the crops and scenarios separately. When water was limiting or facilitating as non-irrigated and irrigated area crop-production effects of temperature rise and higher $CO_2$ levels were different depending on the crops and accordingly their production. Rise in temperature led to yield reduction in case of maize and rice whereas a gain was observed for wheat crop, doubled $CO_2$ concentration enhanced yield for all crops and their several combinations behaved differently with increase or decrease in yields. Finally, with this spatial modeling approach we succeeded in quantifying the crop productivity which may bring regional disparities under the different climatic scenarios where one region may become better off and the other may go worse off.

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고급 화장품 소재 개발을 위한 마이크로플루딕스 기술의 잠재적 응용성 (A Potential Applicability of Microfluidic Techniques for Fabricating Advanced Cosmetic Materials)

  • 박성희;김한곤;정규혁;김진웅
    • 대한화장품학회지
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    • 제34권4호
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    • pp.245-258
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    • 2008
  • 본 총설에서는 마이크로플루딕스 기술에 대한 기초연구를 소개하고, 이 기술을 통하여 화장품산업분야에서 응용성이 큰 동공구조체, 응답성 소재, 캡슐 소재, 다층 콜로이드 구조체 등과 같은 신소재의 합성이 가능함을 기술한다. 마이크로플루딕스 기술이 적용되어 개발된 기능성 신소재들은 그 크기와 내부 모폴로지를 정확하게 피코리터 수준에서 조절할 수 있다. 또한, 소재의 화학조성을 다양하게 임의 조절할 수 있고, 고차 층구조를 갖는 콜로이드 입자나 캡슐의 개발까지도 가능하여 그 응용성은 무궁무진하다고 할 수 있다. 기본적으로 약물전달계, 화학물 분리공정, 바이오센서, 애튜에이터 등의 응용연구에 매우 유용하게 활용될 수 있다. 화장품산업에서도 마이크로플루딕스 기술을 이용하여 고기능성 신소재 개발이나 신유형 화장품 개발이 가능할 것으로 기대되어 더욱 복합적인 연구개발이 진행되어야 할 것이다.

Lactobacillus plantarum APsulloc 331261 발효 용해물의 피부 미생물 조절 효과 (Lactobacillus plantarum APsulloc 331261 Fermented Products as Potential Skin Microbial Modulation Cosmetic Ingredients)

  • 김한별;명길선;이현기;최은정;박태훈;안수선
    • 대한화장품학회지
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    • 제46권1호
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    • pp.23-29
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    • 2020
  • 피부에는 여러 종의 미생물들이 군집을 이루며 서식하고 있고, 서로 상호작용을 하며 균형을 유지하고 있다. 하지만, 여드름, 건선 및 아토피 피부염과 같은 질병 상태에서는 피부 미생물의 균형이 깨져 건강한 피부와는 다른 미생물 군집 구성을 보인다. 피부 미생물 군집 구성의 조절은 이러한 피부 질환에 대한 잠재적인 치료 방법이 될 수 있다. Quorum sensing (QS)은 세포간 전달인자로, QS을 조절하면 유해균의 바이오필름 형성이나 효소 분비등을 억제할 수 있고, 이 역시 피부 미생물 군집 구성에 영향을 준다. 이번 연구에서는 아모레퍼시픽의 특허 성분인 유산균 발효 용해물(Lactobacillus plantarum APsulloc 331261, KCCM 11179P 이용)의 QS억제능력 및 피부 유익균과 피부 유해균의 생장에 미치는 영향을 확인하였다. 유산균 발효 용해물 10 ㎍/mL 처리시, QS에 의해 제어되는 Chromobacterium violaceum의 자주색 안료 생산을 대조군 대비 27.4% 감소시켰다. 또 피부 유익균인 Staphylococcus epidermidis의 생장을 대조군 대비 12% 증가 시켰고, 피부 유해균인 Pseudomonas aeruginosa의 생장을 38.5% 감소, 바이오필름 형성을 17.7% 감소시켰다. S. epidermidis를 같은 속(genus)에 포함되어 있는 대표적인 피부 유해균 Staphylococcus aureus와 함께 공배양 하였을 때 S. epidermidis의 생장은 대조군 대비 134% 증가시켰고, S. aureus의 생장은 13% 억제시켰다. 이러한 결과들을 종합하였을 때 L. plantarum APsulloc 331261을 이용한 발효 용해물은 피부 미생물의 균형을 조절해 줄 수 있는 화장품 원료로 유용하게 사용 될 수 있다고 사료된다.