• 제목/요약/키워드: high-throughput screening

검색결과 182건 처리시간 0.029초

현미에서의 오크라톡신 A의 검색을 위한 형광편광면역분석법의 응용 (Application of Fluorescence Polarization Immunoassay for the Screening of Ochratoxin A in Unpolished Rice)

  • 박정현;정덕화;이인선
    • 생명과학회지
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    • 제16권6호
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    • pp.1006-1013
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    • 2006
  • 식품안전에 대한 관심이 증가되고 있는 현재, 생물학적 화학적 위해요소로 분류되고 있고, 현재 많은 나라에서 규제치를 설정하고 있는 곰팡이 독소인 ochratoxin A(OTA)에 대한 정량적 측정이 가능한 고속검색법을 개발 하고자 단클론성 항체를 이용하여, 측정시 분리과정이 필요 없는 형광편광면역분석법(FPIA)을 개발하고 최적화 시켰다. 동일구조를 가지는 형광물질 표식자인 OTA-EDF를 합성하여 OTA에 대한 특이항체와 경쟁반응을 시켜 나타나는 형광-편광도(mP)의 변화를 측정하였다. 이는 면역분석법의 특이성과 민감성을 충분히 만족하였다. OTA의 검출범위는 0.5-200 ng/ml였고, 검출한계는 0.3 ng/ml였다. 개발된 분석법은 다른 곰팡이 독소들과의 교차반응은 없었고 높은 특이성과 재현성 및 회수율을 나타내었다. HPLC 방법에 의한 회수율은 88-84%로 다소낮게, FPlA법의 회수율은 90-110%로 다소 높게 나타났다. 16점의 현미시료를 분석하였을 때, 2점이 상관관계가 높게 12-20 ppb 정도 오염된 것으로 나타났다. 4점은 FPIA 및 HPLC 모두에서 음성으로 판정되었다. 개발된 FPIA는 복잡한 전처리 방법이 필요 없는 신속한 검색이 가능하므로, 식품 및 환경에서의 OTA 잔류 검사에 유용하게 사용될 수 있을 것이다.

Yeast내에서 탄저병 원인균인 Bacillus anthracis의 치사독소인 Lethal Factor 단백질 발현 (Expression of Anthrax Lethal Factor, a Major Virulence Factor of Anthrax, in Saccharomyces cerevisiae)

  • 황혜현;김정목;최경재;정회일;한성환;구본성;윤문영
    • 미생물학회지
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    • 제41권4호
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    • pp.275-280
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    • 2005
  • Bacillus anthracis는 탄저병의 병원체이다. 탄저병의 독소는 Bacillus anthracis가 가진 세가지 독소로 이루어져 있다. protective antigen (PA), lethal factor (LF)그리고 edema factor (EF)로 구성되어 있다. PA는 세포수용체와 결합하여 활성화 과정을 거친 후 LF 흑은 EF를 세포질 안으로 이동시켜 주는 역할을 한다. LF는 금속이온 $(Zn^{2+})$ 의존적 단백질 가수분해 효소로써 탄저병에 감염된 동물들의 치사독소로 작용하게 된다. 따라서 LF에 대한 특성 분석 및 억제재 개발에 관한 연구는 탄저치료제 개발에 매우 중요한 과정이라 할 수 있다. 본 연구에서는 탄저독소의 치료제 개발을 위해 선행되어야 하는 LF 고처리량 활성검증방법 및 저해제 선별에 더 높은 효율을 가지기 위해 이러한 시스템 방법 등을 이용하여 세포내 검정방법의 기초 자료를 마련하고자 하였다. 이를 위하여 yeast를 숙주로 한 LF 발현 vector의 구축과, 구축한 발현 시스템을 yeast에 형질전환 하여 plasmid의 안정성 및 LF유전자의 발현을 확인하였다. 본 연구는 LF유전자의 발현을 진핵세포 내에서 처음으로 시도했으며, 세포내 검증 시스템 도입의 기초적 자료를 제공하였다. Yeast내에서의 LF의 발현은 탄저병의 저해제 선별이나 활성측정검증을 생체 내에서 용이하게 할 수 있다는 가능성을 나타냈다.

Serum exosomal miR-192 serves as a potential detective biomarker for early pregnancy screening in sows

  • Ruonan Gao;Qingchun Li;Meiyu Qiu;Su Xie;Xiaomei Sun;Tao Huang
    • Animal Bioscience
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    • 제36권9호
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    • pp.1336-1349
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    • 2023
  • Objective: The study was conducted to screen differentially expressed miRNAs in sows at early pregnancy by high-throughput sequencing and explore its mechanism of action on embryo implantation. Methods: The blood serum of pregnant and non-pregnant Landrace×Yorkshire sows were collected 14 days after artificial insemination, and exosomal miRNAs were purified for high throughput miRNA sequencing. The expression patterns of 10 differentially expressed (DE) miRNAs were validated by quantitative reverse transcription-polymerase chain reaction (qRT-PCR). The qRT-PCR quantified the abundance of serum exosomal miR-192 in pregnant and control sows, and the diagnostic power was assessed by receiver operating characteristic (ROC) analysis. The target genes of DE miRNAs were predicted with bioinformatics software, and the functional and pathway enrichment analysis was performed on gene ontology and the Kyoto encyclopedia of genes and genomes terms. Furthermore, a luciferase reporter system was used to identify the target relation between miR-192 and integrin alpha 4 (ITGA4), a gene influencing embryo implantation in pigs. Finally, the expression levels of miRNAs and the target gene ITGA4 were analyzed by qRT-PCR, and western blot, with the proliferation of BeWo cells detected by cell counting kit-8 (CCK-8). Results: A total of 221 known miRNAs were detected in the libraries of the pregnant and non-pregnant sows, of which 55 were up-regulated and 67 were down-regulated in the pregnant individuals compared with the non-pregnant controls. From these, the expression patterns of 10 DE miRNAs were validated. The qRT-PCR analysis further confirmed a significantly higher expression of miR-192 in the serum exosomes extracted from pregnant sows, when compared to controls. The ROC analysis revealed that miR-192 provided excellent diagnostic accuracy for pregnancy (area under the ROC curve [AUC]=0.843; p>0.001). The dual-luciferase reporter assay indicated that miR-192 directly targeted ITGA4. The protein expression of ITGA4 was reduced in cells that overexpressed miR-192. Overexpression of miR-192 resulted in the decreased proliferation of BeWo cells and regulated the expression of cell cycle-related genes. Conclusion: Serum exosomal miR-192 could serve as a potential biomarker for early pregnancy in pigs. miR-192 targeted ITGA4 gene directly, and miR-192 can regulate cellular proliferation.

다중 역전사 중합효소 연쇄 반응(Multiplex RT-PCR)을 이용한 인간배아 줄기세포 및 유도만능 줄기세포의 효과적인 분화 양상 조사 (Effective Application of Multiplex RT-PCR for Characterization of Human Embryonic Stem Cells/ Induced Pluripotent Stem Cells)

  • 김정모;조윤정;손온주;홍기성;정형민
    • Reproductive and Developmental Biology
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    • 제35권1호
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    • pp.1-8
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    • 2011
  • Techniques to evaluate gene expression profiling, such as sufficiently sensitive cDNA microarrays or real-time quantitative PCR, are efficient methods for monitoring human pluripotent stem cell (hESC/iPSC) cultures. However, most of these high-throughput tests have a limited use due to high cost, extended turn-around time, and the involvement of highly specialized technical expertise. Hence, there is an urgency of rapid, cost-effective, robust, yet sensitive method development for routine screening of hESCs/hiPSCs. A critical requirement in hESC/hiPSC cultures is to maintain a uniform undifferentiated state and to determine their differentiation capacity by showing the expression of gene markers representing all three germ layers, including ectoderm, mesoderm, and endoderm. To quantify the modulation of gene expression in hESCs/hiPSC during their propagation, expansion, and differentiation via embryoid body (EB) formation, we developed a simple, rapid, inexpensive, and definitive multimarker, semiquantitative multiplex RT-PCR platform technology. Among the 9 gene primers tested, 5 were pluripotent markers comprising set 1, and 3 lineage-specific markers were combined as set 2, respectively. We found that these 2 sets were not only effective in determining the relative differentiation in hESCs/hiPSCs, but were easily reproducible. In this study, we used the hES/hiPS cell lines to standardize the technique. This multiplex RT-PCR assay is flexible and, by selecting appropriate reporter genes, can be designed for characterization of different hESC/hiPSC lines during routine maintenance and directed differentiation.

Pichia pastoris: A Recombinant Microfactory for Antibodies and Human Membrane Proteins

  • Goncalves, A.M.;Pedro, A.Q.;Maia, C.;Sousa, F.;Queiroz, J.A.;Passarinha, L.A.
    • Journal of Microbiology and Biotechnology
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    • 제23권5호
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    • pp.587-601
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    • 2013
  • During the last few decades, it has become evident that the compatibility of the yeast biochemical environment with the ability to process and translate the RNA transcript, along with its capacity to modify a translated protein, are relevant requirements for selecting this host cell for protein expression in several pharmaceutical and clinical applications. In particular, Pichia pastoris is used as an industrial host for recombinant protein and metabolite production, showing a powerful capacity to meet required biomolecular target production levels in high-throughput assays for functional genomics and drug screening. In addition, there is a great advantage to using P. pastoris for protein secretion, even at high molecular weights, since the recovery and purification steps are simplified owing to relatively low levels of endogenous proteins in the extracellular medium. Clearly, no single microexpression system can provide all of the desired properties for human protein production. Moreover, chemical and physical bioprocess parameters, including culture medium formulation, temperature, pH, agitation, aeration rates, induction, and feeding strategies, can highly influence product yield and quality. In order to benefit from the currently available wide range of biosynthesis strategies using P. pastoris, this mini review focuses on the developments and technological fermentation achievements, providing both a comparative and an overall integration analysis. The main aim is to highlight the relevance and versatility of the P. pastoris biosystem to the design of more cost-effective microfactories to meet the increasing demands for recombinant membrane proteins and clinical antibodies for several therapeutic applications.

Current status of natural product industry and its commercial application to health functional foods

  • Park, Jong Dae
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2018년도 추계학술대회
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    • pp.21-21
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    • 2018
  • Natural product substances have historically served as the most significant also be prepared by source of new leads for pharmaceutical development. They can chemical synthesis(both semisynthesis and total synthesis) and have played a important role in the field of organic chemistry by providing synthetic targets. Rcently, they have also been extended for commercial purpose to refer to medicinal products, health functional foods, dietary supplements and cosmetics from natural sources. A large number of currently prescribed drugs have been either directly derived from or inspired by natural products. However, with the advent of robotics, bioinformatics, high throughput screening(HTS), molecular biology-biotechnology, combinatorial chemistry, in silico(molecular modeling) and other methodologies, the pharmaceutical industry has largely moved away from plant derived natural products as a source for leads and prospective drug candidates. The strategy for natural prduct industry is now changing from drug approaches to health foods by identifying effective natural products as preparations. In Korea, a lot of development of natural product based drugs have been done, but very few on health functional foods. The concept of natural product based health foods is not active components as lead compounds but standardized extracts or preparation mixed with other medicinal plants. The representative material has been recently known to be a standardized ginseng extract "Ginsana G 115" developed by Swiss Pharmaton company. The purpose of this presentation is to underline how natural products research continues to make significant contributions in the domain of discovery and development of new health functional foods. It is proposed to present the development of high value added health food or health functional foods through scientific investigation on efficacy and standardization of new materials form natural products.

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Real-time Monitoring of Colloidal Nanoparticles using Light Sheet Dark-field Microscopy Combined with Microfluidic Concentration Gradient Generator (μFCGG-LSDFM)

  • Choe, Hyeokmin;Nho, Hyun Woo;Park, Jonghoon;Kim, Jin Bae;Yoon, Tae Hyun
    • Bulletin of the Korean Chemical Society
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    • 제35권2호
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    • pp.365-370
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    • 2014
  • For real-time monitoring of colloidal nanoparticles (NPs) in aqueous media, a light sheet type dark-field microscopy system combined with a microfluidic concentration gradient generator (${\mu}FCGG$-LSDFM) was developed. Various concentrations of colloidal Au NPs were simultaneously generated with the iFCGG and characterized with the LSDFM setup. The number concentrations and hydrodynamic size distributions were measured via particle counting and tracking analysis (PCA and PTA, respectively) approaches. For the 30 nm Au NPs used in this study, the lower detection limit of the LSDFM setup was 3.6 ng/mL, which is about 400 times better than that of optical density measurements under the same ${\mu}FCGG$ system. Additionally, the hydrodynamic diameter distribution of Au NPs was estimated as $39.7{\pm}12.2nm$ with the PTA approach, which agrees well with DLS measurement as well as the manufacturer's specification. We propose this ${\mu}FCGG$-LSDFM setup with features of automatic generation of NP concentration gradient and real-time monitoring of their physicochemical characteristics (e.g., number concentration, and hydrodynamic size distribution) as an important component of future high-throughput screening or high-content analysis platforms of nanotoxicity.

Screening and functional validation of lipid metabolism-related lncRNA-46546 based on the transcriptome analysis of early embryonic muscle tissue in chicken

  • Ruonan, Chen;Kai, Liao;Herong, Liao;Li, Zhang;Haixuan, Zhao;Jie, Sun
    • Animal Bioscience
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    • 제36권2호
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    • pp.175-190
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    • 2023
  • Objective: The study was conducted to screen differentially expressed long noncoding RNA (lncRNA) in chickens by high-throughput sequencing and explore its mechanism of action on intramuscular fat deposition. Methods: Herein, Rose crown and Cbb broiler chicken embryo breast and leg muscle lncRNA and mRNA expression profiles were constructed by RNA sequencing. A total of 96 and 42 differentially expressed lncRNAs were obtained in Rose crown vs Cobb broiler chicken breast and leg muscle, respectively. lncRNA-ENSGALT00000046546, with high interspecific variability and a potential regulatory role in lipid metabolism, and its predicted downstream target gene 1-acylglycerol-3-phosphate-O-acyltransferase 2 (AGPAT2), were selected for further study on the preadipocytes. Results: lncRNA-46546 overexpression in chicken preadipocyte 2 cells significantly increased (p<0.01) the expression levels of AGPAT2 and its downstream genes diacylglycerol acyltransferase 1 and diacylglycerol acyltransferase 2 and those of the fat metabolism-related genes peroxisome proliferator-activated receptor γ, CCAAT/enhancer binding protein α, fatty acid synthase, sterol regulatory element-binding transcription factor 1, and fatty acid binding protein 4. The lipid droplet concentration was higher in the overexpression group than in the control cells, and the triglyceride content in cells and medium was also significantly increased (p<0.01). Conclusion: This study preliminarily concludes that lncRNA-46546 may promote intramuscular fat deposition in chickens, laying a foundation for the study of lncRNAs in chicken early embryonic development and fat deposition.

Amine functionalized plasma polymerized PEG film: Elimination of non-specific binding for biosensing

  • Park, Jisoo;Kim, Youngmi;Jung, Donggeun;Kim, Young-Pil;Lee, Tae Geol
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.378.2-378.2
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    • 2016
  • Biosensors currently suffer from severe non-specific adsorption of proteins, which causes false positive errors in detection through overestimation of the affinity value. Overcoming this technical issue motivates our research. Polyethylene glycol (PEG) is well known for its ability to reduce the adsorption of biomolecules; hence, it is widely used in various areas of medicine and other biological fields. Likewise, amine functionalized surfaces are widely used for biochemical analysis, drug delivery, medical diagnostics and high throughput screening such as biochips. As a result, many coating techniques have been introduced, one of which is plasma polymerization - a powerful coating method due to its uniformity, homogeneity, mechanical and chemical stability, and excellent adhesion to any substrate. In our previous works, we successfully fabricated plasmapolymerized PEG (PP-PEG) films [1] and amine functionalized films [2] using the plasma enhanced chemical vapor deposition (PECVD) technique. In this research, an amine functionalized PP-PEG film was fabricated by using the plasma co-polymerization technique with PEG 200 and ethylenediamine (EDA) as co-precursors. A biocompatible amine functionalized film was surface characterized by X-ray photoelectron spectroscopy (XPS) and Fourier-transform infrared spectroscopy (FT-IR). The density of the surface amine functional groups was carried out by quantitative analysis using UV-visible spectroscopy. We found through surface plasmon resonance (SPR) analysis that non-specific protein adsorption was drastically reduced on amine functionalized PP-PEG films. Our functionalized PP-PEG films show considerable potential for biotechnological applications such as biosensors.

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대장균에서의 Candida antarctica lipase B 최적 발현 (Functional expression of CalB in E.coli)

  • 김현숙;김용환
    • KSBB Journal
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    • 제23권5호
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    • pp.445-448
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    • 2008
  • 생명공학분야에서 매우 중요한 효소 중에 하나인 lipase는 여러 산업에 유용하게 사용되고 있다. lipase를 선별하기 위해서는 최적화된 발현 시스템이 필요하다. 많은 발현 시스템중에 E.coli 발현 시스템은 바람직한 특성을 갖는 효소를 스크리닝하거나, 선별된 변이체들의 특성을 확인하는 데에 소요되는 시간과 비용을 단축시켜 줄 것이다. 본 연구에서는 그 중에 BL21와 OrigamiB에서 CalB를 발현하였다. 그 결과 BL21 균주에서 발현된 CalB는 대부분이 불용성의 inclusion body를 형성하고, 전혀 활성을 나타내지 않았다. 이전의 타 연구와 더불어 이 결과에서 E.coli 균주에서 CalB의 기능적 발현이 상당히 어렵다는 것을 알 수 있다. 특히 불용성의 inclusion body형성과 lipase의 세포에 대한 유독성이 원인이 될 수 있다. 그러나 BL21와 비교해보면, OrigamiB에서 발현된 CalB 또한 많은 양의 inclusion body를 형성하지만, lipase의 주요 특성중의 하나인 가수분해 활성이 상당하게 나타나는 것을 알 수 있다. lipase의 구조 형성을 도와주는 변형된 OrigamiB와 저온유도시스템인 pCold 플라스미드를 사용했기 때문이다. 이처럼 균주나 플라스미드의 선택, 유도조건의 변경 등의 여러 연구를 통하여 유용한 효소를 선별할 수 있다.