• 제목/요약/키워드: biological methods

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세포적합성 고분자 표면에 관한 연구 I. 고분자 표면 개질과 ESCA 분석 (Polymer Surfaces for Cell Adhesion I. Surface Modification of Polymers and ESCA Analysis)

  • 이진호;강길선
    • 대한의용생체공학회:의공학회지
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    • 제10권1호
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    • pp.43-52
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    • 1989
  • We modified polymer surfaces, polyethylene, polystyrene and polyester, to improve cellcompatibility. For surface modification of the polymers, we used various surface treatment methods; physicochemical oxidation methods such as plasma discharge, corona discharge, sulfuric acid and chloric acid treatments, and biological methods such as adsorption of plasma protein and fibronectin onto the polymer surfaces. The treated polymer surfaces were characterized by electron spectroscopy for chemical analysis ( ESCA ). The physicochemically treated polymers showed different surface chemical structures depending on the treated methods. The sulfuric acid-treated surfaces showed greater carboxyl groups than those of plasma- or corona- treated surfaces, while the chloric acid-treated one showed high density of hydroxyl group on the surface. By the biological treatments, the surfaces were uniformly coated with proteins. The fibronectin adsorbed on the surface seems to have unique properties for cell binding.

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Mass Spectrometry-Based Analytical Methods of Amatoxins in Biological Fluids to Monitor Amatoxin-Induced Mushroom Poisoning

  • Choi, Jin-Sung;Lee, Hye Suk
    • Mass Spectrometry Letters
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    • 제13권4호
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    • pp.95-105
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    • 2022
  • Amatoxin-induced mushroom poisoning starts with nonspecific symptoms of toxicity but hepatic damage may follow, resulting in the rapid development of liver insufficiency and, ultimately, coma and death. Accurate detection of amatoxins, such as α-, β-, and γ-amanitin, within the first few hours after presentation is necessary to improve the therapeutic outcomes of patients. Therefore, analytical methods for the identification and quantification of α-, β-, and γ-amanitin in biological samples are necessary for clinical and forensic toxicology. This study presents a literature review of the analytical techniques available for amatoxin detection in biological matrices, and established an inventory of liquid chromatography (LC) techniques with mass spectrometry (MS), ultraviolet (UV) detection, and electrochemical detection (ECD). LC-MS methods using quadrupole tandem mass spectrometry, time-of-flight mass spectrometry, and orbitrap MS are powerful analytical techniques for the identification and determination of amatoxins in plasma, urine, serum, and tissue samples, with high sensitivity, specificity, and reproducibility compared to LC with UV and ECD, enzyme-linked immunoassay, and capillary electrophoresis methods.

오염토양 정화공법이 토양의 생물학적 특성에 미치는 영향 (Effects of Soil Remediation Methods on the Biological Properties of Soils)

  • 이용민;김국진;성기준
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권3호
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    • pp.73-81
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    • 2013
  • Various remediation methods have been applied to clean soils contaminated with pollutants. They remove contaminants from the soils by utilizing physicochemical, biological, and thermal processes and can satisfy soil remediation standards within a limited time; however, they also have an effect on the biological functions of soils by changing soil properties. In this study, changes of the biological properties of soils before and after treatment with three frequently used remediation methods-soil washing, land farming, and thermal desorption-were monitored to investigate the effects of remediation methods on soil biological functions. Total microbial number and soil enzyme activities, germination rate and growth of Brassica juncea, biomass change of Eisenia andrei were examined the effects on soil microorganisms, plant, and soil organisms, respectively. After soil washing, the germination rate of Brassica juncea increased but the above-ground growth and total microbial number decreased. Dehydrogenase activity, germination rate and above-ground growth increased in both land farming and thermal desorption treated soil. Although the growth of Eisenia andrei in thermal desorption treated soil was higher than any other treatment, it was still lower than that in non-contaminated soil. These results show that the remediation processes used to clean contaminated soil also affect soil biological functions. To utilize the cleaned soil for healthy and more value-added purposes, soil improvement and process development are needed.

국내 기초간호학 교육과정 운영 현황 및 교수자의 기초간호학 교과목에 대한 인식 (Current Biological Nursing Curriculum and Faculty Perceptions on Biological Nursing Subjects in South Korea)

  • 서경산;김진일;안경주
    • Journal of Korean Biological Nursing Science
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    • 제23권2호
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    • pp.127-137
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    • 2021
  • Purpose: This study was conducted to investigate the current status of the biological nursing curriculum and faculties' perceptions on biological nursing subjects in South Korea. Methods: Biological nursing subjects' titles and credits were searched through the nursing schools' website. Perceived adequacy of subjects' title and credit in each biological nursing subject and the degree of perceived importance and satisfaction of learning contents by subjects were collected from 30 professors of biological nursing subjects. Results: Many schools still use the titles of medical subjects for those of biological nursing subjects. The perceived importance and satisfaction of genetics-related learning contents, "nursing case study" or "project team presentation," were lower than other learning contents. Conclusion: Standardization of biological nursing subjects' titles and learning contents is needed.

Recent Advances in the Chemobiological Upcycling of Polyethylene Terephthalate (PET) into Value-Added Chemicals

  • Joyce Mudondo;Hoe-Suk Lee;Yunhee Jeong;Tae Hee Kim;Seungmi Kim;Bong Hyun Sung;See-Hyoung Park;Kyungmoon Park;Hyun Gil Cha;Young Joo Yeon;Hee Taek Kim
    • Journal of Microbiology and Biotechnology
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    • 제33권1호
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    • pp.1-14
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    • 2023
  • Polyethylene terephthalate (PET) is a plastic material commonly applied to beverage packaging used in everyday life. Owing to PET's versatility and ease of use, its consumption has continuously increased, resulting in considerable waste generation. Several physical and chemical recycling processes have been developed to address this problem. Recently, biological upcycling is being actively studied and has come to be regarded as a powerful technology for overcoming the economic issues associated with conventional recycling methods. For upcycling, PET should be degraded into small molecules, such as terephthalic acid and ethylene glycol, which are utilized as substrates for bioconversion, through various degradation processes, including gasification, pyrolysis, and chemical/biological depolymerization. Furthermore, biological upcycling methods have been applied to biosynthesize value-added chemicals, such as adipic acid, muconic acid, catechol, vanillin, and glycolic acid. In this review, we introduce and discuss various degradation methods that yield substrates for bioconversion and biological upcycling processes to produce value-added biochemicals. These technologies encourage a circular economy, which reduces the amount of waste released into the environment.

치료약물과 신경영상 (Psychotropic Drugs and Neuroimaging)

  • 정은기
    • 생물정신의학
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    • 제2권1호
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    • pp.38-43
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    • 1995
  • The application of neuroimaging techniques in psychiatry started in 1970s with the use of CT(computerized tomography). Neuroimaging methods can be categorized as anatomical and functional. Recently, attentions are focused on the functional neuroimaging methods those could give us various important informations. But results regarding to psychotropic medication effect on neuroimaging are not sufficient. Here, the study results of the medication effect with the functional imaging methods are mainly revieued.

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반도체 공정에서 발생하는 폐실리콘 슬러지의 재활용을 통한 실리카 나노입자의 제조 및 합성법에 따른 형상 및 특성 비교 연구 (A Comparative Study on Morphologies and Characteristics of Silica Nanoparticles Recycled from Silicon Sludge Waste of Semiconductor Process Based on Synthesis Methods)

  • 김지원;사민기;추연룡;제갈석;김하영;김찬교;심형섭;윤창민
    • 유기물자원화
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    • 제31권3호
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    • pp.5-13
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    • 2023
  • 본 연구에서는 반도체 공정에서 발생하는 폐실리콘 슬러지를 활용하여 고부가가치의 실리카 나노입자로 합성하는 방법들에 대한 비교 연구를 수행하였다. 상세히는, 폐실리콘 슬러지 내에 존재하는 금속과 유기 불순물을 산세 처리를 통해 제거한 뒤 졸-겔법과 수열합성법을 통해 실리카 나노입자로 제조하였다. 두 가지 합성법을 통해 제조된 실리카 나노입자에 대한 다양한 형상 및 특성 분석을 진행하였다. 그 결과, 졸-겔법으로 제조된 실리카 나노입자는 순도가 높고 균일한 형상으로 합성되었으며, 수열합성법은 수율과 단순한 제조법의 이점을 확인할 수 있었다. 본 비교 연구는 폐실리콘 슬러지에서 실리카 나노입자를 제조하는 두 가지 합성법에 대한 상세한 실험 결과를 제시하여, 반도체 공정에서 발생하는 부산물을 활용한 고부가가치 소재 제조법 정립에 기여할 것으로 기대된다.

Identification of Irradiated Foods by Using DNA, Immunochemical, and Biological Methods

  • Kim, Kyeung-Eun;Yang, Jae-Seung
    • Preventive Nutrition and Food Science
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    • 제4권4호
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    • pp.276-282
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    • 1999
  • Ionizing radiation is considered to be an efficient technology to improve food safety and to extend food shelf-life in the food industry, and it has been used in food processing with a number of attributes. Food labeling should be established to enable the consumer to choose food freely, based on label information. A variety of methodologies to determine the physical, chemical, microbiological, and biological changes due to irradiation has been investigated in order to discriminate the irradiated and unirradiated food products for the consumer's free choice in food selection. However, no satisfactory method has been developed so far. In this review, various approaches based on DNA, immunochemical, and biological methods are addressed.

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Graphene and Carbon Quantum Dots-based Biosensors for Use with Biomaterials

  • Lee, Cheolho;Hong, Sungyeap
    • Journal of information and communication convergence engineering
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    • 제17권1호
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    • pp.49-59
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    • 2019
  • Biosensors, which are analysis devices used to convert biological reactions into electric signals, are made up of a receptor component and a signal transduction part. Graphene quantum dots (GQDs) and carbon quantum dots (CQDs) are new types of carbon nanoparticles that have drawn a significant amount of attention in nanoparticle research. The unique features exhibited by GQDs and CQDs are their excellent fluorescence, biocompatibility, and low cytotoxicity. As a result of these features, carbon nanomaterials have been extensively studied in bioengineering, including biosensing and bioimaging. It is extremely important to find biomaterials that participate in biological processes. Biomaterials have been studied in the development of fluorescence-based detection methods. This review provides an overview of recent advances and new trends in the area of biosensors based on GQDs and CQDs as biosensor platforms for the detection of biomaterials using fluorescence. The sensing methods are classified based on the types of biomaterials, including nucleic acids, vitamins, amino acids, and glucose.