• 제목/요약/키워드: Fluorescence detection system

검색결과 133건 처리시간 0.023초

하천수 내 생물학적 안정성에 따른 유기물 특성변화와 오존산화기반 전처리 연구 (Biological stability in the ozone and peroxone pretreatment systems in river water)

  • 박세희;노진형;박지원;맹승규
    • 상하수도학회지
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    • 제32권2호
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    • pp.159-168
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    • 2018
  • Climate change is believed to increase the amount of dissolved organic matter in surface water, as a result of the release of bulk organic matter, which make difficult to achieve a high quality of drinking water via conventional water treatment techniques. Therefore, the natural water treatment techniques, such as managed aquifer recharge (MAR), can be proposed as a alternative method to improve water quality greatly. Removal of bulk organic matter using managed aquifer recharge system is mainly achieved by biodegradation. Biodegradable dissolved organic carbon (BDOC) and assimilable organic carbon (AOC) can be used as water quality indicators for biological stability of drinking water. In this study, we compared the change of BDOC and AOC with respect to pretreatment methods (i.e., ozone or peroxone). The oxidative pretreatment can transform the recalcitrant organic matter into readily biodegradable one (i.e., BDOC and AOC). We also investigated the differences of organic matter characteristics between BDOC and AOC. We observed the decreases in dissolved organic carbon (DOC) and the tryptophan-like fluorescence intensities. Liquid chromatographic - organic carbon detection (LC-OCD) analysis also showed the reduction of the low molecular weight (LMW) fraction (15% removed, less than 500 Da), which is known to be easily biodegradable, and the biopolymers, high molecular weight fractions (66%). Therefore, BDOC consists of a broad range of organic matter characteristics with respect to molecular weight. In AOC, low molecular weight organic matter and biopolymers fraction was reduced by 11 and 6%, respectively. It confirmed that biodegradation by microorganisms as the main removal mechanism in AOC, while BDOC has biodegradation by microorganism as well as the sorption effects from the sand. $O_3$ and $O_3+H_2O_2$ were compared with respect to biological stability and dissolved organic matter characteristics. BDOC and AOC were determined to be about 1.9 times for $O_3$ and about 1.4 times for $O_3+H_2O_2$. It was confirmed that $O_3$ enhanced the biodegradability by increasing LMW dissolved organic matter.

중추신경계통내 분포하는 Zinc의 조직화학적 동정 (Autometallography for Zinc Detection in the Central Nervous System)

  • 조승묵;;김성준;박승국;강태천;원무호
    • Applied Microscopy
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    • 제30권4호
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    • pp.347-355
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    • 2000
  • Zinc는 인체 내에 철$(Fe^{2+})$다음으로 많은 trace element로서 200여개 효소의 기능에 필수적일 뿐만 아니라 신경계통내에서는 신경조절물질로 작용한다. 뿐만 아니라 허혈, 간질 및 퇴행성 뇌질환의 주요 병리기전에도 관여되어 있다. 그러나 대부분의 Zinc는 단백질에 결합되어 (bound form)신경세포의 세포질 및 핵질내에 존재하고, 10% 이하의 Zinc는 이온상태(free form, $Zn^{2+}$)로 신경종말 (Zinc enriched terminal)에 있는데 , 후자만이 조직화학법으로 가시화된다. 최근까지 새로 개발된 조직화학법으로 Zinc enriched(ZEN)neurons의 분포에 관한 연구가 각광받고 있으나, 국내에서는 이에 대한 연구가 전무한 실정이다. 이에 본 연구자는 고전적인 조직화학법의 기본 원리를 소개하고, 렛드 중추신경계통내 Zinc의 분포를 광학 및 전자현미경으로 관찰하고자 하였다. 본 연구에서 사용된 실험동물은 Wistar 계통의 랫드(10주령)와 BALB/c 마우스이며, 마취제로는 Pentobarbital(50mg/kg)을 이용하였다. 생체 뇌조직내 이온상태의 $Zinc(Zn^{2+})$를 침전시키기 위하여 selenium(10mg/kg, i.p.)을 처리하였고, 1시간 후 3% Glutaraldehyde액으로 관류고정하여 동물을 희생시켰다. 뇌와 척수를 꺼내어 sucrose에 가라앉을때 까지 담가두었다가 Dry Ice를 이용하여 얼리고, Freezing microtome위에서 $30{\mu}m$두께의 절편을 작성하였다. 조직절편내 $Zn^{2+}$을 동정하기 위한 조직화학법으로는 autometallography (AMG) (Danscher, 1985)를 이용하였다. 광학현미경하에서 밝혀진 Zinc의 분포는 해마복합체를 비롯한 종뇌의 여러부위에 고농도로 분포하였고, 척수에는 중간정도, 그리고 소뇌 및 뇌간에는 매우 낮은 농도로 분포하였다. 전자현미경에서 관찰된 AMG염색과립(silver grains)은 신경종말에 있는 연접소포에 국한되었으며, 이러한 ZEN terminals은 주위 여러 신경세포의 돌기(dendrites)및 세포체 (soma)에 특이한 연접을 이루고 있었다. 즉 후각망울을 포함한 종뇌에서는 주로 비대칭연접 (asymmetrical synapses)이 관찰되었던 반면에, 척수에서는 대칭연접(symmetrical synapses)을 이루고 있었다. 이상의 결과를 종합하면, 신경종말내 연접소포에 Zinc를 함유하고 있는 소위 ZEN terminals은 중추신경계통에 광범위하게 분포하고 있으며 또한 신경부위에 따라 다양한 분포와 미세구조의 차이를 보였다. 이러한 사실은 중추신경계통내에서 Zinc가 영위하는 신경생물학적 기능이 신경부위에 따라 다양할 것임을 시사한다.

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Poxvirus 감염(感染)에 있어서의 Virus-숙주세포(宿主細胞)의 상호관계(相互關係) 1. Cowpox Virus-FL 세포계(細胞系)의 세포화학적(細胞化學的) Autoradiography 및 세포면역학적해석(細胞免疫學的解析) (Studies on Host-Virus Interaction of Poxviruses 1. Cytochemical, Autoradiographic and Immunocytological Analysis in Cowpox Virus-FL Cell System)

  • 김우호
    • 대한수의학회지
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    • 제15권1호
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    • pp.57-67
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    • 1975
  • The poxvirus group is considered to be a typical cytoplasmic inclusion forming virus. Every poxvirus has been reported to produce only one kind of inclusion in the infected tissues. A vague concept that inclusions of poxviruses are eosinophilic or acidophilic has prevailed. Although many papers and theories about the nature of the inclusion have been presented, most of them are not quite convincing on the point of the relations with virus multiplication, and an analysis of papers published showed that there seem to be many discrepancies in the descriptions of the nature of the poxvirus inclusions. Comparative studies on host-virus interaction with cowpox, orf, swinepox and fowlpox viruses which selected from each Group (I-IV) of poxviruses were performed from the morphological and virological standpoints. At first, in cowpox virus-FL cell system, as a comparative model, cytoplasmic inclusion, nucleic acid metabolism by autoradiography and detection of viral antigen by immunofluorescence were studied and obtained the results as follows: 1. The focus-like cytopathic effect (CPE) at early stage developed to entire culture at terminal stage of infection, and also the developing status of CPE was correlated to viral doses for inoculation. Two kinds of cytoplasmic inclusions which named A and B type were easily observed by Giemsa, hematoxylin-eosin (H & E) and May-Greenwald Giemsa (MGG) stainings in the infected cells. The B type inclusions were formed at early stage of infection and the A type inclusions were produced subsequently the B type formation. The B type which common type inclusion in poxviruses was a small compact or aggregate at early stage and developed to a large diffuse body at terminal stage of infection. On the other hand, the A type inclusion which depend upon the kind of virus was appeared as round and discrete shape, and its size and number was increased gradually during the culture period. It was characteristic to form distinct halos around the both types of inclusions in acid fixed, H & E stained preparations of infected cultures. The B type inclusion was always positive in Feulgen reaction and showed as DNA containing body but the A type inclusion was not. 2. In the relationship between inclusion and DNA metabolism of infected cells by the qualitative autoradiography using 3H-thymidine, the appearance of silver grains was coincided with B type inclusion but not with A type inclusion. This showed that the DNA synthesis was proceeded in all B type inclusions except those in the terminal stage with a diffuse form. This suggested that the B type inclusions are only sites of DNA synthesis and this was proceeded after the cell infection independently. The activity of DNA synthesis of the inclusions was nearly the same as that of the nucleic of normal cells and non-inclusion bearing cells. and non-inclusion bearing cells. Regardless of the size of the degree of DNA synthesis of the B type inclusion, inclusion bearing cells all showed remarkable suppression of nuclear DNA synthesis. 3. By the direct fluorescent antibody technique viral antigen in infected cells was detected. The B type inclusions have been proved to contain a great deal of viral antigen, whereas the basic substance of A type inclusion did not show antigenicity except the round edge. It was suggested that the round edge fluorescence might be caused by the glare of cytoplasmic viral antigen which pushed out and concentrated by the A type inclusion development. 4. Hemorrhagic red pock formations on chorioallantoic membrane of embryonated chicken egg had proved the characteristic of used viral strain. 5. By the above studies on the nature of two types of inclusions and the role they play in virus multiplication, it was concluded that the B type inclusion must be the site of the synthesis of viral DNA and protein as well as the site of the virus.

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