• 제목/요약/키워드: phase 1 metabolism

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Simultaneous determination of sildenafil and its active metabolite in human plasma using LC/MS/MS

  • Ji, Hye-Young;Kim, Sook-Jin;Lee, Hong-Il;Lee, Seung-Seok;Lee, Hye-Sook
    • 대한약학회:학술대회논문집
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    • 대한약학회 2002년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2
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    • pp.402.1-402.1
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    • 2002
  • The LC/MS/MS method for the simultaneous determination of sildenafil and its active metabolite N-demethylsildenafil in human plama was developed. Sildenafil. its active metabolite and the internal standard. DA-8159 were extracted form human plasma by liquid-liquid partitioning. A reverse-phase HPLC separation was performed on Luna phenylhexyl column with the mixture of acetonitrile-5 mM ammonium formate (55:45. v/v) as mobile phase. (omitted)

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한약재의 대사 및 독성의 기전과 예방 (Mechanisms and Prevention for Metabolism and Toxicity of Korean Herbal-Medicine)

  • 박영철;김종봉;이선동
    • 대한예방한의학회지
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    • 제12권1호
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    • pp.73-87
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    • 2008
  • In recent years, there has been a globally increasing application of herbal medicines and dietary supplements to treat various chronic diseases and to promote health. However, there are increasing clinical reports on the organ toxicities associated with consumption of herbal medicines. In general, most xenobiotics are metabolized by Phase I reaction(the main enzyme : cytochrome P450) and Phase II reaction. However, reactive oxygen species, free radicals and electrophils are produced inevitably during xenobiotics metabolism. These toxic species and metabolites are increased whenever the endogenous substances and enzymes for Phase II reaction not available. In addition, herbal-drug interactions are pharmacokinetic, with most actually or theoretically affecting the metabolism of the affected product by way of the cytochrome P450 enzymes. This review updated the knowledge on metabolic activation of herbal components and its clinical and toxicological implications. Also, the possible way for preventing the side-effects by herbal-medicine use was suggested.

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흰쥐에 있어서 Toluene 대사에 미치는 주.야 시차의 영향 (Effect of Circadian Rhythms on the Toluene Metabolism in Rats)

  • 류종일;윤종국;신중규
    • 대한의생명과학회지
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    • 제5권1호
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    • pp.67-74
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    • 1999
  • 주ㆍ야 (day, night phase) 시차에 따른 toluene 대사를 검토할 목적으로 흰쥐에 50% toluene (olive oil과 toluene의 동량혼합액)을 체중 100 g 당 0.2 ml씩 밤 12시, 낮 12시에 각각 투여한 다음 각각 8시간 후에 처치하여, 다음과 같은 결과를 얻었다. 간 microsomal aniline hydroxylase 활성은 night phase군이 day phase군 보다 대조군 및 toluene 투여군 모두 높게 나타났으며, cytosol의 benzylalcohol dehydrogenase (BADH) 활성은 night phase군과 day phase군간에 별다른 차이를 볼 수 없었으나, toluene 투여시에는 night phase군이 day phase군 보다 효소의 활성도가 오히려 억제되었다. 또한 간 조직의 benzaldehyde dehydrogenase (BALDH) 활성은 night phase군이 day phase군 보다 다소 높게 나타나는 경향을 보였으며, toluene 투여시에는 night phase군에서는 대조군 보다 오히려 감소되었으나 day phase 군에서는 높게 나타나는 경향을 보였다. 그리고 in vitro 시험에서 benzylalcohol 및 benzaldehyde가 BADH 및 BALDH 활성을 억제시킴이 관찰되었다. 요 중 hippuric acid 함량은 대조군 및 toluene 투여군 모두 night phase군과 day phase군간에는 별다른 차이를 볼 수가 없었다. 한편 toluene 투여로 인한 체중 당간 무게 및 혈청 xanthine oxidase활성 증가율은 night phase군이 day phase군 보다 높게 나타났다. 이상 실험결과를 종합해 볼 때 요 중 hippuric acid함량이 주ㆍ야 시차에 따라 별다른 차이가 없는데도 불구하고 toluene으로부터 benzylalcohol 및 benzaldehyde 생성률이 day phase군 보다 night phase군이 높게 나타남으로서 toluene 대사산물에 의한 간 손상 정도가 day phase군 보다 night phase군이 높게 나타난 것으로 사료되어 진다.

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Improving Mycoplasma ovipneumoniae culture medium by a comparative transcriptome method

  • Wang, Xiaohui;Zhang, Wenguang;Hao, Yongqing
    • Journal of Veterinary Science
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    • 제21권2호
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    • pp.30.1-30.11
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    • 2020
  • Mycoplasma ovipneumoniae (Mo) is difficult to culture, resulting in many difficulties in related research and application. Since nucleotide metabolism is a basic metabolism affects growth, this study conducted a "point-to-point" comparison of the corresponding growth phases between the Mo NM151 strain and the Mycoplasma mycoides subsp. capri (Mmc) PG3 strain. The results showed that the largest difference in nucleotide metabolism was found in the stationary phase. Nucleotide synthesis in PG3 was mostly de novo, while nucleotide synthesis in NM151 was primarily based on salvage synthesis. Compared with PG3, the missing reactions of NM151 referred to the synthesis of deoxythymine monophosphate. We proposed and validated a culture medium with added serine to fill this gap and prolong the stationary phase of NM151. This solved the problem of the fast death of Mo, which is significant for related research and application.

RNA Metabolism in T Lymphocytes

  • Jin Ouk Choi;Jeong Hyeon Ham;Soo Seok Hwang
    • IMMUNE NETWORK
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    • 제22권5호
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    • pp.39.1-39.18
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    • 2022
  • RNA metabolism plays a central role in regulating of T cell-mediated immunity. RNA processing, modifications, and regulations of RNA decay influence the tight and rapid regulation of gene expression during T cell phase transition. Thymic selection, quiescence maintenance, activation, differentiation, and effector functions of T cells are dependent on selective RNA modulations. Recent technical improvements have unveiled the complex crosstalk between RNAs and T cells. Moreover, resting T cells contain large amounts of untranslated mRNAs, implying that the regulation of RNA metabolism might be a key step in controlling gene expression. Considering the immunological significance of T cells for disease treatment, an understanding of RNA metabolism in T cells could provide new directions in harnessing T cells for therapeutic implications.

Identfication of Phase I and Phase II Metabolites of Hesperetin in Rat Liver Microsomes by Liquid Chromatography-Electrospray Ionization-Tandem Mass Spectrometry

  • Kim, Un-Yong;Han, Sang-Beom;Kwon, Oh-Seung;Yoo, Hye-Hyun
    • Mass Spectrometry Letters
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    • 제2권1호
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    • pp.20-23
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    • 2011
  • The purpose of this study is to investigate the in vitro metabolism of hesperetin, a bioflavonoid. Hesperetin was incubated with rat liver microsomes in the presence of NADPH and UDP-glucuronic acid for 30 min. The reaction mixture was analyzed by liquid chromatography-ion trap mass spectrometer and the chemical structures of hesperetin metabolites were characterzed based on their MS/MS spectra. As a result, a total of five metabolites were detected in rat liver microsomes. The metabolites were identified as a de-methylated metabolite (eriodictyol), two hesperetin glucuronides, and two eriodictyol glucuronides.

Glycogen Metabolism in Vibrio vulnificus Affected by malP and malQ

  • Han, Ah-Reum;Lee, Yeon-Ju;Wang, Tianshi;Kim, Jung-Wan
    • 한국미생물·생명공학회지
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    • 제46권1호
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    • pp.29-39
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    • 2018
  • Vibrio vulnificus needs various responsive mechanisms to survive and transmit successfully in alternative niches of human and marine environments, and to ensure the acquisition of steady energy supply to facilitate such unique life style. The bacterium had genetic constitution very different from that of Escherichia coli regarding metabolism of glycogen, a major energy reserve. V. vulnificus accumulated more glycogen than other bacteria and at various levels according to culture medium and carbon source supplied in excess. Glycogen was accumulated to the highest level in Luria-Bertani (3.08 mg/mg protein) and heart infusion (4.30 mg/mg protein) complex media supplemented with 1% (w/v) maltodextrin at 3 h into the stationary phase. Regarding effect of carbon source, more glycogen was accumulated when maltodextrin (2.34 mg/mg protein) was added than when glucose or maltose (0.78.1-14 mg/mg protein) was added as an excessive carbon source to M9 minimal medium, suggesting that maltodextrin metabolism might affect glycogen metabolism very closely. These results were supported by the analysis using the malP (encoding a maltodextrin phosphorylase) and malQ (encoding a 4-${\alpha}$-glucanotransferase) mutants, which accumulated much less glycogen than wild type when either glucose or maltodextrin was supplied as an excessive carbon source, but at different levels (3.1-80.3% of wild type glycogen). Therefore, multiple pathways for glycogen metabolism were likely to function in V. vulnificus and that responding to maltodextrin might be more efficient in synthesizing glycogen. All of the glycogen samples from 3 V. vulnificus strains under various conditions showed a narrow side chain length distribution with short chains (G4-G6) as major ones. Not only the comparatively large accumulation volume but also the structure of glycogen in V. vulnificus, compared to other bacteria, may explain durability of the bacterium in external environment.

Function of Global Regulator CodY in Bacillus thuringiensis BMB171 by Comparative Proteomic Analysis

  • Qi, Mingxia;Mei, Fei;Wang, Hui;Sun, Ming;Wang, Gejiao;Yu, Ziniu;Je, Yeonho;Li, Mingshun
    • Journal of Microbiology and Biotechnology
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    • 제25권2호
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    • pp.152-161
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    • 2015
  • CodY is a highly conserved protein in low G+C gram-positive bacteria that regulates genes involved in sporulation and stationary-phase adaptation. Bacillus thuringiensis is a grampositive bacterium that forms spores and parasporal crystals during the stationary phase. To our knowledge, the regulatory mechanism of CodY in B. thuringiensis is unknown. To study the function of CodY protein in B. thuringiensis, BMB171codY- was constructed in a BMB171 strain. A shuttle vector containing the ORF of cry1Ac10 was transformed into BMB171 and BMB171codY-, named BMB171cry1Ac and BMB171codY-cry1Ac, respectively. Some morphological and physiological changes of codY mutant BMB171codY-cry1Ac were observed. A comparative proteomic analysis was conducted for both BMB171codY-cry1Ac and BMB171cry1Ac through two-dimensional gel electrophoresis and MALDI-TOF-MS/MS analysis. The results showed that the proteins regulated by CodY are involved in microbial metabolism, including branched-chain amino acid metabolism, carbohydrate metabolism, fatty acid metabolism, and energy metabolism. Furthermore, we found CodY to be involved in sporulation, biosynthesis of poly-β-hydroxybutyrate, growth, genetic competence, and translation. According to the analysis of differentially expressed proteins, and physiological characterization of the codY mutant, we performed bacterial one-hybrid and electrophoretic mobility shift assay experiments and confirmed the direct regulation of genes by CodY, specifically those involved in metabolism of branched-chain amino acids, ribosomal recycling factor FRR, and the late competence protein ComER. Our data establish the foundation for in-depth study of the regulation of CodY in B. thuringiensis, and also offer a potential biocatalyst for functions of CodY in other bacteria.

Review on Application of Biosystem Modeling: Introducing 3 Model-based Approaches in Studying Ca Metabolism

  • Lee, Wang-Hee;Cho, Byoung-Kwan
    • Journal of Biosystems Engineering
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    • 제37권4호
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    • pp.258-264
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    • 2012
  • Purpose: This review aims at introducing 3 modeling approaches classified into 3 categories based on the purpose (estimation or prediction), structure (linear or non-linear) and phase (steady-state or dynamic-state); 1) statistical approaches, 2) kinetic modeling and 3) mechanistic modeling. We hope that this review can be a useful guide in the model-based approach of calcium metabolism as well as illustrates an application of engineering tools in studying biosystems. Background: The meaning of biosystems has been expanded, including agricultural/food system as well as biological systems like genes, cells and metabolisms. This expansion has required a useful tool for assessing the biosystems and modeling has arisen as a method that satisfies the current inquiry. To suit for the flow of the era, examining the system which is a little bit far from the traditional biosystems may be interesting issue, which can enlarge our insights and provide new ideas for prospective biosystem-researches. Herein, calcium metabolic models reviewed as an example of application of modeling approaches into the biosystems. Review: Calcium is an essential nutrient widely involved in animal and human metabolism including bone mineralization and signaling pathways. For this reason, the calcium metabolic system has been studied in various research fields of academia and industries. To study calcium metabolism, model-based system analyses have been utilized according to the purpose, subject characteristics, metabolic sites of interest, and experimental design. Either individual metabolic pathways or a whole homeostasis has been modeled in a number of studies.

토양 미생물의 2-hydroxypyridine 대사에 미치는 기아상태와 부식산의 영향 (Influence of Starvation and Humic Acid on Soil Microbial 2- Hydroxypyridine Metabolism)

  • 황선형
    • 한국토양환경학회지
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    • 제4권1호
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    • pp.13-23
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    • 1999
  • 본 연구에서는 기아상태에 있는 토양 미생물, Arthrobacter crystallopoietes cell의 2-hydroxypyridine대사능력의 변화 와 이 미생물의 대사능력에 대한 부식산의 영향에 대해 다루어졌다. 기질 2-HP에 대한 대수기 세포(exponential phase cell)는 적응기 세포(lag phase cell)와 비교할 때 기아상태에 있어서도 더 높은 2-HP대사능력을 보여 기아상태 3일 후 대수기 세포에서 2-HP반감기는 14시간으로 나타난 반면 적응기 세포의 경우 46.5시간으로 나타났다. 부식산은 기아상태에서 이 미생물 세포의 유도효소, 2-HP monooxygenase의 안정성을 높여주어 기아시간 2일 후 표준조건에서 기아상태에 있던 미생물의 효소활성이 처음의 1.5%로 남아 있는 반면 0.2% 부식산 용액에서 기아상태로 있던 미생물의 효소활성은 12%까지 남아 있었다. 기아시간 14일 후 까지도 부식산 용액 속에서 기아상태로 있던 이 미생물 세포의 2-HP대사능력은 표준 조건의 것에 비해 월등히 높아 2-HP반감기를 비교해 보면 표준 조건의 경우 43시간인 반면 부식산의 경우 1.25시간으로 나타났다.

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