• 제목/요약/키워드: Phosphate compounds

검색결과 238건 처리시간 0.025초

Anti-inflammatory activity of 6-O-phospho-7-hydroxycoumarin in LPS-induced RAW 264.7 cells

  • Hong, Hyehyun;Park, Tae-Jin;Jang, Sungchan;Kim, Min-Seon;Park, Jin-Soo;Chi, Won-Jae;Kim, Seung-Young
    • Journal of Applied Biological Chemistry
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    • 제65권1호
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    • pp.33-41
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    • 2022
  • Esculetin (also known as 6, 7-dihydroxycoumarin) a type of coumarin, has been exhibited anti-inflammatory and anti-aging effects. Biorenovation is the microbe-mediated enhancement of biological efficacies and structurally diversified compounds relative to their substrate compounds. The production of different kinds of esculetin derivatives using Bacillus sp. JD3-7 and their effects on lipopolysaccharide (LPS)-triggered inflammatory response in RAW 26.7 cells were assessed. One of the biorenovation products, identified as esculetin 6-O-phosphate (ESP), at concentrations of 1.25, 2.5, and 5 μM inhibited the LPS-stimulated production of inflammation markers of nitric oxide synthase 2 and cyclooxygenase 2 as well as their respective enzymatic reaction products of nitric oxide and prostaglandin E2 in the order of increasing concentrations (1.25, 2.5, and 5 μM). Additionally, ESP treatment suppressed the LPS-stimulated secretion of pro-inflammatory cytokines of interleukin (IL)-1β, IL-6, and tumor necrosis factor- α. Furthermore, these anti-inflammatory effect of ESP was associated with the downregulation of mitogen-activated protein kinase signaling, that is, extracellular signal-regulated kinase, c-Jun NH2-terminal kinase, and p38 mitogen-activated protein kinase signaling pathways. This study would therefore provide interesting insights into the biorenovation-assisted generation of a novel anti-inflammatory compound. ESP may be used to develop treatments for inflammatory disorders.

효소법에 의한 액젓중의 ATP 관련물질 측정 (Enzymatic Method for Measuring ATP Related Compounds in Fish Sauces)

  • 조영제;임영선;김상무;최영준
    • 한국수산과학회지
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    • 제32권4호
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    • pp.385-390
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    • 1999
  • 액젓중의 ATP 관련물질의 정확한 분석방법을 확립하기 위하여 현재 사용되고 있는 HPLC법과 새로운 분석방법인 효소법을 비교$\cdot$검토한 결과는 다음과 같다. 1. HPLC 분석법에 의한 멸치 및 까나리육중의 ATP 관련물질총량은 각각 9.332$\mu$mo1/g 및 9.468$\mu$mo1/g이었고, 멸치 및 까나리 액젓중의 ATP 관련물질총량은 각각 3.989$\mu$mol/g 및 4.145$\mu$mol/g 으로 원료육의 $42.7\%$$43.8\%$였다. 그리고, Hx량은 ATP 관련물질총량의 $85\%$ 정도를 차지하였다. HPLC 법으로 ATP 관련물질을 분석시에 식염의 영향은, 식염농도가 $2.5\%$일 때, IMP, HxR 및 Hx 표준물질의 검출율은 $83.8\~86.4\%$였다. 그리고, IMP, HxR 및 Hx는 254nm에서, 그리고 uric acid는 290nm의 파장에서만 검출되었다. 2. 효소법으로 ATP관련물질 분석시에는 IMP, HxR 및 Hx 표준물질의 검출율이 거의 100\%$였으며, 식염의 영향은 없었다. 멸치 및 까나리 액젓중의 ATP 관련물질총량은 각각 8.942$\mu$mol/g 및 9.424$\mu$mol/g으로, 원료 멸치육 및 까나리육보다 약간 적었다. 효소법으로 분석한 멸치 및 까나리 액젓중의 요산량은 각각 4.357$\mu$mol/g 및 4.632$\mu$mol/으로, 총ATP관련물질의 $48.7\%$$49.2\%$를 차지하였다. 3. 이상의 결과로부터, 액젓중의 ATP 관련물질을 분석시에는 HPLC 법이 적당하지 못하며, ATP 관련물질을 이들 분해효소를 사용하여 인위적으로 요산으로 전부 분해시켜 측정하는 효소법으로 분석해야할 것이다.

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Exploring a zero food waste system for sustainable residential buildings in urban areas

  • Oh, Jeongik;Lee, Hyunjeong
    • Environmental Engineering Research
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    • 제23권1호
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    • pp.46-53
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    • 2018
  • This study explores the environmentally innovative and low-impact technology, a zero food waste system (ZFWS) that utilizes food waste and converts it into composts or biofuels and curtails carbon emissions. The ZFWS not just achieves food waste reductions but recycles food waste into fertilizer. Based on a fermentation-extinction technique using bio wood chips, the ZFWS was employed in a field experiment of the system installed in a large-scale apartment complex, and the performance of the system was examined. The on-site ZFWS consisted of three primary parts: 1) a food waste slot into which food waste was injected; 2) a fermentation-extinction reactor where food waste was mixed with bio wood chips made up of complex enzyme and aseptic wood chips; and 3) deodorization equipment in which an ultraviolet and ozone photolysis method was employed. The field experiment showed that food waste injected into the ZFWS was reduced by 94%. Overall microbial activity of the food waste in the fermentation-extinction reactor was measured using adenosine tri-phosphate (ATP), and the degradation rate of organic compounds, referred to as volatile solids, increased with ATP concentration. The by-products generated from ZFWS comply with the national standard for organic fertilizer.

$^{99m}Tc-Methylene$ Diphosphonate 골신티그램으로 관찰된 유선엽상 낭포육종 1예 (A Case of Cystosarcoma Phyllodes Evaluated by $^{99m}Tc-Methylene$ Diphosphonate Bone Scintigraphy)

  • 최지영;김기우;신동진;목차수;이강욱;최대섭;김재평;차경수
    • 대한핵의학회지
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    • 제23권1호
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    • pp.95-99
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    • 1989
  • The $^{99m}Tc-phosphate$ compounds, of which methylene diphosphonate is most widely used, were originally introduced as bone scanning agents intended primarily to detect metastatic bone deposit. They may also accumulate in extraskeletal sites including breast. Recently we had the opportunity to observe one case of cystosarcoma phyllodes that was confirmed by tissue biopsy and demonstrated diffuse extraskeletal uptake of $^{99m}Tc-MDP$ in the breast on $^{99m}Tc-MDP$ bone scan in the breast on $^{99m}Tc-MDP$ bone scan. So we present this case with the brief review of literatures.

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Development of Analytical Method of Biotin in Complex Drugs and Dietary Supplements Using HPLC-UV

  • Huh, Yoon-Young;Kang, Yun-Pyo;Choi, Yong-Seok;Park, Jeong-Hill;Kwon, Sung-Won
    • Journal of Pharmaceutical Investigation
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    • 제41권1호
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    • pp.25-30
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    • 2011
  • Recently, Korean Food and Drug Administration (KFDA) has focused on developing quality control guidelines for all commercial products in Korea to enforce regulations, improve the quality control, and protect consumers by developing prevalently used and efficient analytical tools to determine and quantify target compounds. Because the Korean Pharmacopeia (KP) presents microbiological assays for biotin, which is laborious and time-consuming, this study is focused on applying HPLC-UV to detect and quantify biotin in complex drugs and dietary supplements like multi-vitamin. Biotin in complex drugs was extracted from methanol and analyzed using mobile phase with 10 mM potassium phosphate (monobasic, pH=3.0) in distilled water and acetonitrile. Gradient condition was used to successfully detect and quantify biotin within 20 minutes. Validation result for linearity was significant that average $r^2$ was 0.999 (n=3) and its relative standard deviation (RSD) was 0.0578% which was less than 2%. Using this method, quantification of biotin in complex drugs was completed successfully and recovery tests were finished that recovery percentage greater than 95% with relative standard deviation less than 2%.

세포 현탁배양에 의한 현호색 알칼로이드의 생산 (Studies on Production of Alkaloid by Plant Cell Culture of Corydalis remota)

  • 장정인;지형준;신승원
    • 생약학회지
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    • 제27권4호
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    • pp.289-294
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    • 1996
  • In previous paper, we described the induced callus of Corydalis remota contains a significant amount of alkaloids. This study describes an optimal condition to maximize alkaloid production. The suspension cultures maintained alkaloid production ability after fifth subculture and a small amount of alkaloid seemed to be released out of cells. The yields of alkaloid by cultured cells was varied depending on the concentrations of NAA, carbon sources and phosphate ion and depending on the vitamin combinations and concentrations. Biosynthetic precursor and an elicitor treatment also affected the total alkaloid yield of the cultures. The optimal conditions for alkaloid production were as follows: 1) MS basal salt containing 30 g/l of glucose, 1.0 mg/l of NAA, and vitamins of LS medium should be used. 2) The culture should be treated with tyrosine 20 mg/l, and yeast extract 1.5 ml/l after the culture reached a stationary phase of growth. Five alkaloids were isolated from the cultures and they were characterized. The spectral data unambiguously revealed that the isolated compounds were dihydrosanguinarine, protopine. tetrahydropalmatine, allocyptopine and ambinine, respectively.

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리튬이온전지에서 새로운 양극재료를 위한 금속인산화물 (Lithium Transition Metal Phosphate Cathodes for Advanced Lithium Batteries)

  • 정성윤
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2003년도 추계학술발표강연 및 논문개요집
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    • pp.26-26
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    • 2003
  • Lithium storage electrodes for rechargeable batteries require mixed electronic-ionic conduction at the particle scale in order to deliver desired energy density and power density characteristics at the device level. Recently, lithium transition metal phosphates of olivine and Nasicon structure type have become of great interest as storage cathodes for rechargeable lithium batteries due to their high energy density, low raw materials cost, environmental friendliness, and safety. However, the transport properties of this family of compounds, and especially the electronic conductivity, have not generally been adequate for practical applications. Recent work in the model olivine LiFePO$_4$, showed that control of cation stoichiometry and aliovalent doping results in electronic conductivity exceeding 10$^{-2}$ S/cm, in contrast to ~10$^{-9}$ S/cm for high purity undoped LiFePO$_4$. The increase in conductivity combined with particle size refinement upon doping allows current rates of >6 A/g to be utilized while retaining a majority of the ion storage capacity. These properties are of much practical interest for high power applications such as hybrid electric vehicles. The defect mechanism controlling electronic conductivity, and understanding of the microscopic mechanism of lithiation and delithiation obtained from combined electrochemical and microanalytical techniques, will be discussed

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CO Fermentation of Eubacterium limosum KIST612

  • Chang, In-Seop;Kim, Do-Hee;Kim, Byung-Hong;Shin, Pyong-Kyun;Sung, Ha-Chin;Lovitt, Robert W.
    • Journal of Microbiology and Biotechnology
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    • 제8권2호
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    • pp.134-140
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    • 1998
  • Eubacterium limosum KIST612 was cultured on phosphate-buffered basal medium (PBBM) with carbon monoxide (CO) as the sole energy and carbon source. The initial growth rate of this strain was approximately 0.17~0.25 $h^-1$/ and the $K_s$ value for dissolved substrate was 0.14 mM. CO was limiting during the growth of the bacterium when the CO partial pressure was less than 0.6 atm (0.5 mM dissolved CO). The bacterial growth rate was reduced in the presence of acetate. When sufficient CO was supplied using a gas-lift reactor, the acetate concentration went up to 90 mM in 116 h. Based on these findings, it is suggested that a pressurized reactor be used to develop a process to convert CO-rich gases into multi-carbon compounds.

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Zidovudine의 In Vitro 세포내 대사물의 측정을 통한 약효 검색법 개발 (In Vitro Determination of Intracellular Phosphorylated Metabolites of Antiviral Pyrimidine Analogs)

  • 한규원;김길수
    • Journal of Pharmaceutical Investigation
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    • 제32권4호
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    • pp.285-290
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    • 2002
  • In order to assay the efficacy of newly synthesized antiviral compounds, in vitro studies of their active intracellular phosphorylated metabolites were established as compared with Zidovudine (ZDV). Antiviral base analogs require intracellular phosphorylation prior to the inhibition of HIV replication. Therefore, antiviral drugs concentrations in plasma have not reflected any direct relationship with activity or toxicity. A method has been developed to measure the concentration of total phosphorylated metabolites inside peripheral blood mononuclear cells using modified commercial radioimmunoassay (RIA). ZDV 5'-monophosphate was synthesized and used as a procedural control for RIA modification. PBMCs were isolated from whole blood and incubated with ZDV for 20 h to allow metabolic phosphorylation. Viable cells were extracted overnight with 60% methanol. After evaporation, the extract was reconstituted in Tris buffer. Samples were split into two fractions, one of which was treated with alkaline phosphatase (AP) to liberate phosphate groups. Concentrations of phosphorylated metabolites were determined by subtracting thε concentration of non-AP-treated fraction from that of the treated fraction. Recovery of phosphorylated ZDV from cell extracts was approximately 90%, and reproducibility was acceptable (coefficients of variation <15% for concentrations${\geq}$0.25 ng/mL). Intracellular concentrations $(0.135{\sim}5.019\;nmole/10^6\;cells)$ followed a nonlinear dose-response relationship over the range $0.015{\sim}2.996mM$ extracellular ZDV, with concentration-dependant saturation.

Underappreciated Resource Phosphorus : Implications in Agronomy

  • Kim, Hye-Jin;Ryu, Jin-Hee;Park, Mi-Suk;Chung, Doug-Young
    • 한국토양비료학회지
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    • 제44권1호
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    • pp.78-83
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    • 2011
  • Phosphorus (P) which is required by all living plants and animals is an important input for economic crop and livestock production systems. Phosphorus containing compounds are essential for photosynthesis in plants, for energy transformations and for the activity of some hormones in both plants and animals. Loss of soil P to water can occur in particulate forms of P with eroded surface soil and in soluble forms in runoff, soil interflow, and deep leaching. The excessive losses of P from agricultural systems can degrade water quality of surface waters, resulting in accelerating eutrophication. Thus, P is often the limiting element and its control is of prime importance in reducing the accelerated eutrophication of surface waters. However, reserves of phosphate begin to run out, the impacts are likely be immense in terms of rising food prices, growing food insecurity. This paper reviews underappreciated resource as a key component of fertilizers and one of controversial pollutant in terms agronomy and environment.