• Title/Summary/Keyword: Nitrophenol

Search Result 138, Processing Time 0.028 seconds

Nitrosation of U.S. E.P.A. Classified Eleven Priority Pollutant Phenols (미환경청 분류 11종 상위 환경오염 페놀들의 나이트로소화)

  • Chung, Yongsoon;Lee, Seonghoon;Motomizu, Shoji
    • Analytical Science and Technology
    • /
    • v.17 no.5
    • /
    • pp.393-400
    • /
    • 2004
  • Nitrosation of phenol (POH) was studied by adding hydrochloric acid and sodium nitrite to phenol solution with reaction temperature and time change. The optimum condition of nitrosation was found from the effects of hydrochloric acid and sodium nitrite concentration, reaction temperature, and reaction time changes on the production of nitrosophenol (POHNO). As a result, it was found that the optimum conditions were $5.0{\times}10^{-4}{\sim}2.0{\times}10^{-3}M$ range of $NO{_2}^-$ concentration, more than 0.10 M of HCl concentration, temperature of $80^{\circ}C$, and 3 hrs. of reaction time. In this condition, 10 U.S. E.P.A. classified priority environmental pollutant, phenols, were nitrosated. Nitrosated phenols were: POH, 2-Chlorophenol (2ClPOH), 2,4-diChlorophenol (2ClPOH), 2,4-dimethylphenol (24diMPOH), and 4-Chloro -3-methylphenol (4Cl3MPOH), and a small part of 2-nitrophenol (2NPOH). The ${\lambda}_{max}$ values of nitrosated phenols in acidic solution were around 300 nm, and those in basic solution were around 400 nm. Molar absorptivities (${\varepsilon}$) at the 400 nm of the nitrosated phenols in the basic solution were 1.5~2.0 times larger than those at 300 nm in acidic solution. It was also found by Capillary-HPLC chromatograms of the nitrosated phenol solutions that the production of the nitrosophenols were interfered by the excess concentration of nitrite (more than $3.0{\times}10^{-3}M$).

Comparison of In Vitro Cell Transformation Assay Using Murine Fibroblasts and Human Keratinocytes

  • Ahn, Jun-Ho;Park, Sue-Nie;Yum, Yung-Na;Kim, Ji-Young;Lee, Michael
    • Toxicological Research
    • /
    • v.24 no.1
    • /
    • pp.37-44
    • /
    • 2008
  • The in vitro cell transformation assays (CTA) were performed using BALB/3T3 murine fibroblasts and HaCaT human keratinocytes in order to evaluate concordance between both in vitro CTAs and carcinogenicity with compounds differing in their genotoxic and carcinogenic potential. Six test articles were evaluated, two each from three classes of compounds: genotoxic carcinogens (2-amino-5-nitrophenol and 4-nitroquinoline-N-oxide), genotoxic noncarcinogens (8-hydroxyquinoline and benzyl alcohol), and nongenotoxic carcinogens (methyl carbamate and N-nitrosodiphenylamine). Any foci of size $\geq$2 mm regardless of invasiveness and piling was scored as positive in CTA with BALB/3T3. As expected, four carcinogens regardless of their genotoxicity had positive outcomes in two-stage CTA using BALB/3T3 cells. However, of the two genotoxic noncarcinogens, benzyl alcohol was positive CTA finding. We concluded that, of the 6 chemicals tested, the sensitivity for BALB/3T3 system was reasonably high, being 100%. The respective specificity for BALB/3T3 assay was 50%. We also investigated the correlation between results of BALB/3T3 assay and results from HaCaT assay in order to develop a reliable human cell transformation assay. However, evaluation of staining at later time points beyond the confluency stage did not yield further assessable data because most of HaCaT cells were detached after $2{\sim}3$ days of confluency. Thus, after test article treatment, HaCaT cells were split before massive cell death began. In this modified protocol for this HaCaT system, growing attached colonies were counted instead of transformed foci 3 weeks since last subculture. Compared to BALB/3T3 assay, HaCaT assay showed moderate low sensitivity and high specificity. Despite these differences in specificity and sensitivity, both cell systems did exhibit same good concordance between in vitro CTA and rodent carcinogenicity findings (overall 83% concordant results). At present the major weakness of these in vitro CTA is lack of validation for regulatory acceptance and use. Thus, more controlled studies will be needed in order to be better able to assess and quantitatively estimate in vitro CTA data.

Biological Effects of Fibronectin Type III 10 domain on Human Osteoblast-like cells (Fibronectin type III 10 도메인이 조골양 세포에 미치는 생물학적 영향)

  • Lee, Chang-Seok;Jang, Jun-Hyeog;Kim, Tae-Il;Lee, Yong-Moo;Rhyu, In-Chul;Chung, Chong-Pyoung;Han, Soo-Boo;Ku, Young
    • Journal of Periodontal and Implant Science
    • /
    • v.34 no.2
    • /
    • pp.293-301
    • /
    • 2004
  • 1. 연구 목적 Fibronectin은 세포외기질의 주요성분인 거대 당단백질로서, 조골세포의 부착과 증식 및 이동능에 중요한 역할을 담당한다고 알려져 있다. 이러한 fibronectin의 조골세포에 대한 영향을 실제 임상에 적용하기 위해서, 전체 fibronectin 단백질을 사용하는 것은 면역학적으로나 경제적으로 많은 단점을 안고 있어서, 유효한 반응단위만을 추출하여 활용하는 것이 바람직한 방법으로 알려져 있다. 이 연구의 목적은 세포부착에 주로 관여하는 fibronectin type III분절 중 10번 도메인이 조골양 세포에 미치는 영향을 전체 fibronectin단백질과 fibronectin type III 7-10 도메인 분절과 비교, 관찰하는 것이다. 2. 연구 방법 사람의 fibronectin을 기초로 한 적절한 primer로서, 유전자 재조합법을 이용하여 fibronectin type III 10 도메인과 fibronectin type III 7-10 도메인 분절을 얻었으며, 전체 fibronectin분자는 상용으로 준비하여 24-well 세포배양 용기에 도포하였다. 배양된 조골양세포(HOS cell)를 $1x10^5$ cells/well의 농도로 각 well에 분주하여 $37^{\circ}C$에서 1시간 배양을 하였다. Cell adhesion assay를 실시하기 위해 10% formaldehyde로 고정시키고 1% Crystal Violet으로 염색하여 광학현미경을 관찰 후 2% SDS를 처리하여 microplate reader기를 이용하여 570nm에서 혼탁정도를 측정하였다. 음성대조군으로는 RPMI 용액을 사용하였다. 동일한 방법을 이용하여 준비된 $35mm^2배양접시에 HOS cell을 $37^{\circ}C$에서 4일간 배양 후, MTS assay를 이용하여 세포 증식도에 미치는 영향을 관찰하였다. 6일째 405nm에서 활성화된 세포에서 분비된 p-nitrophenol을 이용한 alkaline phosphatase activity를 측정하였다. 3. 결과 및 고찰 Fibronectin type III 10 도메인은 HOS cell에 대한 생물학적인 효과면에서, 전체 fibronectin 분자 및 fibronectin type III 7-10 분절과 통계적으로 유사한 세포부착도를 보여주었으며, 세포증식도와 alkaline phosphatse 활성도면에서도 큰 차이가 나타나지 않았다. 이상의 연구결과로 볼 때, fibronectin type III 10 도메인이 조골세포의 증식을 목적으로 사용하는 생체재료의 표면개질 부착물질로 응용할 수 있는 가능성이 있다고 하겠다.

Fabrication and Catalysis of $SiO_2$-Coated Ag@Au Nanoboxes

  • Lee, Jae-Won;Jang, Du-Jeon
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2013.02a
    • /
    • pp.588-588
    • /
    • 2013
  • Nanoscale noble-metals have attracted enormous attention from researchers in various fields of study because of their unusual optical properties as well as novel chemical properties. They have possible uses in diverse applications such as devices, transistors, optoelectronics, information storages, and energy converters. It is well-known that nanoparticles of noble-metals such as silver and gold show strong absorption bands in the visible region due to their surface-plasmon oscillation modes of conductive electrons. Silver nanocubes stand out from various types of Silver nanostructures (e.g., spheres, rods, bars, belts, and wires) due to their superior performance in a range of applications involvinglocalized surface plasmon resonance, surface-enhanced Raman scattering, and biosensing. In addition, extensive efforts have been devoted to the investigation of Gold-based nanocomposites to achieve high catalytic performances and utilization efficiencies. Furthermore, as the catalytic reactivity of Silver nanostructures depends highly on their morphology, hollow Gold nanoparticles having void interiors may offer additional catalytic advantages due to their increased surface areas. Especially, hollow nanospheres possess structurally tunable features such as shell thickness, interior cavity size, and chemical composition, leading to relatively high surface areas, low densities, and reduced costs compared with their solid counterparts. Thus, hollow-structured noblemetal nanoparticles can be applied to nanometer-sized chemical reactors, efficient catalysts, energy-storage media, and small containers to encapsulate multi-functional active materials. Silver nanocubes dispersed in water have been transformed into Ag@Au nanoboxes, which show highly enhanced catalytic properties, by adding $HAuCl_4$. By using this concept, $SiO_2$-coated Ag@Au nanoboxes have been synthesized via galvanic replacement of $SiO_2$-coated Ag nanocubes. They have lower catalytic ability but more stability than Ag@Au nanoboxes do. Thus, they could be recycled. $SiO_2$-coated Ag@Au nanoboxes have been found to catalyze the degradation of 4-nitrophenol efficiently in the presence of $NaBH_4$. By changing the amount of the added noble metal salt to control the molar ratio Au to Ag, we could tune the catalytic properties of the nanostructures in the reduction of the dyes. The catalytic ability of $SiO_2$-coated Ag@Au nanoboxes has been found to be much more efficient than $SiO_2$-coated Ag nanocubes. Catalytic performances were affected noteworthily by the metals, sizes, and shapes of noble-metal nanostructures.

  • PDF

Bioconversion of Ginsenoside Rb1 to the Pharmaceutical Ginsenoside Compound K using Aspergillus usamii KCTC 6954 (Aspergillus usamii KCTC 6954에 의한 ginsenoside Rb1로 부터 의약용 소재인 compound K로의 생물학적 전환)

  • Jo, Mi Na;Jung, Ji En;Yoon, Hyun Joo;Chang, Kyung Hoon;Jee, Hee Sook;Kim, Kee-Tae;Paik, Hyun-Dong
    • Microbiology and Biotechnology Letters
    • /
    • v.42 no.4
    • /
    • pp.347-353
    • /
    • 2014
  • ${\beta}$-Glucosidase from Aspergillus usamii KCTC 6954 was used to convert ginsenoside Rb1 to compound K, which has a high bio-functional activity. The enzymatic activities during culturing for 15 days were determined using ${\rho}$-nitrophenyl-${\beta}$-glucopyranoside. The growth rate of the strain and the enzymatic activity were maximized after 6 days (IU; $175.93{\mu}M\;ml^{-1}\;min^{-1}$). The activities were maximized at $60^{\circ}C$ in pH 6.0. During culturing, Rb1 was converted to Rd after 9 d and then finally converted to compound K at 15 d. In the enzymatic reaction, Rb1 was converted to the ginsenoside Rd within 1 h of reaction time and compound K could be detected after 8 h. As a result, this study demonstrates that $Rb1{\rightarrow}Rd{\rightarrow}F2{\rightarrow}$compound K is the main metabolic pathway catalyzed by ${\beta}$-glucosidase and that ${\beta}$-glucosidase is a feasible option for the development of specific bioconversion processes to obtain minor ginsenosides such as Rd and compound K.

Electrochemical determination of chloramphenicol using a glassy carbon electrode modified with dendrite-like Fe3O4 nanoparticles

  • Giribabu, Krishnan;Jang, Sung-Chan;Haldorai, Yuvaraj;Rethinasabapathy, Muruganantham;Oh, Seo Yeong;Rengaraj, Arunkumar;Han, Young-Kyu;Cho, Wan-Seob;Roh, Changhyun;Huh, Yun Suk
    • Carbon letters
    • /
    • v.23
    • /
    • pp.38-47
    • /
    • 2017
  • In this study, magnetite ($Fe_3O_4$) nanoparticles were electrochemically synthesized in an aqueous electrolyte at a given potential of -1.3 V for 180 s. Scanning electron microscopy revealed that dendrite-like $Fe_3O_4$ nanoparticles with a mean size of < 80 nm were electrodeposited on a glassy carbon electrode (GCE). The $Fe_3O_4/GCE$ was utilized for sensing chloramphenicol (CAP) by cyclic voltammetry and square wave voltammetry. A reduction peak of CAP at the $Fe_3O_4/GCE$ was observed at 0.62 V, whereas the uncoated GCE exhibited a very small response compared to that of the $Fe_3O_4/GCE$. The electrocatalytic ability of $Fe_3O_4$ was mainly attributed to the formation of Fe(VI) during the anodic scan, and its reduction to Fe(III) on the cathodic scan facilitated the sensing of CAP. The effects of pH and scan rate were measured to determine the optimum conditions at which the $Fe_3O_4/GCE$ exhibited the highest sensitivity with a lower detection limit. The reduction current for CAP was proportional to its concentration under optimized conditions in a range of $0.09-47{\mu}M$ with a correlation coefficient of 0.9919 and a limit of detection of $0.09{\mu}M$ (S/N=3). Moreover, the fabricated sensor exhibited anti-interference ability towards 4-nitrophenol, thiamphenicol, and 4-nitrobenzamide. The developed electrochemical sensor is a cost effective, reliable, and straightforward approach for the electrochemical determination of CAP in real time applications.

Analysis of THMs and PCBs by Indirect Photometric Method in High Performance Liquid Chromatography (고성능 액체 크로마토그래피의 간접 분광광도법에 의한 THM과 PCB의 분석)

  • Chung, Yongsoon;Lee, Kangwoo
    • Journal of the Korean Chemical Society
    • /
    • v.39 no.12
    • /
    • pp.918-924
    • /
    • 1995
  • THMs and PCBs were separated and analysed with elution on Novapak ODS or $\mu-Bondapak$ phenyl column by an eluent containing p-nitrophenol (p-NP). THMs studied were CHCl3, CHBrCl2, CHBr2Cl, and CHBr3, and PCBs used were Aroclor 1221, 1242, 1248, $\alpha-$ and $\beta-BHC.$ It was thought that the retention on the stationary phase and sensitivities of the samples are related to the interaction between the sample and stationary phase or p-NP. THMs were separated completely on the ODS column by elution with MeOH-water (30 : 70) containing $1.0{\times}10^{-4}$ M p-NP and some of PCBs were separated on the phenyl column by elution with $CH_3CN$-water(50 : 50) containing $1.0{\times}10^{-4}$ M p-NP. Detection limits of THMs were from $1.0{\times}10^{-4}$ g to $1.0{\times}10^{-6}$ g. Aroclors were $2{\times}10^{-6}$ g, and $\alpha-$ and $\beta-BHC$ were $2{\times}10^{-4}$ g and $1.0{\times}10^{-4}$ g respectively.

  • PDF

Isolation and Identification of Agarose-degrading Bacterium, Pseudoalteromonas sp. GNUM08122 (아가로오스 분해세균인 Pseudoalteromonas sp. GNUM08122 분리 및 동정)

  • Kim, Yu-Na;Jeong, Yeon-Kyu;Kim, Mu-Chan;Kim, Sung-Bae;Chang, Yong-Keun;Chi, Won-Jae;Hong, Soon-Kwang;Kim, Chang-Joon
    • Microbiology and Biotechnology Letters
    • /
    • v.40 no.1
    • /
    • pp.1-9
    • /
    • 2012
  • This study's aim was to isolate microorganisms producing agarase with a high activity, with possible applications in improving the performance of the pretreatment processes for bioethanol production. Marine algaes were collected from the south coast of Korea, from which three kinds of microorganisms were isolated. After a 4-day culture of these strains at $25^{\circ}C$, crude enzymes were obtained from culture supernatant or cell-free extract by ammonium sulfate precipitation and membrane dialysis. Agarase activity was observed in these crude enzymes. Notably higher specific activity was observed in the crude enzyme obtained from the culture supernatant rather than that from the cell-free extract. This indicates that a secreted enzyme has a much greater activity than a cellular enzyme. Crude enzymes from the GNUM08122 strain were inferred to have ${\alpha}$-agarase activity because release of p-nitrophenol was observed, possibly due to the cleavage of p-nitrophenyl-${\alpha}$-D-galactopyranoside. The 16S rRNA sequence of GNUM08122 showed a close relationship to Pseudoalteromonas issachenkonii KMM 3549 (99.8%) and Pseudoalteromonas tetraodonis IMA 14160 (99.7%), which led us to assign it to the genus Pseudoalteromonas. Biochemical and physiological study revealed that this strain can grow well at $40^{\circ}C$ under a wide range of pH (pH 4~8) in high-salt conditions (10% NaCl).