• 제목/요약/키워드: Catechol derivatives

Search Result 28, Processing Time 0.234 seconds

Synthesis and in Vitro Stability Evaluations of 5-(2'-(N-(1-methyl-3'-carbamylphenyl)-n-propyl))aminoethyl)-8-hydroxy-4-methylcarbostyril Derivatives (5-(2'-(N-(1-메틸-3-(3'-카바밀페닐)-n-프로필))아미노에틸)-8-히드록시-4- 메틸카보스티릴 유도체의 합성 및 안정성 연구)

  • 윤성화;박규순
    • YAKHAK HOEJI
    • /
    • v.39 no.5
    • /
    • pp.506-510
    • /
    • 1995
  • The 5-(2'-(N-(1-methyl-3'-carbamylphenyl)-n-propyl))aminoethyl)-8- hydroxy-4-methyl-carbostyril derivatives which have isoelectronic and isosteric structural similarity with dobutamine without having the Catechol-O-Methyltransferase (COMT) vulnerable m-hydroxy group were synthesized via 7 synthetic steps, and their stabilities in phosphate buffer solution(pH=7.4), human blood. 80% human plasma and 20% rat liver homogenate were determined in vitro condition.

  • PDF

Characterization of the Quinoline-Degrading Bacterium Pseudomonas sp. NFQ-1 Isolated from Dead Coal Pit Areas (폐광지역에서 분리한 quinoline 분해 세균인 Pseudomonas sp. NFQ-1의 특성연구)

  • 윤경하;황선영;권오성;오계헌
    • KSBB Journal
    • /
    • v.18 no.3
    • /
    • pp.174-179
    • /
    • 2003
  • The bacterium NFQ-1 capable of utilizing quinoline (2,3-benzopyridine) as the sole source of carbon, nitrogen and energy was enriched and isolated from soil samples of dead coal pit areas. Strain NFQ-1 was identified as Pseudomonas nitroreducens NFQ-1 by BIOLOG system, and assigned to Pseudomonas sp. NFO-1. Pseudomonas sp. NFQ-1 was used with the concentration range of 1 to 10 mM quinoline. Strain NFQ-1 could degrade 2.5 mM quinoline within 9 hours of incubation. Initial pH 8.0 in the culture was reduced to 6.8, and eventually 7.0 as the incubation was proceeding. 2-Hydroxyquinoline, the first intermediate of the degradative pathway, accumulated transiently in the growth medium. The highest concentration of quinoline (15 mM) in this work inhibited cell growth and quinoline degradation. Pseudomonas sp. NFQ-1 was able to utilize various quinoline derivatives and aromatic compounds including 2-hydroxyquinoline, p-comaric acid, benzoic acid, p-cresol, p-hydroxybenzoate, protocatechuic acid, and catechol. The specific activity of catechol oxygenases was determined to approximately 184.7 unit/㎎ for catechol 1.2-dioxygenase and 33.19 unit/㎎ for catechol 2,3-dioxygenase, respectively. As the result, it showed that strain NFQ-1 degraded quinoline via mainly orthp-cleavage pathway, and in partial meta-cleavage pathway.

Flame Retardants Containing Cyclophosphazene Ring for ABS (Cyclophosphazene 고리를 갖는 ABS용 난연제)

  • Shin, Young-Jae;Shin, Youn-Rok;Park, Soo-Jin;Shin, Jae-Sup
    • Polymer(Korea)
    • /
    • v.31 no.4
    • /
    • pp.273-277
    • /
    • 2007
  • Cyclophosphazene derivatives were synthesized in order to use as a non-halogen flame retardant for ABS. Chlorocyclophosphazene was reacted with phenol, catechol, aniline, 1,2-diaminobenzene respectively, and each product was characterized by UL94 and LOI test for ABS resin. The physical properties of the sample containing these flame retardants were also characterized. The derivative synthesized from catechol showed best flame retardancy, and the derivative from phenol exhibited the flame retardancy in which the synergic effect was shown with novolac.

Beyond Mussel-inspired Polydopamice Coatings: Derivatives of Catecholamines (카테콜아민의 화학치환: 홍합 모방 코팅 물질인 도파민을 넘어서)

  • Lee, Haesung A.;LEE, Haeshin
    • Journal of Adhesion and Interface
    • /
    • v.19 no.3
    • /
    • pp.123-128
    • /
    • 2018
  • As a mussel-inspired surface independent modification chemistry using catecholamine family molecule was suggested on 2007, there are tremendous efforts being done by researchers from around the world to adjust and develop diverse applications using catecholamine family. Accordingly, we will discuss about the novel method to extend catecholamine applications, which is through the functional group substitution of catecholamine molecules.

Cloning and Overexpression of Methylcatechol 2, 3-Dioxygenase Gene from Toluene-Degrading Pseudomonas putida mt-2(pWWO)

  • Lee, Jeong-Rai;Min, Kyung-Rak;Kim, Young-Soo
    • Archives of Pharmacal Research
    • /
    • v.15 no.4
    • /
    • pp.360-364
    • /
    • 1992
  • Methylcatechol 2, 3-dioxygenase encoded in pWWO megaplasmid of Pseudomonas putida mt-2 has been cloned and overexpressed in Escherichia coli. This enzyme gene has been localized inside 2. 3-kb XhoI fragment derived from the pWWO megaplasmid. Analysis of enzyme activity and SDS-PAGE showed that the cloned methylcatechol 2, 3-dioxygenase gene in E. coli was about 100 fold overexpressed compared with the parental gene in P. putida mt-2 (pWWO). The cloned enzyme exhibited higher ring-fission activity to catechol than catechol derivatives including 3-methylcatechol, 4-methylcatechol, and 4-chlorocatechol.

  • PDF

Research Trend about the Development of White Biotech-Based Aromatic Compounds (화이트바이오텍기반 방향족화합물 개발에 관한 연구동향)

  • Lee, Jin-Ho
    • Microbiology and Biotechnology Letters
    • /
    • v.37 no.4
    • /
    • pp.306-315
    • /
    • 2009
  • Due to the depleting petroleum reserve, recurring energy crisis, and global warming, it is necessary to study the development of white biotech-based aromatic chemical feedstock from renewable biomass for replacing petroleum-based one. In particular, the production of aromatic intermediates and derivatives in biosynthetic pathway of aromatic amino acids from glucose might be replaced by the production of petrochemical-based aromatic chemical feedstock including benzene-derived aromatic compounds. In this review, I briefly described the production technology for hydroquinone, catechol, adipic acid, shikimic acid, gallic acid, pyrogallol, vanillin, p-hydroxycinnamic acid, p-hydroxystyrene, p-hydroxybenzoic acid, indigo, and indole 3-acetic acid using metabolic engineering, bioconversion, and chemical process. The problems and possible solutions regarding development of production technology for competitive white biotech-based aromatic compounds were also discussed.

Reaction of Thianthrene Cation Radical Perchlorate with Thioxanthene. Synthesis of Thioxanthene Derivatives (티안트렌 양이온 자유라디칼과 염소산염과 티오크잔틴의 반응. 티오크잔틴 유도체의 합성)

  • Kyongtae Kim
    • Journal of the Korean Chemical Society
    • /
    • v.24 no.1
    • /
    • pp.34-43
    • /
    • 1980
  • The reaction of thianthrene cation radical perchlorate with thioxanthene in acetonitrile gave thianthrene and dark reddish thioxanthylium ion instead of thioxanthene cation radical. Addition of aromatic nucleophiles such as anisole, aniline, N,N-diethylaniline, catechol, ethylbenzene, to the above mixture yielded the corresponding thioxanthenes with substituent at 9 position. Reactions with dibenzo-18-crown-6-ether, diphenylmercury, and triphenylphosphine gave similar products. However, reactions with aromatics with electron-withdrawing group were either too slow or inert to such a reaction.

  • PDF

Simultaneous Derivative Spectrophotometric Determination of Levodopa and Carbidopa in Pharmaceutical Preparations

  • Madrakian, T.;Afkhami, A.;Borazjani, M.;Bahram, M.
    • Bulletin of the Korean Chemical Society
    • /
    • v.25 no.12
    • /
    • pp.1764-1768
    • /
    • 2004
  • The present work reports on the investigations based on the interaction of sodium hydroxide with catechol derivatives. The first derivative spectra allowed the simultaneous determination of levodopa and carbidopa. The calibration graph was constructed from the first derivative signals by measuring $^1D$ at 350 nm for standard samples containing between 3 and 30 mg $L^{-1}$ of levodopa and at 305 nm for standard samples containing between 3 and 80 mg $L^{-1}$ of carbidopa. This method offers the advantages of simplicity, rapidity, selectivity and higher sensitivity than most of the existing spectophotometric methods.

Comparison of Glucuronidating Activity of Two Human cDNAs, UDPGTh1 and UDPGTh2

  • Kim, Soon-Sun;Owens, Ida-S.;Sheen, Yhun-Yhong
    • Archives of Pharmacal Research
    • /
    • v.20 no.5
    • /
    • pp.454-458
    • /
    • 1997
  • Two human liver UDP-glucuronosyltransferase cDNA clones, HLUG25 and UDPGTh2 were previously shown to encode isozymes active in the glucuronidation of hyodeoxycholic acid (HDCA) and certain estrogen derivatives (e.g., estriol and 3,4-catechol estrogens), respectively. in this study we have found that the UDPGTh2-encoded isoform (UDPGTh2) and HLUG25-encoded isoform (UDPGThl) have parallel aglycone specificities. When expressed in COS 1 cells, each isoform metabolized three types of dihydroxy- or trihydroxy-substituted ring structures, including the 3,4-catechol estrogen (4-hydroxyestrone), estriol, 17-epiestriol, and HDCA, but the UDPGTh2 isozyme was 100-fold more efficient than UDPGTh1. UDPGTh1 and UDPGTh2 were 86% identical overall (76 differences out of 528 amino acids), including 55 differences in the first 300 amino acids of the amino terminus, a domain which conferred the substrate specificity. The data indicated that a high level of conservation in the amino terminus was not required for the preservation of substrate selectivity. Analysis of glucuronidation activity encoded by UDPGTh1/UDPGTh2 chimeric cDNA constructed at their common restriction sites, Sac I (codon 297), Nco I (codon 385), and Hha I (codon 469), showed that nine amino acids between residues 385 and 469 were important for catalytic efficiency, suggesting that this region represented a domain which was critical for the catalysis but distinct from that responsible for aglycone-selection. These data indicate that UDPGTh2 is a primary isoform responsible for the detoxification of the bile salt intermediate as well as the active estrogen intermediates.

  • PDF