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Results 1 to 25 of 20218

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Characterization of Ti-ZSM-5 Prepared by Isomorphous Substitution of B-ZSM-5 with TiCI4 and Its Performance in the Hydroxylation of PhenolJIAN GAO; MIN LIU; XIANGSHENG WANG et al.Industrial & engineering chemistry research. 2010, Vol 49, Num 5, pp 2194-2199, issn 0888-5885, 6 p.Article

Tertiary hydroxylation using fluorine: activation of the C-H bondROZEN, S; BRAND, M; KOL, M et al.Journal of the American Chemical Society. 1989, Vol 111, Num 21, pp 8325-8326, issn 0002-7863, 2 p.Article

Biotransformation of adrenosterone by filamentous fungus, Cunninghamella elegansMUHAMMAD IQBAL CHOUDHARY; KHAN, Naik T; MUSHARRAF, Syed G et al.Steroids. 2007, Vol 72, Num 14, pp 923-929, issn 0039-128X, 7 p.Article

Regioselective synthesis of 1,3,5-adamantanetriol from 1,3-adamantanediol using Kitasatospora cellsMITSUKURA, Koichi; YAMANAKA, Naoki; YOSHIDA, Toyokazu et al.Biotechnology letters. 2012, Vol 34, Num 9, pp 1741-1744, issn 0141-5492, 4 p.Article

Microbial transformation of 3β-acetoxypregna-5,16-diene-20-one by Penicillium citrinumGAO, Jin-Ming; SHEN, Jian-Wei; WANG, Jing-Yi et al.Steroids. 2011, Vol 76, Num 1-2, pp 43-47, issn 0039-128X, 5 p.Article

Microbial transformation of 5α, 6α-epoxy-3β-hydroxy-16-pregnen-20-one by Trichoderma virideLIU, Hong-Min; WENZHONG GE; HEPING LI et al.Steroids. 2007, Vol 72, Num 6-7, pp 509-513, issn 0039-128X, 5 p.Article

Microbial transformation of androst-4-ene-3,17-dione by Beauveria bassianaZHIGANG XIONG; QI WEI; HANMEI CHEN et al.Steroids. 2006, Vol 71, Num 11-12, pp 979-983, issn 0039-128X, 5 p.Article

Comments on Reaction mechanism of flavin-dependent hydroxylation: evolution of a non-imitable enzyme by C. M. Visser ― Research note on the possible occurrence of dioxetanes and other cyclic peroxides in flavin and pteridine-mediated hydroxylations ― ReplyMAGGER, I. X; VISSER, C. M.European journal of biochemistry (Print). 1984, Vol 142, Num 1, pp 199-202, issn 0014-2956Article

Phenol Hydroxylation over Cu-Containing LDHs and Their Calcined Forms: Profound Cobivalent Metal InfluenceANTONYRAJ, Churchil A; GANDHI, Mohini; KANNAN, S et al.Industrial & engineering chemistry research. 2010, Vol 49, Num 13, pp 6020-6026, issn 0888-5885, 7 p.Article

Biotransformation of dehydroepiandrosterone (DHEA) with Penicillium griseopurpureum Smith and Penicillium glabrum (Wehmer) WestlingHUANG, Li-Hua; JUAN LI; GONG XU et al.Steroids. 2010, Vol 75, Num 13-14, pp 1039-1046, issn 0039-128X, 8 p.Article

Steroid hydroxylation by whetzelinia sclerotiorum, Phanerochaete chrysosporium and Mucor plumbeusLAMM, Andrew S; CHEN, Avril R. M; REYNOLDS, William F et al.Steroids. 2007, Vol 72, Num 9-10, pp 713-722, issn 0039-128X, 10 p.Article

Synthesis of 7α-hydroxy-dehydroepiandrosterone and 7β-hydroxy-dehydroepiandrosteroneHEPING LI; LIU, Hong-Min; WENZHONG GE et al.Steroids. 2005, Vol 70, Num 14, pp 970-973, issn 0039-128X, 4 p.Article

Hydroxylation mechanisms in herbicide metabolismCOLE, D. J.Pesticide science. 1986, Vol 17, Num 1, pp 70-71, issn 0031-613XArticle

3'-hydroxylation of 4'-methoxyisoflavones by Fusarium oxysporum f. lycopersiciMACKENBROCK, K; BARZ, W.Zeitschrift fur Naturforschung. Section C, Biosciences. 1983, Vol 38, Num 9-10, pp 708-710, issn 0341-0382Article

25-Hydroxylation of vitamin D3 : relation to circulating vitamin D3 under various input conditionsHEANEY, Robert P; ARMAS, Laura A. G; SHARY, Judith R et al.The American journal of clinical nutrition. 2008, Vol 87, Num 6, pp 1738-1742, issn 0002-9165, 5 p.Article

Use of bioconversion for the preparation of [4-14C]-labeled 7α- and 7β-hydroxylated derivatives of dehydroepiandrosterone and epiandrosteroneCHALBOT, Sonia; TRAP, Catherine; MONIN, Jean-Paul et al.Steroids. 2002, Vol 67, Num 13-14, pp 1121-1127, issn 0039-128X, 7 p.Article

In-vitro and in-vivo metabolism of the presynaptic dopamine agonist 3-PPP to a catecholic analogue in ratsROLLEMA, H; MASTEBROEK, D; WIKSTROM, H et al.Journal of pharmacy and pharmacology. 1985, Vol 37, Num 5, pp 314-319, issn 0022-3573Article

Formation of ε-hydroxycaproate and ε-aminocaproate from N-nitrosohexamethyleneimine: evidence that microsomal α-hydroxylation of cyclic nitrosamines may not always involve the insertion of molecular oxygen into the substrateHECKER, L. I; TONDEUR, Y; FARRELLY, J. G et al.Chemico-biological interactions. 1984, Vol 49, Num 1-2, pp 235-248, issn 0009-2797Article

Microbial hydroxylation of ML-236B (compactin) studies on microorganisms capable of 3β-hydroxylation of ML-236BSERIZAWA, N; SERIZAWA, S; NAKAGAWA, K et al.Journal of antibiotics (Tokyo. 1968). 1983, Vol 36, Num 7, pp 887-891, issn 0021-8820Article

An unusual copper promoted hydroxylationKOZIOL, A. E; PALENIK, R. C; PALENIK, G. J et al.Journal of the Chemical Society. Chemical communications. 1989, Num 10, pp 650-651, issn 0022-4936, 2 p.Article

Metabolism of biphenyl by Aspergillus toxicarius: induction of hydroxylating activity and accumulation of water-soluble conjugatesGOLBECK, J. H; ALBAUGH, S. A; RADMER, R et al.Journal of bacteriology. 1983, Vol 156, Num 1, pp 49-57, issn 0021-9193Article


Enzymatic basis of the debrisoquine/sparteine-type genetic polymorphism of drug oxidation: characterization of bufuralol 1'-hydroxylation in liver microsomes of in vivo phenotyped carriers of the genetic deficiencyDAYER, P; KRONBACH, T; EICHELBAUM, M et al.Biochemical pharmacology. 1987, Vol 36, Num 23, pp 4145-4152, issn 0006-2952Article

Specific 12β-hydroxylation of cinobufagin by filamentous fungiMIN YE; GUIQIN QU; HONGZHU GUO et al.Applied and environmental microbiology (Print). 2004, Vol 70, Num 6, pp 3521-3527, issn 0099-2240, 7 p.Article

Steroid catabolism in marine and freshwater fish : Steroid Metabolism in Marine OrganismsJAMES, Margaret O.Journal of steroid biochemistry and molecular biology. 2011, Vol 127, Num 3-5, pp 167-175, issn 0960-0760, 9 p.Article

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