نتایج جستجو برای: xanthine oxidase inhibitory

تعداد نتایج: 178062  

Journal: :Zeitschrift fur Naturforschung. C, Journal of biosciences 1993
I Schneider E F Elstner

Both phenylbutazon and mofebutazon inhibit oxidative fragmentation of the methionine derivative, 2-keto-4-methylthio-butyric acid (KMB) by xanthine oxidase--or diaphorase mediated OH radical production. Differentiation of the two non-steroidal antiinflammatory drugs is possible by means of determining oxygen reduction by xanthine oxidase or diaphorase in the presence of the naphthoquinone, jugl...

Journal: :Bioscience Biotechnology Research Communications 2020

Journal: :The Open Conference Proceedings Journal 2014

Journal: :iranian journal of pharmaceutical research 0
shivraj hariram nile dept. molecular biotechnology, college of life & environmental science konkuk university, 263, achasan-ro gwangjin-gu, seoul 143-701, korea tel 82.2450.3945,3739 fax 82. 2. 3436. 5439 se won park dept. molecular biotechnology, college of life & environmental science konkuk university, 263, achasan-ro gwangjin-gu, seoul 143-701, korea

the hptlc analysis, antioxidant, and antigout activity of asparagus racemosus, withania somnifera, vitex negundo, plumbago zeylanica, butea monosperma and tephrosia purpurea extracts were investigated. the chemical fingerprinting were carried out by high performance thin layer chromatography (hptlc), antioxidant activity by abts, dpph, frap radical scavenging assays, and antiogout activity by c...

The HPTLC analysis, antioxidant, and antigout activity of Asparagus racemosus, Withania somnifera, Vitex negundo, Plumbago zeylanica, Butea monosperma and Tephrosia purpurea extracts were investigated. The chemical fingerprinting were carried out by high performance thin layer chromatography (HPTLC), antioxidant activity by ABTS, DPPH, FRAP radical scavenging assays, and antiogout activity by c...

The HPTLC analysis, antioxidant, and antigout activity of Asparagus racemosus, Withania somnifera, Vitex negundo, Plumbago zeylanica, Butea monosperma and Tephrosia purpurea extracts were investigated. The chemical fingerprinting were carried out by high performance thin layer chromatography (HPTLC), antioxidant activity by ABTS, DPPH, FRAP radical scavenging assays, and antiogout activity by c...

2016
Neha Kapoor Sanjai Saxena

Xanthine oxidase is a key enzyme responsible for hyperuricemia, a pre-disposing factor for Gout and oxidative stress-related diseases. Only two clinically approved xanthine oxidase inhibitors Allopurinol and Febuxostat are currently used for treatment of hyperuricemia. However, owing to their side effects there is a need for new non-purine-based selective inhibitors of xanthine oxidase. In the ...

Journal: :Molecules 2009
Chin-Hui Chen Hsiu-Chen Chan Yi-Tsu Chu Hsin-Yi Ho Pi-Yu Chen Tzong-Huei Lee Ching-Kuo Lee

Natural products have the potential to be developed into new drugs for the treatment of various diseases. The aim of the present study was to screen the antioxidant activities of some common edible fruits, garden plants and medicinal plants indigenous to Taiwan. This was performed by assessing the activities of lipoxygenase, xanthine oxidase and tyrosinase following incubation with extracts fro...

2013
Muthuswamy Umamaheswari Arumugam Madeswaran Kuppusamy Asokkumar

Allopurinol, the xanthine oxidase inhibitor, is the only drug available for the treatment of gout. We examined the xanthine oxidase inhibitory activity of some commercially available flavonoids such asepigallocatechin, acacatechin, myricetin, naringenin, daidzein and glycitein by virtual screening and in-vitro studies. The interacting residues within the complex model and their contact types we...

Journal: :The Biochemical journal 1996
O Ullrich W G Siems K Lehmann H Huser W Ehrlich T Grune

The formation of poly(ADP-ribose) in primary cultures of rabbit synovial fibroblasts after treatment with active oxygen released by xanthine/xanthine oxidase is inhibited by addition of 1 and 10 microM 4-hydroxy-2,3-trans-nonenal (HNE). The endogenous formation of HNE by the xanthine/xanthine oxidase system is not responsible for the inhibitory effect of the aldehyde, owing to the low accumulat...

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