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| 1 | A new and efficient method for the synthesis of bromosilanes from hydrosilanes using Br3 CCOOEt/PdCI2 as the eatalyst显示文摘 | Srithanakit P Chavasiri W | 2011 | Tetrahedron Letters2011,52,19: | 1 |
| 2 | Reaction intermediates in the oxidation of saturated hydrocarbons by Gif-type reactions and mechanistic studies on their formation显示文摘 | BARTON D H R BEVIERE S D CHAVASIRI W | 1992 | J Am Chem Soc1992,114,: | 1 |
| 3 | Catalysic oxidative cleavage of terminal olefins bychromium( m ) stearate显示文摘 | JARUPINTHUSOPHON S THONG IN U CHAVASIRI W | 2007 | J of Molecular Catalysis A: Chemical2007,270,12: | 1 |
| 4 | N-acetylcysteine inhibits proliferation, adhesion, migration and invasion of human bladder cancer cells 显示文摘 | SUPABPHOL A MUANGMAN V CHAVASIRI W et el | 2009 | J Med Assoc Thai2009,92,9: | 1 |
| 5 | Synthesis of epicatechin glucosides by a cyclodextrin glycosyltransferase显示文摘 | Aramsangtienchai P Chavasiri W Ito K | 2011 | Molecular Catalysis B:Enzymatic2011,73,: | 1 |
| 6 | Cl3CCN/PPh3 and CBr4/PPh3: two efficient reagent systems for the preparation of N-heteroaromatic halides显示文摘 | Kijrungphaiboon W Chantarasriwong O Chavasiri W | 2012 | Tetrahedron Lett2012,53,: | 1 |
| 7 | A practical and efficient method for the preparation of sulfonamides utilizing C13CCN/PPh3 显示文摘 | Oraphin Chantarasriwong Doo Ok Jangb Warinthorn Chavasiri | 2006 | Tetrahedron Letters2006,47,42: | 1 |
| 8 | Taraxery 1 cis-p-hydroxy cinnamate, a novel taraxery l from Rhizophora apiculata 显示文摘 | Kokplo U Chavasiri W Chittawong V | 1990 | J Nat Prod1990,53,4: | 1 |
| 9 | Taraxeryl cis-p-hydroxycinnamate,a novel traxeryl from Rhizophora apiculata显示文摘 | Kokplo U Chavasiri W Chittawong V | 1990 | Journal of Natural Products1990,53,4: | 1 |
| 10 | A Limonoid from xylocarpus granatum 显示文摘 | Kokpol U Chavasiri W Tip-pyang S etal | 1996 | Phytochemistry1996,41,: | 1 |
| 11 | Epoxidation ofalkenes catalyzed by cobalt(11) calix pyrrole显示文摘 | Buranaprasertsuk P Tangsakol Y Chavasiri W | 2007 | Catal Commun2007,8,3: | 1 |
| 12 | A Limonoid from Xylocarpus granatum 显示文摘 | Kokpol U Chavasiri W Simpson J | 1996 | Phytochemistry1996,41,3: | 1 |
| 13 | Bactericidal effects and time-kill studies of the essential oil from the fruits of Zanthoxylum limonella on multi-drug resistant bacteria显示文摘 | Tangjitjaroenkun J Chavasiri W Thunyaharn S | 2012 | J Essent Oil Res2012,24,4: | 1 |
| 14 | Taraxeryl cis-hydroxyeinnamate, a novel taraxeryl from Rhizophora apiculata 显示文摘 | Kokpol U Chavasiri W Chittawong V | 1990 | J Nat Prod1990,53,: | 1 |
| 15 | Latetreatment of nonunion of odontoid fracture显示文摘 | Chavasiri C | 2006 | Techniques in Orthopaedics2006,21,2: | 1 |
| 16 | Synthesis and biological evaluation of isoflavone analogues from Dalbergia oliveri显示文摘 | Deesamer S KokpoI U Chavasiri W | 2007 | Tetrahedron2007,63,12: | 1 |
| 17 | Antimicrobial activity from Piper sarmentosum Roxb. against rice pathogenic bacteria and fungi显示文摘In vitro antimicrobial activity of the dichloromethane and methanol extracts of Piper sarmentosum leaves,fruits,stems,and the essential oil obtained from the fresh leaves together with their constituents were investigated against two rice pathogenic fungi:Rhizoctonia solani(sheath blight causal agent)and Bipolaris oryzae(brown spot causal agent),and two rice pathogenic bacteria:Xanthomonas oryzae pv.oryzae(Xoo)(bacterial leaf blight causal agent)and pv.oryzicola(Xoc)(bacterial leaf streak causal agent).Among them,the dichloromethane extracts of the leaves and fruits,and the essential oil showed significantly high potential anti-rice microbial activity.Based on bioassay-guided fractionation of the dichloromethane leave and fruit extracts,myristicin,sarmentine,brachystamide B,brachyamide B,and piperonal were isolated.Moreover,the major constituent of its oil was also myristicin.Myristicin and brachyamide B revealed the highest potent inhibition against R.solani and B.oryzae(half maximal inhibitory concentration(IC_(50))of 0.69 and 0.12 mmol L^(–1)),respectively.Moreover,brachyamide B and piperonal displayed most antibacterial activity against Xoo(MIC/MBC 7.62/1.90 mmol L^(–1))and Xoc(MIC/MBC 2.59/20.75 mmol L^(–1)),respectively.Additionally,the essential oil also exhibited the antimicrobial activity against all tested rice pathogenic bacteria and fungi.These compounds and the oil were first evaluated for anti-rice pathogenic microbial activity. | Pragatsawat Chanprapai Warinthorn Chavasiri | 2017 | Journal of Integrative Agriculture2017,16,11: | 1 |
| 18 | Kinetic studies on rice bran protein hydrolysis in subcritical water显示文摘 | Sasithorn Sunphorka Warinthorn Chavasiri Yoshito Oshima Somkiat Ngamprasertsith | 2012 | The Journal of Supercritical Fluids2012,,: | 1 |
| 19 | Late treatment of nonunion of odontoid fracture显示文摘 | Chavasiri C | 2006 | Techniques in Orthopaedics2006,21,2: | 1 |
| 20 | Antimicrobial,herbicidal and antifeedant activities of mansonone E from the heartwoods of Mansonia gagei Drumm显示文摘In vitro biological activities including anti-phytopathogenic fungi, antibacterial, antifeedant and herbicidal activities of the extracts from the heartwoods of Mansonia gagei Drumm. were evaluated. The dichloromethane(DCM) extract displayed antifungal activity against four plant pathogenic fungi(Alternaria porri, Colletotrichum gloeosporioides, Fusarium oxysporum and Phytophthora parasitica) higher than the methanolic(Me OH) extract. The separation of the DCM extract using bioassay guided antifungal activity against P. parasitica led to the isolation of mansorins A, B, and C, mansonones C, E, G and H. Among isolated compounds, mansonone E displayed the highest antifungal activity against P. parasitica, followed by mansonone C, mansorin B and mansonone G. This potent compound revealed the same minimum inhibitory concentrations(MIC) of 31 μg mL^(–1) against C. gloeosporioides and P. parasitica, and minimum fungicidal concentration(MFC) of 31 and 125 μg mL^(–1), respectively. Moreover, mansonone E exhibited highly significant antibacterial activity against both Xanthomonas oryzae pv. oryzae(Xoo) and X. oryzae pv. oryzicola(Xoc) with MIC and minimum bactericidal concentration(MBC) as 7.8 and >500 μg mL^(–1), respectively. This compound furthermore could inhibit the feed of Spodoptera litura with 45.9% antifeedant and significantly herbicidal activity reduced the shoot and root growth of Brassica chinensis, Oryza sativa, Mimosa pigra and Echinochlooa crus-galli. Mansonone E has potential as a new natural pesticide for agricultural plant pathogen management. | Rachsawan Mongkol Warinthorn Chavasiri | 2016 | Journal of Integrative Agriculture2016,15,12: | 0 |