P
Patoomratana Tuchinda
Researcher at Mahidol University
Publications - 180
Citations - 3222
Patoomratana Tuchinda is an academic researcher from Mahidol University. The author has contributed to research in topics: Nucleophilic addition & Enantioselective synthesis. The author has an hindex of 28, co-authored 175 publications receiving 2783 citations. Previous affiliations of Patoomratana Tuchinda include University of Illinois at Chicago.
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Journal ArticleDOI
Cleistanthin A induces apoptosis and suppresses motility of colorectal cancer cells.
Kedchin Jearawuttanakul,Phattharachanok Khumkhrong,Kanoknetr Suksen,Somrudee Reabroi,Bamroong Munyoo,Patoomratana Tuchinda,Suparerk Borwornpinyo,Nittaya Boonmuen,Arthit Chairoungdua +8 more
TL;DR: Investigation of the molecular mechanisms that underpin the anticancer effects of cleistanthin A in two CRC cell lines suggest that CA has the potential to develop as an effective and novel therapeutic drug for CRC patients.
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Novel Cytotoxic Ring‐A seco‐Cycloartane Triterpenes from Gardenia coronaria and G. sootepensis.
Gloria L. Silva,Roberto R. Gil,Baoliang Cui,HB Chai,T. Santisuk,Ekaruth Srisook,Vichai Reutrakul,Patoomratana Tuchinda,S. Sophasan,S. Sujarit,S. Upatham,Sean M. Lynn,John E. Farthing,Shu-Wei Yang,Jane Lewis,Melanie J. O'Neill,Norman R. Farnsworth,Geoffrey A. Cordell,J. M. Pezzuto,A. D. Kinghorn +19 more
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Protective role of n-trans-feruloyltyramine against beta-amyloid-peptide–induced neurotoxicity, bax, caspase and ROS in rat-cultured cortical neurons
Wipawan Thangnipon,Nirut Suwanna,Narisorn Kitiyanant,Rungtip Soi-ampornkul,Bamroong Munyoo,Patoomratana Tuchinda,Saksit Nobsathian +6 more
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Marcanine G, a new cytotoxic 1-azaanthraquinone from the stem bark of Goniothalamus marcanii Craib
Pongpol Thanuphol,Yukihiro Asami,Kazuro Shiomi,Ariyaphong Wongnoppavich,Patoomratana Tuchinda,Noppamas Soonthornchareonnon +5 more
TL;DR: The ethanolic extract from the stem bark of Goniothalamus marcanii Craib was shown in preliminary brine shrimp lethality data having good cytotoxic activity and the assessment of cytotoxicity was established on an SRB assay using doxorubicin as a positive control.
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Chitosan-functionalised poly(2-hydroxyethyl methacrylate) core-shell microgels as drug delivery carriers: salicylic acid loading and release.
TL;DR: The evaluation of chitosan-functionalised poly(2-hydroxyethyl methacrylate) core-shell microgels as drug delivery carriers showed that the encapsulation efficiency increased as drug-to-microgel ratio was increased and could be useful as a sustained release delivery device, especially for oral delivery.