Area of research
Epidemiology · Organic Chemistry
Research interest
Research interests include Chemistry, Catalysis, Sulfur dioxide, Autophagy, Cell biology, and Sulfur.
IL-8 exacerbates alcohol-induced fatty liver disease via the Akt/HIF-1α pathway in human IL-8-expressing mice
Alpha-naphthoflavone attenuates non-alcoholic fatty liver disease in oleic acid-treated HepG2 hepatocytes and in high fat diet-fed mice
Photoredox-catalyzed sulfonylation of alkenylcyclobutanols with the insertion of sulfur dioxide through semipinacol rearrangement
In vitro and in vivo approaches for identifying the role of aryl hydrocarbon receptor in the development of nonalcoholic fatty liver disease
Palladium-catalyzed direct sulfonylation of C–H bonds with the insertion of sulfur dioxide
Generation of benzosultams via a radical process with the insertion of sulfur dioxide
A copper-catalyzed sulfonylative C–H bond functionalization from sulfur dioxide and aryldiazonium tetrafluoroborates
Radical cyclization of benzene-tethered 1,7-enynes with aryldiazonium tetrafluoroborates: a facile route to benzo[j]phenanthridines
Recent advances in photoinduced trifluoromethylation and difluoroalkylation
Copper(<scp>i</scp>)-catalyzed sulfonylation of (2-alkynylaryl)boronic acids with DABSO
Base-controlled [3+3] cycloaddition of isoquinoline N-oxides with azaoxyallyl cations
Generation of (2-oxoindolin-3-yl)methanesulfonohydrazides via a photo-induced reaction of N-(2-iodoaryl)acrylamide, DABSO, and hydrazine
Pharmacologic agents targeting autophagy
Degradation of HK2 by chaperone-mediated autophagy promotes metabolic catastrophe and cell death
G-protein-coupled receptors regulate autophagy by ZBTB16-mediated ubiquitination and proteasomal degradation of Atg14L