Area of research
Pharmacology · Materials Chemistry
Research interest
Research interests include Chemistry, Stereochemistry, Ring (chemistry), Hypericum, Circular dichroism, and Phloroglucinol.
Enantioselective synthesis of spirooxindole-pyran derivatives <i>via</i> a remote inverse-electron-demand Diels–Alder reaction of β,γ-unsaturated amides
Highly Enantioselective Construction of Chiral Eight-Membered Cyclic Ethers through Tandem Cyclization of Ynones and Dicarbonyl Compounds
DBU‐Catalyzed Benzannulation towards Stilbene and Biaryl Derivatives from Acyclic Amides with Methyl Coumalate
Anti‐Neuroinflammatory Activity of New Naturally Occurring Benzylated Hydroxyacetophenone Analogs from the Endophytic Fungus <i>Alternaria</i> sp. J030
Asperpyridone A: An Unusual Pyridone Alkaloid Exerts Hypoglycemic Activity through the Insulin Signaling Pathway
The absolute configurations of hyperilongenols A–C: rare 12,13-<i>seco</i>-spirocyclic polycyclic polyprenylated acylphloroglucinols with enolizable β,β′-tricarbonyl systems from <i>Hypericum longistylum</i> Oliv.
Highly functionalized cyclohexanone-monocyclic polyprenylated acylphloroglucinols from <i>Hypericum perforatum</i> induce leukemia cell apoptosis
Protoilludane, Illudalane, and Botryane Sesquiterpenoids from the Endophytic Fungus <i>Phomopsis</i> sp. TJ507A
Cytochalasans Produced by the Coculture of <i>Aspergillus flavipes</i> and <i>Chaetomium globosum</i>
BACE1 Inhibitory Meroterpenoids from <i>Aspergillus terreus</i>
A New Breviane Spiroditerpenoid from the Marine-Derived Fungus Penicillium sp. TJ403-1
Bioactive polycyclic polyprenylated acylphloroglucinols from <i>Hypericum perforatum</i>
Phenylacetylene-bearing 3,4-seco-cleistanthane diterpenoids from the roots of Phyllanthus glaucus
Asperflavipine A: A Cytochalasan Heterotetramer Uniquely Defined by a Highly Complex Tetradecacyclic Ring System from <i>Aspergillus flavipes</i> QCS12
Spiroaspertrione A, a Bridged Spirocyclic Meroterpenoid, as a Potent Potentiator of Oxacillin against Methicillin-Resistant <i>Staphylococcus aureus</i> from <i>Aspergillus</i> sp. TJ23
Tricyclic Polyprenylated Acylphloroglucinols from St John’s Wort, <i>Hypericum perforatum</i>
Bioassay-Guided Isolation of Antibacterial Metabolites from <i>Emericella</i> sp. TJ29
Aspergilasines A–D: Four Merocytochalasans with New Carbon Skeletons from <i>Aspergillus flavipes</i> QCS12
Flavichalasines A–M, cytochalasan alkaloids from Aspergillus flavipes
Manginoids A–G: Seven Monoterpene–Shikimate-Conjugated Meroterpenoids with a Spiro Ring System from <i>Guignardia mangiferae</i>
Asperflavipine A: A Cytochalasan Heterotetramer Uniquely Defined by a Highly Complex Tetradecacyclic Ring System from <i>Aspergillus flavipes</i> QCS12
Phomopsterones A and B, Two Functionalized Ergostane-Type Steroids from the Endophytic Fungus <i>Phomopsis</i> sp. TJ507A
Epicochalasines A and B: Two Bioactive Merocytochalasans Bearing Caged Epicoccine Dimer Units from <i>Aspergillus flavipes</i>
Filicinic Acid Based Meroterpenoids with Anti-Epstein–Barr Virus Activities from <i>Hypericum japonicum</i>
Structural Revisions of a Class of Natural Products: Scaffolds of Aglycon Analogues of Fusicoccins and Cotylenins Isolated from Fungi
(±)-Japonicols A–D, Acylphloroglucinol-Based Meroterpenoid Enantiomers with Anti-KSHV Activities from <i>Hypericum japonicum</i>
Enantiomeric Lignans and Neolignans from Phyllanthus glaucus: Enantioseparation and Their Absolute Configurations
Diterpenoids of the Cassane Type from <i>Caesalpinia decapetala</i>
Hyperhexanone A, a crucial intermediate from bicyclo[3.3.1]- to cyclohexanone monocyclic-polycyclic polyprenylated acylphloroglucinols
Antioxidant Lignans and Neolignans from Acorus tatarinowii