[1]Wu, X.-D.#; Huang, S.#; Shi, Y.; Shen, Y.; Tu, W.-C.; Leng, Y.*; Zhao, Q.-S.*, Design, synthesis, and structural-activity relationship studies of phanginin A derivatives for regulating SIK1-cAMP/CREB signaling to suppress hepatic gluconeogenesis.2022, Eur. J. Med. Chem., 232, 114171.
[2]Wang, L.-Y.; Li, W.-Y.; Zhou, H.-F.; Zhao, X.-Y.; Li, X.-N.;Wu, X.-D.*; Zhao, Q.-S.*, Spiroligustolides A and B: two pairs of enantiomeric spiro-orthoester-containing phthalide dimers as Cav3.1 calcium channel inhibitors fromLigusticum ChuanxiongHort.Bioorg. Chem.2022,123, 105749.
[3]Wu, X.-D.; Ding, L.-F.; Chen, B.; Li, X.-N.; Peng, L.-Y.; Zhao, Q.-S.*, Cunlanceloic acids A-D: unprecedented labdane diterpenoid dimers with AChE inhibitory and cytotoxic activities fromCunninghamia lanceolata.Org. Chem. Front.,2021, 7, 5777-5784.
[4]Liu, J.#;Wu, X.-D.#; Li, W.#; Yuan, Z.#; Yang, K.; Zhao, Q.-S., Discovery of pseudolaric acid A as a new Hsp90 inhibitor uncovers its potential anticancer mechanism.Bioorg. Chem.,2021, 112, 104963.
[5]Wu, X.-D.; Li, X.-N.; Peng, L.-Y.; Zhao, Q.-S.*, Huperserratines A and B, two macrocyclic Lycopodium alkaloids with an unusual skeleton fromHuperzia serrata.J. Org. Chem.,2020, 85, 6803-6807.
[6]Wu, X.-D.; Luo, D.; Tu, W.-C.; Deng, Z.-T.; Chen, X.-J.; Su, J.; Ji, X.*; Zhao, Q.-S.*, Hypophyllins A-D, labdane-type diterpenoids with vasorelaxant activity fromHypoestes phyllostachya "Rosea".Org. Lett.2016, 18, 6484-6487.
[7]Tu, W.-C.; Ding, L.-F.; Peng, L.-Y.; Song, L.-D.;Wu, X.-D.*; Zhao, Q.-S.*, Cassane diterpenoids from the seeds ofCaesalpinia bonducand their nitric oxide production and alpha-glucosidase inhibitory activities. Phytochemistry,2022, 193, 112973-112973.
[8]Tu, W.-C.; Qi, Y.-Y.; Ding, L.-F.; Yang, H.; Liu, J.-X.; Peng, L.-Y.; Song, L.-D.; Gong, X.;Wu, X.-D.*; Zhao, Q.-S.*, Diterpenoids and sesquiterpenoids from the stem bark ofMetasequoia glyptostroboides.Phytochemistry,2019, 161, 86-96.
[9]Fan, M.; Luo, D.; Peng, L.-Y.; Li, X.-N.;Wu, X.-D.*; Ji, X.*; Zhao, Q.-S.*, Neo-clerodane diterpenoids from aerial parts ofSalvia hispanicaL. and their cardioprotective effects.Phytochemistry,2019, 166, 112065.
[10] Ding, L.-F.#; Su, J.#; Pan, Z.-H.; Zhang, Z.-J.; Li, X.-N.; Song, L.-D.;Wu, X.-D.*;Zhao, Q.-S.*. Cytotoxic sesquiterpenoids from the leaves ofMagnolia grandiflora, Phytochemistry,2018, 155, 182-190.
[11]Wu, X.-D.; Ding, L.-F.; Tu, W.-C.; Yang, H.; Su, J.; Peng, L.-Y.; Li, Y.; Zhao, Q.-S.*, Bioactive sesquiterpenoids from the flowers ofInula japonica.Phytochemistry2016, 129, 68-76.
[12]Wu, X.-D.; He, J.; Li, X.-Y.; Dong, L.-B.; Gong, X.; Song, L.-D.*; Li, Y.; Peng, L.-Y.; Zhao, Q.-S.*,Diterpenoids from the twigs and leaves ofFokienia hodginsii.J. Nat. Prod.2013, 76, 1032-1038.
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