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18 results on '"Mu, Li-Hua"'

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1. Cycloartane triterpenes from Beesia calthaefolia and their anticomplement structure–activity relationship study.

2. UPLC-Q-TOF-MSE analysis of the constituents of Ding-Zhi-Xiao-Wan, a traditional Chinese antidepressant, in normal and depressive rats.

3. Biotransformation on the triterpenoid saponin of Ardisia gigantifolia by Aspergillus avenaceus AS 3.4454.

4. Cycloartane Triterpenes from Beesia calthaefolia (Maxim.)

5. Cycloartane Triterpenes from Beesia calthaefolia (Maxim.).

6. Methanolysis of triterpenoid saponin from Ardisia gigantifolia stapf. and structure–activity relationship study against cancer cells.

7. A new triterpenoid saponin from Ardisia gigantifolia.

8. Chemical constituents of the roots of Pottsia laxiflora.

9. Synthesis and inhibitory effect of piperine derivates on monoamine oxidase

10. Acute and subchronic oral toxicity assessment of the herbal formula Kai-Xin-San

11. Immunosuppressive activity of a cycloartane triterpene glycoside from Beesia calthaefolia by inhibiting T cell proliferation.

12. New dibenz[b, f]oxepins from Cercis chinensis Bunge.

13. Antidepressant Mechanism of Kaixinsan and Its Active Compounds Based on Upregulation of Antioxidant Thioredoxin.

14. Proteomic Analysis of the Antidepressant Effects of Shen-Zhi-Ling in Depressed Patients: Identification of Proteins Associated with Platelet Activation and Lipid Metabolism.

15. Antidepressant and Neuroprotective Effect of the Chinese Herb Kaixinsan against Lentiviral shRNA Knockdown Brain-Derived Neurotrophic Factor-Induced Injury in vitro and in vivo.

16. Effects of (20S*,24R*)-epoxy-9,19-cyclolanstane-3β,12β,16β,25-pentaol-3-O-β- d-xylopyranoside Extracted from Rhizoma Beesia on Immunoregulation and Anti-inflammation.

17. A representative prescription for emotional disease, Ding-Zhi-Xiao-Wan restores 5-HT system deficit through interfering the synthesis and transshipment in chronic mild stress-induced depressive rats.

18. Antioxidant activity of oligosaccharide ester extracted from Polygala tenuifolia roots in senescence-accelerated mice.

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