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3. Microbial transformation of argentatins by <italic>Cunninghamella elegans</italic>.

8. Data from Small-Molecule Natural Product Physachenolide C Potentiates Immunotherapy Efficacy by Targeting BET Proteins

9. Supplementary Data from Small-Molecule Natural Product Physachenolide C Potentiates Immunotherapy Efficacy by Targeting BET Proteins

10. The natural product argentatin C attenuates postoperative pain via inhibition of voltage‐gated sodium and T‐type voltage‐gated calcium channels

12. Physachenolide C is a Potent, Selective BET Inhibitor

13. Corrigendum to “Physachenolide C induces complete regression of established murine melanoma tumors via apoptosis and cell cycle arrest”

14. The natural product argentatin C attenuates postoperative pain via inhibition of voltage-gated sodium and T-type voltage-gated calcium channels

20. Physachenolide C induces complete regression of established murine melanoma tumors via apoptosis and cell cycle arrest

23. Physachenolide C is a Potent, Selective BET Inhibitor.

25. Strobiloscyphones A–F, 6-Isopentylsphaeropsidones and Other Metabolites from Strobiloscypha sp. AZ0266, a Leaf-Associated Fungus of Douglas Fir

29. Physachenolide C induces complete regression of established murine melanoma tumors via apoptosis and cell cycle arrest

31. Small-Molecule Natural Product Physachenolide C Potentiates Immunotherapy Efficacy by Targeting BET Proteins

40. Reversal of Peripheral Neuropathic Pain by the Small-Molecule Natural Product Physalin F via Block of CaV2.3 (R-Type) and CaV2.2 (N-Type) Voltage-Gated Calcium Channels

41. Rational Reprogramming ofO-Methylation Regioselectivity for Combinatorial Biosynthetic Tailoring of Benzenediol Lactone Scaffolds

42. Strobiloscyphones A–F, 6-Isopentylsphaeropsidones and Other Metabolites from Strobiloscyphasp. AZ0266, a Leaf-Associated Fungus of Douglas Fir

47. 31st Annual Meeting and Associated Programs of the Society for Immunotherapy of Cancer (SITC 2016): part two

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