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Meroantarctines

Web22 nov. 2024 · Their structures were elucidated by spectroscopic methods, X-ray diffraction, and quantum chemical calculations. A biogenetic pathway for 1-3 was proposed. Meroantarctines A-C (1-3) inhibited p-glycoprotein activity and could resensitize drug … Web22 nov. 2024 · Meroantarctines A–C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity Request PDF.

O. ZHURAVLEVA Far Eastern Federal University, Vladivostok

Web23 dec. 2024 · New meroterpenoids, meroantarctines A-C (1-3), with unique 6/5/6/6, 6/5/6/5/6, and 6/5/6/5 polycyclic systems were isolated from the alga-derived fungus Penicillium antarcticum KMM 4685. Their structures were elucidated by spectroscopic … WebMeroantarctines A–C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity Article Nov 2024 photomom cricket wireless https://rebolabs.com

Meroantarctines A-C, Meroterpenoids with Rearranged Skeletons …

WebMeroantarctines A-C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity Leshchenko E, Antonov A, Dyshlovoy S, Berdyshev D, Hauschild J, Zhuravleva O, … WebMeroantarctines A-C (1-3) inhibited p-glycoprotein activity and could resensitize drug-resistant cancer cells to docetaxel. AB - New meroterpenoids, meroantarctines A-C (1-3), with unique 6/5/6/6, 6/5/6/5/6, and 6/5/6/5 polycyclic systems were isolated from the alga … Web6 mei 2024 · Meroantarctines A-C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity. E. V. Leshchenko, A. Antonov, +13 authors A. Yurchenko photomyne backlighting

Meroantarctines A–C, Meroterpenoids with Rearranged Skeletons …

Category:MyJournals on Twitter: "[ASAP] Meroantarctines A–C, …

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Meroantarctines

MyJournals on Twitter: "[ASAP] Meroantarctines A–C, …

WebMeroantarctines A-C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity Research output : SCORING: Contribution to journal › SCORING: Journal articles › … WebMeroantarctines A-C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity.

Meroantarctines

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Web22 nov. 2024 · [ASAP] Meroantarctines A –C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus < italic toggle="yes" > Penicillium antarcticum < /italic > KMM 4685 with Potent p ‑Glycoprotein Inhibitory Activity WebMeroantarctines A–C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity. Article.

Their structures were elucidated by spectroscopic methods, X-ray diffraction, and quantum chemical calculations. A biogenetic pathway for 1 – 3 was proposed. Meroantarctines A–C ( 1 – 3) inhibited p-glycoprotein activity and could resensitize drug-resistant cancer cells to docetaxel. WebMeroantarctines A-C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity. None Created on Nov 23, 2024. Publication details ; Reviews + Add new review

WebMeroantarctines A-C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity Leshchenko E, Antonov A, Dyshlovoy S, Berdyshev D, Hauschild J, Zhuravleva O, Menshov A, Kirichuk N, Popov R, Gerasimenko A, Udovenko A, Graefen M, Bokemeyer C, von … WebMeroantarctines A-C (1-3) inhibited p-glycoprotein activity and could resensitize drug-resistant cancer cells to docetaxel. View. New polyketides from the basidiomycetous fungus Pholiota sp.

WebAbstract. New meroterpenoids, meroantarctines A-C (1-3), with unique 6/5/6/6, 6/5/6/5/6, and 6/5/6/5 polycyclic systems were isolated from the alga-derived fungus Penicillium antarcticumKMM 4685. Their structures were elucidated by spectroscopic methods, X …

WebNew meroterpenoids, meroantarctines A-C (1-3), with unique 6/5/6/6, 6/5/6/5/6, and 6/5/6/5 polycyclic systems were isolated from the alga-derived fungus Penicillium antarcticum KMM 4685. Their structures were elucidated by spectroscopic methods, X-ray diffraction, and quantum chemical calculations. A biogenetic pathway for 1-3 was proposed. how much are pet ferretsWebMeroantarctines A–C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity Article Nov 2024 how much are pet birds at petsmartWebMeroantarctines A-C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity Leshchenko E, Antonov A, Dyshlovoy S, Berdyshev D, Hauschild J, Zhuravleva O, … photomodler scannerWebMeroantarctines A–C, Meroterpenoids with Rearranged Skeletons from the Alga-Derived Fungus Penicillium antarcticum KMM 4685 with Potent p-Glycoprotein Inhibitory Activity Article Nov 2024 how much are pet fishWebFive new β-resorcylic acid derivatives isolated from the ethyl acetate extract of the fungus Penicillium antarcticum KMM 4685 associated with the brown alga Sargassum miyabei exhibited moderate cytotoxic activity in LNCaP, DU145 and 22Rv1 human prostate cancer cells and could inhibit the activity of p-glycoprotein at their noncytotoxic concentrations. … photomyne customer servicephoton 32位Web14 mrt. 2024 · Recently, our group reported the isolation and characterization of three new bioactive meroterpenoids with rearranged skeletons, meroantarctines A–C, from the Penicillium antarcticum KMM 4685 . Further searches for of new metabolites from this fungus strain resulted in the isolation of six β-resorcylic acid derivatives ( 1 – 6 ) ( Figure 1 ). photomyogenic response