Your browser doesn't support javascript.
loading
Dereplication strategies for targeted isolation of new antitrypanosomal actinosporins A and B from a marine sponge associated-Actinokineospora sp. EG49.
Abdelmohsen, Usama Ramadan; Cheng, Cheng; Viegelmann, Christina; Zhang, Tong; Grkovic, Tanja; Ahmed, Safwat; Quinn, Ronald J; Hentschel, Ute; Edrada-Ebel, RuAngelie.
Affiliation
  • Abdelmohsen UR; Department of Botany II, Julius-von-Sachs Institute for Biological Sciences, University of Würzburg, Julius-von-Sachs-Platz 3, Würzburg D-97082, Germany. usama.ramadan@uni-wuerzburg.de.
  • Cheng C; Department of Botany II, Julius-von-Sachs Institute for Biological Sciences, University of Würzburg, Julius-von-Sachs-Platz 3, Würzburg D-97082, Germany. c.cheng@strath.ac.uk.
  • Viegelmann C; Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, The John Arbuthnott Building, 161 Cathedral Street, Glasgow G4 0NR, UK. christina.viegelmann@strath.ac.uk.
  • Zhang T; Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, The John Arbuthnott Building, 161 Cathedral Street, Glasgow G4 0NR, UK. tong.zhang.101@strath.ac.uk.
  • Grkovic T; Eskitis Institute, Griffith University, Brisbane, QLD 4111, Australia. t.grkovic@griffith.edu.au.
  • Ahmed S; Department of Pharmacognosy, Faculty of Pharmacy, Suez Canal University, Ismailia 41522, Egypt. safwat_aa@yahoo.com.
  • Quinn RJ; Eskitis Institute, Griffith University, Brisbane, QLD 4111, Australia. r.quinn@griffith.edu.au.
  • Hentschel U; Department of Botany II, Julius-von-Sachs Institute for Biological Sciences, University of Würzburg, Julius-von-Sachs-Platz 3, Würzburg D-97082, Germany. ute.hentschel@uni-wuerzburg.de.
  • Edrada-Ebel R; Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, The John Arbuthnott Building, 161 Cathedral Street, Glasgow G4 0NR, UK. ruangelie.edrada-ebel@strath.ac.uk.
Mar Drugs ; 12(3): 1220-44, 2014 Mar 06.
Article in En | MEDLINE | ID: mdl-24663112
ABSTRACT
High resolution Fourier transform mass spectrometry (HRFTMS) and nuclear magnetic resonance (NMR) spectroscopy were employed as complementary metabolomic tools to dereplicate the chemical profile of the new and antitrypanosomally active sponge-associated bacterium Actinokineospora sp. EG49 extract. Principal Component (PCA), hierarchical clustering (HCA), and orthogonal partial least square-discriminant analysis (OPLS-DA) were used to evaluate the HRFTMS and NMR data of crude extracts from four different fermentation approaches. Statistical analysis identified the best culture one-strain-many-compounds (OSMAC) condition and extraction procedure, which was used for the isolation of novel bioactive metabolites. As a result, two new O-glycosylated angucyclines, named actinosporins A (1) and B (2), were isolated from the broth culture of Actinokineospora sp. strain EG49, which was cultivated from the Red Sea sponge Spheciospongia vagabunda. The structures of actinosporins A and B were determined by 1D- and 2D-NMR techniques, as well as high resolution tandem mass spectrometry. Testing for antiparasitic properties showed that actinosporin A exhibited activity against Trypanosoma brucei brucei with an IC50 value of 15 µM; however no activity was detected against Leishmania major and Plasmodium falciparum, therefore suggesting its selectivity against the parasite Trypanosoma brucei brucei; the causative agent of sleeping sickness.
Subject(s)

Full text: 1 Database: MEDLINE Main subject: Porifera / Trypanocidal Agents / Benz(a)Anthracenes / Actinomycetales / Glycosides Type of study: Risk_factors_studies Limits: Animals Language: En Year: 2014 Type: Article

Full text: 1 Database: MEDLINE Main subject: Porifera / Trypanocidal Agents / Benz(a)Anthracenes / Actinomycetales / Glycosides Type of study: Risk_factors_studies Limits: Animals Language: En Year: 2014 Type: Article