Marilones A–C, phthalides from the sponge-derived fungus Stachylidium sp.

Celso Almeida, Stefan Kehraus, Miguel Prudêncio and Gabriele M. König
Beilstein J. Org. Chem. 2011, 7, 1636–1642. https://doi.org/10.3762/bjoc.7.192

Supporting Information

Supporting Information File 1: Spectroscopic data and other relevant information for compounds 14.
Format: PDF Size: 904.4 KB Download

Cite the Following Article

Marilones A–C, phthalides from the sponge-derived fungus Stachylidium sp.
Celso Almeida, Stefan Kehraus, Miguel Prudêncio and Gabriele M. König
Beilstein J. Org. Chem. 2011, 7, 1636–1642. https://doi.org/10.3762/bjoc.7.192

How to Cite

Almeida, C.; Kehraus, S.; Prudêncio, M.; König, G. M. Beilstein J. Org. Chem. 2011, 7, 1636–1642. doi:10.3762/bjoc.7.192

Download Citation

Citation data can be downloaded as file using the "Download" button or used for copy/paste from the text window below.
Citation data in RIS format can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Zotero.

Citations to This Article

Up to 20 of the most recent references are displayed here.

Scholarly Works

  • Berger, T.; Alenfelder, J.; Steinmüller, S.; Heimann, D.; Gohain, N.; Petras, D.; Wang, M.; Berger, R.; Kostenis, E.; Reher, R. A MassQL-Integrated Molecular Networking Approach for the Discovery and Substructure Annotation of Bioactive Cyclic Peptides. Journal of natural products 2024. doi:10.1021/acs.jnatprod.3c00750
  • Gao, Y.; Wang, J.; Meesakul, P.; Zhou, J.; Liu, J.; Liu, S.; Wang, C.; Cao, S. Cytotoxic Compounds from Marine Fungi: Sources, Structures, and Bioactivity. Marine drugs 2024, 22, 70. doi:10.3390/md22020070
  • Li, Q.; Fu, A.; Dong, J.; Xiao, Y.; Dai, B.; Wei, M.; Huang, Z.; Liu, J.; Chen, C.; Zhu, H.; Lu, Y.; Li, D.; Zhang, Y. Three new Furano-lactones from the endophytic fungus Aspergillus nidulans. Fitoterapia 2023, 173, 105790. doi:10.1016/j.fitote.2023.105790
  • Hou, A.; Dickschat, J. S. Labelling studies in the biosynthesis of polyketides and non-ribosomal peptides. Natural product reports 2023, 40, 470–499. doi:10.1039/d2np00071g
  • Alzain, A. A.; Makki, A. A.; Ibraheem, W. Insights into the Inhibition of Mycolic Acid Synthesis by Cytosporone E Derivatives for Tuberculosis Treatment Via an In Silico Multi-target Approach. Chemistry Africa 2023, 6, 1811–1831. doi:10.1007/s42250-023-00605-7
  • Makki, A. A.; Ibraheem, W.; Alzain, A. A. Cytosporone E analogues as BRD4 inhibitors for cancer treatment: molecular docking and molecular dynamic investigations. Journal of biomolecular structure & dynamics 2023, 41, 12643–12653. doi:10.1080/07391102.2023.2167122
  • Kamat, S.; Kumar, S.; Philip, S.; Kumari, M. Secondary metabolites from marine fungi: current status and application. Microbial Biomolecules; Elsevier, 2023; pp 181–209. doi:10.1016/b978-0-323-99476-7.00001-6
  • Zhou, J.; He, B.; He, Y.; Zhu, H.; Zhang, M.; Huang, W.; Wang, Y. The effectiveness of psychoeducational interventions on family function among families after stroke: A meta-analysis. International journal of nursing practice 2022, 28, e13081. doi:10.1111/ijn.13081
  • Ibraheem, W.; Makki, A. A.; Alzain, A. A. Phthalide derivatives as dihydrofolate reductase inhibitors for malaria: molecular docking and molecular dynamics studies. Journal of biomolecular structure & dynamics 2022, 41, 5127–11. doi:10.1080/07391102.2022.2080114
  • Hai, Y.; Cai, Z.-M.; Li, P.-J.; Wei, M.-Y.; Wang, C.-Y.; Gu, Y.-C.; Shao, C.-L. Trends of antimalarial marine natural products: progresses, challenges and opportunities. Natural product reports 2022, 39, 969–990. doi:10.1039/d1np00075f
  • El-Bondkly, E. A. M.; El-Bondkly, A. A. M.; El-Bondkly, A. A. M. Marine endophytic fungal metabolites: A whole new world of pharmaceutical therapy exploration. Heliyon 2021, 7, e06362. doi:10.1016/j.heliyon.2021.e06362
  • Jiang, M.; Wu, Z.; Liu, L.; Chen, S. The chemistry and biology of fungal meroterpenoids (2009-2019). Organic & biomolecular chemistry 2021, 19, 1644–1704. doi:10.1039/d0ob02162h
  • Kushveer, J. S.; Rashmi, M.; Sarma, V. V. Bioactive compounds from marine-derived fungi and their potential applications. Fungi Bio-Prospects in Sustainable Agriculture, Environment and Nano-technology; Elsevier, 2021; pp 91–173. doi:10.1016/b978-0-12-821734-4.00014-9
  • Zhang, B.; Zhang, T.; Xu, J.; Lu, J.; Qiu, P.; Wang, T.; Ding, L. Marine Sponge-Associated Fungi as Potential Novel Bioactive Natural Product Sources for Drug Discovery: A Review. Mini reviews in medicinal chemistry 2020, 20, 1966–2010. doi:10.2174/1389557520666200826123248
  • Cheng, M.-M.; Tang, X.; Sun, Y.-T.; Song, D.-Y.; Cheng, Y.-J.; Liu, H.; Li, P.-L.; Li, G. Biological and Chemical Diversity of Marine Sponge-Derived Microorganisms over the Last Two Decades from 1998 to 2017. Molecules (Basel, Switzerland) 2020, 25, 853. doi:10.3390/molecules25040853
  • Tajuddeen, N.; van Heerden, F. R. Antiplasmodial natural products: an update. Malaria journal 2019, 18, 404. doi:10.1186/s12936-019-3026-1
  • Costa, M.; Coello, L.; Urbatzka, R.; Pérez, M.; Thorsteinsdottir, M. New Aromatic Bisabolane Derivatives with Lipid-Reducing Activity from the Marine Sponge Myrmekioderma sp. Marine drugs 2019, 17, 375. doi:10.3390/md17060375
  • Wang, C.; Mei, X.; Wang, D.; Zhu, W. Marine Natural Products from Marine Sponge Microorganisms. Symbiotic Microbiomes of Coral Reefs Sponges and Corals; Springer Netherlands, 2019; pp 263–310. doi:10.1007/978-94-024-1612-1_13
  • Maddah, F. E.; Eguereva, E.; Kehraus, S.; König, G. M. Biosynthetic studies of novel polyketides from the marine sponge-derived fungus Stachylidium sp. 293K04. Organic & biomolecular chemistry 2019, 17, 2747–2752. doi:10.1039/c9ob00198k
  • Bramhachari, P. V.; Anju, S.; Sheela, G. M.; Komaraiah, T. R.; Venkataiah, P.; Prathyusha, A. M. V. N. Secondary Metabolites from Marine Endophytic Fungi: Emphasis on Recent Advances in Natural Product Research. Advances in Endophytic Fungal Research; Springer International Publishing, 2019; pp 339–350. doi:10.1007/978-3-030-03589-1_15
Other Beilstein-Institut Open Science Activities