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Marine alkaloid fascaplysin and its derivatives are known to exhibit promising anticancer properties in vitro and in vivo. However, toxicity of these molecules to non-cancer cells was identified as a main limitation for their clinical use. Here, for the very first time, we synthesized a library of fascaplysin derivatives covering all possible substituent introduction sites, i.e., cycles A, C and E of the 12-pyrido[1-2-:3,4-']diindole system. Their selectivity towards human prostate cancer versus non-cancer cells, as well as the effects on cellular metabolism, membrane integrity, cell cycle progression, apoptosis induction and their ability to intercalate into DNA were investigated. A pronounced selectivity for cancer cells was observed for the family of di- and trisubstituted halogen derivatives (modification of cycles A and E), while a modification of cycle C resulted in a stronger activity in therapy-resistant PC-3 cells. Among others, 3,10-dibromofascaplysin exhibited the highest selectivity, presumably due to the cytostatic effects executed via the targeting of cellular metabolism. Moreover, an introduction of radical substituents at C-9, C-10 or C-10 plus C-3 resulted in a notable reduction in DNA intercalating activity and improved selectivity. Taken together, our research contributes to understanding the structure-activity relationships of fascaplysin alkaloids and defines further directions of the structural optimization.
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http://dx.doi.org/10.3390/md20030185 | DOI Listing |
Electrophoresis
April 2025
Key Laboratory of Drug Monitoring and Control of Zhejiang Province, National Narcotics Laboratory Zhejiang Regional Center, Hangzhou, China.
9-Methylfascaplysin, a derivative of the marine natural product fascaplysin, has shown promising anti- Alzheimer's disease (AD) potential through its anti-β-amyloid (Aβ) neuroprotective effects. However, the pharmacokinetics (PK) of 9-methylfascaplysin, crucial for its preclinical evaluation, have not been thoroughly studied. In this study, we developed and validated a sensitive and accurate ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) method for the quantification of 9-methylfascaplysin in rat plasma.
View Article and Find Full Text PDFMar Drugs
February 2025
Departments of Biotechnology and Marine Natural Compounds Chemistry, G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far Eastern Branch of The Russian Academy of Sciences, Vladivostok 690922, Russia.
Fascaplysins form a group of marine natural products with unique cationic five-ring coplanar backbone. Native fascaplysin exhibits a broad spectrum of bioactivities, among which the cytotoxic activity has been the most investigated. Several fascaplysin derivatives have more selective biological effects and are promising as lead compounds.
View Article and Find Full Text PDFAnat Cell Biol
June 2025
Department of Anatomy and Cell Biology, College of Medicine, Dong-A University, Busan, Korea.
Fascaplysin is a bioactive compound derived from marine sponges, which have anticancer properties and potential neuroprotective effects mediated by mitigation of oxidative stress-induced neurotoxicity. This study investigated the concentration-dependent effects of fascaplysin in zebrafish models, focusing on embryonic survival, cardiac function, melanocyte formation, and peripheral nerve health. Zebrafish embryos were exposed to fascaplysin at concentrations ranging from 10 nM to 100 μM, and developmental parameters were assessed.
View Article and Find Full Text PDFOrg Biomol Chem
February 2025
State Key Laboratory of Discovery and Utilization of Functional Components in Traditional Chinese Medicine, Guizhou Medical University, Guiyang 550014, China.
An unsuccessful attempt to directly construct alkaloid iheyamine A from a fascaplysin framework resulted in the discovery of a novel synthetic approach to alkylated δ,γ-biscarboline derivatives. With the easy-to-operate reaction conditions of this protocol, 18 alkylated biscarbolines have been prepared in moderate to good yields. An unexpected domino transformation was proposed to involve a pyridinium ring-opening/aza-electrocyclization/oxidative deformylation sequence.
View Article and Find Full Text PDFSci Rep
May 2024
Laboratory of Experimental Oncology, Department of Oncology, Hematology and Bone Marrow Transplantation With Section Pneumology, Hubertus Wald Tumorzentrum - University Cancer Center Hamburg (UCCH), University Medical Center Hamburg-Eppendorf, Martinistrasse 52, 20246, Hamburg, Germany.