Antimicrobial activity and cytotoxicity of bis(indole) alkaloids from the sponge Spongosorites sp.
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Summary
Bis(indole) alkaloids, of the topsentin class and hamacanthin class, isolated from the marine sponge Spongosorites sp.
- Type
- article
- Published
- 2006-03-01
- Cited by
- 100
- References
- 18
- Access
- Open access
- OpenAlex
- https://openalex.org/W2012654240
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14455131
Keywords
Antimicrobial, Cytotoxicity, Sponge, Antibacterial activity, Microbiology
References
- Nortopsentins A, B, and C. Cytotoxic and antifungal imidazolediylbis[indoles] from the sponge Spongosorites ruetzleri
- New bisindole alkaloids of the topsentin and hamacanthin classes from the Mediterranean marine sponge Rhaphisia lacazei.
- Marine sponge bis(indole) alkaloids that displace ligand binding to α1 adrenergic receptors
- Topsentin, bromotopsentin, and dihydrodeoxybromotopsentin: antiviral and antitumor bis(indolyl)imidazoles from Caribbean deep-sea sponges of the family Halichondriidae. Structural and synthetic studies
- Cytotoxic bisindole alkaloids from a marine sponge Spongosorites sp.
- Hamacanthins A and B, new antifungal bis indole alkaloids from the deep-water marine sponge, Hamacantha sp.
- New Bis(Indole) alkaloids of the topsentin class from the sponge spongosorites genitrix
- Brominated bis(indole) alkaloids from the marine sponge Hexadella sp.
- A new bis-(indole) alkaloid from a deep-water marine sponge of the genus Spongosorites
- Marine Pharmacology in 2000: Marine Compounds with Antibacterial, Anticoagulant, Antifungal, Anti-inflammatory, Antimalarial, Antiplatelet, Antituberculosis, and Antiviral Activities; Affecting the Cardiovascular, Immune, and Nervous Systems and Other Miscellaneous Mechanisms of Action
- Rapid colorimetric assay for cellular growth and survival: application to proliferation and cytotoxicity assays.
- Bis(indole) alkaloids as sortase A inhibitors from the sponge Spongosorites sp.
- Evaluation of antimicrobial activity of farnesoic acid derivatives
- Purification and Structure Determination of Antifungal Phospholipids from a Marine Streptomyces
- Aburatubolactam C, a Novel Apoptosis-inducing Substance Produced by Marine Streptomyces sp. SCRC A-20
- Biological characterization of periconicins, bioactive secondary metabolites, produced by Periconia sp. OBW-15
- Opinion — anti-infectives: Where will new antibiotics come from?
- From Inactive Nortopsentin D, a Novel Bis(indole) Alkaloid Isolated from the Axinellid Sponge Dragmacidon sp. from Deep Waters South of New Caledonia, to a Strongly Cytotoxic Derivative
Cited by
- Marine Sponges as a Drug Treasure
- 2-(3′-Indolyl)-N-arylthiazole-4-carboxamides: Synthesis and evaluation of antibacterial and anticancer activities
- Marine Indole Alkaloids
- Total syntheses of brominated marine sponge alkaloids.
- Methicillin-resistant Staphylococcus aureus (MRSA) Pyruvate Kinase as a Target for Bis-indole Alkaloids with Antibacterial Activities*
- BPR0C305, an orally active microtubule-disrupting anticancer agent
- Marine indole alkaloids containing an 1-(indol-3-yl)ethane-1,2-diamine fragment (Review)
- Investigation of bioactivity of extracts of Marine Sponge, Spongosorites halichondrioides (Dendy, 1905) from western coastal areas of India
- A new class of bactericidal agents against S. aureus, MRSA and VRE derived from bisindolylmethane
- Convenient Synthesis of Novel Bis(hydrazone) and Bis(indole) Derivatives.
- Cytotoxic, Anti-inflammatory, and Antibacterial Sulfur-Containing Polybromoindoles from the Formosan Red Alga Laurencia brongniartii
- Synthesis and evaluation of 1-(1H-indol-3-yl)ethanamine derivatives as new antibacterial agents.
- 3,5-bis(3'-indolyl)pyrazoles, analogues of marine alkaloid nortopsentin: synthesis and antitumor properties.
- Synthesis and MRSA PK inhibitory activity of thiazole containing deoxytopsentin analogues
- GC-MS Analysis of Some Bioactive Constituents from the Marine Sponge Spongosorites halichondriodes
- Antioxidant and Antifungal Activity of Verbena officinalis L. Leaves
- Marine Bi-, Bis-, and Trisindole Alkaloids.
- An efficient synthesis of bis(indolyl)methanes and evaluation of their antimicrobial activities
- Fe/Al pillared clay catalyzed solvent-free synthesis of bisindolylmethanes using diversely substituted indoles and carbonyl compounds
- Synthesis of pseudopeptides based L-tryptophan as a potential antimicrobial agent.
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