International Conference on Fisheries, Aquatic, and Environmental Sciences 2018 | |
An indole alkaloid produced by Indonesian's marine sponge Raspailia ramosa as an inhibitory of the panc-1 cell adapted to nutrient starvation | |
地球科学;农业科学;生态环境科学 | |
Kurnianda, V.^1,2,3 ; Ramadhan, M.R.^1 ; Karina, S.^1 ; Agustina, S.^1 ; Ulfah, M.^1 ; Octavina, C.^1 ; Mardiah, A.^1 ; Syahliza, F.^1 ; Purnawan, S.^1 | |
Department of Marine Science, Faculty of Marine and Fisheries, Syiah Kuala University, Banda Aceh | |
23111, Indonesia^1 | |
Marine Chemistry Laboratory, Faculty of Marine and Fisheries, Syiah Kuala University, Banda Aceh | |
23111, Indonesia^2 | |
Department of Chemistry, Biology and Marine Science, Faculty of Science, University of the Ryukyus, Nishihara, Okinawa | |
903-0213, Japan^3 | |
关键词: Active metabolites; Bioactive compounds; Cytotoxic activities; Indole alkaloids; Molecular formula; Nutrient-starvation; Potential activities; Secondary amines; | |
Others : https://iopscience.iop.org/article/10.1088/1755-1315/216/1/012042/pdf DOI : 10.1088/1755-1315/216/1/012042 |
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来源: IOP | |
【 摘 要 】
The bioactivity from Indonesian's Marine Sponge Raspailia ramosa has been done on July 2018. Bioactive compound isolated based on bioassay-guided separation with several steps of chromatography. The active metabolite compound of Raspailia ramosa has cytotoxic activity against PANC-1 cell with IC50 = 10g/mL. Based on NMR spectrum shows that the active compound has molecular formula C16H17N4Br determined by LCMS-ESI with molecular weight [M+H]+345.23 m/z. The FTIR spectrum shows that metabolic metabolites have NH secondary amines 3435.56 cm-1 with CN imine fingerprint area (1637.27 cm-1), CH methyl (2853.39 cm-1), CH methylene (2769.64 cm-1) indicate as indole alkaloid. The active metabolite compound of Raspailia ramosa has cytotoxic activity against PANC-1 cellwithIC50 = 10 g / mL. This compound has the potential activity for the drug model for commercial drug antimycin = 0.1 μg / mL.
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