The Potential of Cytotoxin and Antiviral in Sargassum polycystum and Sargassum ilicifolium’s Polysaccharides Extract

D. L. Ningsih, A. Trianto, I. Widowati, Rexie P Magdugo, A. Hurtado, Christel Marty, N. Bourgougnon
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引用次数: 1

Abstract

Marine algae known as one producers of bioactive compounds.  This study aims to analyze the cytotoxicity and antiviral activity in Sargassum polycystum and Sargassum ilicifolium tested with Herpes Simplex Virus (HSV).   The polysaccharides extract of algae was used in this study, as sulfated polysaccharides have been reported has bioactivity.  Cytotoxicity either antiviral could be correlated with the sulfate content as well as nature and chemical composition of the polysaccharides. Cytotoxicity and antiviral analysis based upon cell viability. Using the Vero cell / HSV-1 model, cytotoxicity was evaluated by incubating cellular suspensions (3.5×10 5 cells.mL -1 ) with various dilutions (concentration from 1 to 500 µg.mL -1 , four wells per concentration) of fractions in 96-well plates (72h, 37°C, 5% CO 2 ) in Eagle's MEM containing 8% FCS.  The cells were examined daily under a phase-contrast microscope to determine the minimum concentration of hydrolysate dry matter that induced alterations in cell morphology, including swelling, shrinkage, granularity and detachment. Algae S. illicifolium was found to have the highest cytotoxic content in each solution compared to S. polycystum. Algae S. illicifolium in KOH 4M (cellulose) reached 2,707 µg.ml -1 , then HCl pH 2 (fucoidan) was 2,477 µg.ml -1 , then CaCl 2 2% (fucoidan) was 2,362 µg.ml -1 , and in Na 2 CO 3 3% (alginates) was 2,134 µg.ml -1 . For antiviral, S. polycystum contained the highest antiviral compounds compared to S. illicifolium with KOH 4M (cellulose) solution was reached 67.02 µg.ml -1 .  Then in Na 2 CO 3 3% (alginates) which was 33.25 µg.ml -1 , then CaCl 2 2% (fucoidan) which was 31.62 µg.ml -1 ,and HCl pH 2 (fucoidan) was 30.08 µg.ml -1 .  After all, the highest bioactivity compounds was found with KOH 4M (cellulose) for  cytotoxicity in S. ilicifolium and antiviral activity in S. polycystum.
马尾藻和尾藻多糖提取物的细胞毒素和抗病毒潜力
海洋藻类被认为是生物活性化合物的生产者之一。本研究旨在分析单纯性疱疹病毒(HSV)对马尾藻(polycystum)和尾藻(margassum ilicifolium)的细胞毒性和抗病毒活性。本研究采用藻类多糖提取物,因为已有报道硫酸酸化多糖具有生物活性。细胞毒性和抗病毒作用可能与多糖的硫酸盐含量、性质和化学成分有关。基于细胞活力的细胞毒性和抗病毒分析。使用Vero细胞/ HSV-1模型,通过培养细胞悬液(3.5×10 5个细胞)来评估细胞毒性。mL -1),不同的稀释度(浓度从1到500µg)。在含有8% FCS的Eagle's MEM中,96孔板(72小时,37°C, 5% CO 2)中的馏分mL -1,每浓度四孔)。每天在相差显微镜下检查细胞,以确定引起细胞形态改变的水解干物质的最小浓度,包括肿胀,收缩,粒度和脱离。结果表明,与水藻相比,水藻在各溶液中的细胞毒性含量最高。藻类S. illicifolium在KOH 4M(纤维素)中达到2,707µg。ml -1, HCl pH 2(岩藻糖聚糖)为2,477µg。ml -1,则cacl2 2%(岩藻糖聚糖)为2362µg。在na2co33中,3%(海藻酸盐)为2134µg。Ml -1。在抗病毒作用方面,与KOH 4M(纤维素)溶液相比,多糖含有最高的抗病毒化合物,达到67.02µg。Ml -1。然后是Na 2 CO 3 3%海藻酸盐,浓度为33.25µg。ml -1,然后是cacl2 2%(岩藻糖聚糖),为31.62µg。HCl pH 2(岩藻糖聚糖)为30.08µg。Ml -1。最后,发现具有最高生物活性的化合物与KOH 4M(纤维素)在水杨花中具有细胞毒性,在多囊花中具有抗病毒活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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