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Fatty acid compositions in local sea cucumber, Stichopus chloronotus, for wound healing.

机译:本地海参Stichopus chloronotus中的脂肪酸成分,可用于伤口愈合。

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Fatty acid profile from crude extracts of local sea cucumber Stichopus chloronotus was determined using gas chromatography (GC) technique. The extracts were prepared separately in methanol, ethanol, phosphate buffer saline (PBS), and distilled water as part of our study to look at the affinity of these solvents in extracting the lipid from sea cucumber. The PBS and distilled water extractions indicate water-soluble components, while the organic fractions are extracted in methanol and ethanol as organic solvents. Furthermore, water extraction is the conventional method practiced in Malaysia. In our analysis the C14:0 (myristic), C16:0 (palmitic), C18:0 (stearic), C18:2 (linoleic), C20:0 (arachidic), and C20:5 (eicosapentaenoic, EPA) were significantly different (p < 0.01) in the four solvent extractions. However, the PBS extraction contained a much higher percentage of EPA (25.69%) compared to 18.89% in ethanol, 7.84% in distilled water, and only 5.83% in methanol, and variances were significantly different (p < 0.01 ). On the other hand, C22:6 (docosahexaenoic acid or DHA) is much higher in water extraction (57.55%), in comparison to the others where only 3.63% in PBS and 1.20% in methanol, and this difference is significant at p < 0.01. No DHA was detected in ethanol extractions. Subsequently, C18:1 (oleic acid) was only detected in PBS (21.98%) and water extraction (7.50%). It is interesting that palmitic acid, C16:() was higher in methanol (20.82%) and ethanol (2.18%), while 12.55% was detected in PBS and only 2.20% in water extraction: and again this was significantly different at p < 0.01. Although our results have shown that all four solvents were different in terms of their ability to extract fatty acids, the major component for tissue repair was well preserved. Probably this is one of the important precocious steps when working with a delicate sea cucumber, in both experimental and/or at the preparative stages. Freshness of the sea cucumber samples is important when undertaking this type of experiment. Finally, we believe that the local sea cucumber S. chloronotus contains all the fatty acids required to play a potential active role in tissue repair.
机译:使用气相色谱(GC)技术确定了本地海参刺桐(Stichopus chloronotus)粗提物中的脂肪酸谱。提取物分别在甲醇,乙醇,磷酸盐缓冲盐水(PBS)和蒸馏水中制备,作为我们研究的一部分,以研究这些溶剂在从海参中提取脂质时的亲和力。 PBS和蒸馏水提取物表示水溶性成分,而有机馏分则在甲醇和乙醇中作为有机溶剂提取。此外,水提取是马来西亚实行的常规方法。在我们的分析中,C14:0(肉豆蔻酸),C16:0(棕榈酸),C18:0(硬脂酸),C18:2(亚油酸),C20:0(花生酸)和C20:5(二十碳五烯酸,EPA)显着在四次溶剂萃取中有不同(p <0.01)。然而,与乙醇中的18.89%,蒸馏水中的7.84%和甲醇中的5.83%相比,PBS萃取中所含的EPA百分比更高(25.69%),并且差异显着(p <0.01)。另一方面,水提取中的C22:6(二十二碳六烯酸或DHA)要高得多(57.55%),而在PBS中只有3.63%,在甲醇中只有1.20%,而在p < 0.01。在乙醇提取物中未检测到DHA。随后,仅在PBS(21.98%)和水萃取(7.50%)中检测到C18:1(油酸)。有趣的是,棕榈酸C16 :()在甲醇(20.82%)和乙醇(2.18%)中较高,而在PBS中检出12.55%,而在水提取中仅检出2.20%:这再次在p < 0.01。尽管我们的结果表明,所有四种溶剂提取脂肪酸的能力均不同,但组织修复的主要成分得到了很好的保存。在实验阶段和/或制备阶段,当使用精致的海参时,这可能是重要的早熟步骤之一。进行此类实验时,海参样品的新鲜度很重要。最后,我们认为本地海参S. chloronotus包含在组织修复中发挥潜在积极作用所需的所有脂肪酸。

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