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Scientific Approaches on Extraction Purification and Stability for the Commercialization of Fucoxanthin Recovered from Brown Algae

机译:从褐藻中回收的岩藻素商业化的提取净化和稳定性的科学途径

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摘要

The scientific community has corroborated the numerous beneficial activities of fucoxanthin, such as its antioxidant, anti-inflammatory, anticancer or neuroprotective effects, among others. These properties have attracted the attention of nutraceutical, cosmetic and pharmacological industries, giving rise to various possible applications. Fucoxanthin may be chemically produced, but the extraction from natural sources is considered more cost-effective, efficient and eco-friendly. Thus, identifying suitable sources of this compound and giving a general overview of efficient extraction, quantification, purification and stabilization studies is of great importance for the future production and commercialization of fucoxanthin. The scientific research showed that most of the studies are performed using conventional techniques, but non-conventional techniques begin to gain popularity in the recovery of this compound. High Performance Liquid Chromatography (HPLC), Nuclear Magnetic Resonance (NMR) and spectroscopy techniques have been employed in the quantification and identification of fucoxanthin. The further purification of extracts has been mainly accomplished using purification columns. Finally, the stability of fucoxanthin has been assessed as a free molecule, in an emulsion, or encapsulated to identify the variables that might affect its further industrial application.
机译:科学界已经证实了岩藻素的许多有益活动,例如其抗氧化剂,抗炎,抗癌或神经保护作用等。这些物业引起了营养保健品,化妆品和药理学行业的注意力,产生了各种可能的应用。岩藻素可以进行化学制作,但自然来源的提取被认为是更具成本效益,高效和环保的。因此,鉴定该化合物的合适来源并赋予了有效的提取,定量,净化和稳定性研究的一般性概述对于Fucoxanthin的未来生产和商业化具有重要意义。科学研究表明,大多数研究使用常规技术进行,但是非常规技术开始在恢复该化合物的普及中获得普及。已经采用高效液相色谱(HPLC),核磁共振(NMR)和光谱技术在岩藻素的定量和鉴定中使用。通过纯化柱实现提取物的进一步纯化。最后,已经评估了岩藻素的稳定性作为游离分子,乳液或包封以鉴定可能影响其进一步的工业应用的变量。

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