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微藻酚类化合物:系统评价,重点关注方法评估和荟萃分析。

Microalgal Phenolics: Systematic Review with a Focus on Methodological Assessment and Meta-Analysis.

机构信息

Laboratory of Biochemical Engineering & Environmental Technology (LBEET), Department of Chemical Engineering, University of Patras, 26504 Patras, Greece.

Institute of Circular Economy and Environment (ICEE), University of Patras' Research and Development Center, 26504 Patras, Greece.

出版信息

Mar Drugs. 2024 Oct 7;22(10):460. doi: 10.3390/md22100460.

Abstract

A critical review and analysis of the literature relevant to the phenolic content of eucaryotic microalgae was performed. Several issues were identified and discussed. In summary, the main problems with the reporting on the phenolic content of microalgae are the following: (1) despite its usefulness in the determination of phenolic content in plant samples, the Folin-Ciocalteu assay is non-suitable for microalgal research due to the high presence of interfering compounds in microalgal extracts such as chlorophyll and its derivatives in organic extracts and free aromatic amino acids or nucleotides in aqueous extracts; (2) while there is chromatographic evidence for the presence of simple phenolic acids in most microalgal clades, the lack of critical enzymes of phenolic biosynthesis in most microalgae, as well as the high variability of phenolic profiles even in the same genus, require more extensive research before conclusions are drawn; (3) the accumulation and metabolism of external phenolics by microalgae has been almost universally neglected in studies focusing on the phenolic content of microalgae, even when natural seawater or complex organic media are used in the cultivation process. Despite these issues, the literature focusing on the bioremediation of waste streams rich in phenolics through microalgae demonstrates the ability of those organisms to adsorb, internalize, and in many cases oxidize or transform a wide range of phenolic compounds, even at very high concentrations. Simple phenolics found in waste streams, such as olive mill waste, have been shown to enhance the antioxidant activity and various bioactivities of microalgal extracts, while complex biotransformation products of phenolics have also been characterized. In conclusion, the de novo biosynthesis of phenolic compounds via eucaryotic microalgae requires further investigation with better designed experiments and suitable analytical methods, while the response of microalgae to phenolic compounds in their growth medium is of great practical interest, both in terms of waste treatment and for the production of functional foods, cosmetics, and pharmaceuticals.

摘要

对与真核微藻酚类含量相关的文献进行了批判性回顾和分析。确定并讨论了几个问题。总的来说,微藻酚含量报告存在以下主要问题:(1)尽管福林- 酚试剂法在植物样品中酚含量的测定中很有用,但由于微藻提取物中存在大量干扰化合物,如叶绿素及其衍生物在有机溶剂提取物中,以及游离芳香族氨基酸或核苷酸在水提取物中,因此该方法不适合微藻研究;(2)虽然有色谱证据表明大多数微藻类群中存在简单的酚酸,但由于大多数微藻中缺乏酚生物合成的关键酶,以及即使在同一属中酚类谱也存在高度变异性,因此在得出结论之前还需要进行更广泛的研究;(3)在关注微藻酚含量的研究中,微藻对外部酚类的积累和代谢几乎普遍被忽视,即使在培养过程中使用天然海水或复杂有机介质也是如此。尽管存在这些问题,但专注于富含酚类的废水的生物修复的文献表明,这些生物体能够吸附、内化,并在许多情况下氧化或转化广泛的酚类化合物,即使在非常高的浓度下也是如此。在废水中发现的简单酚类物质,如橄榄磨废水,已被证明可以增强微藻提取物的抗氧化活性和各种生物活性,同时也对酚类的复杂生物转化产物进行了表征。总之,通过真核微藻从头合成酚类化合物需要进一步研究,设计更好的实验和合适的分析方法,而微藻对其生长介质中酚类化合物的反应在废水处理和功能性食品、化妆品和药物生产方面都具有重要的实际意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52af/11509163/0d442c81dc69/marinedrugs-22-00460-g001.jpg

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