Interdepartmental Centre of Environmental Science and Engineering (CINSA), University of Cagliari, Via San Giorgio 12, 09124 Cagliari, Italy.
Department of Mechanical, Chemical and Materials Engineering, University of Cagliari, Via Marengo 2, 09123 Cagliari, Italy.
Mar Drugs. 2023 Jun 7;21(6):352. doi: 10.3390/md21060352.
Over the years, microalgae have been a source of useful compounds mainly used as food and dietary supplements. Recently, microalgae have been used as a source of metabolites that can participate in the synthesis of several nanoparticles through inexpensive and environmentally friendly routes alternative to chemical synthesis. Notably, the occurrence of global health threats focused attention on the microalgae application in the medicinal field. In this review, we report the influence of secondary metabolites from marine and freshwater microalgae and cyanobacteria on the synthesis of nanoparticles that were applied as therapeutics. In addition, the use of isolated compounds on the surface of nanoparticles to combat diseases has also been addressed. Although studies have proven the beneficial effect of high-value bioproducts on microalgae and their potential in medicine, there is still room for understanding their exact role in the human body and translating lab-based research into clinical trials.
多年来,微藻一直是有用化合物的来源,主要用作食品和膳食补充剂。最近,微藻已被用作代谢物的来源,可以通过替代化学合成的廉价且环保的途径参与几种纳米粒子的合成。值得注意的是,全球健康威胁的出现使人们关注微藻在医学领域的应用。在这篇综述中,我们报告了海洋和淡水微藻和蓝藻的次生代谢物对纳米粒子合成的影响,这些纳米粒子被用作治疗方法。此外,还讨论了将分离化合物用于纳米粒子表面以对抗疾病的应用。尽管研究已经证明了高价值生物制品对微藻的有益作用及其在医学上的潜力,但仍需要进一步了解它们在人体中的确切作用,并将实验室研究转化为临床试验。