CICECO, University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.
LAQV-REQUIMTE, Faculty of Pharmacy, University of Porto, 4050-313 Porto, Portugal.
Molecules. 2023 Sep 8;28(18):6526. doi: 10.3390/molecules28186526.
Plant sterols (PS) are cholesterol-like terpenoids widely spread in the kingdom Plantae. Being the target of extensive research for more than a century, PS have topped with evidence of having beneficial effects in healthy subjects and applications in food, cosmetic and pharmaceutical industries. However, many gaps in several fields of PS's research still hinder their widespread practical applications. In fact, many of the mechanisms associated with PS supplementation and their health benefits are still not fully elucidated. Furthermore, compared to cholesterol data, many complex PS chemical structures still need to be fully characterized, especially in oxidized PS. On the other hand, PS molecules have also been the focus of structural modifications for applications in diverse areas, including not only the above-mentioned but also in e.g., drug delivery systems or alternative matrixes for functional foods and fats. All the identified drawbacks are also superimposed by the need of new PS sources and technologies for their isolation and purification, taking into account increased environmental and sustainability concerns. Accordingly, current and future trends in PS research warrant discussion.
植物固醇(PS)是一种类似于胆固醇的类萜,广泛存在于植物界。作为一个多世纪以来广泛研究的对象,PS 已经被证明对健康受试者具有有益的影响,并在食品、化妆品和制药行业得到了应用。然而,PS 研究的几个领域仍然存在许多空白,这阻碍了它们的广泛实际应用。事实上,许多与 PS 补充及其健康益处相关的机制仍未完全阐明。此外,与胆固醇数据相比,许多复杂的 PS 化学结构仍需要完全表征,尤其是在氧化 PS 中。另一方面,PS 分子也一直是结构修饰的焦点,应用领域广泛,不仅包括上述领域,还包括例如药物传递系统或功能性食品和脂肪的替代基质。所有已确定的缺点也因需要新的 PS 来源和技术来进行分离和提纯而叠加,同时考虑到环境和可持续性方面的增加。因此,需要对 PS 研究的当前和未来趋势进行讨论。