Paolino Donatella, Mancuso Antonia, Cristiano Maria Chiara, Froiio Francesca, Lammari Narimane, Celia Christian, Fresta Massimo
Department of Experimental and Clinical Medicine, University of Catanzaro "Magna Graecia", Viale Europa s.n.c., I-88100 Catanzaro, Italy.
Department of Health Sciences, University of Catanzaro "Magna Graecia", Viale Europa s.n.c., I-88100 Catanzaro, Italy.
Nanomaterials (Basel). 2021 Mar 19;11(3):792. doi: 10.3390/nano11030792.
In the last few decades, the combination between nanotechnology and nutraceutics has gained the attention of several research groups. Nutraceuticals are considered as active compounds, abundant in natural products, showing beneficial effects on human health. Unfortunately, the uses, and consequently the health benefits, of many nutraceutical products are limited by their unsuitable chemico-physical features. For example, many nutraceuticals are characterized by low water solubility, low stability and high susceptibility to light and oxygen, poor absorption and potential chemical modifications after their administration. Based on the potential efficacy of nutraceuticals and on their limiting features, nanotechnology could be considered a revolutionary innovation in empowering the beneficial properties of nutraceuticals on human health, thus enhancing their efficacy in several diseases. For this reason, nanotechnology could represent a new frontier in supplementary food. In this review, the most recent nanotechnological approaches are discussed, focusing on their ability to improve the bioavailability of the most common nutraceuticals, providing an overview regarding both the advantages and the possible limitations of the use of several nanodelivery systems. In fact, although the efficacy of smart nanocarriers in improving health benefits deriving from nutraceuticals has been widely demonstrated, the conflicting opinions on the mechanism of action of some nanosystems still reduce their applicability in the therapeutic field.
在过去几十年中,纳米技术与营养保健品的结合引起了多个研究团队的关注。营养保健品被视为天然产物中富含的活性化合物,对人体健康具有有益作用。不幸的是,许多营养保健品的用途及其对健康的益处受到其不合适的化学物理特性的限制。例如,许多营养保健品具有低水溶性、低稳定性以及对光和氧的高敏感性、吸收差和给药后潜在的化学修饰等特点。基于营养保健品的潜在功效及其限制特性,纳米技术可被视为增强营养保健品对人体健康有益特性的一项革命性创新,从而提高其在多种疾病中的疗效。因此,纳米技术可能代表了补充食品的一个新前沿领域。在本综述中,讨论了最新的纳米技术方法,重点关注它们提高最常见营养保健品生物利用度的能力,概述了几种纳米递送系统使用的优点和可能的局限性。事实上,尽管智能纳米载体在改善营养保健品对健康益处方面的功效已得到广泛证明,但关于某些纳米系统作用机制的相互矛盾的观点仍然降低了它们在治疗领域的适用性。