Zhou Fang, Peterson Tiffany, Fan Zhaoyang, Wang Shu
College of Health Solutions, Arizona State University, Phoenix, AZ 85004, USA.
College of Integrative Sciences and Arts, Arizona State University, Phoenix, AZ 85004, USA.
Nutrients. 2023 Sep 6;15(18):3881. doi: 10.3390/nu15183881.
Phytochemicals, such as resveratrol, curcumin, and quercetin, have many benefits for health, but most of them have a low bioavailability due to their poor water solubility and stability, quick metabolism, and clearance, which restricts the scope of their potential applications. To overcome these issues, different types of nanoparticles (NPs), especially biocompatible and biodegradable NPs, have been developed. NPs can carry phytochemicals and increase their solubility, stability, target specificity, and oral bioavailability. However, NPs are prone to irreversible aggregation, which leads to NP instability and loss of functions. To remedy this shortcoming, stabilizers like polymers and surfactants are incorporated on NPs. Stabilizers not only increase the stability of NPs, but also improve their characteristics. The current review focused on discussing the state of the art in research on synthesizing phytochemical-based NPs and their commonly employed stabilizers. Furthermore, stabilizers in these NPs were also discussed in terms of their applications, effects, and underlying mechanisms. This review aimed to provide more references for developing stabilizers and NPs for future research.
白藜芦醇、姜黄素和槲皮素等植物化学物质对健康有诸多益处,但由于它们的水溶性和稳定性差、代谢快且清除迅速,大多数植物化学物质的生物利用度较低,这限制了它们的潜在应用范围。为克服这些问题,已开发出不同类型的纳米颗粒(NPs),尤其是生物相容性和可生物降解的NPs。NPs可以携带植物化学物质并提高其溶解度、稳定性、靶向特异性和口服生物利用度。然而,NPs易于发生不可逆聚集,这会导致NP不稳定并丧失功能。为弥补这一缺点,聚合物和表面活性剂等稳定剂被引入到NPs中。稳定剂不仅能提高NPs的稳定性,还能改善其特性。当前的综述着重讨论了基于植物化学物质的NPs合成及其常用稳定剂的研究现状。此外,还从这些NPs中稳定剂的应用、作用及潜在机制方面进行了讨论。本综述旨在为未来开发稳定剂和NPs的研究提供更多参考。