REQUIMTE/LAQV, Laboratory of Bromatology and Hydrology, Department of Chemical Sciences, Faculty of Pharmacy, University of Porto, Viterbo Ferreira, Portugal.
Laboratory of Pharmaceutical Technology, Faculty of Pharmacy of University of Porto, Viterbo Ferreira, Portugal.
Expert Opin Drug Deliv. 2024 Oct;21(10):1491-1499. doi: 10.1080/17425247.2024.2410949. Epub 2024 Oct 4.
Numerous purified bioactive compounds, crude extracts, and essential oils have demonstrated potent antioxidant, antimicrobial, anti-inflammatory, and antiviral properties, particularly in vitro or in silico; however, their in vivo applications are hindered by inadequate absorption and distribution in the organism. The incorporation of these phytochemicals into solid lipid nanoparticles (SLN) or nanostructured lipid carriers (NLC) has demonstrated significant advancements and represents a viable approach to improve their bioavailability through different administration routes.
This review discusses the potential applications of SLN and NLC, loading bioactive compounds sourced from plants for the treatment of several diseases. An overview of the preclinical developments on the use of these lipid nanoparticles is also provided as well as the requisites to be launched on the market.
Medicinal plants have gained even more value for the pharmaceutical industries and their customers, leading to many studies exploring their therapeutic potential. Several bioactives derived from plants with antiviral, anticancer, neuroprotective, antioxidant, and antiaging properties have been proposed and loaded into lipid nanoparticles. and studies corroborate the added value of SLN/NLC to improve the bioavailability of several bioactives. Surface modification to increase their stability and target delivery should be considering.
许多已提纯的生物活性化合物、粗提取物和精油已被证明具有强大的抗氧化、抗菌、抗炎和抗病毒特性,尤其是在体外或计算机模拟中;然而,由于其在生物体中的吸收和分布不足,其体内应用受到阻碍。将这些植物化学物质纳入固体脂质纳米粒 (SLN) 或纳米结构化脂质载体 (NLC) 已被证明取得了重大进展,代表了通过不同给药途径提高其生物利用度的可行方法。
本文讨论了 SLN 和 NLC 的潜在应用,即将源自植物的生物活性化合物用于治疗多种疾病。还概述了这些脂质纳米粒在临床前开发方面的应用,以及上市所需的条件。
药用植物对制药行业及其客户的价值进一步提升,导致许多研究探索其治疗潜力。已提出并将几种具有抗病毒、抗癌、神经保护、抗氧化和抗衰老特性的植物衍生生物活性物质载入脂质纳米粒。体内和体外研究证实了 SLN/NLC 可提高多种生物活性物质的生物利用度。应考虑进行表面修饰以提高其稳定性和靶向递送。