Spinozzi Eleonora, Cespi Marco, Ferrati Marta, Petrelli Riccardo, Maggi Filippo, Wang Junbiao, Alimi Sunday Segun, Perinelli Diego Romano, Bonacucina Giulia
Chemistry Interdisciplinary Project (ChIP), School of Pharmacy, University of Camerino, 62032 Camerino, Italy.
School of Biosciences and Veterinary Medicine, University of Camerino, 62032 Camerino, Italy.
Pharmaceutics. 2025 May 8;17(5):625. doi: 10.3390/pharmaceutics17050625.
: Natural products are gaining increasing importance due to the large variety of biological activities exerted by their constituents. Among these, the products deriving from (L.) R.K. Jansen can be exploited for their local anaesthetic, myorelaxant, anti-inflammatory/analgesic, and antifungal properties. In this regard, there is a need to develop novel formulations for the topical delivery of -derived extracts to widen their use in the pharmaceutical and cosmetic fields. : Nanoformulations, i.e., nanoemulsions (NEs) and microemulsions (MEs), were investigated as a strategy to encapsulate an extract from at the nanoscale level in water and then incorporated into xanthan gum-based hydrogels. : Only NEs provided a physically stable formulation, while the precipitation of solid hydrophobic components from the extract was observed during ME preparation under all tested conditions despite the use of ethyl oleate as an oily co-solvent. The optimized NE-based hydrogel remained physically stable over six months, as confirmed by rheological measurements and polarized optical microscope observation, without a phase separation phenomenon. Therefore, NEs resulted more suitable nanodispersed systems than MEs for the encapsulation of extract, which contains a large amount of hydrophobic constituents that are solid at room temperature. Furthermore, the sustained spilanthol release across an artificial membrane (Franz cell apparatus) and the cytotoxic profile on HaCaT cell line support its potential topical application. : The outcomes of this study provided valuable insights into the formulation of extract, broadening its fields of applicability, including topical administration.
天然产物因其成分所具有的多种生物活性而变得越来越重要。其中,源自(L.)R.K.詹森的产物可因其局部麻醉、肌松、抗炎/镇痛和抗真菌特性而得到开发利用。在这方面,需要开发新型制剂用于源自[该植物名称]提取物的局部给药,以扩大其在制药和化妆品领域的应用。:研究了纳米制剂,即纳米乳剂(NEs)和微乳剂(MEs),作为一种将[该植物名称]提取物在纳米尺度上包封于水中然后掺入基于黄原胶的水凝胶中的策略。:只有纳米乳剂提供了物理稳定的制剂,而在所有测试条件下,尽管使用油酸乙酯作为油性助溶剂,但在微乳剂制备过程中仍观察到提取物中固体疏水成分的沉淀。经流变学测量和偏光显微镜观察证实,优化后的基于纳米乳剂的水凝胶在六个月内保持物理稳定,没有相分离现象。因此,对于含有大量在室温下为固体的疏水成分的[该植物名称]提取物的包封,纳米乳剂是比微乳剂更合适的纳米分散体系。此外,通过人工膜(弗兰兹扩散池装置)的辣椒碱持续释放以及对HaCaT细胞系的细胞毒性谱支持了其潜在的局部应用。:本研究结果为[该植物名称]提取物的制剂提供了有价值的见解,拓宽了其应用领域,包括局部给药。