Department of Pharmacy, University of Salerno, Via Giovanni Paolo II, 132, 84084 Fisciano (SA), Italy.
Molecules. 2019 Apr 19;24(8):1547. doi: 10.3390/molecules24081547.
The choice of formulation is often of crucial importance in order to obtain a pharmaceutical product for the administration of poorly soluble drugs. Recently, a new water-soluble microparticulate powder form (MTE-mp) for the oral administration of a high functionality/low solubility silymarin rich milk thistle extract (MTE) has been developed. Findings showed that extract-loaded microparticles by spray-drying were produced with high and reproducible yields and encapsulation efficiency. The in vitro dissolution and permeation rates of silymarin were dramatically improved with respect to the raw material, and also enhanced the silymarin anti-inflammatory abilities. Given these successful results, the new MTE-mp delivery system has been proposed as an active ingredient for dermal applications. The aim of this research was the design and development of two topical formulations, hydrogel and emulgel (O/W emulsion), containing the MTE-mp delivery system or MTE raw extract. All the formulations were compared to each other in terms of handling and incorporation amount of the active ingredient during the productive process. Moreover, the addition to the emulgel of lecithin (L) as enhancer of permeation was tested. The MTE-mp ingredient that resulted was stable and more-easily incorporated both in hydrogel and emulgel than raw MTE extract, obtaining the best permeation profile for MTE-mp from emulgel with the addition of L. The obtained results confirm that the MTE-mp system could be used as a stable, water-soluble, and easy-handling functional ingredient, giving the opportunity to develop new strategies for MTE delivery in health products.
为了获得用于投药难溶性药物的药物产品,制剂的选择通常至关重要。最近,已经开发出一种用于口服高功能/低溶解度水飞蓟素丰富的奶蓟提取物(MTE)的新型水溶性微颗粒粉末形式(MTE-mp)。研究结果表明,通过喷雾干燥生产的载有提取物的微颗粒具有高且可重现的产率和包封效率。与原料相比,水飞蓟素的体外溶解和渗透速率得到了极大改善,并且还增强了水飞蓟素的抗炎能力。鉴于这些成功的结果,新的 MTE-mp 给药系统已被提议作为皮肤应用的活性成分。本研究的目的是设计和开发两种局部制剂,水凝胶和乳凝胶(O/W 乳液),包含 MTE-mp 给药系统或 MTE 原始提取物。所有制剂在生产过程中在处理和活性成分的添加量方面相互进行比较。此外,还测试了向乳凝胶中添加卵磷脂(L)作为渗透增强剂。所得的 MTE-mp 成分比原始 MTE 提取物更稳定且更易于掺入水凝胶和乳凝胶中,在添加 L 的情况下,从乳凝胶中获得了 MTE-mp 的最佳渗透曲线。所得结果证实,MTE-mp 系统可用作稳定,水溶性且易于处理的功能性成分,为在保健品中开发 MTE 传递的新策略提供了机会。