Di Prima Giulia, Angellotti Giuseppe, Scarpaci Amalia Giulia, Murgia Denise, D'agostino Fabio, Campisi Giuseppina, De Caro Viviana
Dipartimento di Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche (STEBICEF), University of Palermo, Via Archirafi 32, 90123 Palermo, Italy.
Dipartimento di Discipline Chirurgiche, Oncologiche e Stomatologiche, Università degli Studi di Palermo, 90127 Palermo, Italy.
Pharmaceutics. 2021 Aug 31;13(9):1370. doi: 10.3390/pharmaceutics13091370.
Resveratrol (RSV) is a natural polyphenol with several interesting broad-spectrum pharmacological properties. However, it is characterized by poor oral bioavailability, extensive first-pass effect metabolism and low stability. Indeed, RSV could benefit from the advantage of the sublingual route of administration. In this view, RSV attitudes to crossing the porcine sublingual mucosa were evaluated and promoted both by six different chemical permeation enhancers (CPEs) as well as by preparing four innovative fast-disintegrating sublingual mini-tablets by spray drying followed by direct compression. Since RSV by itself exhibits a low permeation aptitude, this could be significantly enhanced by the use of CPEs as well as by embedding RSV in a spray-dried powder to be compressed in order to prepare fast-disintegrating mini-tablets. The most promising observed CPEs (menthol, lysine and urea) were then inserted into the most promising spray-dried excipients' compositions (RSV-B and RSV-C), thus preparing CPE-loaded mini-tablets. However, this procedure leads to unsatisfactory results which preclude the possibility of merging the two proposed approaches. Finally, the best spray-dried composition (RSV-B) was further evaluated by SEM, FTIR, XRD and disintegration as well as dissolution behavior to prove its effectiveness as a sublingual fast-disintegrating formulation.
白藜芦醇(RSV)是一种具有多种有趣的广谱药理特性的天然多酚。然而,它的特点是口服生物利用度差、首过效应代谢广泛且稳定性低。事实上,RSV可以受益于舌下给药途径的优势。从这个角度来看,评估了RSV穿过猪舌下黏膜的能力,并通过六种不同的化学渗透促进剂(CPEs)以及通过喷雾干燥后直接压片制备四种创新的速崩解舌下迷你片来促进其穿过能力。由于RSV本身的渗透能力较低,通过使用CPEs以及将RSV嵌入喷雾干燥粉末中以便压片来制备速崩解迷你片,可以显著提高其渗透能力。然后将观察到的最有前景的CPEs(薄荷醇、赖氨酸和尿素)插入最有前景的喷雾干燥辅料组合物(RSV-B和RSV-C)中,从而制备载有CPE的迷你片。然而,这个过程导致了不令人满意的结果,排除了将两种提议方法合并的可能性。最后,通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)以及崩解和溶解行为对最佳喷雾干燥组合物(RSV-B)进行了进一步评估,以证明其作为舌下速崩解制剂的有效性。