Pagano Cinzia, Puglia Debora, Luzi Francesca, Michele Alessandro Di, Scuota Stefania, Primavilla Sara, Ceccarini Maria Rachele, Beccari Tommaso, Iborra César Antonio Viseras, Ramella Daniele, Ricci Maurizio, Perioli Luana
Department of Pharmaceutical Sciences, University of Perugia, 06123 Perugia, Italy.
Civil and Environmental Engineering Department, University of Perugia, 05100 Terni, Italy.
Pharmaceutics. 2021 Mar 3;13(3):324. doi: 10.3390/pharmaceutics13030324.
Pycnogenol (PYC) is a concentrate of phenolic compounds derived from French maritime pine; its biological activity as antioxidant, anti-inflammatory and antibacterial suggests its use in the treatment of open wounds. A bioadhesive film, loaded with PYC, was prepared by casting, starting with a combination of two biopolymer acqueous solutions: xanthan gum (1% wt/wt) and sodium alginate (1.5% wt/wt), in a 2.5/7.5 (wt/wt) ratio. In both solutions, glycerol (10% wt/wt) was added as plasticizing agent. The film resulted in an adhesive capable to absorb a simulated wound fluid (~ 65% wt/wt within 1 h), therefore suitable for exuding wounds. The mechanical characterization showed that the film is deformable (elastic modulus E = 3.070 ± 0.044 MPa), suggesting adaptability to any type of surface and resistance to mechanical solicitations. PYC is released within 24 h by a sustained mechanism, achieving a maximum concentration of ~ 0.2 mg/mL, that is safe for keratinocytes, as shown by cytotoxicity studies. A concentration of 0.015 mg/mL is reached in the first 5 min after application, at which point PYC stimulates keratinocyte growth. These preliminary results suggest the use of PYC in formulations designed for topical use.
碧萝芷(PYC)是一种从法国滨海松中提取的酚类化合物浓缩物;其抗氧化、抗炎和抗菌的生物活性表明它可用于治疗开放性伤口。通过浇铸法制备了一种负载碧萝芷的生物粘附膜,起始原料为两种生物聚合物水溶液的组合:黄原胶(1%重量/重量)和海藻酸钠(1.5%重量/重量),比例为2.5/7.5(重量/重量)。在两种溶液中均添加甘油(10%重量/重量)作为增塑剂。该膜制成的粘合剂能够吸收模拟伤口渗出液(1小时内吸收约65%重量/重量),因此适用于有渗出液的伤口。力学性能表征表明该膜具有可变形性(弹性模量E = 3.070±0.044兆帕),表明其能适应任何类型的表面并抵抗机械外力。碧萝芷通过持续释放机制在24小时内释放,达到的最大浓度约为0.2毫克/毫升,细胞毒性研究表明该浓度对角质形成细胞是安全的。应用后最初5分钟内达到0.015毫克/毫升的浓度,此时碧萝芷刺激角质形成细胞生长。这些初步结果表明碧萝芷可用于设计用于局部应用的制剂中。