Laboratory of Research and Development of Drug Delivery Systems, Postgraduate Program in Pharmaceutical Sciences, Department of Pharmacy, State University of Maringa, Maringa, Brazil.
Department of Chemistry, State University of Maringa, Maringa, Brazil.
Pharm Dev Technol. 2021 Feb;26(2):138-149. doi: 10.1080/10837450.2020.1849283. Epub 2020 Nov 23.
Polyvinyl alcohol (PVA) and polyvinylpyrrolidone (PVP) have been extensively studied for their use in film formation. Poloxamer 407 (P407) is a block copolymer that has thermo-responsive and surfactant properties when used in pharmaceutical systems. These polymers are already used in liquid or semi-solid systems for ocular and parenteral drug delivery. However, the effect of P407 presence in solid pharmaceutical films composed of different PVA:PVP ratios have not been investigated yet. Therefore, this work investigated the influence of P407 added to the binary polymer mixture of PVA and PVP for the development of solid films aiming for pharmaceutical applications. The rheological properties of dispersions were investigated, and films were prepared by solvent casting method using different P407:PVA:PVP ratios according to a factorial design 2 (plus center point). The mechanical and mucoadhesive properties of films, as well as the disintegration time were investigated. Systems presented high mechanical resistance, mucoadhesion, and disintegration timeless than 180 s. It was found that higher concentrations of PVA increase mechanical properties and decrease disintegration time, and higher proportions of PVP and P407 increased mucoadhesion. The films could be classified as fast disintegrating films and represent a promising alternative for modifying drug delivery and pharmaceutical applications.
聚乙烯醇(PVA)和聚乙烯吡咯烷酮(PVP)已被广泛研究用于成膜。泊洛沙姆 407(P407)是一种嵌段共聚物,在药物系统中使用时具有温度响应性和表面活性剂特性。这些聚合物已经在用于眼部和肠胃外药物递送的液体或半固体系统中使用。然而,P407 存在于由不同 PVA:PVP 比例组成的固体药物薄膜中的影响尚未得到研究。因此,本工作研究了 P407 对 PVA 和 PVP 二元聚合物混合物的存在对开发用于药物应用的固体薄膜的影响。考察了分散体的流变性能,并根据 2(加中心点)因子设计使用不同的 P407:PVA:PVP 比例通过溶剂浇铸法制备薄膜。考察了薄膜的机械和粘膜粘附性能以及崩解时间。系统表现出高机械阻力、粘膜粘附性和崩解时间小于 180s。发现 PVA 浓度越高,机械性能越高,崩解时间越短,而 PVP 和 P407 的比例越高,粘膜粘附性越高。这些薄膜可归类为快速崩解薄膜,是改变药物递送和药物应用的有前途的替代方案。