De Souza Ferreira Sabrina Barbosa, Da Silva Jéssica Bassi, Borghi-Pangoni Fernanda Belincanta, Junqueira Mariana Volpato, Bruschi Marcos Luciano
Postgraduate Program in Pharmaceutical Sciences, State University of Maringá, Maringá, Paraná, Brazil; Laboratory of Research and Development of Drug Delivery Systems, Department of Pharmacy, State University of Maringá, Maringá, Paraná, Brazil.
Postgraduate Program in Pharmaceutical Sciences, State University of Maringá, Maringá, Paraná, Brazil; Laboratory of Research and Development of Drug Delivery Systems, Department of Pharmacy, State University of Maringá, Maringá, Paraná, Brazil.
J Mech Behav Biomed Mater. 2017 Apr;68:265-275. doi: 10.1016/j.jmbbm.2017.02.016. Epub 2017 Feb 14.
Polycarbophil is widely used in a variety of pharmaceutical formulations, mainly for their strong ability to adhere to the epithelial and mucous barriers (bio/mucoadhesion). On the other hand, its association with the thermoresponsive polymer (poloxamer 407) has been poorly explored. This work investigates the rheological, mechanical and mucoadhesive properties of polymer blends containing polycarbophil and poloxamer 407, in order to select the best formulations for biomedical and pharmaceutical applications. Mechanical (hardness, compressibility, adhesiveness, softness, and mucoadhesion) and rheological characteristics (consistency index, yield value and hysteresis area) showed that 20% (w/w) poloxamer 407- polymer blends exhibited higher values parameters. However, the rheological interaction parameter, which was more sensible than the mechanical interaction parameter, revealed higher synergism for systems comprising 15% (w/w) poloxamer 407, due to the system organization and polymers' properties. Furthermore, gelation temperatures were appropriated, suggesting that polymer blends can be used as biomedical materials, and displaying easy administration, enhanced retention and prolonged residence time at the site of application. Therefore, rheological, mechanical and mucoadhesive characterization provided a rational basis for selecting appropriated systems, useful for mucoadhesive drug delivery systems and biomedical applications.
聚卡波非广泛应用于各种药物制剂中,主要是因其对上皮和黏液屏障具有很强的黏附能力(生物/黏膜黏附)。另一方面,其与热响应性聚合物(泊洛沙姆407)的结合研究较少。这项工作研究了含有聚卡波非和泊洛沙姆407的聚合物共混物的流变学、力学和黏膜黏附性能,以便为生物医学和制药应用选择最佳制剂。力学性能(硬度、可压缩性、黏附性、柔软度和黏膜黏附性)和流变学特性(稠度指数、屈服值和滞后面积)表明,20%(w/w)泊洛沙姆407 - 聚合物共混物表现出更高的参数值。然而,流变学相互作用参数比力学相互作用参数更敏感,它显示出对于含有15%(w/w)泊洛沙姆407的体系具有更高的协同作用,这归因于体系结构和聚合物的性质。此外,凝胶化温度适宜,表明聚合物共混物可作为生物医学材料使用,且具有易于给药、增强滞留以及在应用部位延长停留时间的特点。因此,流变学、力学和黏膜黏附特性为选择合适的体系提供了合理依据,这些体系对黏膜黏附性药物递送系统和生物医学应用很有用。