Santander Sebastián, Padilla-Manzano Nicolás, Díaz Bastián, Bacchiega Renato, Jara Elizabeth, Álvarez Luis Felipe, Pinto Cristóbal, Forero Juan C, Santana Paula, Hamm Eugenio, Urzúa Marcela, Tamayo Laura
Departamento de Química, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Santiago 7800003, Chile.
Escuela de Ciencias de la Salud, Universidad de Viña del Mar, Viña del Mar 2572007, Chile.
Pharmaceutics. 2023 Jun 5;15(6):1659. doi: 10.3390/pharmaceutics15061659.
The ideal treatment for chronic wounds is based on the use of bioactive dressings capable of releasing active agents. However, the control of the rate at which these active agents are released is still a challenge. Bioactive polymeric fiber mats of poly(styrene--maleic anhydride) [PSMA] functionalized with amino acids of different hydropathic indices and L-glutamine, L-phenylalanine and L-tyrosine levels allowed obtaining derivatives of the copolymers named PSMA@Gln, PSMA@Phe and PSMA@Tyr, respectively, with the aim of modulating the wettability of the mats. The bioactive characteristics of mats were obtained by the incorporation of the active agents (Cal) and silver nanoparticles (AgNPs). A higher wettability for PSMA@Gln was observed, which is in accordance with the hydropathic index value of the amino acid. However, the release of AgNPs was higher for PSMA and more controlled for functionalized PSMA (PSMAf), while the release curves of Cal did not show behavior related to the wettability of the mats due to the apolar character of the active agent. Finally, the differences in the wettability of the mats also affected their bioactivity, which was evaluated in bacterial cultures of ATCC 25923 and methicillin-resistant ATCC 33592, an NIH/3T3 fibroblast cell line and red blood cells.
慢性伤口的理想治疗方法基于使用能够释放活性剂的生物活性敷料。然而,控制这些活性剂的释放速率仍然是一项挑战。用具有不同亲水性指数的氨基酸以及L-谷氨酰胺、L-苯丙氨酸和L-酪氨酸水平进行功能化的聚(苯乙烯-马来酸酐)[PSMA]生物活性聚合物纤维垫,分别得到了名为PSMA@Gln、PSMA@Phe和PSMA@Tyr的共聚物衍生物,目的是调节垫子的润湿性。垫子的生物活性特征通过掺入活性剂(Cal)和银纳米颗粒(AgNPs)获得。观察到PSMA@Gln具有更高的润湿性,这与氨基酸的亲水性指数值一致。然而,PSMA中AgNPs的释放量更高,而功能化PSMA(PSMAf)的释放更可控,而由于活性剂的非极性特征,Cal的释放曲线未显示出与垫子润湿性相关的行为。最后,垫子润湿性的差异也影响了它们的生物活性,这在ATCC 25923细菌培养物、耐甲氧西林的ATCC 33592、NIH/3T3成纤维细胞系和红细胞中进行了评估。