Pedro Sónia N, Valente Bruno F A, Vilela Carla, Oliveira Helena, Almeida Adelaide, Freire Mara G, Silvestre Armando J D, Freire Carmen S R
CICECO - Aveiro Institute of Materials, Department of Chemistry, University of Aveiro, Campus de Santiago, 3810-193, Aveiro, Portugal.
CESAM, Department of Biology, University of Aveiro, Campus de Santiago, 3810-193, Aveiro, Portugal.
Mater Today Bio. 2023 Jul 14;22:100733. doi: 10.1016/j.mtbio.2023.100733. eCollection 2023 Oct.
Antimicrobial photodynamic therapy (aPDT) is a potent tool to surpass the global rise of antimicrobial resistance; still, the effective topical administration of photosensitizers remains a challenge. Biopolymer-based adhesive films can safely extend the residence time of photosensitizers. However, their wide application is narrowed by their limited water absorption capacity and gel strength. In this study, pullulan-based films with a switchable character (from a solid film to an adhesive hydrogel) were developed. This was accomplished by the incorporation of a betaine-based deep eutectic solvent (DES) containing curcumin (4.4 μg.cm) into the pullulan films, which tuned the films' skin moisture absorption ability, and therefore they switch into an adhesive hydrogel capable of delivering the photosensitizer. The obtained transparent films presented higher extensibility (elongation at break up to 338.2%) than the pullulan counterparts (6.08%), when stored at 54% of relative humidity, and the corresponding hydrogels a 4-fold higher adhesiveness than commercial hydrogels. These non-cytotoxic adhesives allowed the inactivation (∼5 log reduction), down to the detection limit of the method, of multiresistant strains of in skin samples. Overall, these materials are promising for aPDT in the treatment of resistant skin infections, while being easily removed from the skin.
抗菌光动力疗法(aPDT)是应对全球抗菌药物耐药性上升的有力工具;然而,光敏剂的有效局部给药仍然是一项挑战。基于生物聚合物的粘附膜可以安全地延长光敏剂的停留时间。然而,它们有限的吸水能力和凝胶强度限制了其广泛应用。在本研究中,开发了具有可切换特性(从固体膜转变为粘附水凝胶)的基于普鲁兰多糖的膜。这是通过将含有姜黄素(4.4μg.cm)的基于甜菜碱的低共熔溶剂(DES)掺入普鲁兰多糖膜中来实现的,该溶剂调节了膜对皮肤水分的吸收能力,从而使其转变为能够递送光敏剂的粘附水凝胶。当在相对湿度为54%的条件下储存时,所获得的透明膜呈现出比普鲁兰多糖对照膜更高的延展性(断裂伸长率高达338.2%,而对照膜为6.08%),并且相应的水凝胶的粘附性比市售水凝胶高4倍。这些无细胞毒性的粘合剂能够使皮肤样本中的多重耐药菌株失活(约5个对数级降低),直至该方法的检测限。总体而言,这些材料有望用于aPDT治疗耐药性皮肤感染,同时易于从皮肤上移除。