Argenziano Monica, Bressan Bruno, Luganini Anna, Finesso Nicole, Genova Tullio, Troia Adriano, Giribaldi Giuliana, Banche Giuliana, Mandras Narcisa, Cuffini Anna Maria, Cavalli Roberta, Prato Mauro
Department of Drug Science and Technology, University of Turin, 10125 Turin, Italy.
Department of Neuroscience, University of Turin, 10126 Turin, Italy.
Mar Drugs. 2021 Feb 15;19(2):112. doi: 10.3390/md19020112.
Persistent hypoxia is a main clinical feature of chronic wounds. Intriguingly, oxygen-loaded nanodroplets (OLNDs), filled with oxygen-solving 2H,3H-decafluoropentane and shelled with polysaccharides, have been proposed as a promising tool to counteract hypoxia by releasing a clinically relevant oxygen amount in a time-sustained manner. Here, four different types of chitosan (low or medium weight (LW or MW), glycol-(G-), and methylglycol-(MG-) chitosan) were compared as candidate biopolymers for shell manufacturing. The aim of the work was to design OLND formulations with optimized physico-chemical characteristics, efficacy in oxygen release, and biocompatibility. All OLND formulations displayed spherical morphology, cationic surfaces, ≤500 nm diameters (with LW chitosan-shelled OLNDs being the smallest), high stability, good oxygen encapsulation efficiency, and prolonged oxygen release kinetics. Upon cellular internalization, LW, MW, and G-chitosan-shelled nanodroplets did not significantly affect the viability, health, or metabolic activity of human keratinocytes (HaCaT cell line). On the contrary, MG-chitosan-shelled nanodroplets showed very poor biocompatibility. Combining the physico-chemical and the biological results obtained, LW chitosan emerges as the best candidate biopolymer for future OLND application as a skin device to treat chronic wounds.
持续性缺氧是慢性伤口的主要临床特征。有趣的是,已有人提出用负载氧气的纳米液滴(OLNDs)来对抗缺氧,这种纳米液滴填充有溶解氧气的2H,3H - 十氟戊烷,并以多糖为外壳,能够以持续的方式释放出临床上相关量的氧气。在此,比较了四种不同类型的壳聚糖(低或中等分子量(LW或MW)、乙二醇化 -(G -)和甲基乙二醇化 -(MG -)壳聚糖)作为外壳制造的候选生物聚合物。这项工作的目的是设计出具有优化的物理化学特性、氧气释放功效和生物相容性的OLND制剂。所有的OLND制剂均呈现球形形态、阳离子表面、直径≤500 nm(以LW壳聚糖包裹的OLNDs最小)、高稳定性、良好的氧气包封效率以及延长的氧气释放动力学。细胞内化后,LW、MW和G - 壳聚糖包裹的纳米液滴对人角质形成细胞(HaCaT细胞系)的活力、健康状况或代谢活性没有显著影响。相反,MG - 壳聚糖包裹的纳米液滴表现出非常差的生物相容性。综合所获得的物理化学和生物学结果,LW壳聚糖成为未来作为治疗慢性伤口的皮肤装置的OLND应用的最佳候选生物聚合物。