Anti-Infectives Research Group, Singapore Eye Research Institute , The Academia, 20 College Road, Discovery Tower, Singapore 169856, Singapore.
Ophthalmology and Visual Sciences Academic Clinical Program, Duke-NUS Graduate Medical School , Singapore 169857, Singapore.
ACS Appl Mater Interfaces. 2016 Nov 30;8(47):32266-32281. doi: 10.1021/acsami.6b12544. Epub 2016 Nov 15.
Electrospinning of naturally occurring biopolymers for biological applications requires postspinning cross-linking for endurance in protease-rich microenvironments and prevention of rapid dissolution. The most commonly used cross-linkers often generate cytotoxic byproducts, which necessitate high concentrations or time-consuming procedures. Herein, we report the addition of "safe" catecholamine cross-linkers to collagen or gelatin dope solutions followed by electrospinning yielded junction-containing nanofibrous mats. Subsequent in situ oxidative polymerization of the catecholamines increased the density of soldered junctions and maintained the porous nanofiber architecture. This protocol imparted photoluminescence to the biopolymers, a smooth noncytotoxic coating, and good mechanical/structural stability in aqueous solutions. The utility of our approach was demonstrated by the preparation of durable antimicrobial wound dressings and mineralized osteoconductive scaffolds via peptide antibiotics and calcium chloride (CaCl) incorporation into the dope solutions. The mineralized composite mats consist of amorphous calcium carbonate that enhanced the osteoblasts cell proliferation, differentiation, and expression of important osteogenic marker proteins. In proof-of-concept experiments, antibiotic-loaded mats displayed superior antimicrobial properties relative to silver (Ag)-based dressings, and accelerated wound healing in a porcine deep dermal burn injury model.
用于生物应用的天然存在的生物聚合物的静电纺丝需要纺丝后交联,以在富含蛋白酶的微环境中保持耐用性并防止快速溶解。最常用的交联剂通常会产生细胞毒性副产物,这需要高浓度或耗时的处理。在这里,我们报告了将“安全”儿茶酚胺交联剂添加到胶原或明胶纺丝溶液中,然后进行静电纺丝,得到含有连接点的纳米纤维垫。随后儿茶酚胺的原位氧化聚合增加了焊接连接点的密度,并保持了多孔纳米纤维结构。该方案赋予了生物聚合物发光、光滑的非细胞毒性涂层以及在水溶液中的良好机械/结构稳定性。我们的方法通过将肽抗生素和氯化钙(CaCl)掺入纺丝溶液中,制备了耐用的抗菌伤口敷料和矿化骨传导支架,证明了其用途。矿化复合垫由无定形碳酸钙组成,可增强成骨细胞的增殖、分化和重要成骨标志物蛋白的表达。在概念验证实验中,载药垫显示出比基于银(Ag)的敷料更好的抗菌性能,并在猪深真皮烧伤模型中加速了伤口愈合。