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The Effect of Polymer Microstructure on Encapsulation Efficiency and Release Kinetics of Citropin 1.1 from the Poly(ε-caprolactone) Microparticles

机译:聚合物微结构对聚(ε-己内酯)微粒中Ctropin 1.1包封效率和释放动力学的影响

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摘要

Cationic antimicrobial peptides represent a promising therapeutic option against multidrug-resistant bacteria for the treatment of local infections. However, due to their low stability and potential toxicity, there are limited possibilities for their application in clinical practice. In this study, different poly(ε-caprolactone) (PCL) microparticles (MPs) loaded with citropin 1.1 (CIT) were investigated in order to demonstrate the effect of the polymer microstructure on the encapsulation efficiency (EE) and kinetics of the peptide release from the newly developed devices. The characteristics of the new systems in terms of surface morphology, particle size, EE and zeta potential analysis, as well as the haemolytic activities of the peptide were investigated. The in vitro release kinetics of CIT from the MPs was also investigated. CIT loading was favoured by a high content of negative charged linear polymer chains in the PCL structure. The presence of non-charged, amorphous macrocycle domains results in faster degradation of the PCL matrix. Depending on the crystallinity of the PCL, the peptide release exhibited a near-zero-order or near-first-order profile with no “burst release”. The results indicated that CIT-loaded PCL MPs could potentially be a promising drug delivery system (DDS) for the treatment of local infections.
机译:阳离子抗菌肽代表了针对多药耐药细菌的局部感染治疗的有前途的治疗选择。然而,由于它们的低稳定性和潜在的毒性,将它们应用于临床实践的可能性是有限的。在这项研究中,研究了不同的聚(ε-己内酯)(PCL)微粒与柠檬素1.1(CIT)负载,以证明聚合物微观结构对包封效率(EE)和肽释放动力学的影响来自新开发的设备。研究了新系统在表面形态,粒径,EE和zeta电位分析以及肽的溶血活性方面的特性。还研究了CIT从MP中的体外释放动力学。 PCL结构中大量带负电荷的线性聚合物链有利于CIT的装载。不带电荷的无定形大环结构域的存在导致PCL基质的降解更快。取决于PCL的结晶度,肽释放表现出接近零级或接近一阶的分布,没有“爆发释放”。结果表明,装载CIT的PCL MP可能是用于治疗局部感染的有前途的药物输送系统(DDS)。

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