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Electrospray loading and release of hydrophobic gramicidin in polyester microparticles

机译:疏水性短杆菌肽在聚酯微粒中的电喷雾负载和释放

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摘要

Gramicidin (GA), a very hydrophobic pentadecapeptide with important biological activities (i.e. in addition to its well-known antimicrobial and antibiotic activities, GA has been recently identified as a potent therapeutic agent against different carcinomas), has been loaded by electrospraying in poly(tetramethylene succinate) (PE44), a biodegradable and biocompatible aliphatic polyester. Microspheres (average diameter: 5.0 +/- 0.7 mm) were successfully obtained from the mixture of GA and PE44 solutions in ethanol and chloroform, respectively. The loading of the peptide, which has been proved by FTIR and X-ray photoelectron spectroscopies, essentially occurred at the surface of the microspheres, as was reflected by scanning electron microscopy micrographs and atomic force microscopy phase images. In spite of this, the thermal stability of the polyester matrix remained essentially unaltered, even though the wettability decreased. The release of GA in phosphate buffer saline (PBS) was limited by the very low solubility of the peptide in aqueous solution, a fast burst effect followed by the establishment of equilibrium after 5 days of being observed in this hydrophilic environment. The release behaviour was very different when the hydrophilicity of the medium was reduced by adding ethanol. In this case, a very fast but sustained release was identified during the first few hours. On the other hand, biological tests have demonstrated that GA retains its antimicrobial activity after loading and does not alter the biocompatibility of PE44. Our results prove that, despite its hydrophobicity and relatively large number of residues, the loading of GA in a polymeric matrix represents an alternative strategy for the release of this versatile peptide in cancer therapy.
机译:Gramicidin(GA)是一种疏水性很强的五肽,具有重要的生物活性(即,除了其众所周知的抗微生物和抗生素活性,GA最近已被确定为针对不同癌症的有效治疗剂),已通过电喷雾法负载丁二酸四亚甲基酯(PE44),一种可生物降解且具有生物相容性的脂族聚酯。分别从GA和PE44在乙醇和氯仿中的混合物中成功获得了微球(平均直径:5.0 +/- 0.7毫米)。 FTIR和X射线光电子能谱法已经证明了肽的负载,该负载基本上发生在微球的表面,如通过扫描电子显微镜照片和原子力显微镜相图所反映的那样。尽管如此,即使润湿性降低,聚酯基体的热稳定性也基本上保持不变。磷酸缓冲盐溶液(PBS)中GA的释放受到肽在水溶液中的极低溶解度的限制,在这种亲水性环境中观察到5天后,快速爆发效应随后建立平衡。当通过添加乙醇降低培养基的亲水性时,释放行为有很大不同。在这种情况下,在最初的几个小时内发现了非常快速但持续的释放。另一方面,生物学测试表明,GA加载后仍保留其抗菌活性,并且不会改变PE44的生物相容性。我们的结果证明,尽管具有疏水性和相对大量的残基,但GA在聚合物基质中的负载量代表了在癌症治疗中释放这种多功能肽的另一种策略。

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