Faculty of Pharmaceutical Sciences, Mukogawa Women's University, 11-68 Koshien 9-Bancho, Nishinomiya City 663-8179, Japan.
Department of Immunological and Molecular Pharmacology, Faculty of Pharmaceutical Science, Fukuoka University, 8-19-1 Nanakuma, Jonan-ku, Fukuoka City 814-0180, Japan.
Int J Mol Sci. 2021 May 12;22(10):5097. doi: 10.3390/ijms22105097.
Various peptides and their derivatives have been reported to exhibit antimicrobial activities. Although these activities have been examined against microorganisms, novel methods have recently emerged for conjugation of the biomaterials to improve their activities. Here, we prepared CKR12-PLGA, in which CKR12 (a mutated fragment of human cathelicidin peptide, LL-37) was conjugated with poly (lactic-co-glycolic) acid (PLGA), and compared the antimicrobial and antifungal activities of the conjugated peptide with those of FK13 (a small fragment of LL-37) and CKR12 alone. The prepared CKR12-PLGA was characterized by dynamic light scattering and measurement of the zeta potential, critical micellar concentration, and antimicrobial activities of the fragments and conjugate. Although CKR12 showed higher antibacterial activities than FK13 against and , the antifungal activity of CKR12 was lower than that of FK13. CKR12-PLGA showed higher antibacterial activities against and and higher antifungal activity against compared to those of FK13. Additionally, CKR12-PLGA showed no hemolytic activity in erythrocytes, and scanning and transmission electron microscopy suggested that CKR12-PLGA killed and disrupted the surface structure of microbial cells. Conjugation of antimicrobial peptide fragment analogues was a successful approach for obtaining increased microbial activity with minimized cytotoxicity.
各种肽及其衍生物已被报道具有抗菌活性。尽管这些活性已经针对微生物进行了检查,但最近出现了将生物材料缀合以提高其活性的新方法。在这里,我们制备了 CKR12-PLGA,其中 CKR12(人防御素肽 LL-37 的突变片段)与聚(乳酸-共-乙醇酸)(PLGA)缀合,并比较了缀合肽的抗菌和抗真菌活性与 FK13(LL-37 的小片段)和 CKR12 单独的活性。通过动态光散射和测量zeta 电位、临界胶束浓度以及片段和缀合物的抗菌活性来表征制备的 CKR12-PLGA。尽管 CKR12 对 和 表现出比 FK13 更高的抗菌活性,但 CKR12 的抗真菌活性低于 FK13。与 FK13 相比,CKR12-PLGA 对 和 表现出更高的抗菌活性,对 表现出更高的抗真菌活性。此外,与 FK13 相比,CKR12-PLGA 在红细胞中没有溶血活性,扫描和透射电子显微镜表明 CKR12-PLGA 杀死并破坏了微生物细胞的表面结构。抗菌肽片段类似物的缀合是获得增加的微生物活性同时最小化细胞毒性的成功方法。