首页> 美国卫生研究院文献>Biomolecules >The Addition of a Synthetic LPS-Targeting Domain Improves Serum Stability While Maintaining Antimicrobial Antibiofilm and Cell Stimulating Properties of an Antimicrobial Peptide
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The Addition of a Synthetic LPS-Targeting Domain Improves Serum Stability While Maintaining Antimicrobial Antibiofilm and Cell Stimulating Properties of an Antimicrobial Peptide

机译:加入合成的LPS靶向结构域同时保持抗微生物抗生素和细胞刺激性抗菌肽肽的血清稳定性

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摘要

Multi-drug resistant (MDR) bacteria and their biofilms are a concern in veterinary and human medicine. Protegrin-1 (PG-1), a potent antimicrobial peptide (AMP) with antimicrobial and immunomodulatory properties, is considered a potential alternative for conventional antibiotics. AMPs are less stable and lose activity in the presence of physiological fluids, such as serum. To improve stability of PG-1, a hybrid peptide, SynPG-1, was designed. The antimicrobial and antibiofilm properties of PG-1 and the PG-1 hybrid against MDR pathogens was analyzed, and activity after incubation with physiological fluids was compared. The effects of these peptides on the IPEC-J2 cell line was also investigated. While PG-1 maintained some activity in 25% serum for 2 h, SynPG-1 was able to retain activity in the same condition for up to 24 h, representing a 12-fold increase in stability. Both peptides had some antibiofilm activity against and . While both peptides prevented biofilm formation of methicillin-resistant (MRSA), neither could destroy MRSA’s pre-formed biofilms. Both peptides maintained activity after incubation with trypsin and porcine gastric fluid, but not intestinal fluid, and stimulated IPEC-J2 cell migration. These findings suggest that SynPG-1 has much better serum stability while maintaining the same antimicrobial potency as PG-1.
机译:多毒性(MDR)细菌及其生物膜是兽医和人类的关注。 protegrin-1(PG-1),具有抗微生物和免疫调节性质的有效的抗微生物肽(AMP)被认为是常规抗生素的潜在替代方案。安培在生理流体存在下稳定,丧失活动,例如血清。为了提高PG-1的稳定性,设计了杂交肽Synpg-1。分析了PG-1的抗微生物和抗菌性和PG-1杂种针对MDR病原体的特性,并比较了与生理流体孵育后的活性。还研究了这些肽对IPEC-J2细胞系的影响。虽然PG-1在25%血清中保持一些活性2小时,但是SynPG-1能够在相同条件下保留最多24小时的活性,表示稳定性的12倍。两种肽对抗一些抗体反对和。虽然两种肽阻止生物膜形成甲氧西林(MRSA),但也不会破坏MRSA的预成型生物膜。两种肽与胰蛋白酶和猪胃液孵育后保持活性,但不受肠道液,并刺激IPEC-J2细胞迁移。这些发现表明,Synpg-1具有更好的血清稳定性,同时保持与PG-1相同的抗微生物效力。

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