抗菌剂
肽
抗菌肽
化学
药物输送
药品
基质(化学分析)
化学稳定性
微生物学
色谱法
生物化学
药理学
医学
生物
有机化学
作者
Eleonora Terreni,Susi Burgalassi,Patrizia Chetoni,Silvia Tampucci,Erica Zucchetti,Roberta Fais,Emilia Ghelardi,Antonella Lupetti,Daniela Monti
出处
期刊:Biomolecules
[Multidisciplinary Digital Publishing Institute]
日期:2020-04-25
卷期号:10 (5): 664-664
被引量:19
摘要
Infectious ocular keratitis is the leading cause of blindness worldwide. Bacterial resistance to classical pharmacological treatments raised the interest of researchers towards antimicrobial peptide (AMP)-based therapy. hLF 1-11, a synthetic antimicrobial peptide derived from the N-terminus of human lactoferrin, proved effective against different bacteria and yeast but, like all proteinaceous materials, it is unstable from chemical, physical, and biological points of view. In this study, new freeze-dried solid matrices containing mucoadhesive polymers were prepared and characterized in terms of rheology, hydration time, bioadhesion, drug content, and in vitro release. The formulation HPMC/T2/HA/hLF 1-11fd was selected for the delivery of hLF 1-11, since it showed good drug recovery and no chemical degradation up to at least 6 months (long-term stability). Furthermore, the HPMC/T2/HA/hLF 1-11fd matrix allowed for the release of the drug in a simulated physiological environment, linked to an optimal hydration time, and the peptide antimicrobial activity was preserved for up to 15 months of storage, a very promising result considering the chemical liability of proteinaceous material. For its properties, the freeze-dried matrix developed in this study could be a good platform for the delivery of antimicrobial peptides in the precorneal area to treat infectious phenomena of the ocular surface.
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