负载Ctx(Ile21)-Ha抗菌肽†的玉米淀粉/壳聚糖膜的潜在保护活性和稳定性

C. Roque-Borda, Bruna Fernandes Antunes, S. R. Teixeira, E. Vicente
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引用次数: 0

摘要

不同多重耐药菌(MDR)的高死亡率已成为当务之急。因慢性疾病住院的患者免疫系统较弱,感染机会性感染的风险很高。同样,世卫组织将针对一组选定的耐多药细菌的研究作为重点进行控制[1]。在此范围内,Ctx(Ile21)-Ha抗菌肽(AMP)对鲍曼不动杆菌和金黄色假单胞菌耐多药耐药细菌显示出巨大的潜力和高效的生物活性[2,3,4]。因此,本研究的目的是设计基于淀粉和壳聚糖的超声辅助微结构膜,负载Ctx(Ile21)-Ha AMP,以发挥其有效的保护作用。胶凝是为了破坏晶粒和暴露羟基[5]。为此,使用10g玉米淀粉和300ml蒸馏水,在90℃下搅拌1小时。然后,加入5ml凝胶淀粉,与50mg肽混合。然后在培养皿中50℃保存5 h。在交联剂存在下,采用自由基聚合法制备壳聚糖膜[6]。将2% w/v的壳聚糖溶于2% v/v的醋酸溶液中,制备壳聚糖分散体。Ctx(Ile21)-Ha以0.3% w/v的甘油和150 rpm的磁搅拌放置在CD上。采用DSC/TGA、FTIR、XRD、SEM等方法对其进行了表征。AMP的物理化学稳定性研究表明,其结构在暴露于水中长达3个月不变,并以干膜的形式存在长达一年。这些结果得到了LC/MS谱的证实,其中XDR显示出一致的半形态相。最后,根据这些结果,随着时间的推移,我们检查了其稳定性和保护潜力,并根据先前发表的抗MDR细菌活性的结果[2],我们得出结论,基于amp的新产品可能是潜在的抗MDR细菌剂,避免重症监护或手术后病床上的危重患者暴露并防止其传播。
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Potential Protective Activity and Stability of Cornstarch/Chitosan Films Loaded with the Ctx(Ile21)-Ha Antimicrobial Peptide †
The high mortality rate of different multi-resistant bacteria (MDR) has led to an immediate and urgent solution. Patients hospitalized for chronic diseases have a weakened immune system and are at high risk of contracting an opportunistic infection. Likewise, the WHO prioritized studies against a selected group of MDR bacteria for their control [1]. In this scope, the Ctx(Ile21)-Ha antimicrobial peptide (AMP) presented great potential and efficient biological activity against Acinetobacter baumannii and Pseudomonas aureginosa MDR bacteria [2,3,4]. Thus, the aim of this research was to design ultrasound-assisted micro-structured films loaded with the Ctx(Ile21)-Ha AMP, based on starch and chitosan, for its effective protective action. Gelling was performed for grain breaking and to expose the hydroxyls [5]. For this, 10 g of cornstarch was used as well as 300 mL of distilled water under agitation at 90 °C for 1 h. Then, 5 mL of the gelled starch was added and mixed with 50 mg of peptide. Then, it was stored in petri dishes at 50 °C for 5 h. Chitosan film was synthesized by free-radical polymerization in the presence of crosslinker [6]. Chitosan dispersion (CD) was prepared by dissolving 2% w/v chitosan in 2% v/v acetic acid solution. Ctx(Ile21)-Ha was placed on the CD with 0.3% w/v of glycerol and magnetic agitation at 150 rpm. For this, its properties were evaluated by DSC/TGA, FTIR, XRD, and SEM. The physicochemical stability studies of the AMP showed its structure unchanged for up to 3 months exposed to water and for up to one year in the form of a dry film. These results were confirmed by the LC/MS profile, in which XDR indicates a consistent semi-morpho phase. Finally, with these results, we check its stability and protective potential over time and, based on previously published results on their activity against MDR bacteria [2], we conclude that the new products based on AMPs could be potential anti-MDR bacterial agents, avoiding the exposure of critically ill patients in intensive care or post-surgery beds and preventing their dissemination.
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