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壳聚糖-阿拉伯胶嵌入的茜素纳米载体抑制多物种微生物生物膜的形成。

Chitosan-gum arabic embedded alizarin nanocarriers inhibit biofilm formation of multispecies microorganisms.

机构信息

School of Chemical Engineering, Yeungnam University, Gyeongsan 38541, Republic of Korea.

School of Chemical Engineering, Yeungnam University, Gyeongsan 38541, Republic of Korea.

出版信息

Carbohydr Polym. 2022 May 15;284:118959. doi: 10.1016/j.carbpol.2021.118959. Epub 2021 Nov 30.

Abstract

Biofilm formation by microorganisms is a serious clinical problem that leads to drug failure. Nanocarriers (NCs) have shown good potential for controlling drug-resistant biofilms, although the effective penetration and retention of NCs in biofilms is still a big task. The issue was overcome by selecting alizarin as a natural antibiofilm agent, but its low water solubility restricts its further use. Thus, in present study, chitosan-gum arabic-coated liposomes-alizarin nanocarriers (CGL-Alz NCs) were synthesized using an ionotropic gelation method to improve drug release and penetration of alizarin inside biofilm cells. CGL-Alz NCs acted against biofilms caused by Candida albicans or Staphylococcus aureus and improved penetration of alizarin inside biofilms exerting long-term antibiofilm effects caused by sustained release of alizarin from NCs. Furthermore, significant biofilm and hyphae reduction was observed at a 5 μg/mL concentration of NCs. This research work opens a new avenue of an innovative strategy to treat biofilm-associated multispecies infections.

摘要

微生物生物膜的形成是一个严重的临床问题,导致药物失效。纳米载体 (NCs) 已显示出控制耐药性生物膜的良好潜力,尽管 NCs 在生物膜中的有效穿透和保留仍然是一个大问题。通过选择茜素作为天然抗生物膜剂克服了这一问题,但茜素的低水溶性限制了其进一步应用。因此,在本研究中,使用离子凝胶化法合成了壳聚糖-阿拉伯胶包被脂质体-茜素纳米载体 (CGL-Alz NCs),以提高茜素的药物释放和穿透生物膜细胞的能力。CGL-Alz NCs 对白色念珠菌或金黄色葡萄球菌引起的生物膜有作用,并通过从 NCs 中持续释放茜素来提高茜素在生物膜内的穿透性,从而发挥长期的抗生物膜作用。此外,在 5μg/mL 的 NCs 浓度下,观察到生物膜和菌丝明显减少。这项研究工作为治疗生物膜相关的多物种感染开辟了一条新的创新策略途径。

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