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按需释放功能化共聚寡聚物-透明质酸纳米粒子中的抗菌剂,以应对抗菌药物耐药性。

On-Demand Antimicrobial Agent Release from Functionalized Conjugated Oligomer-Hyaluronic Acid Nanoparticles for Tackling Antimicrobial Resistance.

机构信息

Key Laboratory of Analytical Chemistry for Life Science of Shaanxi Province, Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an 710119, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 13;13(1):257-265. doi: 10.1021/acsami.0c19283. Epub 2020 Dec 30.

Abstract

Controllable drug release is promising for fighting against antimicrobial resistance, which is a critical threat to human health worldwide. Herein, new hyaluronidase-responsive conjugated oligo(thiophene ethynylene) (OTE)-covalently modified hyaluronic acid (OTE-HA) nanoparticles for on-demand release of antimicrobial agents are reported. The synthesis of amphiphilic OTE-HA was carried out by esterification reaction. The resulting macromolecules were self-assembled in water to form nanoparticles, in which the hydrophobic OTE section, as bactericides, formed "cores" and the hydrophilic hyaluronic acid (HA) formed "shells". The OTE-HA nanoparticles avoid bactericide premature leakage and effectively block the dark cytotoxicity of the OTE section, possessing excellent biocompatibility. Using methicillin-resistant (MRSA) as an example, hyaluronidase, largely secreted by MRSA, can trigger the release of OTE via hydrolyzing OTE-HA nanoparticles into fragments, even disaccharides linked with OTE. Importantly, the OTE section could effectively break cell membranes, leading to bacterial death. The half-maximal inhibitory concentration of the nanoparticles against MRSA is 3.3 μg/mL. The great antibacterial activity of OTE-HA nanoparticles against Gram-positive bacteria further confirms the controllable bactericide delivery mechanism. OTE-HA nanoparticles coated on a surface can also effectively inhibit the growth of bacteria, which holds a remarkable promise in biomedical applications. Therefore, this work provides a favorable strategy of on-demand and drug release for sterilization and defeating antimicrobial resistance.

摘要

可控药物释放有望对抗抗菌药物耐药性,这是全球范围内对人类健康的重大威胁。在此,报道了一种新的透明质酸酶响应性共轭寡聚噻吩乙炔(OTE)共价修饰的透明质酸(OTE-HA)纳米颗粒,用于按需释放抗菌剂。通过酯化反应合成了两亲性 OTE-HA。所得大分子在水中自组装形成纳米颗粒,其中疏水性 OTE 部分作为杀菌剂形成“核”,亲水性透明质酸(HA)形成“壳”。OTE-HA 纳米颗粒可避免杀菌剂过早泄漏,并有效阻止 OTE 部分的暗细胞毒性,具有优异的生物相容性。以耐甲氧西林金黄色葡萄球菌(MRSA)为例,MRSA 大量分泌的透明质酸酶可通过将 OTE-HA 纳米颗粒水解成碎片(甚至是与 OTE 相连的二糖)来触发 OTE 的释放。重要的是,OTE 部分可以有效破坏细胞膜,导致细菌死亡。纳米颗粒对 MRSA 的半数最大抑制浓度为 3.3μg/mL。OTE-HA 纳米颗粒对革兰氏阳性菌的强大抗菌活性进一步证实了可控杀菌剂输送机制。表面涂有 OTE-HA 纳米颗粒的表面也可以有效抑制细菌的生长,这在生物医学应用中具有显著的前景。因此,这项工作为杀菌和对抗抗菌药物耐药性提供了一种有吸引力的按需和药物释放策略。

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