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金属-酚醛网络交联纳米凝胶具有延长的生物膜滞留性,用于二氢青蒿素/NIR 协同增强化学动力学治疗。

Metal-phenolic network crosslinked nanogel with prolonged biofilm retention for dihydroartemisinin/NIR synergistically enhanced chemodynamic therapy.

机构信息

School of Pharmacy, Guangdong Medical University, Dongguan 523000, China.

Dongguan Children's Hospital, Dongguan 523000, China.

出版信息

J Colloid Interface Sci. 2025 Jan 15;678(Pt C):841-853. doi: 10.1016/j.jcis.2024.09.168. Epub 2024 Sep 21.

Abstract

Chemodynamic therapy (CDT) is emerging as a promising treatment for biofilm infections. However, its effectiveness is significantly hindered by several factors: the body's stable temperature, a limited supply of Fe ions, and inadequate endogenous levels of HO at the infection sites. Herin, our study introduces MPN-crosslinked hyaluronic acid (HA) nanogels as an effective strategy for treating biofilm-associated infections. The DHA@HA-TA/Fe (DHTF) nanogel is synthesized through the coordination reaction between Fe ions and tannic acid (TA)-modified HA, with dihydroartemisinin (DHA) encapsulated within the structure. DHTF exhibits pH-/hyaluronidase-responsiveness in the biofilm infection microenvironment, enabling sustained release of DHA as a substitute for HO and Fe for CDT. The incorporation of Fe/TA-based MPN and DHA within the nanogels enables photothermal/DHA dually-enhanced CDT, facilitating efficient disruption of biofilm matrices and bacterial eradication through boosting reactive oxygen species production. In vivo studies demonstrate that DHTF exhibit prolonged retention within biofilms. This ensures a sustained release of therapeutic agents and continuous anti-biofilm activity. Eventually, both in vitro and in vivo evaluations consistently confirm the significant anti-biofilm capacity of DHTF. Our findings highlight the potential of DHTF as a promising nanomedicine for biofilm-related infections, offering efficient treatment strategies that could improve clinical management of these challenging conditions.

摘要

化学动力学疗法(CDT)作为一种有前途的生物膜感染治疗方法正在兴起。然而,其有效性受到多种因素的显著阻碍:人体稳定的温度、有限的 Fe 离子供应以及感染部位 HO 的内源性水平不足。在本研究中,我们介绍了 MPN 交联透明质酸(HA)纳米凝胶作为治疗生物膜相关感染的有效策略。DHA@HA-TA/Fe(DHTF)纳米凝胶是通过 Fe 离子与单宁酸(TA)修饰的 HA 之间的配位反应合成的,其中二氢青蒿素(DHA)被包裹在结构中。DHTF 在生物膜感染微环境中表现出 pH/透明质酸酶响应性,能够持续释放 DHA 作为 HO 和 Fe 的替代品用于 CDT。纳米凝胶中 Fe/TA 基 MPN 和 DHA 的掺入使光热/DHA 双重增强 CDT 成为可能,通过促进活性氧物质的产生,有效地破坏生物膜基质和消灭细菌。体内研究表明,DHTF 在生物膜内具有较长的保留时间。这确保了治疗剂的持续释放和持续的抗生物膜活性。最终,体外和体内评估一致证实了 DHTF 具有显著的抗生物膜能力。我们的研究结果表明,DHTF 作为一种有前途的生物膜相关感染的纳米医学,具有提供高效治疗策略的潜力,这可能改善这些挑战性疾病的临床管理。

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