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不同的药物加载方法和抗生素结构调节了聚多巴胺纳米粒子作为药物纳米载体的疗效。

Different drug loading methods and antibiotic structure modulate the efficacy of polydopamine nanoparticles as drug nanocarriers.

机构信息

Department of Physical and Environmental Sciences, University of Toronto Scarborough, 1265 Military Trail, Toronto, Ontario, Canada, M1C 1A4.

Department of Chemistry, University of Toronto, 80 St. George St., Toronto, Ontario, Canada, M5S 3H6.

出版信息

J Mater Chem B. 2023 Dec 6;11(47):11335-11343. doi: 10.1039/d3tb01490h.

Abstract

The inefficient delivery of antimicrobials to their target is a significant factor contributing to antibiotic resistance. As such, smart nanomaterials that respond to external stimuli are extensively explored for precise drug delivery. Here, we investigate how drug loading methods and the structure of antibiotics impact the effectiveness of photothermally active polydopamine nanoparticles (PDNPs) as a laser-responsive drug delivery system. We examine two loading methods: in-synthesis and post-synthesis, and evaluate how laser irradiation affects drug release. Density functional theory calculations are also performed to gain deeper insights into the drug-PDNP interactions. Our findings point to the critical role of antibiotic structure and drug loading method in the laser-responsive capabilities of PDNPs as drug nanocarriers. Our study offers valuable insights for optimizing the design and efficiency of PDNP-based drug delivery systems.

摘要

抗菌药物向其作用靶点的输送效率低下是导致抗生素耐药性的一个重要因素。因此,对外界刺激做出响应的智能纳米材料被广泛探索用于精确药物输送。在这里,我们研究了药物负载方法和抗生素的结构如何影响光热活性聚多巴胺纳米粒子(PDNPs)作为激光响应药物输送系统的有效性。我们考察了两种负载方法:合成内负载和合成后负载,并评估了激光照射如何影响药物释放。还进行了密度泛函理论计算,以更深入地了解药物-PDNP 相互作用。我们的研究结果表明,抗生素结构和药物负载方法在 PDNP 作为药物纳米载体的激光响应能力中起着关键作用。我们的研究为优化基于 PDNP 的药物输送系统的设计和效率提供了有价值的见解。

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