银锚定聚多巴胺纳米复合水凝胶对牙周炎的多协同抗菌和抗炎作用。

IF 2.9 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Rui Ruan, Qiaoxin Li, Xinglong Zhang, Zihan Dai, Wei Qiang, Mengdie Ji, Mengjie Liu, Jian Chen, Hongda Zhu
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引用次数: 0

摘要

牙周炎的传统治疗方式在清除细菌斑块和生物膜方面效果较差,这些细菌斑块和生物膜往往会在牙周组织中诱导炎症微环境并导致疾病进展。为了克服这一限制,我们设计了一种银锚定聚多巴胺(PDA)纳米复合材料水凝胶系统(P-Ag@PDA凝胶,~ 200 nm),用于牙周炎的多协同治疗。PDA纳米粒子可以与银协同作用,发挥强大的杀菌活性,减少活性氧(ROS)或炎症因子引起的组织损伤。同时,低温光热工艺有利于纳米颗粒渗透到细菌生物膜中,解决了牙周炎生物膜去除的难题。poloxam407热敏水凝胶帮助纳米复合材料粘附在细菌表面,克服了由于药物在口腔中迅速损失而导致疗效降低的问题。研究了P-Ag@PDA凝胶的体外和体内抗菌、清除生物膜、清除活性氧和抗炎性能。结果表明,P-Ag@PDA凝胶在近红外光刺激下比替硝唑(TNZ)更有效地减弱ros诱导的牙周组织损伤和去除生物膜,且具有相似的抗菌效果。本研究为牙周感染的治疗提供了一种极具前景的生物材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multisynergistic antibacterial and anti-inflammatory effects of silver-anchored polydopamine nanocomposites hydrogel on periodontitis.

Conventional treatment modalities for periodontitis are less effective in removing bacterial plaques and biofilms, which tend to induce an inflammatory microenvironment in periodontal tissue and lead to disease progression. To overcome this limitation, we designed a silver-anchored polydopamine (PDA) nanocomposites hydrogel system (P-Ag@PDA gels, ∼200 nm) for multisynergistic treatment of periodontitis. PDA nanoparticles could synergize with silver to exert powerful bactericidal activity and reduce tissue damage caused by reactive oxygen species (ROS) or inflammatory factors. Meanwhile, the low-temperature photothermal process facilitated the penetration of nanoparticles into the bacterial biofilm, solving the challenge of biofilm removal in periodontitis. Poloxamer 407 thermosensitive hydrogel helped the nanocomposites adhere to the bacterial surface, overcoming the problem of reduced efficacy due to the rapid loss of the drug in the oral cavity. The antibacterial, biofilm scavenging, ROS scavenging and anti-inflammatory properties of P-Ag@PDA gels were investigatedin vitro and in vivo. The results revealed that P-Ag@PDA gels with NIR light stimulation were more effective than tinidazole (TNZ) in attenuating ROS-induced periodontal tissue damage and removing biofilms, while exhibiting similar antimicrobial effects. This study provided a highly promising biomaterial for the treatment of periodontal infections.

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来源期刊
Nanotechnology
Nanotechnology 工程技术-材料科学:综合
CiteScore
7.10
自引率
5.70%
发文量
820
审稿时长
2.5 months
期刊介绍: The journal aims to publish papers at the forefront of nanoscale science and technology and especially those of an interdisciplinary nature. Here, nanotechnology is taken to include the ability to individually address, control, and modify structures, materials and devices with nanometre precision, and the synthesis of such structures into systems of micro- and macroscopic dimensions such as MEMS based devices. It encompasses the understanding of the fundamental physics, chemistry, biology and technology of nanometre-scale objects and how such objects can be used in the areas of computation, sensors, nanostructured materials and nano-biotechnology.
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