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用于牙周炎治疗的仿生纳米-微米水凝胶微球:通过微环境的协同多靶点重塑

Bioinspired nano-micron hydrogel microspheres for periodontitis therapy through synergistic multi-targeted remodeling of microenvironment.

作者信息

Zhou Siqi, Zhang Yuxin, Zheng Liwen, Liu Chang, Chen Jiajun, Liu Yaxian, Ran Shidian, He Tong-Chuan, Gu Mengqin, Wu Si, Zhang Fugui, Zhang Hongmei

机构信息

Chongqing Key Laboratory of Oral Diseases, The Affiliated Hospital of Stomatology, Chongqing Medical University, Chongqing, China.

Department of Pediatric Dentistry, The Affiliated Hospital of Stomatology, Chongqing Medical University, Chongqing, China.

出版信息

Theranostics. 2025 Jun 9;15(14):6857-6881. doi: 10.7150/thno.112782. eCollection 2025.

Abstract

Periodontitis is a prevalent oral inflammatory disease that leads to alveolar bone resorption and tooth loss. It is hard to control and prone to recurrence. Current treatments often fall short due to deep, tortuous periodontal pockets and antibiotic-resistant bacteria, such as (). Notably, current clinical therapies fail to simultaneously fulfill three critical objectives: robust antimicrobial efficacy, potent anti-inflammatory activity, and effective periodontal regenerative capacity. Inspired by the structure of the lotus flower, nano/micron-combined hydrogel microspheres (PDA/BBR@Gel@BMP9-PDLSC), encapsulating polydopamine (PDA) nanoparticles carrying berberine (PDA/BBR) and BMP9-infected PDLSCs (BMP9-PDLSC), were developed. : Microspheres exhibited excellent biocompatibility and sustained drug release, along with significant antibacterial, anti-inflammatory, and bone tissue regenerative effects. studies confirmed their efficacy in treating calvaria defects and periodontitis with persistent infection, showing superior new bone formation and anti-inflammatory effects without organ toxicity. Notably, our study demonstrated that the anti-inflammation and osteogenesis effects were due to the synergistic effects of BBR and BMP9 released by PDA/BBR@Gel@BMP9-PDLSC microspheres. RNA-Seq and Western blot analysis showed that BBR and BMP9 synergistically reduced inflammation and promoted bone formation by regulating key genes involved in TNF, TGF-β, and PPAR signaling pathways. Our study provides a novel approach for comprehensively treating periodontitis with antibacterial, anti-inflammatory, and bone tissue regenerative effects.

摘要

牙周炎是一种常见的口腔炎症性疾病,可导致牙槽骨吸收和牙齿脱落。它难以控制且易于复发。由于牙周袋深且曲折以及存在抗生素耐药菌(如……),目前的治疗方法往往效果不佳。值得注意的是,当前的临床治疗未能同时实现三个关键目标:强大的抗菌功效、有效的抗炎活性和有效的牙周再生能力。受莲花结构的启发,开发了纳米/微米复合水凝胶微球(PDA/BBR@Gel@BMP9-PDLSC),其包裹着携带黄连素的聚多巴胺(PDA)纳米颗粒(PDA/BBR)和感染了BMP9的牙周膜干细胞(BMP9-PDLSC)。:微球表现出优异的生物相容性和持续的药物释放,同时具有显著的抗菌、抗炎和骨组织再生作用。研究证实了它们在治疗颅骨缺损和伴有持续性感染的牙周炎方面的疗效,显示出卓越的新骨形成和抗炎效果且无器官毒性。值得注意的是,我们的研究表明抗炎和成骨作用归因于PDA/BBR@Gel@BMP9-PDLSC微球释放的黄连素和BMP9的协同作用。RNA测序和蛋白质印迹分析表明,黄连素和BMP9通过调节参与TNF、TGF-β和PPAR信号通路的关键基因,协同减轻炎症并促进骨形成。我们的研究为综合治疗具有抗菌、抗炎和骨组织再生作用的牙周炎提供了一种新方法。

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