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级联催化纳米酶通过声动力学治疗和适应性免疫激活对抗与糖尿病相关的植入物感染的界面功能化。

Cascade catalysis nanozyme for interfacial functionalization in combating implant infections associated with diabetes via sonodynamic therapy and adaptive immune activation.

机构信息

Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing, 400044, China.

Department of Blood Transfusion, Laboratory of Radiation Biology, The Second Affiliated Hospital, Third Military Medical University, Chongqing, 400037, China.

出版信息

Biomaterials. 2024 Dec;311:122649. doi: 10.1016/j.biomaterials.2024.122649. Epub 2024 Jun 5.


DOI:10.1016/j.biomaterials.2024.122649
PMID:38850718
Abstract

Innovative solutions are required for the intervention of implant associated infections (IAIs), especially for bone defect patients with chronic inflammatory diseases like diabetes mellitus (DM). The complex immune microenvironment of infections renders implants with direct antibacterial ability inadequate for the prolonged against of bacterial infections. Herein, a synergistic treatment strategy was presented that combined sonodynamic therapy (SDT) with adaptive immune modulation to treat IAIs in diabetes patients. A multifunctional coating was created on the surface of titanium (Ti) implants, consisting of manganese dioxide nanoflakes (MnO NFs) with cascade catalytic enzyme activity and a responsive degradable hydrogel containing a sonosensitizer. The reactive oxygen species (ROS) generated by glucose-hydrogen peroxide (HO) cascade catalysis and ultrasound (US) activation sonosensitizer helped kill bacteria and release bacterial antigens. Meanwhile, Mn facilitated dendritic cells (DCs) maturation, enhancing antigen presentation to activate both cellular and humoral adaptive immunity against bacterial infections. This approach effectively eliminated bacteria in established diabetic IAIs model and activated systemic antibacterial immunity, providing long-term antibacterial protection. This study presents a non-antibiotic immunotherapeutic strategy for fighting IAIs in chronic diseases.

摘要

需要创新的解决方案来干预植入物相关感染(IAI),特别是对于患有糖尿病等慢性炎症性疾病的骨缺损患者。感染的复杂免疫微环境使得具有直接抗菌能力的植入物无法长时间抵抗细菌感染。在此,提出了一种联合声动力学疗法(SDT)与适应性免疫调节的协同治疗策略,用于治疗糖尿病患者的 IAI。在钛(Ti)植入物表面制备了一种多功能涂层,由具有级联催化酶活性的二氧化锰纳米片(MnO NFs)和含有声敏剂的响应性可降解水凝胶组成。葡萄糖-过氧化氢(HO)级联催化和超声(US)激活声敏剂产生的活性氧(ROS)有助于杀死细菌并释放细菌抗原。同时,Mn 促进树突状细胞(DCs)成熟,增强抗原呈递,激活针对细菌感染的细胞和体液适应性免疫。该方法有效消除了已建立的糖尿病 IAI 模型中的细菌,并激活了全身抗菌免疫,提供了长期的抗菌保护。本研究提出了一种用于治疗慢性疾病中 IAI 的非抗生素免疫治疗策略。

相似文献

[1]
Cascade catalysis nanozyme for interfacial functionalization in combating implant infections associated with diabetes via sonodynamic therapy and adaptive immune activation.

Biomaterials. 2024-12

[2]
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[3]
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[6]
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[10]
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[2]
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[3]
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[4]
[Experimental Study on Biomimetic Curcumin-Mediated Sonodynamic Therapy of Melanoma].

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[5]
Nanocatalytic medicine enabled next-generation therapeutics for bacterial infections.

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[6]
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