Bacterial Biofilm Components Induce an Enhanced Inflammatory Response Against Metal Wear Particles.

IF 2.3 3区 医学 Q2 HEALTH CARE SCIENCES & SERVICES
Therapeutics and Clinical Risk Management Pub Date : 2020-12-08 eCollection Date: 2020-01-01 DOI:10.2147/TCRM.S280042
Ulrike Dapunt, Birgit Prior, Jan Philippe Kretzer, Thomas Giese, Yina Zhao
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引用次数: 5

Abstract

Purpose: Aseptic implant loosening is still a feared complication in the field of orthopaedics. Presumably, a chronic inflammatory response is induced by wear particles, which leads to osteoclast generation, bone degradation and hence loosening of the implant. Since it has been demonstrated in the literature that most implants are in fact colonized by bacteria, the question arises whether aseptic implant loosening is truly aseptic. The aim of this study was to investigate a possibly enhanced inflammatory response to metal wear particles in the context of subclinical infection.

Patients and methods: Tissue samples were collected intra-operatively from patients undergoing implant-exchange surgery due to aseptic loosening. Histopathological analysis was performed, as well as gene expression analysis for the pro-inflammatory cytokine Interleukin-8. By a series of in vitro experiments, the effect of metal wear particles on human monocytes, polymorphonuclear neutrophiles and osteoblasts was investigated. Additionally, minor amounts of lipoteichoic acid (LTA) and the bacterial heat shock protein GroEL were added.

Results: Histopathology of tissue samples revealed an accumulation of metal wear particles, as well as a cellular infiltrate consisting predominately of mononuclear cells. Furthermore, high expression of IL-8 could be detected in tissue surrounding the implant. Monocytes and osteoblasts in particular showed an increased release of IL-8 after stimulation with metal wear particles and in particular after stimulation with bacterial components and wear particles together.

Conclusion: We were able to show that minor amounts of bacterial components and metal wear particles together induce an enhanced inflammatory response in human monocytes and osteoblasts. This effect could significantly contribute to the generation of bone-resorbing osteoclasts and hence implant-loosening.

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细菌生物膜成分诱导对金属磨损颗粒的增强炎症反应。
目的:无菌性假体松动仍然是骨科领域令人担忧的并发症。据推测,磨损颗粒引起慢性炎症反应,导致破骨细胞产生,骨降解,从而导致植入物松动。由于文献已经证明,大多数植入物实际上是由细菌定植的,因此出现了无菌植入物松动是否真的是无菌的问题。本研究的目的是研究在亚临床感染的情况下,金属磨损颗粒可能增强的炎症反应。患者和方法:术中收集因无菌性松动而行种植体置换手术患者的组织样本。进行组织病理学分析,以及促炎细胞因子白介素-8的基因表达分析。通过一系列体外实验,研究了金属磨损颗粒对人单核细胞、多形核中性粒细胞和成骨细胞的影响。此外,添加少量的脂磷胆酸(LTA)和细菌热休克蛋白GroEL。结果:组织样本的组织病理学显示金属磨损颗粒的积累,以及主要由单核细胞组成的细胞浸润。此外,在种植体周围组织中可以检测到高表达的IL-8。单核细胞和成骨细胞在受到金属磨损颗粒刺激后,特别是在细菌成分和磨损颗粒共同刺激后,IL-8的释放增加。结论:我们能够证明少量的细菌成分和金属磨损颗粒共同诱导人类单核细胞和成骨细胞的炎症反应增强。这种作用可以显著促进骨吸收破骨细胞的产生,从而导致种植体松动。
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来源期刊
Therapeutics and Clinical Risk Management
Therapeutics and Clinical Risk Management HEALTH CARE SCIENCES & SERVICES-
CiteScore
4.80
自引率
3.60%
发文量
139
审稿时长
16 weeks
期刊介绍: Therapeutics and Clinical Risk Management is an international, peer-reviewed journal of clinical therapeutics and risk management, focusing on concise rapid reporting of clinical studies in all therapeutic areas, outcomes, safety, and programs for the effective, safe, and sustained use of medicines, therapeutic and surgical interventions in all clinical areas. The journal welcomes submissions covering original research, clinical and epidemiological studies, reviews, guidelines, expert opinion and commentary. The journal will consider case reports but only if they make a valuable and original contribution to the literature. As of 18th March 2019, Therapeutics and Clinical Risk Management will no longer consider meta-analyses for publication. The journal does not accept study protocols, animal-based or cell line-based studies.
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