Infection Biology, Department of Biomedicine, University and University Hospital Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
Vice Dean Medical Faculty University Basel, Klingelbergstrasse 61, 4056 Basel, Switzerland.
Antibiotics (Basel). 2014 Aug 21;3(3):378-97. doi: 10.3390/antibiotics3030378.
The number of implanted medical devices is steadily increasing and has become an effective intervention improving life quality, but still carries the risk of infection. These infections are mainly caused by biofilm-forming staphylococci that are difficult to treat due to the decreased susceptibility to both antibiotics and host defense mechanisms. To understand the particular pathogenesis and treatment tolerance of implant-associated infection (IAI) animal models that closely resemble human disease are needed. Applications of the tissue cage and catheter abscess foreign body infection models in the mouse will be discussed herein. Both models allow the investigation of biofilm and virulence of various bacterial species and a comprehensive insight into the host response at the same time. They have also been proven to serve as very suitable tools to study the anti-adhesive and anti-infective efficacy of different biomaterial coatings. The tissue cage model can additionally be used to determine pharmacokinetics, efficacy and cytotoxicity of antimicrobial compounds as the tissue cage fluid can be aspirated repeatedly without the need to sacrifice the animal. Moreover, with the advance in innovative imaging systems in rodents, these models may offer new diagnostic measures of infection. In summary, animal foreign body infection models are important tools in the development of new antimicrobials against IAI and can help to elucidate the complex interactions between bacteria, the host immune system, and prosthetic materials.
植入式医疗设备的数量正在稳步增加,已成为提高生活质量的有效干预手段,但仍存在感染风险。这些感染主要是由生物膜形成的葡萄球菌引起的,由于抗生素和宿主防御机制的敏感性降低,这些感染很难治疗。为了了解与人类疾病非常相似的植入物相关感染(IAI)动物模型的特殊发病机制和治疗耐受性,需要应用这些模型。本文将讨论组织笼和导管脓肿异物感染模型在小鼠中的应用。这两种模型都允许研究各种细菌的生物膜和毒力,并同时全面了解宿主的反应。它们也被证明是研究不同生物材料涂层的抗粘附和抗感染效果的非常合适的工具。组织笼模型还可用于确定抗菌化合物的药代动力学、疗效和细胞毒性,因为可以反复抽吸组织笼液,而无需牺牲动物。此外,随着啮齿动物创新成像系统的进步,这些模型可能会提供感染的新诊断措施。总之,动物异物感染模型是开发针对 IAI 的新型抗菌药物的重要工具,可以帮助阐明细菌、宿主免疫系统和假体材料之间的复杂相互作用。