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新型人体体外感染性心内膜炎模拟模型。

Novel human in vitro vegetation simulation model for infective endocarditis.

机构信息

Department of Clinical Microbiology, Rigshospitalet, Copenhagen N, Denmark.

Reapplix, Birkerød, Denmark.

出版信息

APMIS. 2021 Nov;129(11):653-662. doi: 10.1111/apm.13182. Epub 2021 Oct 18.

Abstract

Infective endocarditis (IE) is a heart valve infection with high mortality rates. IE results from epithelial lesions, inducing sterile healing vegetations consisting of platelets, leucocytes, and fibrin that are susceptible for colonization by temporary bacteremia. Clinical testing of new treatments for IE is difficult and fast models sparse. The present study aimed at establishing an in vitro vegetation simulation IE model for fast screening of novel treatment strategies. A healing promoting platelet and leucocyte-rich fibrin patch was used to establish an IE organoid-like model by colonization with IE-associated bacterial isolates Staphylococcus aureus, Streptococcus spp (S. mitis group), and Enterococcus faecalis. The patch was subsequently exposed to tobramycin, ciprofloxacin, or penicillin. Bacterial colonization was evaluated by microscopy and quantitative bacteriology. We achieved stable bacterial colonization on the patch, comparable to clinical IE vegetations. Microscopy revealed uneven, biofilm-like colonization of the patch. The surface-associated bacteria displayed increased tolerance to antibiotics compared to planktonic bacteria. The present study succeeded in establishing an IE simulation model with the relevant pathogens S. aureus, S. mitis group, and E. faecalis. The findings indicate that the IE model mirrors the natural IE process and has the potential for fast screening of treatment candidates.

摘要

感染性心内膜炎(IE)是一种心脏瓣膜感染,死亡率很高。IE 是由上皮损伤引起的,导致无菌愈合的赘生物,由血小板、白细胞和纤维蛋白组成,容易被暂时性菌血症定植。IE 的新治疗方法的临床测试很困难,快速模型也很缺乏。本研究旨在建立一种体外植被模拟 IE 模型,用于快速筛选新的治疗策略。使用富含血小板和白细胞的促进愈合纤维蛋白贴片,通过 IE 相关细菌分离株金黄色葡萄球菌、链球菌属(包括米氏链球菌组)和粪肠球菌的定植,建立了一种 IE 类器官样模型。随后,贴片暴露于妥布霉素、环丙沙星或青霉素。通过显微镜和定量细菌学评估细菌定植。我们在贴片上实现了稳定的细菌定植,与临床 IE 赘生物相当。显微镜观察显示贴片的定植不均匀,呈生物膜样。与浮游菌相比,表面相关的细菌对抗生素的耐受性增加。本研究成功建立了一种模拟 IE 的模型,使用了相关病原体金黄色葡萄球菌、米氏链球菌组和粪肠球菌。研究结果表明,IE 模型反映了自然 IE 过程,具有快速筛选治疗候选物的潜力。

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