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对假体乳房中铜绿假单胞菌感染的宿主-病原体-器械相互作用进行分析。

Characterization of Host-Pathogen-Device Interactions in Pseudomonas aeruginosa Infection of Breast Implants.

机构信息

From the Department of Molecular Microbiology and Division of Plastic and Reconstructive Surgery, Department of Surgery, Washington University School of Medicine; and Department of Microbiology and Molecular Genetics, University of Texas Health Science Center at Houston.

出版信息

Plast Reconstr Surg. 2022 Aug 1;150(2):260e-271e. doi: 10.1097/PRS.0000000000009315. Epub 2022 Jun 3.

Abstract

BACKGROUND

Pseudomonas aeruginosa accounts for 7 to 22 percent of breast implant-associated infections, which can result in reconstructive failures and explantation. Investigating host-pathogen-device interactions in mice and patient samples will improve the understanding of colonization mechanisms, for targeted treatments and clinical guidelines.

METHODS

Mice with and without implants were infected with PAO1 laboratory strain or BIP2 or BIP16 clinical strains and killed at 1 day or 7 days after infection to evaluate for colonization of implants and underlying tissues by means of colony-forming unit enumeration. Immunostaining was performed on mouse implants, human tissue expanders colonized by BIP2, and acellular dermal matrix colonized by BIP16.

RESULTS

Colonization of tissues and smooth implants by P. aeruginosa was strain-dependent: at 1 day after infection, all strains acutely infected tissues with and without implants with colonization levels reflecting growth rates of individual strains. At 7 days after infection, PAO1 caused colonization of approximately 10 5 colony-forming units/100 mg of tissue but required implant presence, whereas in mice infected with BIP2/BIP16, colony-forming units were below the limit of detection with or without implants. Immunofluorescence staining of mouse implants, however, demonstrated continued presence of BIP2 and BIP16. Staining showed co-localization of all strains with fibrinogen, collagen I, and collagen III on mouse and human samples.

CONCLUSIONS

The trajectory of P. aeruginosa in breast implant-associated infections was strain-dependent, and strains could exhibit acute symptomatic or chronic asymptomatic colonization. With strains causing clinical symptoms, the presence of an implant significantly worsened infection. For asymptomatic colonizers, further studies investigating their long-term impacts, especially during periods of immunosuppression in hosts, are needed.

摘要

背景

铜绿假单胞菌在与植入物相关的感染中占 7%至 22%,可导致重建失败和植入物取出。在小鼠和患者样本中研究宿主-病原体-器械相互作用将提高对定植机制的理解,从而进行针对性治疗和制定临床指南。

方法

将 PAO1 实验室株或 BIP2 或 BIP16 临床株感染有无植入物的小鼠,分别于感染后 1 天或 7 天处死,通过平板计数法评估植入物和其下组织的定植情况。对小鼠植入物、被 BIP2 定植的人体组织扩张器和被 BIP16 定植的脱细胞真皮基质进行免疫染色。

结果

铜绿假单胞菌对组织和光滑植入物的定植与菌株有关:感染后 1 天,所有菌株均急性感染有或无植入物的组织,定植水平反映了各菌株的生长速度。感染后 7 天,PAO1 导致约 10 5 个菌落形成单位/100 mg 组织的定植,但需要植入物的存在,而感染 BIP2/BIP16 的小鼠,无论有无植入物,菌落形成单位均低于检测限。然而,对小鼠植入物的免疫荧光染色显示 BIP2 和 BIP16 仍持续存在。染色显示所有菌株与纤维蛋白原、I 型胶原和 III 型胶原在小鼠和人体样本上均有共定位。

结论

与植入物相关的感染中铜绿假单胞菌的轨迹与菌株有关,菌株可表现为急性症状性或慢性无症状定植。对于引起临床症状的菌株,植入物的存在显著加重了感染。对于无症状定植者,需要进一步研究其长期影响,特别是在宿主免疫抑制期间。

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