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铜绿假单胞菌感染所致热损伤对肺部及全身细菌清除的影响。

Effect of thermal injury with Pseudomonas aeruginosa infection on pulmonary and systemic bacterial clearance.

作者信息

Wilkinson R A, Fishman J A

机构信息

Infectious Disease Division, Massachusetts General Hospital and Harvard Medical School, Boston, USA.

出版信息

J Trauma. 1999 Nov;47(5):912-7. doi: 10.1097/00005373-199911000-00016.

Abstract

BACKGROUND

Despite improvements in burn wound care, infections, particularly pneumonia, remain a major hurdle to recovery from thermal injury. After burns, a variety of systemic immune and inflammatory changes contribute to the risk of infection. Clinically, infection coupled with burn injury seems to adversely affect susceptibility to subsequent infection.

METHODS

Using a mouse model of 10% total body surface area, full-thickness, third-degree burns with quantitative bacterial cultures of multiple tissues, the effect of graded intratracheal and intraperitoneal infections with Pseudomonas aeruginosa on the development of infection was assessed.

RESULTS

P. aeruginosa infection of blood and lung were demonstrated in burned mice 4 hours after they received 1 to 7.2x10(5) P. aeruginosa intratracheally but not in unburned control mice. Disseminated infection from endogenous bacterial species (Proteus, Enterococcus, Streptococcus) involving the lungs, liver, blood, and subeschar space was observed in mice that received both burns and infection with P. aeruginosa (intraperitoneally and intratracheally) but not with infection or burn alone (p<0.01). After burns, pulmonary bacterial clearance was delayed in association with both pulmonary infection (7.2x10(5) P. aeruginosa intratracheally) and intraperitoneal infection (10(7) P. aeruginosa intraperitoneally). Histologically, diffuse pneumonitis was observed in mice that received burns and infection but not in mice with either infection or burns alone.

CONCLUSION

Small thermal injuries coupled with transient infection of the lungs or peritoneum delay the clearance of bacteria from the lungs and contribute to infection of the lungs, liver, burn site, and blood by endogenous organisms. These studies support the synergy of relatively small thermal injuries with infectious exposures in the pathogenesis of pneumonia and systemic infections after burns.

摘要

背景

尽管烧伤创面护理有所改善,但感染,尤其是肺炎,仍然是热损伤恢复的主要障碍。烧伤后,多种全身免疫和炎症变化会增加感染风险。临床上,感染与烧伤似乎会对后续感染的易感性产生不利影响。

方法

使用10%体表面积的全层三度烧伤小鼠模型,并对多个组织进行定量细菌培养,评估铜绿假单胞菌经气管内和腹腔内分级感染对感染发展的影响。

结果

烧伤小鼠在气管内接受1至7.2×10⁵铜绿假单胞菌后4小时,血液和肺部出现铜绿假单胞菌感染,而未烧伤的对照小鼠未出现感染。在同时接受烧伤和铜绿假单胞菌感染(经腹腔和气管内)的小鼠中,观察到内源性细菌种类(变形杆菌、肠球菌、链球菌)的播散性感染,累及肺部、肝脏、血液和焦痂下间隙,而单独感染或烧伤的小鼠则未出现(p<0.01)。烧伤后,肺部细菌清除延迟与肺部感染(气管内接种7.2×10⁵铜绿假单胞菌)和腹腔内感染(腹腔内接种10⁷铜绿假单胞菌)均有关。组织学上,在接受烧伤和感染的小鼠中观察到弥漫性肺炎,而单独感染或烧伤的小鼠中未观察到。

结论

小面积热损伤加上肺部或腹膜的短暂感染会延迟肺部细菌的清除,并导致内源性微生物感染肺部、肝脏、烧伤部位和血液。这些研究支持了相对较小的热损伤与感染暴露在烧伤后肺炎和全身感染发病机制中的协同作用。

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