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B族链球菌β-溶血素的表达与肺上皮细胞损伤有关。

Group B streptococcal beta-hemolysin expression is associated with injury of lung epithelial cells.

作者信息

Nizet V, Gibson R L, Chi E Y, Framson P E, Hulse M, Rubens C E

机构信息

Division of Infectious Disease, Children's Hospital and Medical Center, Seattle, Washington 98105, USA.

出版信息

Infect Immun. 1996 Sep;64(9):3818-26. doi: 10.1128/iai.64.9.3818-3826.1996.

Abstract

Group B streptococci (GBS) are the leading cause of serious bacterial infection in newborns. Early-onset disease is heralded by pneumonia and lung injury, and the lung may serve as a portal of entry for GBS into the bloodstream. To examine a potential role for GBS beta-hemolysin in lung epithelial injury, five wild-type strains varying in beta-hemolysin expression were chosen, along with five nonhemolytic (NH) and five hyperhemolytic (HH) variants of these strains derived by chemical or transposon mutagenesis. Monolayers of A549 alveolar epithelial cells were exposed to log-phase GBS or stabilized hemolysin extracts of GBS cultures, and cellular injury was assessed by lactate dehydrogenase (LDH) release and trypan blue nuclear staining. Whereas NH strains produced no detectable injury beyond baseline (medium alone), hemolysin-producing strains induced LDH release from A549 cells in direct correlation to their ability to lyse sheep erythrocytes. HH strains were also associated with marked increases in trypan blue nuclear staining of A549 monolayers. The extent of LDH release produced by HH strains was significantly reduced in the presence of dipalmitoyl phosphatidylcholine, a known inhibitor of hemolysin and the major phospholipid component of human surfactant. Electron microscopic studies of A549 cell monolayers exposed to HH GBS mutants revealed global loss of microvillus architecture, disruption of cytoplasmic and nuclear membranes, and marked swelling of the cytoplasm and organelles. We conclude that GBS hemolysin expression correlates with lung epithelial cell injury and may be important in the initial pathogenesis of early-onset disease, particularly when pulmonary surfactant is deficient.

摘要

B族链球菌(GBS)是新生儿严重细菌感染的主要原因。早发型疾病以肺炎和肺损伤为特征,肺可能是GBS进入血流的门户。为了研究GBSβ-溶血素在肺上皮损伤中的潜在作用,选择了5株β-溶血素表达不同的野生型菌株,以及通过化学或转座子诱变获得的这些菌株的5株非溶血(NH)和5株高溶血(HH)变体。将A549肺泡上皮细胞单层暴露于对数期GBS或GBS培养物的稳定溶血素提取物中,并通过乳酸脱氢酶(LDH)释放和台盼蓝核染色评估细胞损伤。NH菌株除基线(仅培养基)外未产生可检测到的损伤,而产生溶血素的菌株诱导A549细胞释放LDH,这与其裂解绵羊红细胞的能力直接相关。HH菌株还与A549单层细胞台盼蓝核染色的显著增加有关。在存在二棕榈酰磷脂酰胆碱(一种已知的溶血素抑制剂和人表面活性剂的主要磷脂成分)的情况下,HH菌株产生的LDH释放程度显著降低。对暴露于HH GBS突变体的A549细胞单层进行电子显微镜研究发现,微绒毛结构全面丧失,细胞质和核膜破坏,细胞质和细胞器明显肿胀。我们得出结论,GBS溶血素表达与肺上皮细胞损伤相关,可能在早发型疾病的初始发病机制中起重要作用,特别是在肺表面活性剂缺乏时。

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