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[血液滤过疗法有效治疗米克戴德军团菌重症肺炎]

[Severe Legionella micdadei pneumonia effectively treated with hemofiltration therapy].

作者信息

Matsubara S, Akashi S, Naitoh K, Nakahara Y, Hayashi S

机构信息

Department of Medicine, Saga Medical School, Japan.

出版信息

Nihon Kokyuki Gakkai Zasshi. 1998 Oct;36(10):886-90.

PMID:9893432
Abstract

A 42-year-old man was admitted because of fever, productive cough, and progressive dyspnea. Chest x-ray films and computed tomographic scans disclosed dense consolidation in the left and right lung fields. No pathogenic agent was found despite extensive bacteriological examinations. Based on serological findings, the patient was given a diagnosis of acute pneumonia caused by Legionella micdadei. It has been reported that Legionnaire's disease is easily complicated by fatal systemic illnesses such as disseminated intravascular coagulation (DIC) and multiple organ failure. In fact, the patient suffered from severe hypotension and DIC on admission. Treatments against systemic complications were started together with intravenous administration of antibiotics including erythromycin. Continuous intravenous cathecolamin, however, failed to alleviate the patient's shock. We therefore applied endotoxin eliminating therapy using a polymyxin-B-column (PMX) and continuous hemofiltration (CHF). The patient recovered from critical shock immediately after the start of PMX, which together with CHF, alleviated his systemic complications. Although the factors responsible for fatal systemic complications in Legionnare's disease are not well-documented, our findings suggested that some substances removable by PMX and CHF play an important role in pathogenesis.

摘要

一名42岁男性因发热、咳痰及进行性呼吸困难入院。胸部X线片和计算机断层扫描显示左右肺野致密实变。尽管进行了广泛的细菌学检查,但未发现病原体。根据血清学检查结果,该患者被诊断为米克戴德军团菌引起的急性肺炎。据报道,军团病很容易并发致命的全身性疾病,如弥散性血管内凝血(DIC)和多器官功能衰竭。事实上,该患者入院时患有严重低血压和DIC。在静脉注射包括红霉素在内的抗生素的同时,开始针对全身并发症进行治疗。然而,持续静脉注射儿茶酚胺未能缓解患者的休克。因此,我们应用了多粘菌素B柱(PMX)内毒素清除疗法和持续血液滤过(CHF)。在开始PMX治疗后,患者立即从严重休克中恢复,PMX与CHF一起缓解了他的全身并发症。尽管军团病中导致致命全身并发症的因素尚无充分记录,但我们的研究结果表明,一些可被PMX和CHF清除的物质在发病机制中起重要作用。

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