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Oxygen-independent intracellular and oxygen-dependent extracellular killing of Escherichia coli S15 by human polymorphonuclear leukocytes.

机译:人多形核白细胞对大肠杆菌S15的氧依赖性细胞内和氧依赖性细胞外杀伤。

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摘要

Effective killing of bacteria by polymorphonuclear leukocytes (PMN) is generally assumed to require intracellular sequestration and, depending on the bacterial species, can be both O2-dependent or O2-independent. Killing of several strains of Salmonella typhimurium and Escherichia coli by rabbit PMN does not require O2 and is apparently due to a granule-associated bactericidal/permeability-increasing protein (BPI) present in rabbit and human PMN. In this study we examined the O2 dependence of the killing of E. coli (S15) by human PMN. Ingested and noningested E. coli were separated by centrifugation after incubation with PMN in room air or under N2. In the presence of heat-treated serum approximately 50% of E. coli (10 bacteria/PMN) were taken up by PMN and rapidly (5-15 min) killed both in room air and under N2. The remaining extracellular bacteria (approximately 50%) were killed during 30-60 min of incubation in room air but not under N2. When uptake of E. coli by PMN was increased to approximately 80% by the use of C6-depleted serum (retaining heat-labile opsonins), bacterial survival under N2 was reduced from 54 +/- 7.6% to 13 +/- 5.5%. PMN from a patient with chronic granulomatous disease killed PMN-associated but not extracellular E. coli. BPI was detected, by indirect immunofluorescence, on the surface of PMN-associated E. coli within 5 min of incubation of E. coli with PMN both in room air and under N2. In contrast, at no time was BPI detected on the surface of extracellular E. coli, indicating that the non-PMN-associated E. coli had not been previously ingested. Thus, killing of ingested E. coli S15 by human as well as rabbit PMN does not require O2 and appears to be BPI-mediated. However, when ingestion is limited, extracellular bacteria can also be killed but principally by O2-dependent mechanisms.
机译:多态核白细胞(PMN)对细菌的有效杀灭通常被认为需要细胞内隔离,并且取决于细菌种类,可以是O2依赖性或O2依赖性。兔PMN杀死鼠伤寒沙门氏菌和大肠杆菌的几种菌株不需要O2,这显然是由于兔和人PMN中存在与颗粒相关的杀菌/通透性增强蛋白(BPI)。在这项研究中,我们研究了人PMN杀死O2对大肠杆菌(S15)的依赖性。在室内空气或氮气下与PMN孵育后,通过离心分离消化和未消化的大肠杆菌。在存在经过热处理的血清的情况下,PMN吸收了大约50%的大肠杆菌(10个细菌/ PMN),并在室内空气和N2下迅速(5-15分钟)杀死。其余的细胞外细菌(约50%)在室内空气中孵育30-60分钟(而不是在N2下)杀死。当通过使用C6耗尽的血清(保留对热不稳定的调理素)使PMN对大肠杆菌的吸收增加到大约80%时,N2下的细菌存活率从54 +/- 7.6%降低到13 +/- 5.5% 。来自患有慢性肉芽肿病的患者的PMN杀死了与PMN相关但未杀死细胞外大肠杆菌。通过间接免疫荧光在室内空气和N2下将大肠杆菌与PMN孵育5分钟内,即可在PMN相关的大肠杆菌表面检测到BPI。相反,在细胞外大肠杆菌的表面上从来没有检测到BPI,这表明非PMN相关的大肠杆菌以前没有被摄入过。因此,人以及兔PMN杀死摄入的大肠杆菌S15不需要O2,并且似乎是BPI介导的。但是,当摄入受到限制时,细胞外细菌也可以被杀死,但主要是通过O2依赖性机制杀死的。

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