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首页> 外文期刊>FEMS immunology and medical microbiology >Anaerobic culture conditions favor biofilm-like phenotypes in Pseudomonas aeruginosa isolates from patients with cystic fibrosis.
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Anaerobic culture conditions favor biofilm-like phenotypes in Pseudomonas aeruginosa isolates from patients with cystic fibrosis.

机译:无氧培养条件有利于来自囊性纤维化患者的铜绿假单胞菌分离物中的生物膜样表型。

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Pseudomonas aeruginosa causes chronic infections in the lungs of cystic fibrosis (CF) individuals and remains the leading cause of morbidity and mortality associated with the disease. Biofilm growth and phenotypic diversification are factors thought to contribute to this organism's persistence. Most studies have focused on laboratory isolates such as strain PAO1, and there are relatively few reports characterizing the properties of CF strains, especially under decreased oxygen conditions such as occur in the CF lung. This study compared the phenotypic and functional properties of P. aeruginosa from chronically infected CF adults with those of strain PAO1 and other clinical non-CF isolates under aerobic and anaerobic culture conditions. The CF isolates overall displayed a reduced ability to form biofilms in standard in vitro short-term models. They also grew more slowly in culture, and exhibited decreased adherence to glass and decreased motilities (swimming, swarming and twitching). All of these characteristics were markedly accentuated by anaerobic growth conditions. Moreover, the CF strain phenotypes were not readily reversed by culture manipulations designed to encourage planktonic growth. The CF strains were thus inherently different from strain PAO1 and most of the other non-CF clinical P. aeruginosa isolates tested. In vitro models used to research CF isolate biofilm growth need to take the above properties of these strains into account.
机译:铜绿假单胞菌在囊性纤维化(CF)个体的肺中引起慢性感染,并且仍然是与该疾病相关的发病率和死亡率的主要原因。生物膜的生长和表型的多样化是导致该生物体持久性的因素。大多数研究集中于实验室分离株,如PAO1菌株,而且很少有报道表征CF菌株的特性,特别是在氧气减少的条件下,例如CF肺中。这项研究比较了在有氧和无氧培养条件下,慢性感染的CF成人的铜绿假单胞菌的表型和功能特性与PAO1菌株和其他临床非CF分离株的铜绿假单胞菌的表型和功能特性。在标准的体外短期模型中,CF分离物总体上显示出降低形成生物膜的能力。它们在培养中的生长也更加缓慢,并且表现出对玻璃的依从性降低和移动性降低(游动,蜂群和抽搐)。所有这些特征在厌氧生长条件下明显增强。此外,CF菌株的表型不容易通过旨在促进浮游生物生长的培养操作来逆转。因此,CF菌株与PAO1菌株和测试的大多数其他非CF临床铜绿假单胞菌分离株天生就有差异。用于研究CF分离物生物膜生长的体外模型需要考虑这些菌株的上述特性。

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