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首页> 外文期刊>Virulence >Passive therapy with humanized anti-staphylococcal enterotoxin B antibodies attenuates systemic inflammatory response and protects from lethal pneumonia caused by staphylococcal enterotoxin B-producing Staphylococcus aureus
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Passive therapy with humanized anti-staphylococcal enterotoxin B antibodies attenuates systemic inflammatory response and protects from lethal pneumonia caused by staphylococcal enterotoxin B-producing Staphylococcus aureus

机译:具有人源化抗葡萄球菌肠毒素B抗体的被动治疗抗体衰减全身炎症反应,并保护由葡萄球菌葡萄球菌的葡萄球菌引起的致死肺炎

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Drugs such as linezolid that inhibit bacterial protein synthesis may be beneficial in treating infections caused by toxigenic Staphylococcus aureus. As protein synthesis inhibitors have no effect on preformed toxins, neutralization of pathogenic exotoxins with anti-toxin antibodies may be beneficial in conjunction with antibacterial therapy. Herein, we evaluated the efficacy of human-mouse chimeric high-affinity neutralizing anti-staphylococcal enterotoxin B (SEB) antibodies in the treatment of experimental pneumonia caused by SEB-producing S. aureus. Since HLA class II transgenic mice mount a stronger systemic immune response following challenge with SEB and are more susceptible to SEB-induced lethal toxic shock than conventional mice strains, HLA-DR3 transgenic mice were used. Lethal pneumonia caused by SEB-producing S. aureus in HLA-DR3 transgenic mice was characterized by robust T cell activation and elevated systemic levels of several pro-inflammatory cytokines and chemokines. Prophylactic administration of a single dose of linezolid 30 min prior to the onset of infection attenuated the systemic inflammatory response and protected from mortality whereas linezolid administered 60 min after the onset of infection failed to confer significant protection. Human-mouse chimeric high-affinity neutralizing anti-SEB antibodies alone, but not polyclonal human IgG, mitigated this response and protected from death when administered immediately after initiation of infection. Further, anti-SEB antibodies as well as intact polyclonal human IgG, but not its Fab or Fc fragments, protected from lethal pneumonia when followed with linezolid therapy 60 min later. In conclusion, neutralization of superantigens with high-affinity antibodies may have beneficial effects in pneumonia.
机译:抑制细菌蛋白质合成的方法如Linezolid可能是有益的治疗毒性葡萄球菌引起的感染。由于蛋白质合成抑制剂对预制毒素没有影响,因此具有抗毒素抗体的致病性外毒素的中和可能与抗菌治疗结合有益。在此,我们评估了人小鼠嵌合高亲和力中和抗葡萄球菌肠毒素B(SEB)抗体在治疗SEB生产的S. aureus引起的实验性肺炎中的疗效。由于HLA二级转基因小鼠在用SEB攻击后安装较强的全身免疫应答,并且比常规小鼠菌株更容易被SEB诱导的致命毒性冲击,所用HLA-DR3转基因小鼠。通过HLA-DR3转基因小鼠的SEB产生的S.UUREUS引起的致死肺炎的特征在于鲁棒T细胞活化和升高的几种促炎细胞因子和趋化因子的全身水平。预防性给药在感染的发作前30分钟的单剂量辐射30分钟,减轻了全身炎症反应并保护了来自死亡率的影响,而LINEZOLID在感染发作后施用60分钟未能达成重大保护。人类小鼠嵌合高亲和力中和单独的抗脂抗体,但不是多克隆人IgG,减轻了这种反应并在发酵感染后立即施用时免遭死亡。此外,抗SEB抗体以及完整的多克隆人IgG,但不是其Fab或Fc片段,在60分钟后用Linezolid疗法进行60分钟。总之,具有高亲和力抗体的超抗体中和可能对肺炎具有有益的作用。

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