Low-molecular-weight polyethylene glycol improves survival in experimental sepsis

被引:37
作者
Ackland, Gareth L. [1 ,2 ,6 ]
Del Arroyo, Ana Gutierrez [2 ]
Yao, Song T. [3 ]
Stephens, Robert C. [1 ,4 ]
Dyson, Alexander
Klein, Nigel J. [5 ]
Singer, Mervyn [2 ]
Gourine, Alexander V. [6 ]
机构
[1] UCL, Ctr Anaesthesia Crit Care & Pain Management, London, England
[2] UCL, Bloomsbury Inst Intens Care Med, London, England
[3] Univ Bristol, Henry Wellcome Labs Integrat Neurosci & Endolabs, Bristol, Avon, England
[4] UCL, Portex Inst, Inst Child Hlth, London, England
[5] UCL, Inst Child Hlth, Div Infect & Immun, London, England
[6] UCL, Dept Neurosci Physiol & Pharmacol, London, England
关键词
polyethylene glycol; sepsis; neutrophil; cell membrane structure; SPINAL-CORD-INJURY; NF-KAPPA-B; NITRIC-OXIDE; LYSOPHOSPHATIDIC ACID; ISCHEMIA-REPERFUSION; ORGAN DYSFUNCTION; URINARY-EXCRETION; HEMORRHAGIC-SHOCK; PORE FORMATION; SEPTIC SHOCK;
D O I
10.1097/CCM.0b013e3181c8fcd0
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Objective: For several chronic inflammatory disease states, therapy is enhanced by improving the pharmacokinetic properties of anti-inflammatory drugs through conjugation with polyethylene glycol. We hypothesized that part of the beneficial action of PEGylated drugs may be derived from the anti-inflammatory properties of polyethylene glycol (PEG) itself. Design: Randomized, double-blinded, controlled ex vivo and in vivo laboratory studies. Setting: University research laboratories. Subjects: Human neutrophils and mononuclear cells, macrophage cell line, and adult rats and mice. Interventions: The effect of PEG (either low-molecular-weight [200-400] or high-molecular-weight [>4000]) was assessed on survival after systemic inflammation induced by lipopolysaccharide or zymosan. The effects of PEG on zymosan, lipopolysaccharide, or streptolysin-induced inflammatory and bioenergetic responses of immune cells were also assessed. Measurements and Main Results: Low-molecular-weight PEG reduced inflammatory cytokine expression, pyrexia, and mortality by >50% in both lipopolysaccharide and zymosan models of sepsis. Low-molecular-weight PEG reduced cytokine expression both in vivo and in vitro, and attenuated activation of human neutrophils in response to lipopolysaccharide or zymosan. By contrast, high-molecular-weight PEG conferred less significant survival effects after lipopolysaccharide and zymosan, and it did not exhibit such profound anti-inflammatory effects. Low-molecular-weight PEG attenuated lipopolysaccharide-induced activation of pro-apoptotic pathways (lysophosphatidic acid receptor and caspase-domain signaling) in the livers of endotoxemic rats. Streptolysin-induced necrosis of human neutrophils was reduced by low-molecular-weight PEG, indicating a mechanism that involves coating and/or stabilizing the cellular membrane. Low-molecular-weight PEG preserved human neutrophil responses to septic serum and bioenergetic function in macrophages and neutrophils. Conclusion: PEG is a commonly used, safe, nonimmunogenic molecule possessing hitherto unappreciated anti-inflammatory properties. Low-molecular-weight PEG may potentially play a role in the therapy of systemic inflammation and sepsis. (Crit Care Med 2010; 38:629-636)
引用
收藏
页码:629 / 636
页数:8
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