In an endotoxaemic mouse model of sepsis, a tissue-based proteomics approach for biomarker discovery identified long pentraxin 3 (PTX3) as the lead candidate for inflamed myocardium. When the redox-sensitive oligomerization state of PTX3 was further investigated, PTX3 accumulated as an octamer as a result of disulfide-bond formation in heart, kidney, and lung-common organ dysfunctions seen in patients with sepsis. Oligomeric moieties of PTX3 were also detectable in circulation. The oligomerization state of PTX3 was quantified over the first 11 days in critically ill adult patients with sepsis. On admission day, there was no difference in the oligomerization state of PTX3 between survivors and non-survivors. From day 2 onward, the conversion of octameric to monomeric PTX3 was consistently associated with a greater survival after 28 days of follow-up. For example, by day 2 post-admission, octameric PTX3 was barely detectable in survivors, but it still constituted more than half of the total PTX3 in non-survivors (p < 0.001). Monomeric PTX3 was inversely associated with cardiac damage markers NT-proBNP and high-sensitivity troponin I and T. Relative to the conventional measurements of total PTX3 or NT-proBNP, the oligomerization of PTX3 was a superior predictor of disease outcome.
Redox state of pentraxin 3 as a novel biomarker for resolution of inflammation and survival in sepsis.
五聚蛋白 3 的氧化还原状态作为脓毒症炎症消退和生存的新型生物标志物
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作者:Cuello Friederike, Shankar-Hari Manu, Mayr Ursula, Yin Xiaoke, Marshall Melanie, Suna Gonca, Willeit Peter, Langley Sarah R, Jayawardhana Tamani, Zeller Tanja, Terblanche Marius, Shah Ajay M, Mayr Manuel
| 期刊: | Molecular & Cellular Proteomics | 影响因子: | 5.500 |
| 时间: | 2014 | 起止号: | 2014 Oct;13(10):2545-57 |
| doi: | 10.1074/mcp.M114.039446 | 研究方向: | 炎症/感染 |
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