炎症相关的脂质组成和红细胞膜组织的变化

Sip Dinkla , Lucas T. van Eijk , Beate Fuchs , Jürgen Schiller , Irma Joosten , Roland Brock , Peter Pickkers , Giel J.C.G.M. Bosman
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引用次数: 47

摘要

背景在脓毒症患者中观察到的所谓炎症性贫血可能是红细胞存活和变形能力降低的原因之一。红细胞的结构和功能受膜脂组成和组织的影响。因此,我们的目的是确定这些参数是否在全身性炎症中受到影响。方法采用敏感基质辅助激光解吸电离飞行时间质谱法研究10例感染性休克患者和10例实验性内毒素血症的健康志愿者血浆成分对红细胞膜脂组成的影响。结果健康供体红细胞与感染性休克患者血浆孵育后,膜磷脂酰胆碱水解成溶血磷脂酰胆碱(LPC)。接受实验性人内毒素血症的志愿者血浆不诱导LPC形成。在脓毒症患者和内毒素治疗患者的血浆中,分泌磷脂酶A2 IIA浓度增加了200倍,但与这些血浆产生LPC的能力无关。在实验内毒素血症期间,红细胞磷脂酰丝氨酸暴露增加到两倍。结论通过LPC形成和/或PS暴露所反映的红细胞膜脂质重塑发生在全身性炎症中,以iia独立的方式分泌磷脂酶A2。脓毒症相关炎症诱导红细胞膜脂质重塑,可能影响红细胞功能和存活,实验内毒素血症不能完全模拟这一过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Inflammation-associated changes in lipid composition and the organization of the erythrocyte membrane

Inflammation-associated changes in lipid composition and the organization of the erythrocyte membrane

Inflammation-associated changes in lipid composition and the organization of the erythrocyte membrane

Inflammation-associated changes in lipid composition and the organization of the erythrocyte membrane

Background

Reduced erythrocyte survival and deformability may contribute to the so-called anemia of inflammation observed in septic patients. Erythrocyte structure and function are affected by both the membrane lipid composition and the organization. We therefore aimed to determine whether these parameters are affected during systemic inflammation.

Methods

A sensitive matrix-assisted laser desorption and ionization time-of-flight mass spectrometric method was used to investigate the effect of plasma components of 10 patients with septic shock and of 10 healthy volunteers subjected to experimental endotoxemia on erythrocyte membrane lipid composition.

Results

Incubation of erythrocytes from healthy control donors with plasma from patients with septic shock resulted in membrane phosphatidylcholine hydrolysis into lysophosphatidylcholine (LPC). Plasma from volunteers undergoing experimental human endotoxemia did not induce LPC formation. The secretory phospholipase A2 IIA concentration was enhanced up to 200-fold in plasma of septic patients and plasma from endotoxin-treated subjects, but did not correlate with the ability of these plasmas to generate LPC. Erythrocyte phosphatidylserine exposure increased up to two-fold during experimental endotoxemia.

Conclusions

Erythrocyte membrane lipid remodeling as reflected by LPC formation and/or PS exposure occurs during systemic inflammation in a secretory phospholipase A2 IIA-independent manner.

General significance

Sepsis-associated inflammation induces a lipid remodeling of the erythrocyte membrane that is likely to affect erythrocyte function and survival, and that is not fully mimicked by experimental endotoxemia.

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