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Differential Cardiovascular Effects of Endotoxin Derived from Escherichia coli or Pseudomonas aeruginosa

机译:大肠杆菌或铜绿假单胞菌产生的内毒素的差异心血管作用

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Sepsis is characterized by various symptoms, signs and underlying pathophysiology. To investigate possible mechanisms underlying this diversity, we compared the cardiovascular effects of lipopolysaccharide (LPS) derived from Escherichia coli (E-LPS) with those of LPS from Pseudomonas aeruginosa (P-LPS) in rats. We also examined the possible roles of tumor necrosis factor-α (TNF-α) and oxidative stress in LPS-induced cardiovascular damage. E-LPS (10 mg/kg body weight) or P-LPS (2 mg/kg body weight) was administered intravenously to Wistar rats. Echocardiography was serially performed. E-LPS induced an increase in left ventricular fractional shortening that persisted for at least 6 h, whereas P-LPS elicited an initial increase and a subsequent decrease in this parameter. Histological analysis revealed that P-LPS induced interstitial edema, congestion, intramyocardial bleeding, myocardial necrosis, infiltration of inflammatory cells, and formation of fibrin thrombi in the heart, whereas no pathological changes were apparent in the hearts of rats treated with E-LPS. Furthermore, the plasma concentration of TNF-α in rats treated with P-LPS was greater than that in rats treated with E-LPS, but the glutathione redox ratio in the heart was not affected by either type of LPS. In conclusion, E-LPS and P-LPS induced distinct patterns of functional and structural responses in the cardiovascular systems of rats. These differential responses may be attributable in part to the difference in the associated increases in the plasma concentration of TNF-α. The cardiovascular effects of LPS thus depend on the causative organisms.
机译:败血症的特征是各种症状,体征和潜在的病理生理。为了研究这种多样性的潜在机制,我们比较了大肠杆菌(E-LPS)和铜绿假单胞菌(P-LPS)的脂多糖对大鼠的心血管作用。我们还检查了肿瘤坏死因子-α(TNF-α)和氧化应激在LPS诱导的心血管损害中的可能作用。向Wistar大鼠静脉内施用E-LPS(10mg / kg体重)或P-LPS(2mg / kg体重)。连续进行超声心动图检查。 E-LPS引起左心室分数缩短的增加持续至少6小时,而P-LPS引起该参数的最初增加和随后减少。组织学分析显示,P-LPS会诱发间质性水肿,充血,心肌内出血,心肌坏死,炎症细胞浸润和心脏中血纤蛋白血栓形成,而用E-LPS治疗的大鼠心脏无明显病理变化。此外,用P-LPS处理的大鼠的血浆TNF-α浓度高于用E-LPS处理的大鼠,但心脏中的谷胱甘肽氧化还原比不受这两种LPS的影响。总之,E-LPS和P-LPS诱导了大鼠心血管系统功能和结构反应的不同模式。这些差异反应可能部分归因于相关的TNF-α血浆浓度增加的差异。因此,脂多糖的心血管作用取决于致病菌。

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