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Investigation into the role of Cu/Zn-SOD delivery system on its antioxidant and antiinflammatory activity in rat model of peritonitis

机译:Cu / Zn-SOD输送系统对腹膜炎大鼠模型抗氧化和抗炎活性的作用研究

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Background The current study evaluated the role of delivery system (solution, conventional liposomes and PEG-ylated liposomes) on superoxide dismutase (SOD) antioxidant and antiinflammatory properties in a rat model of lipopolysaccharide (LPS)-induced peritonitis. Methods Fifty male albino rats (Wistar-Bratislava) were divided into five groups (n = 10). Control group received saline and the other four groups received intraperitoneal injections of LPS (5 mg/kg). Among the LPS-injected groups, one was LPS control group and the other three groups received the endotoxin injection 30 min after receiving the same dose of SOD (500 U/kg, ip) in different delivery systems: saline solution (SOD-S), conventional liposomes (SOD-L) or PEG-ylated liposomes (SOD-PL). The animals were euthanized 6 h after LPS injection, blood samples were collected and acute phase response (total and differential leukocytes count; tumor necrosis factor α), antioxidants (total antioxidants; reduced glutathione), oxidative stress (total oxidants; lipid peroxidation) and nitrosative stress (nitric oxide metabolites; nitrotyrosine) were evaluated. Results Intraperitoneal administration of LPS to rats induced a marked inflammatory and oxidative response in plasma. On the other hand, all SOD formulations had protective effect against endotoxin-induced inflammation and oxidativeitrosative stress, but PEG-ylated liposomes had the most significant activity. Thus, SOD-PL administration significantly reduced the effects of LPS on bone marrow acute phase response, the oxidative status and production of nitric oxide metabolites, while increasing the markers of antioxidant response in a significant manner. Conclusion SOD supplementation interferes both with inflammatory and oxidative pathways involved in LPS-induced acute inflammation, PEG-ylated liposomal formulation being of choice among the tested delivery systems.
机译:背景技术本研究评估了脂多糖(LPS)诱发的腹膜炎大鼠模型中递送系统(溶液,常规脂质体和PEG化脂质体)对超氧化物歧化酶(SOD)抗氧化和抗炎特性的作用。方法50只白化病雄性大鼠(Wistar-Bratislava)分为5组(n = 10)。对照组接受生理盐水,其他四组接受腹腔注射LPS(5 mg / kg)。在注射LPS的组中,一个是LPS对照组,另外三组在不同的递送系统中分别接受相同剂量的SOD(500 U / kg,ip)30分钟后接受内毒素注射:盐溶液(SOD-S) ,常规脂质体(SOD-L)或PEG化脂质体(SOD-PL)。 LPS注射后6小时对动物实施安乐死,收集血样并进行急性期反应(总白细胞和差异白细胞计数;肿瘤坏死因子α),抗氧化剂(总抗氧化剂;减少的谷胱甘肽),氧化应激(总氧化剂;脂质过氧化)评估亚硝化胁迫(一氧化氮代谢产物;硝基酪氨酸)。结果大鼠腹膜内给予LPS可引起血浆中明显的炎症和氧化反应。另一方面,所有SOD制剂均具有抗内毒素诱导的炎症和氧化/亚硝化应激的保护作用,但PEG化脂质体具有最显着的活性。因此,SOD-PL给药显着降低了LPS对骨髓急性期反应,一氧化氮代谢产物的氧化状态和产生的影响,同时以显着方式增加了抗氧化反应的标志物。结论SOD的添加会干扰LPS诱导的急性炎症中涉及的炎症和氧化途径,在测试的输送系统中选择PEG化脂质体制剂。

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