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Effect of Da-Cheng-Qi decoction for treatment of acute kidney injury in rats with severe acute pancreatitis

机译:大成气汤对重症急性胰腺炎大鼠急性肾损伤的治疗作用

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摘要

The traditional Chinese formula Da-Cheng-Qi-decoction (DCQD) has been used to treat acute pancreatitis for decades. DCQD could ameliorate the disease severity and the complications of organ injuries, including those of the liver and lungs. However, the pharmacological effects in the kidney, a target organ, are still unclear. This study aimed to investigate the herbal tissue pharmacology of DCQD for acute kidney injury (AKI) in rats with severe acute pancreatitis (SAP). Rats were randomly divided into the sham-operation group (SG), the model group (MG) and the low-, medium- and high-dose treatment groups (LDG, MDG, and HDG, respectively). Sodium taurocholate (3.5%) was retrogradely perfused into the biliopancreatic duct to establish the model of SAP in rats. Different doses of DCQD were administered to the treatment groups 2?h after the induction of SAP. The major components of DCQD in kidney tissues were detected by HPLC–MS/MS. Inflammatory mediators in the kidney tissues, as well as serum creatinine (Scr), blood urea nitrogen (BUN) and pathologic scores, were also evaluated. Ten components of DCQD were detected in the kidneys of the treatment groups, and their concentrations increased dose-dependently. Compared with the SG, the levels of inflammatory mediators, Scr, BUN and pathological scores in the MG were obviously increased (p?
机译:中国传统的大成气汤(DCQD)已被用于治疗急性胰腺炎数十年。 DCQD可以改善疾病的严重程度和器官损伤的并发症,包括肝和肺的损伤。但是,尚不清楚在靶器官肾脏中的药理作用。本研究旨在探讨DCQD对重症急性胰腺炎(SAP)大鼠急性肾脏损伤(AKI)的草药组织药理作用。将大鼠随机分为假手术组(SG),模型组(MG)和低,中,高剂量治疗组(分别为LDG,MDG和HDG)。将牛磺胆酸钠(3.5%)逆行灌注至胆胰管中,以建立大鼠SAP模型。在诱导SAP后2小时,对治疗组给予不同剂量的DCQD。 HPLC-MS / MS检测了肾脏组织中DCQD的主要成分。还评估了肾组织中的炎性介质,以及血清肌酐(Scr),血尿素氮(BUN)和病理评分。在治疗组的肾脏中检测到DCQD的十种成分,其浓度呈剂量依赖性增加。与SG相比,MG的炎症介质,Scr,BUN和病理评分明显升高(p <0.05)。高剂量的DCQD在下调白细胞介素6(IL)-6和肿瘤坏死因子-α(TNF-α)的促炎介质,上调抗炎介质IL-4和IL-10的作用最大。肾脏和减轻病理损害。 DCQD降低了SAP大鼠的胰腺和肾脏病理评分,尤其是在HDG中(p <0.05)。与MG相比,HDG中的Scr水平显着降低(p≤0.05)。 DCQD通过调节炎症反应来改善SAP大鼠的AKI,这可能与其肾脏中成分的分布密切相关。

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