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NMR-based metabolomics approach to study the chronic toxicity of crude ricin from castor bean kernels on rats

机译:基于核磁共振的代谢组学方法研究蓖麻籽仁中的粗蓖麻毒素对大鼠的慢性毒性

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摘要

Ricin, a large, water soluble toxic glycoprotein, is distributed majorly in the kernels of castor beans (the seeds of Ricinus communis L.) and has been used in traditional Chinese medicine (TCM) or other folk remedies throughout the world. The toxicity of crude ricin (CR) from castor bean kernels was investigated for the first time using an NMR-based metabolomic approach complemented with histopathological inspection and clinical chemistry. The chronic administration of CR could cause kidney and lung impairment, spleen and thymus dysfunction and diminished nutrient intake in rats. An orthogonal signal correction partial least-squares discriminant analysis (OSC-PLSDA) of metabolomic profiles of rat biofluids highlighted a number of metabolic disturbances induced by CR. Long-term CR treatment produced perturbations on energy metabolism, nitrogen metabolism, amino acid metabolism and kynurenine pathway, and evoked oxidative stress. These findings could explain well the CR induced nephrotoxicity and pulmonary toxicity, and provided several potential biomarkers for diagnostics of these toxicities. Such a ~1H NMR based metabolomics approach showed its ability to give a systematic and holistic view of the response of an organism to drugs and is suitable for dynamic studies on the toxicological effects of TCM.
机译:蓖麻毒素是一种大型的水溶性有毒糖蛋白,主要分布在蓖麻子(蓖麻的种子)的籽粒中,并已在世界各地用于传统中药(TCM)或其他民间疗法。首次使用基于核磁共振的代谢组学方法,结合组织病理学检查和临床化学方法,对蓖麻子仁中的粗蓖麻毒素(CR)的毒性进行了首次研究。长期服用CR可能会导致大鼠肾脏和肺部损伤,脾和胸腺功能障碍以及营养摄入减少。大鼠生物流体代谢组学特征的正交信号校正偏最小二乘判别分析(OSC-PLSDA)强调了许多CR引起的代谢紊乱。长期的CR治疗对能量代谢,氮代谢,氨基酸代谢和犬尿氨酸途径产生干扰,并引起氧化应激。这些发现可以很好地解释CR引起的肾毒性和肺毒性,并为诊断这些毒性提供了几种潜在的生物标记。这种基于1H NMR的代谢组学方法显示出能够对生物对药物的反应进行系统而全面的观察的能力,适合用于中药毒理学效应的动态研究。

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  • 来源
    《Molecular BioSystems》 |2014年第9期|2426-2440|共15页
  • 作者单位

    State Key Laboratory of Natural Medicines, Department of Natural Medicinal Chemistry, China Pharmaceutical University, 24 Tong Jia Xiang, Nanjing 210009, PR China;

    Center for Molecular Metabolism, School of Environmental & Biological Engineering, Nanjing University of Science & Technology, 200 Xiao Ling Wei Street, Nanjing 210094, PR China;

    State Key Laboratory of Natural Medicines, Department of Natural Medicinal Chemistry, China Pharmaceutical University, 24 Tong Jia Xiang, Nanjing 210009, PR China;

    State Key Laboratory of Natural Medicines, Department of Natural Medicinal Chemistry, China Pharmaceutical University, 24 Tong Jia Xiang, Nanjing 210009, PR China;

    State Key Laboratory of Natural Medicines, Department of Natural Medicinal Chemistry, China Pharmaceutical University, 24 Tong Jia Xiang, Nanjing 210009, PR China;

    State Key Laboratory of Natural Medicines, Department of Natural Medicinal Chemistry, China Pharmaceutical University, 24 Tong Jia Xiang, Nanjing 210009, PR China;

    State Key Laboratory of Natural Medicines, Department of Natural Medicinal Chemistry, China Pharmaceutical University, 24 Tong Jia Xiang, Nanjing 210009, PR China;

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