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首页> 外文期刊>Cellular and molecular biology >BIOAVAILABILITY, ANTIOXIDANT AND NON TOXIC PROPERTIES OF A RADIOPROTECTIVE FORMULATION PREPARED FROM ISOLATED COMPOUNDS OF Podophyllum hexandrum: A STUDY IN MOUSE MODEL
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BIOAVAILABILITY, ANTIOXIDANT AND NON TOXIC PROPERTIES OF A RADIOPROTECTIVE FORMULATION PREPARED FROM ISOLATED COMPOUNDS OF Podophyllum hexandrum: A STUDY IN MOUSE MODEL

机译:由鬼臼分离化合物制备的放射防护制剂的生物利用度,抗氧化剂和非毒性性质:在小鼠模型中的研究

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The current study was aimed to determine the stability, serum protein binding ability, biodistribution, antioxidant potential and tissue toxicity status of a novel radioprotective formulation (G-002M) from Podophyllum hexandrum. G-002M is the combination of a flavonoid, a lignan and its glucoside isolated from P. hexandrum rhizome that exhibit high radioprotective potential. Stability of G-002M tagged with 99mTc was observed in vitro and with mice serum till 24 hr of incubation. The formulation was investigated for its antioxidant status and its bioavailability and toxicity in different organs of mice. Biodistribution study of 99mTc-G-002M revealed its uptake by all the vital organs of mice. Higher absorbed dose was observed in lungs, liver, jejunum and kidney. Maximum retention of G-002M in kidney revealed that G-002M was excreted predominantly through renal route. G-002M was also observed to have high free radical scavenging and total reducing properties. Histopathological observations showed no significant alterations in tissue morphology of lungs, liver, jejunum and kidney by G-002M administration. The data conclusively demonstrate that high stability, multi organ availability, longer retention and non-toxic behavior of G-002M might help in exhibiting strong protective potential against lethal radiation.
机译:当前的研究旨在确定六足木(Podophyllum hexandrum)新型放射防护制剂(G-002M)的稳定性,血清蛋白结合能力,生物分布,抗氧化潜力和组织毒性状态。 G-002M是类黄酮,木脂素及其糖苷的组合体,它们具有较高的辐射防护潜​​能,是从六味子根茎中分离出来的。在体外和小鼠血清中观察到标记有99mTc的G-002M的稳定性,直至孵育24小时。研究了该制剂在小鼠不同器官中的抗氧化剂状态,生物利用度和毒性。对99mTc-G-002M的生物分布研究表明,它被小鼠所有重要器官摄取。在肺,肝,空肠和肾脏中观察到更高的吸收剂量。 G-002M在肾脏中的最大保留表明G-002M主要通过肾脏途径排泄。还观察到G-002M具有高的自由基清除能力和总还原性。组织病理学观察显示,通过G-002M给药,肺,肝,空肠和肾脏的组织形态没有明显改变。数据最终证明,G-002M的高稳定性,多器官可利用性,更长的保留时间和无毒行为可能有助于表现出强大的抗致命辐射防护能力。

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