秀丽隐杆线虫辐射防护天然产物筛选模型。

Wenxi Yang, Zhihui Li, Xiaojuan Chen, Shuang Wu, Si Liu, Lan Yao, Jie Zhang, Haizhen Liang, Juan Song, Baiping Ma
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引用次数: 0

摘要

目的:电离辐射(IR)可引起DNA损伤和氧化应激等损伤。天然产品,如茶,已被证明具有减轻这些损害的潜力。然而,缺乏高效、快速的天然产物筛选方法阻碍了天然产物的广泛应用。为了解决这一挑战,本研究利用秀丽隐杆线虫(秀丽隐杆线虫)作为体内模型来研究辐射防护天然产物。方法:对L1期秀丽隐杆线虫进行不同剂量(20、50、100 Gy)的x射线和60Co γ射线照射,观察线虫的生长、繁殖和寿命。测试了不同的培养和样品管理模式。已知的辐射防护剂包括氨磷汀(WR2721)、枸杞提取物(LBE)和trlium tschonoskii提取物(TTF)作为阳性对照,以验证模型的可靠性。在此筛选模型的基础上,对不同发酵程度茶叶的辐射防护活性进行了比较。结果:建立了20 Gy x射线筛选秀丽隐杆线虫模型。研究了一种合适的样品管理方法,即在辐照前2小时将样品添加到覆盖有灭活大肠杆菌的线虫生长培养基(NGM)琼脂中。已知的辐射防护剂(WR2721、LBE和TTF)证实该模型是稳定的。我们的模型应用结果显示,发酵水平较低的茶叶,如绿茶和乌龙茶,特别是乌龙茶的正丁醇和乙酸乙酯部分,具有显著的辐射防护活性。结论:本研究提出了一种有效的体内辐射防护天然产物初步筛选方法。
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Screening model in Caenorhabditis elegans for radioprotective natural products.

Purpose: Ionizing radiation (IR) could induce damage such as DNA damage and oxidative stress. Natural products, like tea, have been demonstrated potential in mitigating these damages. However, the lack of efficient and rapid screening methods for natural products hinders their widespread application. To address this challenge, this study utilized Caenorhabditis elegans (C. elegans) as an in vivo model to investigate radioprotective natural products.

Methods: L1 stage C. elegans were exposed to X-rays or 60Co γ-rays at varying dosages (20, 50, and 100 Gy), then the growth, reproduction, and lifespan of the nematodes were observed. Different culture and sample-administered modes were tested. Known radioprotective agents, including Amifostine (WR2721), Lycium barbarum extract (LBE), and Trillium tschonoskii fraction (TTF), served as positive controls to validate the reliability of the model. The radioprotective activity of teas with different fermentation degrees was compared based on this screening model.

Results: A screening model in C. elegans was established by X-rays at 20 Gy. An appropriate sample-administrated approach was investigated, which involves adding the sample to the nematode growth medium (NGM) agar covered with inactivated Escherichia coli 2 h before irradiation. The known radioprotective agents (WR2721, LBE, and TTF) validated that the model is stable. Our results of the model application revealed that teas with lower fermentation levels, such as green tea and oolong tea, particularly the n-butanol and ethyl acetate fractions from oolong tea, exhibited significant radioprotective activity.

Conclusions: This study presents an effective in vivo approach for the initial screening of radioprotective natural products.

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