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在提取物处理下,DAF-16调节寿命延长和应激耐受性。

Extension of life span and stress tolerance modulated by DAF-16 in under the treatment of extract.

作者信息

Chauhan Anita Prabhatsinh, Chaubey Mukesh Ghanshyam, Patel Stuti Nareshkumar, Madamwar Datta, Singh Niraj Kumar

机构信息

Department of Biotechnology, Shri A. N. Patel PG Institute of Science and Research, Anand, 388001 Gujarat India.

Department of Biosciences, UGC-Centre of Advanced Study, Sardar Patel University, Satellite Campus, Vadtal Road, Bakrol, Anand, 388315 Gujarat India.

出版信息

3 Biotech. 2020 Dec;10(12):504. doi: 10.1007/s13205-020-02485-x. Epub 2020 Nov 4.

Abstract

The present study was focused to isolate the bioactive compounds present in the leaves of which contains a high nutritional value. Furthermore, the research was aimed to evaluate the antioxidant, anti-aging, and anti-neurodegenerative properties of using the experimental model . The separation of compounds from the crude extract and its identification was carried out through TLC, Column chromatography, UV absorption spectroscopy, and GC-MS. The compounds identified in most abundant fraction of column chromatography were [Phenol-2,4-bis(1,1-dimethylethyl)- phosphite (3:1)] and Tetratetracontane. The result suggests that the leaves extracts and column fraction were able to significantly extend the life span of the N2 wild-type strain of . The most potent life span extending effect was displayed by the dichloromethane extract of leaves which was 21.73 ± 0.142 days compared to the control (16.55 ± 0.02 days). It could also extend the health span through improved physiological functions such as pharyngeal pumping, body bending, and reversal frequency with increased age. The treated worms were also exhibited improved resistance to thermal stress, oxidative stress, and reduced intracellular ROS accumulation. Moreover, the leaves extract could elicit neuroprotection as it could delay the paralysis in the transgenic strain of 'CL4176' integrated with Aβ. Interestingly, The RNAi experiment demonstrated that the extended life span under the treatment of extracts and the compound was - dependent. In transgenic TJ356, the DAF-16 transcription factor was localized in the nucleus under the stress conditions, further supported the involvement of the - gene in longevity. Overall, the study suggests the potential of as a dietary supplement and alternative medicine to defend against oxidative stress and aging.

摘要

本研究旨在分离具有高营养价值的[植物名称]叶片中存在的生物活性化合物。此外,该研究旨在使用实验模型评估[植物名称]的抗氧化、抗衰老和抗神经退行性特性。通过薄层色谱法、柱色谱法、紫外吸收光谱法和气相色谱 - 质谱联用仪从粗提物中分离化合物并进行鉴定。在柱色谱最丰富的馏分中鉴定出的化合物为[亚磷酸 - 2,4 - 双(1,1 - 二甲基乙基)酯(3:1)]和四十四烷。结果表明,叶片提取物和柱馏分能够显著延长[线虫名称]N2野生型菌株的寿命。叶片的二氯甲烷提取物显示出最强的寿命延长效果,与对照组(16.55±0.02天)相比为21.73±0.142天。它还可以通过改善诸如咽部抽吸、身体弯曲和随着年龄增长而增加的反转频率等生理功能来延长健康寿命。经处理的线虫对热应激、氧化应激的抵抗力也有所提高,细胞内活性氧积累减少。此外,叶片提取物可以引发神经保护作用,因为它可以延迟与Aβ整合的[线虫名称]'CL4176'转基因菌株中的麻痹。有趣的是,RNA干扰实验表明,提取物和化合物处理下寿命的延长是[基因名称]依赖性的。在转基因[线虫名称]TJ356中,DAF - 16转录因子在应激条件下定位在细胞核中,进一步支持了[基因名称]基因在长寿中的作用。总体而言,该研究表明[植物名称]作为膳食补充剂和替代药物在抵御氧化应激和衰老方面具有潜力。

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