Evaluation of phytochemical composition of aqueous extract of Annona reticulata and assessment of its neuroprotective activity on Paraquat-induced neurodegeneration in Drosophila melanogaster Oregon R

Shubha, Vaibhavi Bhardwaj, Naomi Varghese, Sowmya Kumar
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Abstract

Neurons are essential for maintaining physiological balance, and abnormalities in neuronal activity or communication can lead to medical disorders. The term “neurodegenerative diseases” refers to a broad category of neurological disorders that affect different subsets of neurons in different functional anatomical systems. The term “neurodegenerative diseases” refers to a broad category of neurological disorders that affect different subsets of neurons in different functional anatomical systems. The Oregon R strain of Drosophila melanogaster was used in the study to examine the neuroprotective effects of Annona reticulata Linn. leaf extract against Paraquat-induced neurotoxicity. As per the results of the phytochemical analysis, the Annona reticulata Linn aqueous leaf extract included many phytochemicals like flavanones, phenols, steroids, quinones, coumarins, and flavonoids. Pursuit a toxicity test on the Drosophila melanogaster Oregon R strain, the aqueous extract's antioxidant and neuroprotective activities were evaluated after choosing the ideal paraquat concentration to cause neurodegeneration in the flies. The extract improved the survival rates and greatly decreased locomotor impairment in the treated flies. Additionally, it demonstrated beneficial modulatory effects on the activity of antioxidant enzymes as well as ameliorative effects on the levels of oxidative stress indicators. However, further study is needed to fully understand the molecular pathways behind the extract's neuroprotective activity and to investigate its potential applicability as a medication.
番麻水提物的植物化学成分评价及其对百草枯致黑腹果蝇神经退行性变的保护作用
神经元对维持生理平衡至关重要,神经元活动或通讯异常可导致医学疾病。“神经退行性疾病”一词是指影响不同功能解剖系统中不同神经元亚群的一大类神经系统疾病。“神经退行性疾病”一词是指影响不同功能解剖系统中不同神经元亚群的一大类神经系统疾病。本研究以俄勒冈州黑腹果蝇R株为研究对象,研究了黄麻的神经保护作用。叶提取物抗百草枯诱导的神经毒性。根据植物化学分析的结果,番荔枝叶水提取物含有许多植物化学物质,如黄酮、酚类、类固醇、醌类、香豆素和类黄酮。通过对黑腹果蝇俄勒冈R品系的毒性试验,选择理想的百草枯浓度,评价其水提物的抗氧化和神经保护活性。提取物提高了果蝇的存活率,并大大减少了运动障碍。此外,它对抗氧化酶的活性有有益的调节作用,并对氧化应激指标水平有改善作用。然而,需要进一步的研究来充分了解提取物的神经保护活性背后的分子途径,并调查其作为药物的潜在适用性。
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来源期刊
Brain disorders (Amsterdam, Netherlands)
Brain disorders (Amsterdam, Netherlands) Neurology, Clinical Neurology
CiteScore
1.90
自引率
0.00%
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0
审稿时长
51 days
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