Biochemistry and Molecular Biology Laboratory of the Federal Institute of Education, Science, and Technology of Rio Grande do Sul - Sertão Campus, Sertão, Brazil.
Graduate Program in Pharmacology, Universidade Federal de Santa Maria, Santa Maria, Brazil.
J Food Biochem. 2022 Jul;46(7):e14147. doi: 10.1111/jfbc.14147. Epub 2022 Mar 29.
The harmful effects of heavy metals on organisms have not been fully described. At present, there is a close relationship between neurodegenerative diseases and copper toxicity. In addition, the copper effect on the central nervous system is followed by high levels of free radicals in different body tissues. An increase in free radical levels leads to aging-related diseases, resulting in the appearance of senile comorbidities. An increase in the consumption of natural compounds that could help to reduce this dangerous effect on organisms was observed. Pitaya (Hylocereus undatus) is a tropical fruit with great antioxidant potential and can help the organism with oxidative damage. This study evaluated the effect of H. undatus on zebrafish organisms in front of copper-induced toxicity. Therefore, the behavior, cholinergic system, antioxidant enzymes, and ALAD activity were evaluated as biomarkers. Our results highlight the great potential of Pitaya's pulp to reduce the levels of anxiety and aggressivity in fish and reduce cortisol levels. It could mediate the normal response of the cholinergic nervous system, antioxidant enzymes, and ALAD activity. Therefore, our data suggest that pitaya might improve the senile aging. PRACTICAL APPLICATIONS: The potential practical application of this study is related to the neuroprotective effect of the Hylocereus undatus microencapsulated pulp extract against metal-induced impairments. The results have shown that this extract is able to reduce the copper-induced damage modulating the antioxidant system and the cholinergic nervous system. One of the implicated potentials of use for this extract is the food supplementation to its fortification.
重金属对生物体的有害影响尚未得到充分描述。目前,神经退行性疾病与铜毒性之间存在密切关系。此外,铜对中枢神经系统的影响会导致不同身体组织中自由基水平升高。自由基水平的升高会导致与衰老相关的疾病,从而出现老年共病。观察到增加了可以帮助减少这种对生物体的危险影响的天然化合物的消耗。火龙果(Hylocereus undatus)是一种具有巨大抗氧化潜力的热带水果,可以帮助生物体对抗氧化损伤。本研究评估了火龙果在铜诱导毒性下对斑马鱼生物体的影响。因此,将行为、胆碱能系统、抗氧化酶和 ALAD 活性评估为生物标志物。我们的结果强调了火龙果果肉降低鱼类焦虑和攻击性水平以及降低皮质醇水平的巨大潜力。它可以介导胆碱能神经系统、抗氧化酶和 ALAD 活性的正常反应。因此,我们的数据表明,火龙果可能改善衰老。实际应用:本研究的潜在实际应用与 Hylocereus undatus 微囊化果肉提取物对金属诱导损伤的神经保护作用有关。结果表明,这种提取物能够通过调节抗氧化系统和胆碱能神经系统来减轻铜诱导的损伤。这种提取物的一种潜在用途是将其作为食品补充剂进行强化。