Hashim Mohammad, Arif Hussain, Tabassum Baby, Arif Amin, Rehman Ahmed A, Rehman Shahnawaz, Khanam Rehnuma, Khan Bushra, Hussain Arif, Barnawi Jameel, Tayeb Faris J, Algehainy Naseh, Altemani Faisal H, Mir Rashid, Almutairi Fahad M, Ullah Mohammad Fahad, Elfaki Imadeldin, Ajmal Mohammad Rehan
Department of Biochemistry, S. S. Faculty of Science, Mohammad Ali Jauhar University, Rampur 244901, UP, India.
Toxicology Laboratory, Department of Zoology, Govt. Raza P. G. College, Rampur 244901, UP, India.
Metabolites. 2022 Nov 2;12(11):1059. doi: 10.3390/metabo12111059.
Globally, people are highly affected by Cadmium (Cd), the most hazardous heavy metal. It has been implicated in various pathogeneses. Oxidative stress may be one the main reasons for Cd-induced disorders in the body. This article investigates the protective ability of C (CR) extract on oxidative stress in the kidney and liver of rats exposed to Cd. After 21 days, a significant increase in MDA concentration (6.81 ± 0.05), (6.64 ± 0.03) was observed in Cd-treated groups compared to the control (5.54 ± 0.02), (5.39 ± 0.04) for the kidney and liver, respectively, while significant changes were observed in the haematological parameters. Antioxidant enzymes, GPx, CAT, and SOD showed a significant decrease in their activity. We established that increasing the concentration of Cd in the presence of HO was able to cause stand scission in pBR322 plasmid DNA, which may be due to the mediation of ROS generated in the process. The antioxidant ability of CR extract was tested in DPPH and HO scavenging assay, depicted by the increase in the percentage inhibition. Upon treatment of CR extract to rats, MDA concentration was decreased for the kidney and liver compared to the Cd-treated groups. This was again confirmed by comet assay of both tissues, where the degree of cellular DNA breakage caused by Cd toxicity decreased significantly upon treatment with CR extract. Overall, the results suggest that Cd plays a major role as an effector metal ion, causing a decrease in the concentration and activity of AO enzymes and enhanced lipid peroxidation. ROS production resulted in oxidative DNA damage within the cell, whereas CR extract showed potential antioxidant activity against ROS-mediated DNA damage induced by Cd poisoning.
在全球范围内,人们受到镉(Cd)这种最具危害性的重金属的严重影响。它与多种发病机制有关。氧化应激可能是镉导致机体功能紊乱的主要原因之一。本文研究了C(CR)提取物对镉暴露大鼠肾脏和肝脏氧化应激的保护能力。21天后,与对照组相比,镉处理组的肾脏和肝脏中丙二醛(MDA)浓度显著升高,分别为(6.81±0.05)、(6.64±0.03),而对照组分别为(5.54±0.02)、(5.39±0.04),同时血液学参数也出现了显著变化。抗氧化酶谷胱甘肽过氧化物酶(GPx)、过氧化氢酶(CAT)和超氧化物歧化酶(SOD)的活性显著降低。我们发现,在过氧化氢(HO)存在的情况下增加镉的浓度能够导致pBR322质粒DNA链断裂,这可能是由于该过程中产生的活性氧(ROS)介导的。CR提取物的抗氧化能力在二苯基苦味酰基自由基(DPPH)和HO清除试验中进行了测试,表现为抑制率百分比的增加。用CR提取物处理大鼠后,与镉处理组相比,肾脏和肝脏中的MDA浓度降低。这再次通过两个组织的彗星试验得到证实,在用CR提取物处理后,由镉毒性引起的细胞DNA断裂程度显著降低。总体而言,结果表明镉作为一种效应金属离子起主要作用,导致抗氧化酶的浓度和活性降低以及脂质过氧化增强。ROS的产生导致细胞内的氧化性DNA损伤,而CR提取物对镉中毒诱导的ROS介导的DNA损伤显示出潜在的抗氧化活性。