脂质过氧化对实验性牙周炎中胶原纤维降解的影响

A. Zakhvatov, D. Khaydar, T. Tarasova, A. Parshina, V. Timoshkin
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引用次数: 0

摘要

脂质过氧化分析和主要损伤预测因素的识别导致新的诊断和治疗技术引入医疗实践。本研究的目的是评估自由基损伤过程的活性,并确定其与实验性牙周炎疾病动力学中胶原代谢紊乱的关系。材料与方法。本文对60只非线性白色大鼠进行了实验研究。根据K.D. Shkolnaya和V.G. Atrushkevich方法(专利RU No. 2625295, 2017年12月7日)复制大鼠牙周炎模型。根据生化发光参数评价其自由基氧化活性和抗氧化能力。根据一次和二次过氧化产物的参数评价脂质过氧化活性。P.N. Sharaev法测定胶原代谢。结果。大鼠牙周炎模型显示出高水平的自由基氧化参数。同时,在整个实验过程中观察到抗氧化电位的下降。它被证明对抗氧化系统中和生物自由基氧化反应的能力有显著的抑制作用。由此产生的自由基导致胶原蛋白破坏,形成牙周结缔组织结构的框架。在整个实验过程中,由于游离和肽结合部分羟脯氨酸的增加,证实了这一点。最后,在游离羟脯氨酸水平高的背景下,确定了蛋白结合羟脯氨酸的增加,这是由病理性肉芽和短链结构较差的纤维状胶原的形成所解释的。结论。慢性牙周炎的特点是生物自由基平衡紊乱,随后氧化应激的发展,导致牙周胶原结构的营养不良。这些数据证实了胶原过氧化和代谢标志物作为牙周炎病程的诊断标准,也证明了抗氧化剂的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IMPACT OF LIPID PEROXIDATION ON COLLAGEN FIBRIL DEGRADATION IN EXPERIMENTAL PERIODONTITIS
Lipid peroxidation analysis and identification of the main damage predictors lead to introduction of new diagnostic and treatment technologies into medical practice. The aim of the study was to evaluate the activity of free radical damage processes and identify their association with collagen metabolism disorders in the disease dynamics in experimental periodontitis. Materials and Methods. An experimental study was carried out on 60 white non-linear rats. A rat model of periodontitis was reproduced according to K.D. Shkolnaya and V.G. Atrushkevich method (Patent RU No. 2625295, December 07, 2017). The overall activity of free radical oxidation and antioxidant potential was assessed according to biochemiluminescence parameters. Lipid peroxidation activity was assessed according to the parameters of primary and secondary peroxidation products. Collagen metabolism was assessed by P.N. Sharaev method. Results. The rat model of periodontitis demonstrated a high level of free radical oxidation parameters. At the same time decrease in the antioxidant potential was observed throughout the experiment. It proved a significant inhibition of the antioxidant system ability to neutralize bioradical oxidation reactions. The resulting free radicals caused the collagen destruction, which formed the frame of the periodontal connective tissue structures. It was confirmed by hydroxyproline increase due to its free and peptide-bound fractions throughout the experiment. Finally, an increase in protein-bound hydroxyproline was determined against the background of high levels of free hydroxyproline, which was explained by the formation of pathological granulations and fibrillar collagen with an inferior short-chain structure. Conclusion. Chronic periodontitis is characterized by disturbances in the bioradical balance followed by the oxidative stress development, which induces the dystrophy of periodontal collagen structures. The data obtained substantiate the use of collagen peroxidation and metabolism markers as diagnostic criteria to predict the course of periodontitis, and also prove the importance of antioxidants.
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