杜布纳河水的理化性质和成分对生物系统中脂质过氧化过程状态的影响

Pub Date : 2024-07-10 DOI:10.1134/s0097807824700933
V. O. Shvydkyi, A. S. Dubovik, M. V. Kozlov, A. Yu. Povkh, L. N. Shishkina
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引用次数: 0

摘要

摘要 对 2021 年 4 月 18 日至 2021 年 7 月 4 日期间杜布纳河水理化性质和水化学特征的动态进行了研究。研究结果表明,随着水温的升高,pH 值上升,其中铵离子、亚硝酸盐离子和磷酸盐离子的浓度变化很大。利用高斯法对水样的紫外线光谱进行数学处理,以及利用基于天然脂质的模型生物系统(卵磷脂的低温氧化及其在极地环境中自发聚集的能力)来评估天然水的质量及其对生物物体氧化过程的调节作用,都是很有前途的方法。因此,紫外线光谱分析显示,在整个观测期间,水中存在疏水性有机化合物,4 月底存在共轭双键化合物和含 N 的化合物,5 月底存在游离脂肪酸、含羰基的有机化合物和含 P 的化合物,6 月底水样中的成分多样性有所增加。夏季采集的水样使卵磷脂的氧化率提高了 1.8 倍以上,在整个观察期间,它们使卵磷脂形成的聚集体的大小发生了阶段性变化,并对其 dzeta 电位产生了相当大的影响。
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The Effect of the Physicochemical Properties and the Composition of Dubna River Water on the State of the Processes of Lipid Peroxidation in Biological Systems

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The Effect of the Physicochemical Properties and the Composition of Dubna River Water on the State of the Processes of Lipid Peroxidation in Biological Systems

Abstract

The dynamics of water physicochemical properties and hydrochemical characteristics in the Dubna River was studied from April 18, 2021 to July 4, 2021. The study showed an increase in pH with increasing water temperature and considerable variation in the concentrations of ammonium, nitrite, and phosphate ions in it. Promising approaches were shown to be the use of mathematical processing of UV-spectra of water samples by Gauss method and model biological systems based on natural lipids (low-temperature oxidation of lecithin, and its ability to spontaneously aggregate in a polar environment) for assessing the quality of natural water and its effect on the regulation of oxidation processes in biological objects. Thus, analysis of UV-spectra revealed the presence in water of hydrophobic organic compounds throughout the observation period, compounds with conjugated double bonds and N-containing compounds in late April, free fatty acids, organic compounds with a carbonyl group and P-containing compounds at the end of May and an increase in the diversity of components in water samples in late June. Water samples taken in summer, increased the rate of lecithin oxidation by a factor of more than 1.8, and, throughout the observation period, they caused staged changes in the size of aggregates formed by it and produced a considerable effect on their dzeta-potential.

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