Lipid composition and peroxidation products in the body tissues in bees under the action of different doses of nanotechnological Ge citrate and the probiotic Lactobacillus casei В-7280

A. Pylypets, M. Spivak, R. Fedoruk, M. Tsap, I. Kovalchuk, M. M. Romanovyсh
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Abstract

Modern methods of preserving honey bees focus on increasing their viability, feeding level and productivity development during different growth periods. There is a tendency to use new effective remedies of natural origin. Their action mechanisms differ from synthetic substances and drugs due to the activation of the body’s protective reactions at the physiological level. The probiotic Lactobacillus casei IMV B-7280 has an effective stimulating effect on physiological processes in bees under various environmental and experimental conditions. The physiological effect of this probiotic is associated with normalizing of the intestinal bacterial microflora and participation in modulating body’s protective reactions. The resistance of honey bees also depends on mineral nutrition, which affects metabolic processes at the tissue, organ and system levels and determines the vitality and resistance of the organism. Mineral elements are involved in protein, lipid, carbohydrate and energy metabolism, they activate enzyme systems. Therefore, the aim of the research was to determine the effect of the probiotic L. сasei B-7280 in combination with different doses of Ge nanotechnological citrate (NTC) on the lipid composition and peroxidation products content in bees’ tissues. Bees of the control group were fed 60% sugar syrup (SS) in the amount of 1 cm3/group/day. The bees of the first experimental group (R1) were fed 1 cm3 of SS, 0.1 μg of Ge NTC and a solution of probiotic L. casei B-7280 (106 cells/cm3); the second experimental group (R2) received 0.2 μg of Ge citrate and probiotic L. casei B-7280 (106 cells/cm3). The feeding duration was 34 days. It was established that feeding sugar syrup, L. сasei and different doses of Ge citrate increased the content of phospholipids, mono- and diacylglycerols in the R2 group, cholesterol esterification in the R1 group, and decreased free cholesterol, non-esterified fatty acids compared to the K group and P period. The results indicate a dose-dependent effect of Ge NTC on lipid metabolism in body tissue homogenates. There was an increase in the triacylglycerols level in the lipids in all groups during the experimental period. The biological effect of nanotechnological Ge citrate and L. сasei cause a decrease of lipid peroxidation processes in bees of the experimental groups.
不同剂量纳米柠檬酸锗和益生菌干酪乳杆菌В-7280作用下蜜蜂体内组织的脂质组成和过氧化产物
现代保护蜜蜂的方法侧重于提高蜜蜂在不同生长时期的生存能力、摄食水平和生产力发展。现在有一种使用天然来源的新的有效疗法的趋势。它们的作用机制不同于合成物质和药物,因为它们在生理水平上激活了机体的保护反应。益生菌干酪乳杆菌IMV B-7280在各种环境和实验条件下对蜜蜂的生理过程具有有效的刺激作用。这种益生菌的生理作用与肠道菌群的正常化和参与调节机体的保护反应有关。蜜蜂的抵抗力还取决于矿物质营养,矿物质营养影响组织、器官和系统水平的代谢过程,决定了生物体的活力和抵抗力。矿物质元素参与蛋白质、脂质、碳水化合物和能量的代谢,它们激活酶系统。因此,本研究旨在研究益生菌L. asei B-7280与不同剂量的纳米柠檬酸盐(NTC)联合使用对蜜蜂组织中脂质组成和过氧化产物含量的影响。对照组饲喂60%糖浆(SS),剂量为1 cm3/组/d。第一实验组(R1)饲喂SS 1 cm3、Ge NTC 0.1 μg和益生菌L. casei B-7280溶液(106个细胞/cm3);第二实验组(R2)给予0.2 μg柠檬酸Ge和益生菌干酪乳杆菌B-7280(106个细胞/cm3)。饲喂期34 d。结果表明,与K组和P期相比,饲喂糖浆、蓖麻籽和不同剂量枸橼酸Ge均提高了R2组的磷脂、单酰基甘油和二酰基甘油含量,提高了R1组的胆固醇酯化率,降低了游离胆固醇和非酯化脂肪酸。结果表明,Ge NTC对机体组织匀浆的脂质代谢具有剂量依赖性。试验期各组小鼠血脂中甘油三酯含量均升高。纳米技术枸橼酸Ge和芥子叶的生物效应导致实验组蜜蜂脂质过氧化过程的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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