Beregova Tetyana V, Neporada Karine S, Skrypnyk Maksym, Falalyeyeva Tetyana M, Zholobak Nadiya M, Shcherbakov Oleksandr B, Spivak Mykola Ya, Bubnov Rostyslav V
Taras Shevchenko National University of Kyiv, Volodymyrska Str., 64/13, Kyiv, 01601 Ukraine.
Poltava Ukrainian Medical and Stomatological Academy, 23 Shevchenko str., Poltava, 36024 Ukraine.
EPMA J. 2017 Mar 14;8(1):43-49. doi: 10.1007/s13167-017-0085-7. eCollection 2017 Mar.
Nowadays, we face the global epidemic of obesity, that is known to contribute to the development of many diseases, such as the oral cavity pathologies. Dental and oral pathologies are frequently caused by and overlapped with systemic multifactorial diseases such as obesity being its early indicators and risk factors. The aim was to study the influence of nanoceria on periodontal tissues alteration in glutamate (MSG)-induced obese rats.
We included 52 Wistar rats of both genders and divided into four groups: newborn rats in group 1 (control) received subcutaneously 8 μl/g saline. Group 2 received 3 to 4 mg/g MSG subcutaneously on the second, fourth, sixth, eighth, and tenth day of life; group 3-intragastric administration of nanocrystalline cerium dioxide at a dose of 1 mg/kg volume of 2.9 ml/kg against the background of glutamate-induced obesity; the fourth group of animals was treated with a solution of sodium citrate intragastric volume of 2.9 ml/kg (solvent of nanocrystalline cerium). We determined the total proteolytic activity, the total antitrypsin activity, the content-free fucose and glycosaminoglycanes (GAG), content of TBA-active of products, the content of oxidation-modified proteins (OMB), and catalase activity in the homogenate of soft periodontal tissues of rats.
Intragastric injection of nanoceria prevents activation of proteolytic processes, reducing the catabolism of glycoproteins and proteoglycans of periodontal tissue in MSG-induced obese rats. Injection of nanoceria prevents activation of proteolytic processes, significantly decreases the total proteolytic activity, and inhibits the activation of free radical oxidation in periodontal tissues of rats compared with MSG-induced obesity model without corrections. Further, it significantly increases the total antitrypsin activity in periodontal tissues by 1.7 times, TBA-reagents by 1.7 times, and content of OMB by 1.4 times compared with glutamate-induced obese animals.
MSG-induced obesity triggers periodontal tissue alterations in the rat model. Nanoceria contributes to the corrections of pathological changes in periodontal tissues in glutamate-induced obese rats via balancing protein-inhibitory capacity and reducing the depolymerization of fucosylated proteins and proteoglycans and antioxidative activity.
如今,我们面临着肥胖的全球流行,肥胖已知会导致许多疾病的发展,如口腔疾病。牙科和口腔疾病常常由系统性多因素疾病引起并与之重叠,肥胖就是这些疾病的早期指标和风险因素。本研究旨在探讨纳米氧化铈对谷氨酸(MSG)诱导的肥胖大鼠牙周组织改变的影响。
我们纳入了52只雌雄Wistar大鼠,分为四组:第1组(对照组)新生大鼠皮下注射8 μl/g生理盐水。第2组在出生后第2、4、6、8和10天皮下注射3至4 mg/g MSG;第3组在谷氨酸诱导的肥胖背景下,以1 mg/kg的剂量胃内给予2.9 ml/kg的纳米晶二氧化铈;第4组动物用2.9 ml/kg的柠檬酸钠溶液胃内给药(纳米晶的溶剂)。我们测定了大鼠牙周软组织匀浆中的总蛋白水解活性、总抗胰蛋白酶活性、游离岩藻糖和糖胺聚糖(GAG)含量、TBA活性产物含量、氧化修饰蛋白(OMB)含量和过氧化氢酶活性。
与未进行干预的MSG诱导肥胖模型相比,胃内注射纳米氧化铈可防止蛋白水解过程的激活,减少MSG诱导的肥胖大鼠牙周组织中糖蛋白和蛋白聚糖的分解代谢。纳米氧化铈的注射可防止蛋白水解过程的激活,显著降低总蛋白水解活性,并抑制大鼠牙周组织中的自由基氧化激活。此外,与谷氨酸诱导的肥胖动物相比,它可使牙周组织中的总抗胰蛋白酶活性显著增加1.7倍,TBA试剂增加1.7倍,OMB含量增加1.4倍。
在大鼠模型中,MSG诱导的肥胖引发了牙周组织改变。纳米氧化铈通过平衡蛋白质抑制能力、减少岩藻糖基化蛋白和蛋白聚糖的解聚以及抗氧化活性,有助于纠正谷氨酸诱导的肥胖大鼠牙周组织的病理变化。