Gelatin/polyethylene glycol-loaded magnesium hydroxide nanocomposite to attenuate acetylcholinesterase, neurotoxicity, and activation of GPR55 protein in rat models of Alzheimer's disease

IF 2.7 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Manickam Rajkumar , Sundarraj Navaneethakrishnan , Sundarapandian Muthukumar , Ramasundaram Thangaraj , Magudeeswaran Sivanandam , Karuppaiya Vimala , Soundarapandian Kannan
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引用次数: 0

Abstract

Alzheimer's disease (AD) is a neurodegenerative disease marked by mitochondrial dysfunction, amyloid-β (Aβ) aggregation, and neuronal cell loss. G-protein-coupled receptor 55 (GPR55) has been used as a promising target for insulin receptors in diabetes therapy, but GPR55's role in AD is still unidentified. Gelatin (GE) and polyethylene glycol (PEG) polymeric hydrogels are commonly used in the drug delivery system. Therefore, the aim of the present study was the preparation of magnesium hydroxide nanocomposite using Clitoria ternatea (CT) flower extract, GE, and PEG (GE/PEG/Mg(OH)2NCs) by the green precipitation method. The synthesized GE/PEG/Mg(OH)2NCs were used to determine the effect of GPR55 activation of intracerebroventricular administration on streptozotocin (ICV-STC)-induced cholinergic dysfunction, oxidative stress, neuroinflammation, and cognitive deficits. The GE/PEG/Mg(OH)2NCs were administered following bilateral ICV-STC administration (3 mg/kg) in experimental rats. Neurobehavioral assessments were performed using a Morris water maze (MWM) and a passive avoidance test (PA). Cholinergic and antioxidant activity, oxidative stress, and mitochondrial complex activity were estimated in the cortex and hippocampus through biochemical analysis. Inflammatory markers (TNF-α, IL-6, and IL-1β) were determined using the ELISA method. Our study results demonstrated that the GE/PEG/Mg(OH)2NCs treatment significantly improved spatial and non-spatial memory functions in behavioral studies. Moreover, the treatment with GE/PEG/Mg(OH)2NCs group significantly attenuated cholinergic dysfunction, oxidative stress, and inflammatory markers, and also highly improved anti-oxidant activity (GSH, SOD, CAT, and GPx) in the cortex and hippocampus regions. The western blot results suggest the activation of the GPR55 protein expression through GE/PEG/Mg(OH)2NCs. The histopathological studies showed clear cytoplasm and healthy neurons, effectively promoting neuronal activity. Furthermore, the molecular docking results demonstrated the binding affinity and potential interactions of the compounds with the AChE enzyme. In conclusion, the GE/PEG/Mg(OH)2NCs treated groups showed reduced neurotoxicity and have the potential as a therapeutic agent to effectively target AD.

Abstract Image

明胶/聚乙二醇负载的氢氧化镁纳米复合材料可减轻阿尔茨海默病大鼠模型中乙酰胆碱酯酶、神经毒性和GPR55蛋白的激活。
阿尔茨海默病(AD)是一种以线粒体功能障碍、淀粉样蛋白-β(aβ)聚集和神经元细胞损失为特征的神经退行性疾病。G蛋白偶联受体55(GPR55)已被用作胰岛素受体在糖尿病治疗中的一个有前途的靶点,但GPR55在AD中的作用尚不明确。明胶(GE)和聚乙二醇(PEG)聚合物水凝胶通常用于药物递送系统中。因此,本研究的目的是利用Clitoria ternatea(CT)花提取物、GE和PEG(GE/PEG/Mg(OH)2NCs)通过绿色沉淀法制备氢氧化镁纳米复合材料。合成的GE/PEG/Mg(OH)2NCs用于测定GPR55激活侧脑室给药对链脲佐菌素(ICV-STC)诱导的胆碱能功能障碍、氧化应激、神经炎症和认知缺陷的影响。在实验大鼠中双侧ICV-STC给药(3mg/kg)后给药GE/PEG/Mg(OH)2NCs。使用Morris水迷宫(MWM)和被动回避测试(PA)进行神经行为评估。通过生化分析评估了皮层和海马的胆碱能和抗氧化活性、氧化应激和线粒体复合物活性。采用ELISA法测定炎症标志物(TNF-α、IL-6和IL-1β)。我们的研究结果表明,在行为研究中,GE/PEG/Mg(OH)2NCs处理显著改善了空间和非空间记忆功能。此外,GE/PEG/Mg(OH)2NCs组的治疗显著减轻了胆碱能功能障碍、氧化应激和炎症标志物,并显著提高了皮层和海马区域的抗氧化活性(GSH、SOD、CAT和GPx)。蛋白质印迹结果表明GPR55蛋白表达通过GE/PEG/Mg(OH)2NCs激活。组织病理学研究显示细胞质清晰,神经元健康,有效促进神经元活动。此外,分子对接结果证明了化合物与AChE酶的结合亲和力和潜在的相互作用。总之,GE/PEG/Mg(OH)2NCs处理组显示出降低的神经毒性,并且具有作为有效靶向AD的治疗剂的潜力。
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来源期刊
Journal of chemical neuroanatomy
Journal of chemical neuroanatomy 医学-神经科学
CiteScore
4.50
自引率
3.60%
发文量
87
审稿时长
62 days
期刊介绍: The Journal of Chemical Neuroanatomy publishes scientific reports relating the functional and biochemical aspects of the nervous system with its microanatomical organization. The scope of the journal concentrates on reports which combine microanatomical, biochemical, pharmacological and behavioural approaches. Papers should offer original data correlating the morphology of the nervous system (the brain and spinal cord in particular) with its biochemistry. The Journal of Chemical Neuroanatomy is particularly interested in publishing important studies performed with up-to-date methodology utilizing sensitive chemical microassays, hybridoma technology, immunocytochemistry, in situ hybridization and receptor radioautography, to name a few examples. The Journal of Chemical Neuroanatomy is the natural vehicle for integrated studies utilizing these approaches. The articles will be selected by the editorial board and invited reviewers on the basis of their excellence and potential contribution to this field of neurosciences. Both in vivo and in vitro integrated studies in chemical neuroanatomy are appropriate subjects of interest to the journal. These studies should relate only to vertebrate species with particular emphasis on the mammalian and primate nervous systems.
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