Investigation Covering the Effect of Boron plus Taurine Application on Protein Carbonyl and Advanced Oxidation Protein Products Levels in Experimental Alzheimer Model.
Cigdem YildirimAtiye Seda Yar SaglamSevin GuneyBurak TuranMeral EbegilSule Coskun CevherBarbaros BalabanliPublished in: Biological trace element research (2022)
Alzheimer's disease (AD) is the most common form of dementia that occurs in the brain. This is a chronic neurodegenerative disease which is valid in 60-70% of all dementia patients. Boron, regarded as a potential antioxidant, has the effect of reducing oxidative stress. Taurine, as one of the thiol-containing amino acids, exists at different concentrations in both the neurons and glial cells of the central nervous system. It plays an important role in the protective and adjuvant therapies as an antioxidant due to its characteristics of maintaining the oxidant-antioxidant balance of the body as well as cell integrity and increasing body resistance. Based on this information, our objective was to reveal the effect of boron alone, taurine alone plus co-administration of taurine and boron application on brain tissue protein carbonyls (PC) and serum advanced oxidation protein products (AOPP) levels in the experimental Alzheimer's model. For this purpose, 5 groups were formed in our study which consisted of 30 Wistar albino male rats. The rats were given a single dose of STZ stereotaxically. At the end of this period, the rats were decapitated, plus their brain tissues and blood were removed. Our findings suggested that taurine alone and co-administration of boron and taurine had a decreasing effect on AOPP and PC levels of the experimental Alzheimer model of the rats.
Keyphrases
- oxidative stress
- amino acid
- cognitive decline
- mild cognitive impairment
- protein protein
- induced apoptosis
- white matter
- anti inflammatory
- resting state
- single cell
- early stage
- binding protein
- gene expression
- newly diagnosed
- diabetic rats
- ejection fraction
- multiple sclerosis
- cognitive impairment
- risk assessment
- functional connectivity
- cell proliferation
- cell death
- spinal cord injury
- cerebral ischemia
- signaling pathway
- prognostic factors
- pi k akt
- chronic kidney disease
- neuropathic pain
- heat shock protein