Background: Age progression is regarded as a critical risk factor in morbidity and mortality because of a weakened immune system. Although various studies have dealt with electrolyte imbalance in COVID-19 patients, the outcomes of these studies were partially understood. Objective: The current study aims to determine some biochemical parameters in old Iraqi COVID-19 patients and highlight the outcomes according to the aging role in the development of COVID-19 by suggesting new mechanisms. Materials and methods: forty COVID-19 patients were enrolled in the current study and divided into two groups: Gm includes (20) men, and Gf includes (20) women. The parameters (Na+, K+, Cl-, LDH, and Hb ) were determined in sera of patients and control groups, G1: healthy men and G2: healthy women. Results: The results reported that the levels of sodium, chloride, and ( hemoglobin for men) were highly significantly decreased. In contrast, potassium level was highly significantly increased in Gm and Gf compared to G1 and G2, respectively, and hemoglobin level in women was decreased in Gf compared with G2. LDH activity did not significantly increase in Gm compared with G1, while it increased dramatically in Gf compared with G2. The difference between Gm and Gf was non-significant for sodium, potassium, chloride, and hemoglobin, but it was highly significant for lactate dehydrogenase. Conclusions: The present study proposed definite mechanisms to elucidate hyponatremia, hyperkalemia, and hypochloremia in old COVID-19 patients by highlighting both COVID-19 complications and risk factors linked to age progression. At the same time, it revealed an interesting biochemical relationship between higher activity of LDH, hyponatremia, and hypochloremia in the same patients .
The inhibitive power of Polyvinyl Alcohol (PVA) was investigated toward the corrosion of carbon steel in 0.2N H2SO4 solution in the temperature range of 30-60˚C and PVA concentration range of 150-2000 ppm.
The corrosion rate was measured using both the weight loss and the electrochemical techniques. The weight loss results showed that PVA could serve as a corrosion inhibitor but its inhibition power was found to be low for the corrosion of carbon steel in the acidic media. Electrochemical analysis of the corrosion process of carbon steel in an electrochemical corrosion cell was investigated using 3-Electrode corrosion cell. Polarization technique was used for carbon steel corrosion in 0.2N H
Background: The treatment of dental tissues proceeding to adhesive procedures is a crucial step in the bonding protocol and decides the clinical success ofrestorations. This study was conducted in vitro, with the aim of evaluating thenanoleakage on the interface between the adhesive system and the dentine treated by five surface modalities using scanning electron microscopy and energydispersiveX-ray spectrometry. Materials and methods: Twenty five extracted premolars teeth were selected in the study. Standardized class V cavities were prepared on the buccal and lingual surfaces then the teeth divided into five main groups of (5 teeth in each group n=10) according to the type of dentine surface treatment that was used: Group (A): dentine was
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