carbohydrates
The term for waste products of protein metabolism eliminated by the kidneys is urea. Urea is formed in the liver as a byproduct of protein metabolism and is filtered by the kidneys and excreted in urine.
Urea is the primary chemical found in urine that results from the breakdown of proteins in the body. Urea is formed in the liver as a waste product of protein metabolism and is excreted by the kidneys through urine.
Urea
Proteins are broken down in the liver to produce urea as a waste product of protein metabolism.
No, urease and urea are not the same thing. Urease is an enzyme that catalyzes the hydrolysis of urea into ammonia and carbon dioxide, while urea is a waste product produced in the liver as a result of protein metabolism.
Because urea is a waste product formed from the breakdown of proteins in the liver, it cannot be derived from the metabolism of carbohydrates. The metabolism of carbohydrates ultimately results in the production of glucose or energy sources like ATP.
The term for waste products of protein metabolism eliminated by the kidneys is urea. Urea is formed in the liver as a byproduct of protein metabolism and is filtered by the kidneys and excreted in urine.
Urea
Urea
Urea is the primary chemical found in urine that results from the breakdown of proteins in the body. Urea is formed in the liver as a waste product of protein metabolism and is excreted by the kidneys through urine.
Urea
No, urea is a byproduct of protein metabolism, specifically the breakdown of amino acids. Fatty acid metabolism primarily produces acetyl-CoA, which enters the citric acid cycle for energy production.
liver
Urea
The principal nitrogen excretion product of metabolism in humans is urea. It is produced in the liver as a way to remove excess nitrogen from the body, which is generated during protein metabolism. Urea is then excreted by the kidneys in the urine.
The end-product excreted in urine from protein metabolism is urea.
Proteins are broken down in the liver to produce urea as a waste product of protein metabolism.