by pumped blood
enzymes
Ethanol is soluble in blood because it is a small molecule that can easily pass through cell membranes and dissolve in the water-based environment of the blood. This allows ethanol to be distributed throughout the body and reach various tissues and organs.
soluble end of products such as glucose , amino acids and fatty acids and glycerol
Blood is mostly water, and ethanol is entirely soluble in water.
Blood soluble typically refers to substances that are able to dissolve or mix into the blood. This allows them to be easily transported throughout the body in the bloodstream. Substances that are blood soluble can have various effects on the body's functions and processes.
because the external surface of the cell is is hydrophobic (water hating) many fat soluble products such as carbon dioxide are able to pass through.
When most proteins, fats, and carbohydrates are digested completely, they are converted to the end products that are soluble and can easily pass through cell membranes.
Soluble or not soluble, salts are the products of reactions between acids and bases.
Hormones that are not soluble in blood are typically steroid hormones and thyroid hormones. These hormones are lipophilic, meaning they are fat-soluble and require transport proteins to travel through the bloodstream. Examples include cortisol, estrogen, and thyroid hormones like thyroxine (T4). Because they are not water-soluble, they can easily pass through cell membranes to exert their effects on target cells.
All the products which dissolve in water completely are soluble products like sugar, salt etc while the products which didn't dissolve in water completely are non soluble products like sand, chalk dust etc.
When most proteins, fats, and carbohydrates are digested completely, they are converted to the end products that are soluble and can easily pass through cell membranes.
When most proteins, fats, and carbohydrates are digested completely, they are converted to the end products that are soluble and can easily pass through cell membranes.