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Mechanism of competitive inhibition. Certain drugs share the same plasma protein, bilirubin, for transportation in the bloodstream. When drug concentration is high, they may outcompete bilirubin for binding. Bilirubin is displaced out so serum unconjugated bilirubin levels rise, resulting in unconjugated hyperbilirubinemia.
The bilirubin level found in the body reflects the balance between production and excretion. Blood test results are advised to always be interpreted using the reference range provided by the laboratory that performed the test. The SI units are μmol/L. [53] Typical ranges for adults are: [54] 0–0.3 mg/dl – Direct (conjugated) bilirubin level
When total bilirubin levels exceed 40 μmol/L, bilirubin deposition at the sclera, skin, and mucous membranes will give these areas a yellow colour, thus it is called jaundice. [6] The increase in predominantly unconjugated bilirubin is due to overproduction, reduced hepatic uptake of the unconjugated bilirubin and reduced conjugation of bilirubin.
Only when the canalicular excretion capacity is exceeded, conjugated bilirubin will accumulate in the plasma. [26] As unconjugated bilirubin has a high affinity to albumin, at high level it is not efficiently cleared through glomerular filtration and it binds to the elastic tissue of the skin and sclera, where high albumin content can be found ...
People with GS predominantly have elevated unconjugated bilirubin, while conjugated bilirubin is usually within the normal range or is less than 20% of the total. Levels of bilirubin in GS patients are reported to be from 20 μM to 90 μM (1.2 to 5.3 mg/dl) [38] compared to the normal amount of < 20 μM. GS patients have a ratio of unconjugated ...
Rotor syndrome (also known as Rotor type hyperbilirubinemia) [2] is a rare cause of mixed direct (conjugated) and indirect (unconjugated) hyperbilirubinemia, relatively benign, autosomal recessive [3] bilirubin disorder characterized by non-hemolytic jaundice due to the chronic elevation of predominantly conjugated bilirubin.
The bilirubin present in the plasma is largely unconjugated in this setting as they haven't been taken up and conjugated by the liver. [3] In this case, total serum bilirubin increases while the ratio of direct bilirubin to indirect bilirubin remains 96 to 4 as up to 96%-99% of bilirubin in the bile are conjugated mentioned above. [9] [1]
If we have high levels of bilirubin in the blood, the Van den Bergh chemical reaction is used to determine if the bilirubin is conjugated or unconjugated. Azobilirubin can also be used to determine how much conjugated bilirubin is the blood compared to that of unconjugated bilirubin.