Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Metabolism of Isovanillin by Aldehyde Oxidase, Xanthine Oxidase, Aldehyde Dehydrogenase and Liver Slices

View through CrossRef
Aromatic aldehydes are good substrates of aldehyde dehydrogenase activity but are relatively poor substrates of aldehyde oxidase and xanthine oxidase. However, the oxidation of xenobiotic-derived aromatic aldehydes by the latter enzymes has not been studied to any great extent. The present investigation compares the relative contribution of aldehyde dehydrogenase, aldehyde oxidase and xanthine oxidase activities in the oxidation of isovanillin in separate preparations and also in freshly prepared and cryopreserved liver slices. The oxidation of isovanillin was also examined in the presence of specific inhibitors of each oxidizing enzyme. Minimal transformation of isovanillin to isovanillic acid was observed in partially purified aldehyde oxidase, which is thought to be due to residual xanthine oxidase activity. Isovanillin was rapidly metabolized to isovanillic acid by high amounts of purified xanthine oxidase, but only low amounts are present in guinea pig liver fraction. Thus the contribution of xanthine oxidase to isovanillin oxidation in guinea pig is very low. In contrast, isovanillin was rapidly catalyzed to isovanillic acid by guinea pig liver aldehyde dehydrogenase activity. The inhibitor studies revealed that isovanillin was predominantly metabolized by aldehyde dehydrogenase activity. The oxidation of xenobiotic-derived aromatic aldehydes with freshly prepared or cryopreserved liver slices has not been previously reported. In freshly prepared liver slices, isovanillin was rapidly converted to isovanillic acid, whereas the conversion was very slow in cryopreserved liver slices due to low aldehyde dehydrogenase activity. The formation of isovanillic acid was not altered by allopurinol, but considerably inhibited by disulfiram. It is therefore concluded that isovanillin is predominantly metabolized by aldehyde dehydrogenase activity, with minimal contribution from either aldehyde oxidase or xanthine oxidase.
Title: Metabolism of Isovanillin by Aldehyde Oxidase, Xanthine Oxidase, Aldehyde Dehydrogenase and Liver Slices
Description:
Aromatic aldehydes are good substrates of aldehyde dehydrogenase activity but are relatively poor substrates of aldehyde oxidase and xanthine oxidase.
However, the oxidation of xenobiotic-derived aromatic aldehydes by the latter enzymes has not been studied to any great extent.
The present investigation compares the relative contribution of aldehyde dehydrogenase, aldehyde oxidase and xanthine oxidase activities in the oxidation of isovanillin in separate preparations and also in freshly prepared and cryopreserved liver slices.
The oxidation of isovanillin was also examined in the presence of specific inhibitors of each oxidizing enzyme.
Minimal transformation of isovanillin to isovanillic acid was observed in partially purified aldehyde oxidase, which is thought to be due to residual xanthine oxidase activity.
Isovanillin was rapidly metabolized to isovanillic acid by high amounts of purified xanthine oxidase, but only low amounts are present in guinea pig liver fraction.
Thus the contribution of xanthine oxidase to isovanillin oxidation in guinea pig is very low.
In contrast, isovanillin was rapidly catalyzed to isovanillic acid by guinea pig liver aldehyde dehydrogenase activity.
The inhibitor studies revealed that isovanillin was predominantly metabolized by aldehyde dehydrogenase activity.
The oxidation of xenobiotic-derived aromatic aldehydes with freshly prepared or cryopreserved liver slices has not been previously reported.
In freshly prepared liver slices, isovanillin was rapidly converted to isovanillic acid, whereas the conversion was very slow in cryopreserved liver slices due to low aldehyde dehydrogenase activity.
The formation of isovanillic acid was not altered by allopurinol, but considerably inhibited by disulfiram.
It is therefore concluded that isovanillin is predominantly metabolized by aldehyde dehydrogenase activity, with minimal contribution from either aldehyde oxidase or xanthine oxidase.

Related Results

Enzymatic oxidation of phthalazine with guinea pig liver aldehyde oxidase and liver slices: inhibition by isovanillin.
Enzymatic oxidation of phthalazine with guinea pig liver aldehyde oxidase and liver slices: inhibition by isovanillin.
The enzymes aldehyde oxidase and xanthine oxidase catalyze the oxidation of a wide range of N-heterocycles and aldehydes. These enzymes are widely known for their role in the metab...
[RETRACTED] Bridport Health Reviews - Powerfully Detoxifies The Liver, Lose Liver Fat And Improve Gut Health! v1
[RETRACTED] Bridport Health Reviews - Powerfully Detoxifies The Liver, Lose Liver Fat And Improve Gut Health! v1
[RETRACTED]Product Name - Bridport Health Ingredients - Milk Thistle, Beetroot, Artichoke Extract & More. Category - Liver Support Supplement Main Benefits - Helps Protect The ...
[RETRACTED] Bridport Health Liver Support Does It Really Work v1
[RETRACTED] Bridport Health Liver Support Does It Really Work v1
[RETRACTED]Depiction • Where to Get Bottle Online –Click Here • Item Name -Bridport Health Liver • Aftereffects - No Major Side Effects • Classification - Health • Accessibility -O...
The Effects of Xanthine Oxidase Inhibitors on the Management of Cardiovascular Diseases
The Effects of Xanthine Oxidase Inhibitors on the Management of Cardiovascular Diseases
Cardiovascular diseases (CVDs) are the fastest-growing cause of death around the world, and atherosclerosis plays a major role in the etiology of CVDs. The most recent figures show...
Antihyperurisemic Activity of Aqueous Celery Infusion by Xanthine Oxidase Enzyme Inhibition
Antihyperurisemic Activity of Aqueous Celery Infusion by Xanthine Oxidase Enzyme Inhibition
Hyperuricemia is a metabolic disorder because of excessive uric acid production. The high prevalence of hyperuresemia in the world, especially in Indonesia makes the research of an...
Exploratory Study of Xanthine Dehydrogenase (XD) Accumulation in Chicks’ Organs: XD Natures and its Inhibitory Activities
Exploratory Study of Xanthine Dehydrogenase (XD) Accumulation in Chicks’ Organs: XD Natures and its Inhibitory Activities
Few researches have indicated the availability of xanthine dehydrogenase in some parts of chicks, the enzymatic activity, and the rate of enzyme synthesis during the first few days...
Mitochondrial disorders in neuromuscular pathology
Mitochondrial disorders in neuromuscular pathology
Introduction. With the advent of new drugs — analogues of mitochondrial metabolites, the widespread introduction into practice of research methods for assessing the function of mit...

Back to Top