22,23-dihydrobrassicasterol

22,23-dihydrobrassicasterol is a lipid of Sterol Lipids (ST) class. 22,23-dihydrobrassicasterol is associated with abnormalities such as Diabetes, Macular degeneration, Drusen, Systemic disease and Diabetes Mellitus. The involved functions are known as cholesterol metabolism, Synthesis, Intestinal Absorption, Liver function and cholesterol absorption. 22,23-dihydrobrassicasterol often locates in Back and Cell membrane. The associated genes with 22,23-dihydrobrassicasterol are apolipoprotein E-3. The related lipids are Total cholesterol, campesterol, lathosterol, Fatty Acids, Nonesterified and Cholesterol, Dietary.

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Introduction

To understand associated biological information of 22,23-dihydrobrassicasterol, we collected biological information of abnormalities, associated pathways, cellular/molecular locations, biological functions, related genes/proteins, lipids and common seen animal/experimental models with organized paragraphs from literatures.

What diseases are associated with 22,23-dihydrobrassicasterol?

22,23-dihydrobrassicasterol is suspected in Diabetes, Macular degeneration, Drusen, Systemic disease, Diabetes Mellitus, Liver diseases and other diseases in descending order of the highest number of associated sentences.

Related references are mostly published in these journals:

Disease Cross reference Weighted score Related literature
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Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with 22,23-dihydrobrassicasterol

MeSH term MeSH ID Detail
Metabolic Syndrome D024821 44 associated lipids
Xanthomatosis D014973 17 associated lipids
Hypolipoproteinemias D007009 9 associated lipids
Hyperlipidemias D006949 73 associated lipids
Hyperlipoproteinemia Type II D006938 22 associated lipids
Hypercholesterolemia D006937 91 associated lipids
Coronary Disease D003327 70 associated lipids
Total 7

PubChem Associated disorders and diseases

What pathways are associated with 22,23-dihydrobrassicasterol

There are no associated biomedical information in the current reference collection.

PubChem Biomolecular Interactions and Pathways

Link to PubChem Biomolecular Interactions and Pathways

What cellular locations are associated with 22,23-dihydrobrassicasterol?

Related references are published most in these journals:

Location Cross reference Weighted score Related literatures
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What functions are associated with 22,23-dihydrobrassicasterol?


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with 22,23-dihydrobrassicasterol?

Related references are published most in these journals:

Lipid concept Cross reference Weighted score Related literatures
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What genes are associated with 22,23-dihydrobrassicasterol?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with 22,23-dihydrobrassicasterol?

There are no associated biomedical information in the current reference collection.

NCBI Entrez Crosslinks

All references with 22,23-dihydrobrassicasterol

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Authors Title Published Journal PubMed Link
Del Puppo M et al. Serum 27-hydroxycholesterol in patients with primary biliary cirrhosis suggests alteration of cholesterol catabolism to bile acids via the acidic pathway. 1998 J. Lipid Res. pmid:9831637
Schaller H et al. Overexpression of an Arabidopsis cDNA encoding a sterol-C24(1)-methyltransferase in tobacco modifies the ratio of 24-methyl cholesterol to sitosterol and is associated with growth reduction. 1998 Plant Physiol. pmid:9765531
Klahre U et al. The Arabidopsis DIMINUTO/DWARF1 gene encodes a protein involved in steroid synthesis. 1998 Plant Cell pmid:9761794
Srikumar TS et al. Analysis of fecal bile acids and neutral steroids using gas-liquid chromatography. 1998 Ann. Nutr. Metab. pmid:9745109
Gylling H et al. Oral guar gum treatment of intrahepatic cholestasis and pruritus in pregnant women: effects on serum cholestanol and other non-cholesterol sterols. 1998 Eur. J. Clin. Invest. pmid:9650008
Harsch M et al. Effects of pravastatin on cholesterol metabolism of cholesterol-fed heterozygous WHHL rabbits. 1998 Br. J. Pharmacol. pmid:9641543
Howell TJ et al. Phytosterols partially explain differences in cholesterol metabolism caused by corn or olive oil feeding. 1998 J. Lipid Res. pmid:9555952
Ntanios FY and Jones PJ Effects of variable dietary sitostanol concentrations on plasma lipid profile and phytosterol metabolism in hamsters. 1998 Biochim. Biophys. Acta pmid:9487145
Fujioka S et al. The Arabidopsis deetiolated2 mutant is blocked early in brassinosteroid biosynthesis. 1997 Plant Cell pmid:9401120
Sakurai A and Fujioka S Studies on biosynthesis of brassinosteroids. 1997 Biosci. Biotechnol. Biochem. pmid:9178548
Field FJ et al. Effect of micellar beta-sitosterol on cholesterol metabolism in CaCo-2 cells. 1997 J. Lipid Res. pmid:9162754
Gylling H and Miettinen TA Cholesterol absorption, synthesis, and LDL metabolism in NIDDM. 1997 Diabetes Care pmid:9028702
Robins SJ and Fasulo JM High density lipoproteins, but not other lipoproteins, provide a vehicle for sterol transport to bile. 1997 J. Clin. Invest. pmid:9022069
Ling WH and Jones PJ Enhanced efficacy of sitostanol-containing versus sitostanol-free phytosterol mixtures in altering lipoprotein cholesterol levels and synthesis in rats. 1995 Atherosclerosis pmid:8770325
Heinemann T et al. Comparison of intestinal absorption of cholesterol with different plant sterols in man. 1993 Eur. J. Clin. Invest. pmid:8143759
Zeeck E et al. Sex pheromones in marine polychaetes: steroids from ripe Nereis succinea. 1994 Steroids pmid:8073448
Davis RH et al. Aloe vera, hydrocortisone, and sterol influence on wound tensile strength and anti-inflammation. 1994 J Am Podiatr Med Assoc pmid:7853156
Locker PK et al. Lifibrol: a novel lipid-lowering drug for the therapy of hypercholesterolemia. Lifibrol Study Group. 1995 Clin. Pharmacol. Ther. pmid:7828385
Lütjohann D et al. Sterol absorption and sterol balance in phytosterolemia evaluated by deuterium-labeled sterols: effect of sitostanol treatment. 1995 J. Lipid Res. pmid:7595097
Miettinen TA et al. Reduction of serum cholesterol with sitostanol-ester margarine in a mildly hypercholesterolemic population. 1995 N. Engl. J. Med. pmid:7566021
Yunker RL et al. Simultaneous quantitation of biliary cholesterol, bile acids, and phospholipids (as fatty acids), by gas-liquid chromatography, with campesterol as internal standard. 1981 Clin. Chem. pmid:7285335
Wang C et al. A unique patient with coexisting cerebrotendinous xanthomatosis and beta-sitosterolemia. 1981 Am. J. Med. pmid:7258222
Nes WR et al. Steric effects at C-20 and C-24 on the metabolism of sterols by Tetrahymena pyriformis. 1981 J. Lipid Res. pmid:6793681
Bhattacharyya AK and Eggen DA Effects of feeding cholesterol and mixed plant sterols on the fecal excretion of acidic steroids in rhesus monkeys. 1984 Atherosclerosis pmid:6529445
Dayal B et al. Identification of 5 alpha-stanols in patients with sitosterolemia and xanthomatosis: stereochemistry of the protonolysis of steroidal organoboranes. 1982 Steroids pmid:6297129
Jwanny EW and Rashad MM Metabolism of methanol by yeast and SCP production. 1985 J. Basic Microbiol. pmid:4093874
Salen G et al. Increased plasma cholestanol and 5 alpha-saturated plant sterol derivatives in subjects with sitosterolemia and xanthomatosis. 1985 J. Lipid Res. pmid:3989379
Morrison AH and Ritter KS Effect of host insect sterols on the development and sterol composition of Steinernema feltiae. 1986 Mol. Biochem. Parasitol. pmid:3724794
Bhattacharyya AK and Eggen DA Effect of dietary cholesterol level on plasma campesterol concentration in rhesus monkeys. 1987 Ann. Nutr. Metab. pmid:3662438
Koivisto PV and Miettinen TA Effect of ileal exclusion on plant sterol metabolism in familial hypercholesterolemia. 1987 Digestion pmid:3443223
Milhaud J et al. Interaction of the polyene antibiotic filipin with model and natural membranes containing plant sterols. 1988 Biochim. Biophys. Acta pmid:3401484
Vuoristo M et al. Serum plant sterols and lathosterol related to cholesterol absorption in coeliac disease. 1988 Clin. Chim. Acta pmid:3383445
Whitaker BD and Nelson DL Sterol synergism in Paramecium tetraurelia. 1988 J. Gen. Microbiol. pmid:3221193
Bhattacharyya AK and Eggen DA Studies on the mechanism of high intestinal absorption of cholesterol and campesterol in high-responding rhesus monkeys. 1988 Atherosclerosis pmid:3214463
pmid:29345907
Lin Y et al. Oxidation of sitosterol and campesterol in foods upon cooking with liquid margarines without and with added plant sterol esters. 2018 Food Chem pmid:28958544
pmid:28911735
pmid:28812011
Ho XL and Loke WM Dietary Plant Sterols Supplementation Increases In Vivo Nitrite and Nitrate Production in Healthy Adults: A Randomized, Controlled Study. 2017 J. Food Sci. pmid:28708316
pmid:28357621
Hamdan IJA et al. Sterols in infant formulas: validation of a gas chromatographic method. 2017 Int J Food Sci Nutr pmid:28276904
Moreno-Anzúrez NE et al. A Cytotoxic and Anti-inflammatory Campesterol Derivative from Genetically Transformed Hairy Roots of Lopezia racemosa Cav. (Onagraceae). 2017 Molecules pmid:28085103
De Vuono S et al. Laparoscopic sleeve gastrectomy modifies cholesterol synthesis but not cholesterol absorption. Obes Res Clin Pract pmid:28057416
Sabir A et al. Discrimination of red and white rice bran from Indonesia using HPLC fingerprint analysis combined with chemometrics. 2017 Food Chem pmid:27979152
Procházková T et al. Phytoestrogens and sterols in waters with cyanobacterial blooms - Analytical methods and estrogenic potencies. 2017 Chemosphere pmid:27974267
Wocheslander S et al. Identification of Acyl Chain Oxidation Products upon Thermal Treatment of a Mixture of Phytosteryl/-stanyl Linoleates. 2016 J. Agric. Food Chem. pmid:27933991
Leikin AI and Brenner RR Fatty acid desaturase activities are modulated by phytosterol incorporation in microsomes. 1989 Biochim. Biophys. Acta pmid:2775772
Sawamura A et al. Cholesterol metabolism as a prognostic marker in patients with mildly symptomatic nonischemic dilated cardiomyopathy. 2017 J Cardiol pmid:27686044
Miras-Moreno B et al. Bioactivity of Phytosterols and Their Production in Plant in Vitro Cultures. 2016 J. Agric. Food Chem. pmid:27615454
pmid:27591043