phytic acid and citric acid, anhydrous

phytic acid has been researched along with citric acid, anhydrous in 41 studies

Research

Studies (41)

TimeframeStudies, this research(%)All Research%
pre-19908 (19.51)18.7374
1990's9 (21.95)18.2507
2000's12 (29.27)29.6817
2010's5 (12.20)24.3611
2020's7 (17.07)2.80

Authors

AuthorsStudies
Ikeoka, N; Kobayashi, K; Kuroki, T; Ochi, H; Shiomi, S; Ueda, T1
Burkitt, MJ; Gilbert, BC1
Ebel, D; Krämer, K; Markwitan, A; Pallauf, J1
Bataille, P; Fievet, P; Finet, M; Fournier, A; Renaud, H; Rogez, JC1
Hoshi, H; Jinnouchi, S; Kouno, T; Maruyama, R; Watanabe, K1
Miller, BM; Ruemmler, PS; Ryan, JL; Sullivan, MF1
Ebisuno, S; Fukatani, T; Morimoto, S; Ohkawa, T; Yasukawa, S; Yoshida, T1
Hazell, T; Johnson, IT1
Ebisuno, S; Fukatani, T; Miyazaki, Y; Morimoto, S; Ohkawa, T; Sawada, Y; Yasukawa, S1
Garcia, JS; Garzon, P; Reinhold, JG1
Bezwoda, WR; Bothwell, TH; Charlton, RW; Derman, DP; Gillooly, M; MacPhail, AP; Mayet, F; Mills, W; Torrance, JD1
Costa-Bauzá, A; Grases, F; Kroupa, M1
Jonas, U; Krah, H; Schlick, R; Thon, WF; Wu, N1
Costa-Bauzá, A; Grases, F; March, JG1
Han, YM; Lei, XG; Pond, WG; Roneker, KR1
Ohkawa, T1
Costa-Bauzá, A; Grases, F; Ramis, M; Villacampa, AI1
Baker, DH; Boling, SD; Mavromichalis, I; Parsons, CM; Webel, DM1
Alegría, A; Barberá, R; Clemente, G; Farré, R; Jovani, M; Lagarda, MJ1
Baker, DH; Parsons, CM; Snow, JL1
Delforge, J; Fouillit, M; Fritsch, P; Grillon, G; Le Gall, B; Pavé, D; Rateau, G1
Bari, ML; Inatsu, Y; Isshiki, K; Kawamoto, S; Kawasaki, T; Ukuku, DO1
Costa-Bauzá, A; Grases, F; Isern, B; Perelló, J; Sanchis, P2
Jungk, RA; Parsons, CM; Rafacz-Livingston, KA1
Baker, DH; Martinez-Amezcua, C; Parsons, CM; Rafacz-Livingston, KA; Snow, J1
Gramatkovski, E; Hulthén, L; Onning, G; Oste, R; Zhang, H1
Barrington, S; Kim, JW1
Edwards, HM; Liem, A; Pesti, GM1
Ahmad, M; Schmidt, JT; Teel, AL; Watts, RJ1
López-Mesas, M; Muñoz, JA; Valiente, M1
Goldfarb, DS; Heilberg, IP1
Berga, F; Costa-Bauza, A; Fakier, S; Frontera, G; Grases, F; Rodrigo, D; Rodriguez, A; Saez-Torres, C1
Costa-Bauza, A; Grases, F; Rodriguez, A1
Alghamdi, OA; Blibech, M; Boukhris, I; Chouayekh, H; Ennouri, K; Farhat-Khemakhem, A; Morjene, N; Smaoui, S1
Huppertz, T; Shkembi, B1
Guan, X; Han, X; Luo, M; Luo, X; Shi, X; Tan, Y; Yin, Y; Zhao, J1
Atalay, I; Erişen, FR1
Park, EY; Park, JY1
Carrillo-González, R; González-Chávez, MDCA; Monasterio, IO; Perea-Vélez, YS; Tapia Maruri, D; Vangronsveld, J1
Kim, SR; Park, EY; Park, JY1

Reviews

3 review(s) available for phytic acid and citric acid, anhydrous

ArticleYear
[Medical treatment of idiopathic calcium lithiasis (II)].
    Nephrologie, 1985, Volume: 6, Issue:4

    Topics: Allopurinol; Benzothiadiazines; Calcium; Cellulose; Citrates; Citric Acid; Diuretics; Humans; Magnesium; Pentosan Sulfuric Polyester; Phosphorus; Phytic Acid; Pyridoxine; Sodium Chloride Symporter Inhibitors; Succinimides; Urinary Calculi

1985
Optimum nutrition for kidney stone disease.
    Advances in chronic kidney disease, 2013, Volume: 20, Issue:2

    Topics: Beverages; Calcium, Dietary; Citric Acid; Dietary Proteins; Energy Intake; Fructose; Humans; Kidney Calculi; Oxalates; Phytic Acid; Potassium, Dietary; Sodium, Dietary

2013
Influence of Dairy Products on Bioavailability of Zinc from Other Food Products: A Review of Complementarity at a Meal Level.
    Nutrients, 2021, Nov-26, Volume: 13, Issue:12

    Topics: Biological Availability; Citric Acid; Dairy Products; Eating; Humans; Intestinal Absorption; Meals; Phosphopeptides; Phytic Acid; Zinc

2021

Trials

1 trial(s) available for phytic acid and citric acid, anhydrous

ArticleYear
Improved iron bioavailability in an oat-based beverage: the combined effect of citric acid addition, dephytinization and iron supplementation.
    European journal of nutrition, 2007, Volume: 46, Issue:2

    Topics: 6-Phytase; Adult; Anemia, Iron-Deficiency; Avena; Beverages; Biological Availability; Citric Acid; Dietary Supplements; Female; Food, Fortified; Humans; Intestinal Absorption; Iron Radioisotopes; Iron, Dietary; Male; Phytic Acid

2007

Other Studies

37 other study(ies) available for phytic acid and citric acid, anhydrous

ArticleYear
Hypereosinophilic syndrome appearing as a focal defect on liver scan.
    Annals of nuclear medicine, 1991, Volume: 5, Issue:4

    Topics: Adult; Citrates; Citric Acid; Eosinophilia; Gallium Radioisotopes; Humans; Liver Diseases; Male; Organotechnetium Compounds; Phytic Acid; Radionuclide Imaging

1991
Model studies of the iron-catalysed Haber-Weiss cycle and the ascorbate-driven Fenton reaction.
    Free radical research communications, 1990, Volume: 10, Issue:4-5

    Topics: Ascorbic Acid; Citrates; Citric Acid; Edetic Acid; Electron Spin Resonance Spectroscopy; Ferric Compounds; Ferrous Compounds; Hydroxides; Hydroxyl Radical; Hydroxylation; Iron; Nitrilotriacetic Acid; Oxidation-Reduction; Pentetic Acid; Phytic Acid; Salicylates; Salicylic Acid; Succinates; Succinic Acid; Xanthine; Xanthine Oxidase; Xanthines

1990
[The effect of a supplement of citric acid on the bioavailability of zinc from corn germ].
    Zeitschrift fur Ernahrungswissenschaft, 1990, Volume: 29, Issue:1

    Topics: Alkaline Phosphatase; Animals; Biological Availability; Citrates; Citric Acid; Diet; Femur; Intestine, Small; Liver; Male; Metallothionein; Phytic Acid; Rats; Zea mays; Zinc

1990
Hepatic carcinosarcoma demonstrated by Ga-67 scintigraphy.
    Annals of nuclear medicine, 1989, Volume: 3, Issue:2

    Topics: Carcinosarcoma; Citrates; Citric Acid; Gallium Radioisotopes; Humans; Liver Neoplasms; Male; Middle Aged; Organotechnetium Compounds; Phytic Acid; Radionuclide Imaging

1989
Further studies on the influence of chemical form and dose on absorptions of Np, Pu, Am and Cm from the gastrointestinal tracts of adult and neonatal rodents.
    Health physics, 1985, Volume: 48, Issue:1

    Topics: Actinoid Series Elements; Americium; Animals; Animals, Newborn; Citrates; Citric Acid; Curium; Intestinal Absorption; Mice; Neptunium; Nitrates; Organometallic Compounds; Phytic Acid; Plutonium; Rats; Tissue Distribution

1985
Effect of dietary calcium and magnesium on experimental renal tubular deposition of calcium oxalate crystal induced by ethylene glycol administration and its prevention with phytin and citrate.
    Urologia internationalis, 1987, Volume: 42, Issue:5

    Topics: Animals; Calcium; Calcium Oxalate; Calcium, Dietary; Citrates; Citric Acid; Crystallization; Ethylene Glycol; Ethylene Glycols; Kidney Calculi; Kidney Tubules; Magnesium; Male; Phytic Acid; Rats; Rats, Inbred Strains

1987
In vitro estimation of iron availability from a range of plant foods: influence of phytate, ascorbate and citrate.
    The British journal of nutrition, 1987, Volume: 57, Issue:2

    Topics: Ascorbic Acid; Citrates; Citric Acid; Dose-Response Relationship, Drug; Iron; Nutritive Value; Phytic Acid; Plants, Edible

1987
[Studies of experimental calcium oxalate stones. 2. The preventive effects of phytin and citrate on renal deposition of calcium oxalate induced by ethylene glycol administration].
    Nihon Hinyokika Gakkai zasshi. The japanese journal of urology, 1985, Volume: 76, Issue:6

    Topics: Animals; Calcium; Calcium Oxalate; Citrates; Citric Acid; Ethylene Glycol; Ethylene Glycols; Kidney; Kidney Calculi; Kidney Tubules; Magnesium; Male; Phytic Acid; Rats; Rats, Inbred Strains

1985
Binding of iron by fiber of wheat and maize.
    The American journal of clinical nutrition, 1981, Volume: 34, Issue:7

    Topics: Ascorbic Acid; Cellulose; Chemical Phenomena; Chemistry; Citrates; Citric Acid; Dietary Fiber; Edetic Acid; Hydrogen-Ion Concentration; Iron; Phytic Acid; Triticum; Zea mays

1981
The effects of organic acids, phytates and polyphenols on the absorption of iron from vegetables.
    The British journal of nutrition, 1983, Volume: 49, Issue:3

    Topics: Adult; Aged; Ascorbic Acid; Biological Availability; Calcium Oxalate; Citrates; Citric Acid; Diet; Female; Flavonoids; Humans; Hydrolyzable Tannins; Intestinal Absorption; Iron; Malates; Middle Aged; Oryza; Phenols; Phytic Acid; Polymers; Polyphenols; Tartrates; Vegetables

1983
Studies on calcium oxalate monohydrate crystallization: influence of inhibitors.
    Urological research, 1994, Volume: 22, Issue:1

    Topics: Calcium Oxalate; Calcium Phosphates; Citrates; Citric Acid; Crystallization; Drug Combinations; Microscopy, Electron, Scanning; Mucins; Osmolar Concentration; Pentosan Sulfuric Polyester; Phytic Acid; Surface Properties; Time Factors; Waxes

1994
Effects of magnesium citrate and phytin on reducing urinary calcium excretion in rats.
    World journal of urology, 1994, Volume: 12, Issue:6

    Topics: Animals; Calcium; Calcium, Dietary; Citrates; Citric Acid; Magnesium; Male; Phosphorus; Phytic Acid; Rats; Rats, Wistar; Urinary Calculi

1994
Artificial simulation of the early stages of renal stone formation.
    British journal of urology, 1994, Volume: 74, Issue:3

    Topics: Calcium Oxalate; Citrates; Citric Acid; Crystallization; Humans; Kidney Calculi; Models, Biological; Phytic Acid; Urine

1994
Adding wheat middlings, microbial phytase, and citric acid to corn-soybean meal diets for growing pigs may replace inorganic phosphorus supplementation.
    Journal of animal science, 1998, Volume: 76, Issue:10

    Topics: 6-Phytase; Animal Feed; Animals; Biological Availability; Bone Density; Citric Acid; Diet; Female; Glycine max; Male; Phosphorus; Phosphorus, Dietary; Phytic Acid; Swine; Triticum; Weight Gain; Zea mays

1998
[Urolithiasis].
    Hinyokika kiyo. Acta urologica Japonica, 1999, Volume: 45, Issue:6

    Topics: Animals; Calcium; Citric Acid; Humans; Lithotripsy; Oryza; Phytic Acid; Urinary Calculi

1999
Uric acid urolithiasis and crystallization inhibitors.
    Urologia internationalis, 1999, Volume: 62, Issue:4

    Topics: Acetylcysteine; Citric Acid; Crystallization; Glycosaminoglycans; Humans; Mucins; Phytic Acid; Saponins; Sodium Dodecyl Sulfate; Surface-Active Agents; Uric Acid; Urinary Calculi

1999
The effects of citric acid on phytate-phosphorus utilization in young chicks and pigs.
    Journal of animal science, 2000, Volume: 78, Issue:3

    Topics: 6-Phytase; Animal Feed; Animals; Biological Availability; Chickens; Citric Acid; Dietary Supplements; Digestion; Female; Glycine max; Male; Phosphorus, Dietary; Phytic Acid; Swine; Weight Gain; Zea mays

2000
Effect of proteins, phytates, ascorbic acid and citric acid on dialysability of calcium, iron, zinc and copper in soy-based infant formulas.
    Die Nahrung, 2000, Volume: 44, Issue:2

    Topics: Ascorbic Acid; Calcium; Citric Acid; Copper; Dairy Products; Dialysis; Dietary Proteins; Glycine max; Humans; Infant; Infant Food; Iron; Metals; Phytic Acid; Spectrophotometry, Atomic; Zinc

2000
Phytase, citric acid, and 1alpha-hydroxycholecalciferol improve phytate phosphorus utilization in chicks fed a corn-soybean meal diet.
    Poultry science, 2004, Volume: 83, Issue:7

    Topics: 6-Phytase; Animals; Chickens; Citric Acid; Diet; Drug Synergism; Glycine max; Hydroxycholecalciferols; Male; Minerals; Phosphorus; Phytic Acid; Tibia; Weight Gain; Zea mays

2004
Comparative tissue uptake and cellular deposition of three different plutonium chemical forms in rats.
    International journal of radiation biology, 2004, Volume: 80, Issue:9

    Topics: Animals; Body Burden; Citric Acid; Kinetics; Male; Metabolic Clearance Rate; Nitrates; Organ Specificity; Organometallic Compounds; Phytic Acid; Plutonium; Radiation Dosage; Rats; Rats, Sprague-Dawley; Relative Biological Effectiveness; Tissue Distribution

2004
Combined efficacy of nisin and pediocin with sodium lactate, citric acid, phytic acid, and potassium sorbate and EDTA in reducing the Listeria monocytogenes population of inoculated fresh-cut produce.
    Journal of food protection, 2005, Volume: 68, Issue:7

    Topics: Anti-Bacterial Agents; Bacteriocins; Citric Acid; Colony Count, Microbial; Consumer Product Safety; Dose-Response Relationship, Drug; Drug Synergism; Edetic Acid; Food Microbiology; Food Preservation; Food Preservatives; Listeria monocytogenes; Nisin; Phytic Acid; Sodium Lactate; Sorbic Acid; Vegetables

2005
Factors affecting the regrowth of renal stones in vitro: a contribution to the understanding of renal stone development.
    Scandinavian journal of urology and nephrology, 2005, Volume: 39, Issue:3

    Topics: Calcium Oxalate; Citric Acid; Crystallization; Diphosphates; Humans; In Vitro Techniques; Kidney Calculi; Models, Biological; Phytic Acid; Urine

2005
The effects of various organic acids on phytate phosphorus utilization in chicks.
    Poultry science, 2005, Volume: 84, Issue:9

    Topics: Animals; Biological Availability; Bone and Bones; Calcium Gluconate; Carboxylic Acids; Chickens; Citric Acid; Crosses, Genetic; Diet; Eating; Edetic Acid; Female; Fumarates; Gluconates; Glycine max; Male; Methionine; Phosphorus; Phytic Acid; Weight Gain; Zea mays

2005
Citric acid improves phytate phosphorus utilization in crossbred and commercial broiler chicks.
    Poultry science, 2005, Volume: 84, Issue:9

    Topics: Animals; Biological Availability; Bone and Bones; Chickens; Citric Acid; Crosses, Genetic; Diet; Eating; Glycine max; Male; Phosphorus; Phytic Acid; Weight Gain; Zea mays

2005
Factors affecting calcium oxalate dihydrate fragmented calculi regrowth.
    BMC urology, 2006, Jul-05, Volume: 6

    Topics: Calcium; Calcium Oxalate; Citric Acid; Crystallization; Diphosphates; Humans; Hydrogen-Ion Concentration; Kidney Calculi; Lithotripsy; Phytic Acid; Recurrence; Urine

2006
Response surface optimization of medium components for citric acid production by Aspergillus niger NRRL 567 grown in peat moss.
    Bioresource technology, 2008, Volume: 99, Issue:2

    Topics: Aspergillus niger; Citric Acid; Culture Media; Kinetics; Methanol; Olive Oil; Phytic Acid; Plant Oils; Sphagnopsida; Surface Properties

2008
The effect of several organic acids on phytate phosphorus hydrolysis in broiler chicks.
    Poultry science, 2008, Volume: 87, Issue:4

    Topics: 6-Phytase; Animal Nutritional Physiological Phenomena; Animals; Body Weight; Carboxylic Acids; Chelating Agents; Chickens; Citric Acid; Edetic Acid; Female; Fumarates; Malates; Male; Minerals; Phosphorus; Phytic Acid; Poultry Diseases; Random Allocation; Rickets

2008
Hydrogen peroxide stabilization in one-dimensional flow columns.
    Journal of contaminant hydrology, 2011, Sep-25, Volume: 126, Issue:1-2

    Topics: Catalysis; Citric Acid; Environmental Restoration and Remediation; Hydrogen Peroxide; Iron; Manganese; Oxidation-Reduction; Phytic Acid; Silicon Dioxide

2011
Inhibitors of oxalocalcic lithiasis: effects of their interactions on calcium oxalate crystallization.
    Urology, 2012, Volume: 80, Issue:5

    Topics: Calcium Oxalate; Chelating Agents; Citric Acid; Crystallization; Humans; Phytic Acid; Urinary Calculi

2012
Urinary phytate (Myo-inositol hexaphosphate) in healthy school children and risk of nephrolithiasis.
    Journal of renal nutrition : the official journal of the Council on Renal Nutrition of the National Kidney Foundation, 2014, Volume: 24, Issue:4

    Topics: Child; Child, Preschool; Citric Acid; Cohort Studies; Diet; Feeding Behavior; Female; Humans; Male; Nephrolithiasis; Nutrition Assessment; Phytic Acid; Risk Factors; Spain; Surveys and Questionnaires

2014
Efficacy of Mixtures of Magnesium, Citrate and Phytate as Calcium Oxalate Crystallization Inhibitors in Urine.
    The Journal of urology, 2015, Volume: 194, Issue:3

    Topics: Calcium Oxalate; Citrates; Citric Acid; Crystallization; Drug Synergism; Magnesium; Microscopy, Electron, Scanning; Phytic Acid; Urine

2015
Towards understanding the antagonistic activity of phytic acid against common foodborne bacterial pathogens using a general linear model.
    PloS one, 2020, Volume: 15, Issue:4

    Topics: Anti-Bacterial Agents; Citric Acid; Food Microbiology; Linear Models; Listeria monocytogenes; Microbial Sensitivity Tests; Phytic Acid; Salmonella typhimurium; Staphylococcus aureus

2020
Arsenic Release from Soil Induced by Microorganisms and Environmental Factors.
    International journal of environmental research and public health, 2022, 04-08, Volume: 19, Issue:8

    Topics: Arsenic; Citric Acid; Environmental Restoration and Remediation; Iron; Oxalates; Phosphates; Phytic Acid; Soil; Soil Pollutants

2022
Evaluation of the effects of different chelation agents on root dentin roughness.
    Australian endodontic journal : the journal of the Australian Society of Endodontology Inc, 2023, Volume: 49 Suppl 1

    Topics: Chelating Agents; Citric Acid; Dental Pulp Cavity; Dentin; Edetic Acid; Phytic Acid; Root Canal Irrigants; Sodium Hypochlorite

2023
Phosphorylation and citration of normal corn starch by dry heating with phytic acid and citric acid.
    International journal of biological macromolecules, 2023, Jan-31, Volume: 226

    Topics: Citric Acid; Heating; Phosphorylation; Phytic Acid; Starch; Zea mays

2023
Citrate-coated cobalt ferrite nanoparticles for the nano-enabled biofortification of wheat.
    Food & function, 2023, May-11, Volume: 14, Issue:9

    Topics: Biofortification; Citrates; Citric Acid; Cobalt; Edetic Acid; Edible Grain; Fertilizers; Nanoparticles; Phytic Acid; Soil; Triticum; Zinc

2023
Effect of ethanol, phytic acid and citric acid treatment on the physicochemical and heavy metal adsorption properties of corn starch.
    Food chemistry, 2024, Jan-15, Volume: 431

    Topics: Adsorption; Citric Acid; Ethanol; Metals, Heavy; Phytic Acid; Starch; Zea mays

2024