Fytic acid - CAS 83-86-3
Catalog number: 83-86-3
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Molecular Formula:
C6H18O24P6
Molecular Weight:
660.04
COA:
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Chemical Family:
Other Natural Compounds
Description:
Phytic acid (known as inositol hexakisphosphate (IP6), inositol polyphosphate, or phytate when in salt form), discovered in 1903,a saturated cyclic acid, is the principal storage form of phosphorus in many plant tissues, especially bran and seeds.It can be found in cereals and grains.
Purity:
>98%
Appearance:
Powder
Synonyms:
INOSITOL HEXAPHOSPHATE; INOSITOL HEXAPHOSPHORIC ACID; CYCLOHEXANEHEXYL HEXAPHOSPHATE; MYO-INOSITOL HEXAKIS(DIHYDROGENE PHOSPHORIC ACID); MYO-INOSITOL HEXAKIS(DIHYDROGEN PHOSPHATE); PHYTIC ACID; 1,2,3,4,5,6-Cyclohexanehexolphosphoricaicd; alkovert
MSDS:
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Application:
anti-rachitis
Quality Standard:
Enterprise Standard
Quantity:
Milligrams-Grams-Kilograms
1.Preparation and corrosion resistance of magnesium phytic acid/hydroxyapatite composite coatings on biodegradable AZ31 magnesium alloy.
Zhang M;Cai S;Zhang F;Xu G;Wang F;Yu N;Wu X J Mater Sci Mater Med. 2017 Jun;28(6):82. doi: 10.1007/s10856-017-5876-9. Epub 2017 Apr 19.
In this work, a magnesium phytic acid/hydroxyapatite composite coating was successfully prepared on AZ31 magnesium alloy substrate by chemical conversion deposition technology with the aim of improving its corrosion resistance and bioactivity. The influence of hydroxyapatite (HA) content on the microstructure and corrosion resistance of the coatings was investigated. The results showed that with the increase of HA content in phytic acid solution, the cracks on the surface of the coatings gradually reduced, which subsequently improved the corrosion resistance of these coated magnesium alloy. Electrochemical measurements in simulated body fluid (SBF) revealed that the composite coating with 45 wt.% HA addition exhibited superior surface integrity and significantly improved corrosion resistance compared with the single phytic acid conversion coating. The results of the immersion test in SBF showed that the composite coating could provide more effective protection for magnesium alloy substrate than that of the single phytic acid coating and showed good bioactivity. Magnesium phytic acid/hydroxyapatite composite, with the desired bioactivity, can be synthesized through chemical conversion deposition technology as protective coatings for surface modification of the biodegradable magnesium alloy implants.
2.Mineral and phytate contents of some prepared popular Ghanaian foods.
Annor GA;Tano Debrah K;Essen A Springerplus. 2016 May 10;5:581. doi: 10.1186/s40064-016-2202-9. eCollection 2016.
Prepared Ghanaian traditional foods, mostly consist of starchy staples such as yams (Dioscorea spp.), cassava (Manihot esculenta), millet (Pennisetum glaucum), maize (Zea mays) and rice (Oryza sativa) etc. These traditional foods are a main source of energy and macronutrients. Little or no information however exist on the mineral and phytate contents of prepared traditional Ghanaian foods. The mineral and phytate contents of twenty commonly eaten Ghanaian foods, prepared using popular recipes were analysed for their Fe, Cu, Zn, Mg, Mn, Ca, Na and K as well as phytate contents after foods were dried. Sodium was high in most of the foods, ranging from 557 mg/100 g for Akple with okro soup, to 193.7 for Kooko and bread. Boiled cowpeas with fried plantain was found to contain the highest amount of potassium (409.0 mg/100 g) followed by konkonte with groundnut soup (384.7 mg/100 g). Kooko with bread recorded the lowest potassium content of 131.72 mg/100 g. Konkonte with palm-nut soup and also with groundnut soup were among the foods found to contain high amounts of iron (14.1 mg/100 g and 13.2 mg/100 g respectively). All the foods were very good sources of minerals and will significantly contribute to the mineral intakes of consumers; however, their sodium contents were of concern.
3.Phytic acid: an alternative root canal chelating agent.
Nassar M;Hiraishi N;Tamura Y;Otsuki M;Aoki K;Tagami J J Endod. 2015 Feb;41(2):242-7. doi: 10.1016/j.joen.2014.09.029. Epub 2014 Nov 20.
INTRODUCTION: ;The objectives of this study were to investigate the effect of phytic acid, inositol hexakisphosphate (IP6), as a final rinse on the surface of instrumented root canals and smear-layered flat dentin surfaces treated with sodium hypochlorite (NaOCl) and to evaluate its effect on the viability and alkaline phosphatase activity of osteoblast-like cells (MC3T3-E1).;METHODS: ;The universally accepted chelating agent EDTA was used as the control in all conducted experiments. Root canals of human canines were instrumented with rotary files and irrigated with 5% NaOCl, followed by a final rinse of 17% EDTA (1 minute), 1% IP6 (1 minute or 30 seconds), or distilled water. NaOCl-treated flat coronal dentin surfaces were also treated with 17% EDTA (1 minute), 1% IP6 (1 minute or 30 seconds), or distilled water. The presence or absence of smear layer was evaluated with scanning electron microscopy. Cell viability and alkaline phosphatase assays were performed to evaluate the effect of IP6 and EDTA on cultured MC3T3-E1 cells.;RESULTS: ;The results demonstrated the ability of IP6 to remove the smear layer from instrumented root canals and flat coronal dentin surfaces. When compared with EDTA, IP6 was less cytotoxic and did not affect the differentiation of MC3T3-E1 cells.
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CAS 83-86-3 Fytic acid

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