首页> 美国卫生研究院文献>Nutrients >Particle Size Surface Area and Amorphous Content as Predictors of Solubility and Bioavailability for Five Commercial Sources of Ferric Orthophosphate in Ready-To-Eat Cereal
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Particle Size Surface Area and Amorphous Content as Predictors of Solubility and Bioavailability for Five Commercial Sources of Ferric Orthophosphate in Ready-To-Eat Cereal

机译:粒径表面积和无定形含量作为即食谷物中五种正磷酸盐铁商业来源的溶解度和生物利用度的预测指标

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摘要

Ferric orthophosphate (FePO4) has had limited use as an iron fortificant in ready-to-eat (RTE) cereal because of its variable bioavailability, the mechanism of which is poorly understood. Even though FePO4 has desirable sensory properties as compared to other affordable iron fortificants, few published studies have well-characterized its physicochemical properties. Semi-crystalline materials such as FePO4 have varying degrees of molecular disorder, referred to as amorphous content, which is hypothesized to be an important factor in bioavailability. The objective of this study was to systematically measure the physicochemical factors of particle size, surface area, amorphous content, and solubility underlying the variation in FePO4 bioavailability. Five commercial FePO4 sources and ferrous sulfate were added to individual batches of RTE cereal. The relative bioavailability value (RBV) of each iron source, determined using the AOAC Rat Hemoglobin Repletion Bioassay, ranged from 51% to 99% (p < 0.05), which is higher than typically reported. Solubility in dilute HCl accurately predicted RBV (R2 = 0.93, p = 0.008). Amorphous content measured by Dynamic Vapor Sorption ranged from 1.7% to 23.8% and was a better determinant of solubility (R2 = 0.91; p = 0.0002) than surface area (R2 = 0.83; p = 0.002) and median particle size (R2 = 0.59; p = 0.12). The results indicate that while solubility of FePO4 is highly predictive of RBV, solubility, in turn, is strongly linked to amorphous content and surface area. This information may prove useful for the production of FePO4 with the desired RBV.
机译:正磷酸铁(FePO4)由于其可变的生物利用度而在即食(RTE)谷物中作为强化铁的用途有限,其机理尚不清楚。尽管与其他可负担的铁强化剂相比,FePO4具有理想的感官特性,但很少有已发表的研究对其理化特性进行很好的表征。半结晶材料(如FePO4)具有不同程度的分子无序性,称为无定形含量,据认为这是生物利用度的重要因素。这项研究的目的是系统地测量FePO4生物利用度变化背后的粒径,表面积,无定形含量和溶解度的物理化学因素。将五种商用FePO4来源和硫酸亚铁添加到RTE谷物的各个批次中。使用AOAC大鼠血红蛋白补充生物测定法测定的每个铁源的相对生物利用度值(RBV)为51%至99%(p <0.05),高于通常报道的水平。稀盐酸中的溶解度可准确预测RBV(R 2 = 0.93,p = 0.008)。动态蒸气吸附法测量的非晶态含量在1.7%至23.8%之间,比表面积(R 2 2 = 0.91; p = 0.0002)。 > = 0.83; p = 0.002)和中值粒径(R 2 = 0.59; p = 0.12)。结果表明,虽然FePO4的溶解度高度预测RBV,但溶解度又与无定形含量和表面积密切相关。该信息可能证明对于生产具有所需RBV的FePO4有用。

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