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Solubility of heme in heme-iron enriched bovine hemoglobin hydrolysates

机译:血红素在富含血红铁的牛血红蛋白水解物中的溶解度

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A heme-iron enriched peptidic hydrolysate was prepared from bovine hemoglobin, at pilot plant scale, by peptic hydrolysis followed by ultrafiltration. Such preparations are attractive for iron deficiency therapy and have been reported in the literature in the context of utilization of blood in the food industry. The peptidic fraction of this hydrolysate was able to solubilize heme in higher proportion than hemoglobin even at acidic pH where heme is totally insoluble. One peptide, having a similar ability to solubilize heme in the same range of pH, was isolated from this fraction and taken as a model to investigate the mechanisms involved in heme solubilization. Heme seemed to be mainly solubilized through hydrophobic interactions with the peptide, whereas ligancies or electrostatic interaction could not be demonstrated. The stoichiometry of heme-peptide adducts depends on pH with a 2:2 association at pH 2 between heme as a dimer and two peptides and with a 2:1 association at pH 7.5 between one dimer and one single peptide. However, the existence of higher molecular weight aggregates cannot be excluded in the whole hemoglobin hydrolysate. Despite the good solubility of heme and the high heme/protein ratio, such heme enriched peptidic hydrolysates could have a weak bioavailability since heme polymerization is known to decrease heme-iron intestinal absorption. Further studies will be necessary to reduce heme polymerization during enzymatic hydrolysis of bovine hemoglobin. [References: 34]
机译:通过中试植物规模,通过消化性水解然后超滤,由牛血红蛋白制备富含血红素铁的肽水解产物。这样的制剂对于缺铁治疗是有吸引力的,并且已经在食品工业中利用血液的文献中进行了报道。即使在血红素完全不溶的酸性pH值下,这种水解产物的肽级分也能以比血红蛋白更高的比例溶解血红素。从该级分中分离出一种具有在相同pH范围内溶解血红素的相似能力的肽,并将其作为模型来研究参与血红素溶解的机制。血红素似乎主要是通过与肽的疏水性相互作用而被溶解的,而无法证明其为基团或静电相互作用。血红素-肽加合物的化学计量取决于pH值,在pH 2下,作为二聚体的血红素与两个肽之间具有2:2的缔合,并且在pH 7.5下一个二聚体和一个单一肽之间具有2:1的缔合。然而,在整个血红蛋白水解物中不能排除存在较高分子量的聚集体。尽管血红素具有良好的溶解性和较高的血红素/蛋白质比,但是由于已知血红素聚合会降低血红素铁的肠吸收,因此此类富含血红素的肽水解产物可能具有较弱的生物利用度。为了减少牛血红蛋白的酶促水解过程中的血红素聚合,将需要进一步的研究。 [参考:34]

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