Journal of Food Science · 2008 · 46 citations · 18 references
Plant PhysiologyAgricultural ChemistryEngineeringBiochemistryFluorescence IntensityMedicinePhysiologyBioanalysisMembrane BiologyAnalytical ChemistryCalcium UptakeChromatographyCaco‐2 CellsSoybean ProteinMineral MetabolismBiomolecular Engineering
Soybean protein hydrolysates (SPHs) bind with calcium, forming soluble SPH-calcium complexes via the carboxyl groups of glutamic and aspartic acid residues. However, their effect on calcium uptake is still unclear. In this study, Caco-2 cells were used to estimate the effect of SPH-calcium complexes with different molecular weights on calcium uptake in vitro. The changes in intracellular calcium ion concentration were measured by Fura-2 loading and expressed in fluorescence intensity. SPH-calcium complexes could promote calcium uptake. Improved fluorescence intensity was significantly different in SPH-calcium complexes (10 to 30 kDa), SPH-calcium complexes (3 to 10 kDa), and SPH-calcium complexes (1 to 3 kDa). The maximum levels of relative fluorescence intensity (18.3) occurred with SPH-calcium complexes (10 to 30 kDa). The effect of SPH-calcium complexes (10 to 30 kDa) on Ca(2+) increase was determined to be concentration dependent in the range of 0.5 to 4 mg/mL. Our results indicate that soybean protein itself might be responsible for promoting calcium absorption.
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Masahiro Kawahara, Yoichiro Kuroda, Nelson Arispe et al. · Journal of Biological Chemistry · 2000 · 292 citations · Full text
Delia A. Sorgentini, Jorge R. Wagner, Marı́a Cristina Añón · Journal of Agricultural and Food Chemistry · 1995 · 258 citations
Food Analysis, Food Biophysics, Altmetric Attention Score +25
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