Tian, Y.; Yang, W.; He, Y.; Bi, X.; Sun, Y.
From Synthesis Optimization to Chelation Mechanism: A Rice Protein Peptide–Calcium Complex Enhances Intestinal Calcium Absorption and Bone Formation via the TRPV6-Calbindin9k Axis. Foods 2026, 15, 2490.
https://doi.org/10.3390/foods15142490
AMA Style
Tian Y, Yang W, He Y, Bi X, Sun Y.
From Synthesis Optimization to Chelation Mechanism: A Rice Protein Peptide–Calcium Complex Enhances Intestinal Calcium Absorption and Bone Formation via the TRPV6-Calbindin9k Axis. Foods. 2026; 15(14):2490.
https://doi.org/10.3390/foods15142490
Chicago/Turabian Style
Tian, Yue, Wenting Yang, Yangzheng He, Xin Bi, and Yong Sun.
2026. "From Synthesis Optimization to Chelation Mechanism: A Rice Protein Peptide–Calcium Complex Enhances Intestinal Calcium Absorption and Bone Formation via the TRPV6-Calbindin9k Axis" Foods 15, no. 14: 2490.
https://doi.org/10.3390/foods15142490
APA Style
Tian, Y., Yang, W., He, Y., Bi, X., & Sun, Y.
(2026). From Synthesis Optimization to Chelation Mechanism: A Rice Protein Peptide–Calcium Complex Enhances Intestinal Calcium Absorption and Bone Formation via the TRPV6-Calbindin9k Axis. Foods, 15(14), 2490.
https://doi.org/10.3390/foods15142490