State Key Laboratory of Food Science and Resources, Nanchang University, Nanchang, Jiangxi, P. R. China.
Institute for Advanced Study, University of Nanchang, Nanchang, Jiangxi, P. R. China.
J Food Sci. 2024 Mar;89(3):1773-1790. doi: 10.1111/1750-3841.16960. Epub 2024 Feb 13.
Sucrose emerges as a chelating agent to form a stable sucrose-metal-ion chelate that can potentially improve metal-ion absorption. This study aimed to analyze the structure of sucrose-calcium chelate and its potential to promote calcium absorption in both Caco-2 monolayer cells and mice. The characterization results showed that calcium ions mainly chelated with hydroxyl groups in sucrose to produce sucrose-calcium chelate, altering the crystal structure of sucrose (forming polymer particles) and improving its thermal stability. Sucrose-calcium chelate dose dependently increased the amount of calcium uptake, retention, and transport in the Caco-2 monolayer cell model. Compared to CaCl , there was a significant improvement in the proportion of absorbed calcium utilized for transport but not retention (93.13 ± 1.75% vs. 67.67 ± 7.55%). Further treatment of calcium channel inhibitors demonstrated the active transport of sucrose-calcium chelate through Cav1.3. Cellular thermal shift assay and quantitative reverse transcription-polymerase chain reaction (qRT-PCR) assays indicated that the ability of sucrose-calcium chelate to promote calcium transport was attributed to its superior ability to bind with PMCA1b, a calcium transporter located on the basement membrane, and stimulate its gene expression compared to CaCl . Pharmacokinetic analysis of mice confirmed the calcium absorption-promoting effect of sucrose-calcium chelate, as evident by the higher serum calcium level (44.12 ± 1.90 mg/L vs. 37.42 ± 1.88 mmol/L) and intestinal PMCA1b gene expression than CaCl . These findings offer a new understanding of how sucrose-calcium chelate enhances intestinal calcium absorption and could be used as an ingredient in functional foods to treat calcium deficiency. PRACTICAL APPLICATION: The development of high-quality calcium supplements is crucial for addressing the various adverse symptoms associated with calcium deficiency. This study aimed to prepare a sucrose-calcium chelate and analyze its structure, as well as its potential to enhance calcium absorption in Caco-2 monolayer cells and mice. The results demonstrated that the sucrose-calcium chelate effectively promoted calcium absorption. Notably, its ability to enhance calcium transport was linked to its strong binding with PMCA1b, a calcium transporter located on the basement membrane, and its capacity to stimulate PMCA1b gene expression. These findings contribute to a deeper understanding of how the sucrose-calcium chelate enhances intestinal calcium absorption and suggest its potential use as an ingredient in functional foods for treating calcium deficiency.
蔗糖作为一种螯合剂出现,形成稳定的蔗糖-金属离子螯合物,有可能提高金属离子的吸收。本研究旨在分析蔗糖-钙螯合物的结构及其在 Caco-2 单层细胞和小鼠中促进钙吸收的潜力。表征结果表明,钙离子主要与蔗糖中的羟基螯合生成蔗糖-钙螯合物,改变了蔗糖的晶体结构(形成聚合物颗粒),提高了其热稳定性。蔗糖-钙螯合物呈剂量依赖性地增加 Caco-2 单层细胞模型中钙的摄取、保留和转运量。与 CaCl2相比,用于转运的吸收钙的比例有显著提高,但保留率没有变化(93.13±1.75%比 67.67±7.55%)。进一步用钙通道抑制剂处理表明,蔗糖-钙螯合物通过 Cav1.3 进行主动转运。细胞热转移分析和定量逆转录-聚合酶链反应(qRT-PCR)分析表明,蔗糖-钙螯合物促进钙转运的能力归因于其与位于基底膜上的钙转运体 PMCA1b 结合的能力优于 CaCl2,并刺激其基因表达。小鼠的药代动力学分析证实了蔗糖-钙螯合物的钙吸收促进作用,表现为血清钙水平升高(44.12±1.90mg/L 比 37.42±1.88mmol/L)和肠道 PMCA1b 基因表达高于 CaCl2。这些发现提供了对蔗糖-钙螯合物如何增强肠道钙吸收的新认识,并可作为功能性食品的成分用于治疗钙缺乏症。
实用意义:开发高质量的钙补充剂对于解决与钙缺乏相关的各种不良症状至关重要。本研究旨在制备蔗糖-钙螯合物并分析其结构,以及其在 Caco-2 单层细胞和小鼠中增强钙吸收的潜力。结果表明,蔗糖-钙螯合物能有效促进钙吸收。值得注意的是,其增强钙转运的能力与它与位于基底膜上的钙转运体 PMCA1b 的强结合以及刺激 PMCA1b 基因表达的能力有关。这些发现有助于更深入地了解蔗糖-钙螯合物如何增强肠道钙吸收,并表明其作为功能性食品成分治疗钙缺乏症的潜力。