Nano-Biotechnology Laboratory, Department of Biotechnology, Ghent University, Ghent 9000, Belgium.
Nano-Biotechnology Laboratory, Department of Biotechnology, Ghent University, Ghent 9000, Belgium; Global Institute of Future Technology (GIFT), Shanghai Jiao Tong University, Shanghai 200240, China.
Food Chem. 2024 Sep 1;451:139205. doi: 10.1016/j.foodchem.2024.139205. Epub 2024 Apr 16.
Sodium alginate hydrogel beads and sodium alginate/gellan gum composite hydrogel beads crosslinked by calcium chloride were prepared with different alginate concentrations (3-20 mg·mL). Additionally, a simple method for growing CaCOin situ on the hydrogel to create novel inorganic-organic hybrid hydrogel beads was presented. FT-IR analysis revealed the involvement of hydrogen bonding and electrostatic interactions in bead formation. Swelling behavior in acidic conditions showed a maximum of 13 g/g for composite hydrogels and CaCO-incorporated hybrid hydrogels. Lactoferrin encapsulation efficiency within these hydrogels ranged from 44.9 to 56.6%. In vitro release experiments demonstrated that these hydrogel beads withstand harsh gastric environments with <16% cumulative release of lactoferrin, achieving controlled release in intestinal surroundings. While composite sodium alginate/gellan gum beads exhibited slower gastrointestinal lactoferrin digestion, facile synthesis and pH responsiveness of CaCO-incorporated hybrid hydrogel also provide new possibilities for future studies to construct a novel inorganic-organic synergetic system for intestinal-specific oral delivery.
海藻酸钠水凝胶珠和氯化钙交联的海藻酸钠/结冷胶复合水凝胶珠是用不同浓度的海藻酸钠(3-20mg/mL)制备的。此外,还提出了一种在水凝胶上原位生长碳酸钙的简单方法,以制备新型的无机-有机杂化水凝胶珠。FT-IR 分析表明,成珠过程涉及氢键和静电相互作用。在酸性条件下的溶胀行为显示,复合水凝胶和含有碳酸钙的杂化水凝胶的最大溶胀度为 13g/g。这些水凝胶中的乳铁蛋白包封效率在 44.9%至 56.6%之间。体外释放实验表明,这些水凝胶珠能够在胃酸环境中保持稳定,乳铁蛋白的累积释放量小于 16%,从而在肠道环境中实现了控制释放。虽然复合海藻酸钠/结冷胶珠的胃肠道乳铁蛋白消化速度较慢,但碳酸钙杂化水凝胶的易于合成和 pH 响应性也为未来构建用于肠道特异性口服递送的新型无机-有机协同系统的研究提供了新的可能性。