Hosokawa Yuhei, Goshima Takashi, Kai Takami, Kobaru Saki, Ohzuno Yoshihiro, Nii Susumu, Kiyoyama Shiro, Yoshida Masahiro, Takei Takayuki
Department of Chemical Engineering, Graduate School of Science and Engineering, Kagoshima University, 1-21-40 Korimoto, Kagoshima 890-0065, Japan.
Department of Chemical Science and Engineering, National Institute of Technology, Miyakonojo College, 473-1 Yoshio, Miyazaki 885-8567, Japan.
Materials (Basel). 2024 Dec 10;17(24):6027. doi: 10.3390/ma17246027.
Calcium alginate hydrogel is one of the most widely used materials for drug-carrier beads used in drug-delivery systems. In this study, we developed a new method to improve the encapsulation efficiency of ingredients, such as medicines, in calcium alginate hydrogel beads. In the gold standard method, the hydrogel beads are prepared in the liquid phase. In contrast, in the new method, to enhance the encapsulation efficiency, the hydrogel beads are prepared in the gas phase using a water-repellent surface. In brief, a droplet of sodium alginate aqueous solution is rolled on a water-repellent surface with CaCl powder, a cross-linking agent. This process leads to the direct attachment of CaCl powder to the droplet, resulting in the formation of spherical hydrogel beads with high mechanical strength and higher encapsulation efficiency than beads prepared by previous methods. The hydrogel beads exhibit similar permeability for glucose, a model for low-molecular-weight medicines, to those prepared by previous methods. These results show that the new method is promising for the preparation of calcium alginate hydrogel beads for drug-delivery systems.
海藻酸钙水凝胶是药物递送系统中用于药物载体微珠的应用最为广泛的材料之一。在本研究中,我们开发了一种新方法来提高诸如药物等成分在海藻酸钙水凝胶微珠中的包封效率。在金标准方法中,水凝胶微珠是在液相中制备的。相比之下,在新方法中,为提高包封效率,使用疏水性表面在气相中制备水凝胶微珠。简而言之,将一滴海藻酸钠水溶液与交联剂CaCl粉末在疏水性表面上滚动。此过程导致CaCl粉末直接附着于液滴,从而形成具有高机械强度且包封效率高于先前方法制备的微珠的球形水凝胶微珠。对于作为低分子量药物模型的葡萄糖,这些水凝胶微珠表现出与先前方法制备的微珠相似的渗透性。这些结果表明,该新方法在制备用于药物递送系统的海藻酸钙水凝胶微珠方面具有前景。