Department of Life Science and Applied Chemistry, Graduate School of Engineering, Nagoya Institute of Technology, Gokiso-cho, Show-ku, Nagoya 4668-555, Japan.
Int J Mol Sci. 2022 Jan 12;23(2):789. doi: 10.3390/ijms23020789.
We fabricated CaCO-coated vesicles as drug carriers that release their cargo under a weakly acidic condition. We designed and synthesized a peptide lipid containing the Val-His-Val-Glu-Val-Ser sequence as the hydrophilic part, and with two palmitoyl groups at the -terminal as the anchor groups of the lipid bilayer membrane. Vesicles embedded with the peptide lipids were prepared. The CaCO coating of the vesicle surface was performed by the mineralization induced by the embedded peptide lipid. The peptide lipid produced the mineral source, CO, for CaCO mineralization through the hydrolysis of urea. We investigated the structure of the obtained CaCO-coated vesicles using transmission electron microscopy (TEM). The vesicles retained the spherical shapes, even in vacuo. Furthermore, the vesicles had inner spaces that acted as the drug cargo, as observed by the TEM tomographic analysis. The thickness of the CaCO shell was estimated as ca. 20 nm. CaCO-coated vesicles containing hydrophobic or hydrophilic drugs were prepared, and the drug release properties were examined under various pH conditions. The mineralized CaCO shell of the vesicle surface was dissolved under a weakly acidic condition, pH 6.0, such as in the neighborhood of cancer tissues. The degradation of the CaCO shell induced an effective release of the drugs. Such behavior suggests potential of the CaCO-coated vesicles as carriers for cancer therapies.
我们制备了 CaCO 涂层囊泡作为药物载体,使其在弱酸性条件下释放其货物。我们设计并合成了一种含有 Val-His-Val-Glu-Val-Ser 序列的肽脂质作为亲水区,并且在 -末端具有两个棕榈酰基作为脂质双层膜的锚定基团。制备了嵌入肽脂质的囊泡。通过嵌入的肽脂质的水解,通过矿化在囊泡表面进行 CaCO 涂层。通过脲水解产生 CO 作为 CaCO 矿化的矿物源,我们使用透射电子显微镜 (TEM) 研究了所得 CaCO 涂层囊泡的结构。囊泡保留了球形形状,即使在真空中也是如此。此外,通过 TEM 断层分析观察到,囊泡具有作为药物货物的内部空间。CaCO 壳的厚度估计约为 20nm。制备了含有疏水性或亲水性药物的 CaCO 涂层囊泡,并在各种 pH 条件下检查了药物释放性质。囊泡表面的矿化 CaCO 壳在 pH6.0 等弱酸性条件下溶解,例如在肿瘤组织附近。CaCO 壳的降解诱导药物的有效释放。这种行为表明 CaCO 涂层囊泡作为癌症治疗载体的潜力。