Center of 3D Printing & Organ Manufacturing, School of Intelligent Medicine, China Medical University, Shenyang 110122, China.
Department of Chemistry, School of Forensic Medicine, China Medical University, Shenyang 110122, China.
Molecules. 2023 Dec 28;29(1):193. doi: 10.3390/molecules29010193.
In this study, a capillary microfluidic device was constructed, and sodium alginate solution and a pH-sensitive hydrophobic polymer ((BMA--DAMA--MMA)) solution were introduced into the device for the preparation of hydrogel fibers loaded with polymer microspheres. The structure of the microsphere fiber, including the size and spacing of the microspheres, could be controlled by flow rate, and the microspheres were able to degrade and release cargo responding to acidic pH conditions. By modification with carboxymethylcellulose (CMC), alginate hydrogel exhibited enhanced pH sensitivity (shrunk in acidic while swollen in basic condition). This led to an impact on the diffusion rate of the molecules released from the inner microspheres. The microsphere fiber showed dramatic and negligible degradation and drug release in tumor cell (i.e., A431 and A549 cells) and normal cell environments, respectively. These results indicated that the microsphere fiber prepared in this study showed selective drug release in acidic environments, such as tumor and inflammation sites, which could be applied as a smart surgical dressing with normal tissue protective properties.
在这项研究中,构建了一种毛细管微流控装置,并将海藻酸钠溶液和 pH 敏感的疏水性聚合物((BMA-DAMA-MMA))溶液引入该装置,用于制备载有聚合物微球的水凝胶纤维。微球纤维的结构,包括微球的大小和间距,可以通过流速进行控制,并且微球能够在酸性 pH 条件下降解和释放货物。通过羧甲基纤维素(CMC)的修饰,海藻酸凝胶表现出增强的 pH 敏感性(在酸性条件下收缩,在碱性条件下膨胀)。这导致了从内部微球释放的分子的扩散速率受到影响。微球纤维在肿瘤细胞(即 A431 和 A549 细胞)和正常细胞环境中分别表现出显著和可忽略不计的降解和药物释放。这些结果表明,本研究中制备的微球纤维在酸性环境(如肿瘤和炎症部位)中表现出选择性药物释放,可作为具有正常组织保护性能的智能手术敷料。