Department of Polymer Materials and Engineering, School of Physics and Materials Science, Nanchang University, Nanchang 330031, China.
Center of Laboratory Animal Science, Nanchang University, Nanchang 330031, China.
ACS Appl Bio Mater. 2024 Mar 18;7(3):1976-1989. doi: 10.1021/acsabm.4c00068. Epub 2024 Mar 6.
The development of nanocarriers to prolong the residence time and enhance the permeability of chemotherapeutic drugs on bladder mucosa is important in the postsurgery treatment of superficial bladder cancers (BCs). Here, the mucoadhesive HA-SH/PF127 nanogels composed of a temperature-sensitive Pluronic F127 (PF127) core and thiolated hyaluronic acid (HA-SH) shell were prepared by the emulsification/solvent evaporation method. The nanogels were constructed through the thiol-maleimide click reaction in the HA-SH aqueous side of the oil-water interface and self-oxidized cross-linking thiols between HA-SH. The HA-SH/PF127 nanogels prepared at different thiol-to-maleimide group molar ratios, water-to-oil volume ratios, and cross-linking reaction times were characterized regarding hydrodynamic diameter () and zeta potential (ζ), and the optimal formulation was obtained. The excellent mucoadhesive properties of the HA-SH/PF127 nanogels were evaluated by using the mucin particle method. Doxorubicin (DOX) was encapsulated in the PF127 core of DOX@HA-SH/PF127 nanogels with a high loading efficiency (87.5%) and sustained release from the nanogels in artificial urine. studies on porcine bladder mucosa showed that the DOX@HA-SH/PF127 nanogels enhanced the penetration of the DOX into the bladder mucosa without disrupting the mucus structure or the bladder tissue. A significant dose-dependent cytotoxic effect of DOX@HA-SH/PF127 nanogels on both T24 and MB49 cells was observed. The present study demonstrates that the mucoadhesive HA-SH/PF127 nanogels are a promising intravesical drug delivery system for superficial BC therapy.
制备了由温敏性 Pluronic F127(PF127)核和巯基化透明质酸(HA-SH)壳组成的具有粘附性的 HA-SH/PF127 纳米凝胶,以用于浅表膀胱癌(BC)术后治疗。该纳米凝胶是通过油-水界面的 HA-SH 水相中的巯基-马来酰亚胺点击反应以及 HA-SH 之间的自氧化交联巯基构建的。考察了不同巯基-马来酰亚胺摩尔比、水-油体积比和交联反应时间下制备的 HA-SH/PF127 纳米凝胶的水动力学直径()和 Zeta 电位(ζ),并得到了最佳配方。采用粘蛋白粒子法评价了 HA-SH/PF127 纳米凝胶的优异粘膜粘附性能。阿霉素(DOX)被包封在 DOX@HA-SH/PF127 纳米凝胶的 PF127 核中,具有 87.5%的载药效率,并在人工尿液中从纳米凝胶中持续释放。在猪膀胱黏膜上的研究表明,DOX@HA-SH/PF127 纳米凝胶增强了 DOX 进入膀胱黏膜的渗透,而不会破坏黏液结构或膀胱组织。在 T24 和 MB49 细胞上均观察到 DOX@HA-SH/PF127 纳米凝胶对 DOX 的剂量依赖性细胞毒性作用。本研究表明,具有粘附性的 HA-SH/PF127 纳米凝胶是一种有前途的浅表 BC 治疗用膀胱内药物递送系统。