Wang Guoyan, Li Hongwei, Shao Xinhua, Teng Shuisheng, Wu Qiong
Department of Pediatric General Surgery, The First People's Hospital of Chengzhou, Chenzhou, 423000, China.
Department of Pediatric Respiratory Medicine, The First People's Hospital of Chengzhou, Chenzhou, 423000, China.
Regen Ther. 2024 Jun 6;26:170-179. doi: 10.1016/j.reth.2024.05.003. eCollection 2024 Jun.
With over 9 million fatalities per year expected by 2030, infectious diseases will remain a significant burden on the world economy and cause high mortality rates. An excellent method to increase the bioactivity of levofloxacin (LEV) in pediatric abdominal wound repair is the finding of a stimuli-based drug delivery system (DDS). We designed and developed an LEV incorporated with zeolite imidazole framework-8 (ZIF-8) as a promising nanocarrier for wound healing applications. The spectral analysis and morphological analysis confirm the formation of our newly fabricated composites. Mouse embryonic fibroblast NIH3T3 cells, the cytotoxicity, cytocompatibility, and cell proliferation characteristics of LEV@ZIF-8 were evaluated in vitro. LEV@ZIF-8 composite considerably improved the biocompatibility against NIH3T3 cells after 72-h of exposure, according to in vitro experiments. Under acidic circumstances, the pH-responsive drug release studies exhibit superior LEV release, and in physiological circumstances, there is no unintended drug release. The LEV@ZIF-8 composite-treated cells demonstrate the most remarkable cell growth and migration method in a very short time, according to the results of the wound scratch experiment. The composite exposure concentration depended on inhibition against various microorganisms in the antibacterial activity testing. According to the study, LEV@ZIF-8 are appropriate and effective DDS for stimuli-based pediatric abdominal wound repair.
预计到2030年,每年有超过900万人死于传染病,传染病仍将给世界经济带来巨大负担,并导致高死亡率。找到一种基于刺激的药物递送系统(DDS)是提高左氧氟沙星(LEV)在小儿腹部伤口修复中生物活性的极佳方法。我们设计并开发了一种将LEV与沸石咪唑骨架-8(ZIF-8)结合的材料,作为一种有前景的用于伤口愈合应用的纳米载体。光谱分析和形态分析证实了我们新制备的复合材料的形成。对小鼠胚胎成纤维细胞NIH3T3进行体外实验,评估LEV@ZIF-8的细胞毒性、细胞相容性和细胞增殖特性。体外实验表明,LEV@ZIF-8复合材料在暴露72小时后对NIH3T3细胞的生物相容性有显著改善。在酸性条件下,pH响应性药物释放研究显示出优异的LEV释放,而在生理条件下,没有意外的药物释放。伤口划痕实验结果表明,LEV@ZIF-8复合材料处理的细胞在极短时间内表现出最显著的细胞生长和迁移方式。在抗菌活性测试中,复合材料的暴露浓度取决于对各种微生物的抑制作用。研究表明,LEV@ZIF-8是用于基于刺激的小儿腹部伤口修复的合适且有效的DDS。