Tianjin State Key Laboratory of Modern Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin 301617, China.
School of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, Tianjin 301617, China.
Molecules. 2024 Apr 3;29(7):1607. doi: 10.3390/molecules29071607.
Mesoporous titanium nanoparticles (MTN) have always been a concern and are considered to have great potential for overcoming antibiotic-resistant bacteria. In our study, MTN modified with functionalized UV-responsive ethylene imine polymer (PEI) was synthesized. The characterization of all products was performed by different analyses, including SEM, TEM, FT-IR, TGA, XRD, XPS, and N adsorption-desorption isotherms. The typical antibacterial drug berberine hydrochloride (BH) was encapsulated in MTN-PEI. The process exhibited a high drug loading capacity (22.71 ± 1.12%) and encapsulation rate (46.56 ± 0.52%) due to its high specific surface area of 238.43 m/g. Moreover, UV-controlled drug release was achieved by utilizing the photocatalytic performance of MTN. The antibacterial effect of BH@MTN-PEI was investigated, which showed that it could be controlled to release BH and achieve a corresponding antibacterial effect by UV illumination for different lengths of time, with bacterial lethality reaching 37.76% after only 8 min of irradiation. The minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) of the nanoparticles have also been studied. The MIC of BH@MTN-PEI was confirmed as 1 mg/mL against (), at which the growth of bacteria was completely inhibited during 24 h and the concentration of 5 mg/mL for BH@MTN-PEI was regarded as MBC against . Although this proof-of-concept study is far from a real-life application, it provides a possible route to the discovery and application of antimicrobial drugs.
介孔钛纳米粒子(MTN)一直备受关注,被认为具有克服抗生素耐药菌的巨大潜力。在我们的研究中,合成了功能化的紫外响应型乙烯亚胺聚合物(PEI)修饰的 MTN。通过 SEM、TEM、FT-IR、TGA、XRD、XPS 和 N 吸附-脱附等温线等不同分析对所有产物进行了表征。典型的抗菌药物盐酸小檗碱(BH)被包封在 MTN-PEI 中。由于其比表面积高达 238.43 m/g,该过程表现出高载药量(22.71±1.12%)和包封率(46.56±0.52%)。此外,利用 MTN 的光催化性能实现了紫外控制的药物释放。研究了 BH@MTN-PEI 的抗菌作用,结果表明,通过不同时间的紫外光照可以控制 BH 的释放,并达到相应的抗菌效果,照射 8 分钟后细菌致死率达到 37.76%。还研究了纳米粒子的最小抑菌浓度(MIC)和最小杀菌浓度(MBC)。BH@MTN-PEI 的 MIC 被确认为 1 mg/mL 对(),在 24 小时内完全抑制细菌生长,而浓度为 5 mg/mL 的 BH@MTN-PEI 被认为是对 的 MBC。尽管这项概念验证研究远未达到实际应用的程度,但它为抗菌药物的发现和应用提供了一种可能的途径。