Bai Rong, Kang Jing, Simalou Oudjaniyobi, Liu Wenxin, Ren Hui, Gao Tianyi, Gao Yangyang, Chen Wanjun, Dong Alideertu, Jia Ran
College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, People's Republic of China.
Departement de Chimie, Faculte Des Sciences (FDS), Universite de Lome (UL), Lome BP 1515, Togo.
ACS Biomater Sci Eng. 2018 Jun 11;4(6):2193-2202. doi: 10.1021/acsbiomaterials.7b00996. Epub 2018 May 14.
-Halamine compounds have attracted great attention because they are recognized as promising antibacterial agents to control microbial contamination; however, most of the research interests were focused on -halamines that contain N-Cl bond(s) rather than N-Br bond(s). In this contribution, we report the facile fabrication of N-Br bond-containing -halamine nanofibers using the electrospinning method for antibacterial usages. The as-produced N-Br bond-containing -halamine nanofibers (i.e., DBDMH/PAN nanofibers) comprise an antibacterial component of 1,3-dibromo-5,5-dimethylhydantoin (DBDMH) and a support component of polyacrylonitrile (PAN). When systematic characterizations were carried out, the as-obtained DBDMH/PAN nanofibers were proven to exhibit well-defined fiber-like morphology and be highly efficient in the killing of the selected model bacteria (). Their morphology and size could be well governed by tuning the concentration of electrospinning precursor and the mass ratio of PAN to DBDMH. The antibacterial mechanism of the DBDMH/PAN nanofibers and their stabilities under dry, wet, and bacterial conditions were confirmed as well. Facile synthesis and antibacterial activity allow the feasibility of the final N-Br bond-containing -halamine nanofibers for antibacterial-related clinical applications in practice. Our work highlights the development of the N-Br bond-containing -halamine nanofibers as promising antibacterial agents for biomedical applications.
卤胺化合物因其被认为是控制微生物污染的有前景的抗菌剂而备受关注;然而,大多数研究兴趣集中在含有N-Cl键而非N-Br键的卤胺上。在本论文中,我们报道了使用静电纺丝法制备含N-Br键的卤胺纳米纤维用于抗菌用途。所制备的含N-Br键的卤胺纳米纤维(即DBDMH/PAN纳米纤维)包含1,3-二溴-5,5-二甲基海因(DBDMH)的抗菌成分和聚丙烯腈(PAN)的支撑成分。在进行系统表征时,所获得的DBDMH/PAN纳米纤维被证明具有明确的纤维状形态,并且在杀灭所选模型细菌方面效率很高。通过调节静电纺丝前驱体的浓度以及PAN与DBDMH的质量比,可以很好地控制它们的形态和尺寸。同时也证实了DBDMH/PAN纳米纤维的抗菌机制及其在干燥、潮湿和细菌条件下的稳定性。简便的合成方法和抗菌活性使得最终含N-Br键的卤胺纳米纤维在实际抗菌相关临床应用中具有可行性。我们的工作突出了含N-Br键的卤胺纳米纤维作为生物医学应用中有前景的抗菌剂的发展。