Biomedical Manufacturing Technology Center, Korea Institute of Industrial Technology, Yeongcheon 38822, Republic of Korea.
Department of Polymer Science and Engineering, Kyungpook National University, Daegu 41566, Republic of Korea.
Nano Lett. 2024 Jul 24;24(29):8920-8928. doi: 10.1021/acs.nanolett.4c01659. Epub 2024 Jun 14.
Blood-contacting medical devices (BCDs) require antithrombotic, antibacterial, and low-friction surfaces. Incorporating a nanostructured surface with the functional hydrogel onto BCD surfaces can enhance the performances; however, their fabrication remains challenging. Here, we introduce a straightforward method to fabricate a multifunctional hydrogel-based nanostructure on BCD surfaces using -carboxymethyl chitosan-based short nanofibers (CMC-SNFs). CMC-SNFs, fabricated via electrospinning and cutting processes, are easily sprayed and entangled onto the BCD surface. The deposited CMC-SNFs form a robust nanoweb layer via fusion at the contact area of the nanofiber interfaces. The superhydrophilic CMC-SNF nanoweb surface creates a water-bound layer that effectively prevents the nonspecific adhesion of bacteria and blood cells, thereby enhancing both antimicrobial and antithrombotic performances. Furthermore, the CMC-SNF nanoweb exhibits excellent lubricity and durability on the bovine aorta. The demonstration results of the CMC-SNF coating on catheters and sheaths provide evidence of its capability to apply multifunctional surfaces simply for diverse BCDs.
接触血液的医疗器械(BCDs)需要具有抗血栓、抗菌和低摩擦表面。在 BCD 表面结合具有功能水凝胶的纳米结构化表面可以增强性能;然而,其制造仍然具有挑战性。在这里,我们介绍了一种简单的方法,使用基于 -羧甲基壳聚糖的短纳米纤维(CMC-SNF)在 BCD 表面上制造基于多功能水凝胶的纳米结构。CMC-SNF 通过静电纺丝和切割工艺制造,可轻松喷涂并缠绕在 BCD 表面上。沉积的 CMC-SNF 通过纳米纤维界面接触区域的融合形成坚固的纳米网层。超亲水 CMC-SNF 纳米网表面形成水结合层,可有效防止细菌和血细胞的非特异性附着,从而增强抗菌和抗血栓性能。此外,CMC-SNF 纳米网在牛主动脉上表现出优异的润滑性和耐用性。在导管和护套上对 CMC-SNF 涂层的演示结果证明了其在多种 BCD 上简单应用多功能表面的能力。