Shen Yang, Zhang Baoqu, Yi Zihan, Zhang Lan, Ling Jing, Wang Shibo, Sun Zhichao, Iqbal M Zubair, Kong Xiangdong
Institute of Smart Biomedical Materials, School of Materials Science and Engineering, Zhejiang Sci-Tech University Hangzhou 310018 China
Zhejiang-Mauritius Joint Research Center for Biomaterials and Tissue Engineering Hangzhou 310018 China.
RSC Adv. 2023 Jul 10;13(30):20512-20519. doi: 10.1039/d3ra02812g. eCollection 2023 Jul 7.
Catheter embolization is a minimally invasive technique that relies on embolic agents and is now widely used to treat various high-prevalence medical diseases. Embolic agents usually need to be combined with exogenous contrasts to visualize the embolotherapy process. However, the exogenous contrasts are quite simply washed away by blood flow, making it impossible to monitor the embolized location. To solve this problem, a series of sodium hyaluronate (SH) loaded with bismuth sulfide (BiS) nanorods (NRs) microspheres (BiS@SH) were prepared in this study by using 1,4-butaneglycol diglycidyl ether (BDDE) as a crosslinker through single-step microfluidics. BiS@SH-1 microspheres showed the best performance among other prepared microspheres. The fabricated microspheres had uniform size and good dispersibility. Furthermore, the introduction of BiS NRs synthesized by a hydrothermal method as Computed Tomography (CT) contrast agents improved the mechanical properties of BiS@SH-1 microspheres and endowed the microspheres with excellent X-ray impermeability. The blood compatibility and cytotoxicity test showed that the BiS@SH-1 microspheres had good biocompatibility. In particular, the simulated embolization experiment results indicate that the BiS@SH-1 microspheres had excellent embolization effect, especially for the small-sized blood vessels of 500-300 and 300 μm. The results showed the prepared BiS@SH-1 microspheres have good biocompatibility and mechanical properties, as well as certain X-ray visibility and excellent embolization effects. We believe that the design and combination of this material has good guiding significance in the field of embolotherapy.
导管栓塞术是一种依靠栓塞剂的微创技术,目前广泛用于治疗各种高发性疾病。栓塞剂通常需要与外源性造影剂结合以可视化栓塞治疗过程。然而,外源性造影剂很容易被血流冲走,从而无法监测栓塞位置。为了解决这个问题,本研究通过使用1,4-丁二醇二缩水甘油醚(BDDE)作为交联剂,采用单步微流控技术制备了一系列负载硫化铋(BiS)纳米棒(NRs)的透明质酸钠(SH)微球(BiS@SH)。BiS@SH-1微球在其他制备的微球中表现出最佳性能。所制备的微球尺寸均匀且分散性良好。此外,通过水热法合成的BiS纳米棒作为计算机断层扫描(CT)造影剂的引入,改善了BiS@SH-1微球的机械性能,并赋予微球优异的X射线不透性。血液相容性和细胞毒性测试表明,BiS@SH-1微球具有良好的生物相容性。特别是,模拟栓塞实验结果表明,BiS@SH-1微球具有优异的栓塞效果,尤其是对于500-300和300μm的小尺寸血管。结果表明,所制备的BiS@SH-1微球具有良好的生物相容性和机械性能,以及一定的X射线可见性和优异的栓塞效果。我们认为这种材料的设计和组合在栓塞治疗领域具有良好的指导意义。