TiO 2 /Polystyrene Nanocomposite Antibacterial Material as a Hemoperfusion Adsorbent for Efficient Bilirubin Removal and Prevention of Bacterial Infection

The use of hemoperfusion adsorbents for the removal of bilirubin in patients with liver failure has become a critical treatment. However, the insufficient clearance of bilirubin and the possibility of bacterial infection during hemoperfusion limit the application. In this work, we designed a novel a...

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Veröffentlicht in:ACS biomaterials science & engineering 2024-03, Vol.10 (3), p.1494-1506
Hauptverfasser: Du, Yunzheng, Chen, Mengya, Wang, Biao, Chai, Yamin, Wang, Lichun, Li, Nan, Zhang, Yanjia, Liu, Zhuang, Guo, Chen, Jiang, Xinbang, Ma, Boya, Wang, Zimeng, Tian, Ziying, Ou, Lailiang
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Sprache:eng
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Zusammenfassung:The use of hemoperfusion adsorbents for the removal of bilirubin in patients with liver failure has become a critical treatment. However, the insufficient clearance of bilirubin and the possibility of bacterial infection during hemoperfusion limit the application. In this work, we designed a novel antibacterial bilirubin adsorbent (PSVT) through the suspension polymerization reaction between double-bond functionalized TiO nanoparticles and styrene. PSVT showed an excellent bilirubin adsorption ability and antibacterial performance, ensuring efficient clearance of bilirubin in liver failure patients during hemoperfusion and preventing bacterial infection. The experimental results indicated that TiO was uniformly dispersed in the microspheres, which improved the mesoporous structure and increased the specific surface area. Composite adsorbent PSVT showed an exceptional bilirubin adsorption capacity, with the maximum adsorption capacity reaching 24.3 mg/g. In addition, the introduction of TiO endowed PSVT with excellent antibacterial ability; the ultimate antibacterial rates against and reached 97.31 and 96.47%, respectively. In summary, PSVT served as a novel antibacterial bilirubin adsorbent with excellent bilirubin clearance capacity and antibacterial performance, providing excellent application prospects for treating liver failure patients.
ISSN:2373-9878
2373-9878
DOI:10.1021/acsbiomaterials.3c01854