Chantarojanasiri Tanyaporn, Keeratihattayakorn Saran, Boonkruepan Sarinthorn, Jitpibull Jirasak, Ratanavaraporn Juthamas
Department of Internal Medicine, Rajavithi Hospital, Ministry of Public Health College of Medicine, Rangsit University, Bangkok 10400, Thailand.
Biomedical Engineering Program, Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand.
ACS Omega. 2025 Jun 26;10(26):28243-28251. doi: 10.1021/acsomega.5c03110. eCollection 2025 Jul 8.
Biodegradable enteric stents have limited use in benign enteric stricture due to the short degradation time. Silk fibroin (SF) coating on polydioxanone (PDO) has been proposed to extend the degradation rate. PDO stents and yarn were coated with SF solution by using the dip-coating method. Surface properties of the SF-coated PDO yarn were observed by scanning electron microscopy, Fourier transform infrared spectroscopy, and water contact angle analysis. The degradation of the uncoated and 0.5% SF-coated PDO stents were compared at 4, 8, 12, and 16 weeks after incubation. The 0.5% SF-coated PDO stent showed a significant delay in the degradation rate (remaining weight 98.87 and 93.31% at 4 and 8 weeks versus 91.21 and 88.34% in the noncoated stent). After 8 weeks of incubation, the radial compressive force remained in SF-coated stents, while the uncoated stents were destroyed. The bicinchoninic acid assay of the supernatant fluid confirmed an increased amount of dissolved SF in a linear fashion. In conclusion, SF coating on PDO stents using the dip-coating method and fixing with liquid nitrogen could delay the degradation rate of the biodegradable stent and prolong the stent shape retention up to 4 weeks after incubation when compared with an uncoated stent.
由于降解时间短,可生物降解的肠道支架在良性肠道狭窄中的应用有限。有人提出在聚对二氧环己酮(PDO)上涂覆丝素蛋白(SF)以延长降解速率。采用浸涂法用SF溶液涂覆PDO支架和纱线。通过扫描电子显微镜、傅里叶变换红外光谱和水接触角分析观察了涂覆SF的PDO纱线的表面性能。在孵育4、8、12和16周后,比较了未涂覆和0.5% SF涂覆的PDO支架的降解情况。0.5% SF涂覆的PDO支架的降解速率明显延迟(在4周和8周时剩余重量分别为98.87%和93.31%,而未涂覆支架为91.21%和88.34%)。孵育8周后,涂覆SF的支架仍保留径向压缩力,而未涂覆的支架已被破坏。对上清液的二辛可宁酸测定证实溶解的SF量呈线性增加。总之,与未涂覆的支架相比,采用浸涂法并用液氮固定在PDO支架上的SF涂层可延迟可生物降解支架的降解速率,并将支架形状保持时间延长至孵育后4周。