Park Yubeen, Won Dong-Sung, Bae Ga-Hyun, Ryu Dae Sung, Kang Jeon Min, Kim Ji Won, Kim Song Hee, Zeng Chu Hui, Park Wooram, Lee Sang Soo, Park Jung-Hoon
Biomedical Engineering Research Center, Asan Medical Center, Asan Institute for Life Science, 88 Olympic-ro 43-gil, Songpa-gu, Seoul 05505, Korea.
Asan Medical Center, Department of Gastroenterology, University of Ulsan College of Medicine, 88 Olympic-ro 43-gil, Songpa-gu, Seoul 05505, Korea.
Pharmaceutics. 2022 Feb 14;14(2):412. doi: 10.3390/pharmaceutics14020412.
Intraductal radiofrequency (RF) ablation combined with placement of a self-expandable metal stent (SEMS) for malignant biliary obstruction has risks such as stent- and heat-induced biliary sludge and restenosis. Here, we investigated the efficacy of a silver nanoparticles (AgNPs)-coated SEMS to inhibit tissue hyperplasia and bacterial growth caused by RF ablation with stent placement in the rabbit bile duct. The release behavior and antibacterial effects of AgNPs-coated SEMSs were evaluated. Then, SEMSs were successfully placed in all rabbits immediately after RF ablation. Ag ions were rapidly released at the beginning and then showed a gradual release behavior. The AgNPs-coated SEMS significantly inhibited bacterial activity compared to the uncoated SEMS ( < 0.05). Cholangiography and histological examination confirmed that the level of tissue hyperplasia was significantly lower in the AgNPs group than in the control group (all < 0.05). Immunohistochemistry analyses revealed that TUNEL-, HSP 70-, and α-SMA-positive areas were significantly lower in the AgNPs group than in the control group (all < 0.05). Intraductal RF ablation combined with nanofunctionalized stent placement represents a promising new approach for suppressing thermal damage as well as stent-induced tissue hyperplasia and bacterial growth.
导管内射频(RF)消融联合自膨式金属支架(SEMS)置入治疗恶性胆管梗阻存在支架和热诱导胆汁淤积及再狭窄等风险。在此,我们研究了银纳米颗粒(AgNPs)涂层的SEMS抑制兔胆管内射频消融联合支架置入所致组织增生和细菌生长的疗效。评估了AgNPs涂层SEMS的释放行为和抗菌效果。然后,在射频消融后立即成功地将SEMS置入所有兔子体内。银离子在开始时迅速释放,然后呈现逐渐释放的行为。与未涂层的SEMS相比,AgNPs涂层的SEMS显著抑制了细菌活性(<0.05)。胆管造影和组织学检查证实,AgNPs组的组织增生水平明显低于对照组(均<0.05)。免疫组织化学分析显示,AgNPs组的TUNEL、HSP 70和α-SMA阳性区域明显低于对照组(均<0.05)。导管内射频消融联合纳米功能化支架置入是一种有前景的新方法,可抑制热损伤以及支架诱导的组织增生和细菌生长。