Anti-fibrotic and anti-stricture effects of biodegradable biliary stents braided with dexamethasone-impregnated sheath/core structured monofilaments

Authors
Lee, Ju-RoYang, Seung WonKwon, Chang-IlKim, Kyu SeokPark, Se HwanJang, Myeong JinKim, Ga HeeSung, Min JeKim, GwangilSon, Jun SikJoung, Yoon Ki
Issue Date
2024-04
Publisher
Elsevier BV
Citation
Acta Biomaterialia, v.178, pp.137 - 146
Abstract
Endoscopic biliary stent insertion has been widely used for the treatment of benign biliary stricture (BBS). Thus, the development of stent materials in the perspectives of structure, mechanical properties, and biocompatibility has been also studied. However, conventional metal and plastic stents have several disadvantages, such as repeated procedures to remove or exchange them, dislodgment, restenosis, biocompatibility, and poor mechanical properties. Sustainable effectiveness, attenuation and prevention of fibrosis, and biocompatibility are key factors for the clinical application of stents to BBS treatment. In addition, loading drugs could show synergistic effects with stents' own performance. We developed a dexamethasone-eluting biodegradable stent (DBS) consisting of a sheath/core structure with outstanding mechanical properties and sustained release of dexamethasone, which maintained its functions in a BBS duct over 12 weeks in a swine model. The insertion of our DBS not only expanded BBS areas but also healed secondary ulcers as a result of the attenuation of fibrosis. After 16 weeks from the insertion, BBS areas were totally improved, and the DBS was degraded and thoroughly disappeared without re-intervention for stent removal. Our DBS would be an effective clinical tool for non -vascular diseases.
Keywords
EXPANDABLE METAL STENTS; COMMON BILE-DUCT; PLASTIC STENTS; FLOW PHANTOM MODEL; Biodegradable polymer stent; Drug-eluting stent; Swine biliary stricture; Benign biliary stricture
ISSN
1742-7061
URI
https://pubs.kist.re.kr/handle/201004/149982
DOI
10.1016/j.actbio.2024.02.037
Appears in Collections:
KIST Article > 2024
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