Microinjection Molded Biopolymeric Airway Stent with Antibacterial and Anti‐Hyperplastic Properties

Author:

Dong Jiahui123,Li Yahua4,Wang Xiaofeng2ORCID,Liu Yajing2,Ren Kewei45,Liu Xuedi2,Zhang Han12,Li Zongming4,Han Xinwei46,Uyama Hiroshi3,Li Qian12

Affiliation:

1. School of Materials Science and Engineering Zhengzhou University Zhengzhou 450001 China

2. School of Mechanics and Safety Engineering National Center for International Research of Micro‐Nano Molding Technology Zhengzhou University Zhengzhou 450001 China

3. Department of Applied Chemistry Osaka University Suita Osaka 565‐0871 Japan

4. Department of Interventional Radiology The First Affiliated Hospital of Zhengzhou University Zhengzhou 450052 China

5. Engineering Technology Research Center for Minimally Invasive Interventional Tumors of Henan Province Zhengzhou 450052 China

6. Interventional Institute of Zhengzhou University Zhengzhou 450052 China

Abstract

AbstractCentral airway stenosis is a condition that the diameter of the trachea or main bronchus shrinkage is caused by external compression or internal tissue hyperplasia, which can cause difficulty breathing, asphyxia, and even death. Airway stenting is an easy way to restore the patency of the central airway, but airway stents commonly used in clinical practice can lead to complications such as mucus plugging, bacterial infection, and granulation tissue hyperplasia. Moreover, the non‐degradable characteristic makes it requires a second operation to remove, which has the potential to cause tissue damage. In this study, a biodegradable airway stent is fabricated by microinjection molding using the bioelastomer of poly (L‐lactide‐coε‐caprolactone) as the matrix material. The airway stent has excellent mechanical properties and an appropriate degradation rate. The hydrophilic surface of the airway stent can inhibit mucus plugging. The loading of silver nanoparticles and cisplatin endows the stent with antibacterial and anti‐hyperplastic functions. In vitro and in vivo experiments demonstrate that this study provides an antibacterial and anti‐hyperplastic biodegradable airway stent with elastic properties to avoid secondary removal operation and reduce complications associated with mucus plugging, bacterial infection, and granulation tissue hyperplasia.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Biomaterials,Bioengineering,Biotechnology

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