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논문 기본 정보

자료유형
학술저널
저자정보
Junjun Liu (the Affiliated Hospital of Qingdao University Qingdao Shandong China.) Hongqiao Zhu (the First Affiliated Hospital of the Navy Medical University Shanghai China.) Yifei Pei (the First Affiliated Hospital of the Navy Medical University Shanghai China.) Heng Zhang (the Affiliated Hospital of Qingdao University Qingdao Shandong China.) Jian Zhou (the First Affiliated Hospital of the Navy Medical University Shanghai China.) Zaiping Jing (the First Affiliated Hospital of the Navy Medical University Shanghai China.)
저널정보
한국생체재료학회 생체재료학회지 생체재료학회지 제26권 제2호
발행연도
2022.6
수록면
260 - 271 (12page)
DOI
https://doi.org/10.1186/s40824-022-00259-5

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Background: Stent-graft-induced inflammation is an independent risk factor for adverse aortic remodeling in aortic dissection. In this context, we asked that whether a methylprednisolone-loaded stent-graft could reduce inflamma tion and degradation. Methods: First, a coaxial electrospinning technique was used to create a core-shell film with methylprednisolone encapsulated in the inner of poly (L-lactide-co-caprolactone) nanofibers for controllable drug release. Second, an in vitro study was conducted to evaluate the biocompatibility of the nanofiber meshes. Third, the porcine aortic dis section model was developed to investigate the therapeutic effects of the ethylprednisolone-loaded stent-graft. Results: The results demonstrated that the nanofiber-coated film with a methylprednisolone-poly-caprolactone core layer and a poly (L-lactide-co-caprolactone) shell layer could effectively sustain drug release in vitro. In vivo study showed that the methylprednisolone-loaded stent-graft could reduce degradtion of aortic dissection by regulating inflammation. Conclusions: Overall, the controllable drug release by coaxial nanofiber is a promising approach to alleviate aortic inflammation and promote aortic remodeling after stent-graft implantation.

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