跳到主要导航 跳到搜索 跳到主要内容

Rapid Regeneration of a Neoartery with Elastic Lamellae

  • Ziyu Wang
  • , Suzanne M. Mithieux
  • , Howard Vindin
  • , Yiwei Wang
  • , Miao Zhang
  • , Linyang Liu
  • , Jacob Zbinden
  • , Kevin M. Blum
  • , Tai Yi
  • , Yuichi Matsuzaki
  • , Farshad Oveissi
  • , Reyda Akdemir
  • , Karen M. Lockley
  • , Lingyue Zhang
  • , Ke Ma
  • , Juan Guan
  • , Anna Waterhouse
  • , Nguyen T.H. Pham
  • , Brian S. Hawkett
  • , Toshiharu Shinoka
  • Christopher K. Breuer, Anthony S. Weiss*
*此作品的通讯作者
  • The University of Sydney
  • ANZAC Research Institute
  • Nanjing University of Chinese Medicine
  • Nationwide Children’s Hospital
  • Universidad Rovira i Virgili
  • Beihang University

科研成果: 期刊稿件文章同行评审

摘要

Native arteries contain a distinctive intima-media composed of organized elastin and an adventitia containing mature collagen fibrils. In contrast, implanted biodegradable small-diameter vascular grafts do not present spatially regenerated, organized elastin. The elastin-containing structures within the intima-media region encompass the elastic lamellae (EL) and internal elastic lamina (IEL) and are crucial for normal arterial function. Here, the development of a novel electrospun small-diameter vascular graft that facilitates de novo formation of a structurally appropriate elastin-containing intima-media region following implantation is described. The graft comprises a non-porous microstructure characterized by tropoelastin fibers that are embedded in a PGS matrix. After implantation in mouse abdominal aorta, the graft develops distinct cell and extracellular matrix profiles that approximate the native adventitia and intima-media by 8 weeks. Within the newly formed intima-media region there are circumferentially aligned smooth muscle cell layers that alternate with multiple EL similar to that found in the arterial wall. By 8 months, the developed adventitia region contains mature collagen fibrils and the neoartery presents a distinct IEL with thickness comparable to that in mouse abdominal aorta. It is proposed that this new class of material can generate the critically required, organized elastin needed for arterial regeneration.

源语言英语
文章编号2205614
期刊Advanced Materials
34
47
DOI
出版状态已出版 - 24 11月 2022

指纹

探究 'Rapid Regeneration of a Neoartery with Elastic Lamellae' 的科研主题。它们共同构成独一无二的指纹。

引用此