材料科学
体内
编织
再生(生物学)
细胞生物学
解剖
生物医学工程
生物
复合材料
医学
生物技术
作者
Hiroaki Onoe,Teru Okitsu,Akane Itou,Midori Kato‐Negishi,Riho Gojo,Daisuke Kiriya,Koji Sato,Shigenori Miura,Shintaroh Iwanaga,Kaori Kuribayashi‐Shigetomi,Yukiko T. Matsunaga,Yuto Shimoyama,Shoji Takeuchi
出处
期刊:Nature Materials
[Springer Nature]
日期:2013-03-29
卷期号:12 (6): 584-590
被引量:790
摘要
Artificial reconstruction of fibre-shaped cellular constructs could greatly contribute to tissue assembly in vitro. Here we show that, by using a microfluidic device with double-coaxial laminar flow, metre-long core-shell hydrogel microfibres encapsulating ECM proteins and differentiated cells or somatic stem cells can be fabricated, and that the microfibres reconstitute intrinsic morphologies and functions of living tissues. We also show that these functional fibres can be assembled, by weaving and reeling, into macroscopic cellular structures with various spatial patterns. Moreover, fibres encapsulating primary pancreatic islet cells and transplanted through a microcatheter into the subrenal capsular space of diabetic mice normalized blood glucose concentrations for about two weeks. These microfibres may find use as templates for the reconstruction of fibre-shaped functional tissues that mimic muscle fibres, blood vessels or nerve networks in vivo.
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