4.8 Article

Immune-protected xenogeneic bioartificial livers with liver-specific microarchitecture and hydrogel-encapsulated cells

期刊

BIOMATERIALS
卷 35, 期 32, 页码 8983-8991

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2014.07.009

关键词

Hepatocyte; Tissue engineering; Bioartificial liver; Xenotransplantation; Microencapsulation; Hydrogel

资金

  1. Industrial Strategic Technology Development Program
  2. Ministry of Trade industry & Energy (MI, Korea) [10041923]
  3. National Research Foundation of Korea (NRF) - Korea government (MEST) [2013046403]
  4. Korea Evaluation Institute of Industrial Technology (KEIT) [10041923] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  5. National Research Foundation of Korea [21A20130012609] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Development of a xenogeneic biological liver support is important in providing a bridge to transplantation or liver regeneration, thus helping to overcome the chronic shortage of liver donors. Among the critical factors in developing biological liver support are the creation of in vivo mimetic micro liver tissue (mLT), especially mLTs containing liver-specific ultrastructure, and an encapsulation method that can package massive numbers of cells while providing immune-protection from the host immune system. We describe here the development of mLTs that include liver microarchitecture and their in situ encapsulation in hydrogel composites. Concave microwells and the tri-culture of three types of primary liver cells were applied for the construction of mLTs showing excellent liver functions and long-term (>1 month) viability in vitro. Large quantities of rat mLTs were encapsulated in collagen-alginate composites, implanted into hepatic failure mice and sustained their survival during regeneration of the remaining liver. The proposed liver support system offers xenogeneic hepatic assistance by mimicking native liver microarchitecture and providing immune-protection without the need for complicated devices or processes, and as such represents a promising system for recovery of organ function. (C) 2014 Elsevier Ltd. All rights reserved.

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