4.7 Review

Bioengineering Organs for Blood Detoxification

期刊

ADVANCED HEALTHCARE MATERIALS
卷 7, 期 21, 页码 -

出版社

WILEY
DOI: 10.1002/adhm.201800430

关键词

bioengineered organs; blood detoxification; kidneys; livers

资金

  1. Health-Holland TKI project NOVAMEM [LSHM16059-SGF]
  2. European Commission [FP7-PEOPLE-2012-ITN-316690]
  3. University of Twente
  4. Gobierno de Aragon
  5. Fondo Social Europeo through a predoctoral Fellowship [DGA C066/2014]
  6. POCTEFA/RefBio II
  7. FGJ research grant
  8. Instituto de Salud Carlos III, Madrid, Spain [PI15/00563]
  9. French PIA RHU Ilite Innovations in tissue liver engineering [ANR-16-RHUS-0005]
  10. ERC
  11. European Union Horizon 2020 research and innovation program [646990-NICHOID]
  12. European Commission Horizon 2020 research and innovation program, project WEAKID [733169]
  13. ZonMW [114024113]
  14. Utrecht University
  15. University Medical Center Utrecht

向作者/读者索取更多资源

For patients with severe kidney or liver failure the best solution is currently organ transplantation. However, not all patients are eligible for transplantation and due to limited organ availability, most patients are currently treated with therapies using artificial kidney and artificial liver devices. These therapies, despite their relative success in preserving the patients' life, have important limitations since they can only replace part of the natural kidney or liver functions. As blood detoxification (and other functions) in these highly perfused organs is achieved by specialized cells, it seems relevant to review the approaches leading to bioengineered organs fulfilling most of the native organ functions. There, the culture of cells of specific phenotypes on adapted scaffolds that can be perfused takes place. In this review paper, first the functions of kidney and liver organs are briefly described. Then artificial kidney/liver devices, bioartificial kidney devices, and bioartificial liver devices are focused on, as well as biohybrid constructs obtained by decellularization and recellularization of animal organs. For all organs, a thorough overview of the literature is given and the perspectives for their application in the clinic are discussed.

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