Literature DB >> 31923991

Fast, robust and effective decellularization of whole human livers using mild detergents and pressure controlled perfusion.

Jorke Willemse1, Monique M A Verstegen2, Annewiet Vermeulen1, Ivo J Schurink1, Henk P Roest1, Luc J W van der Laan1, Jeroen de Jonge1.   

Abstract

Human whole-liver perfusion-decellularization is an emerging technique for producing bio-scaffolds for tissue engineering purposes. The native liver extracellular matrix (ECM) provides a superior microenvironment for hepatic cells in terms of adhesion, survival and function. However, current decellularization protocols show a high degree of variation in duration. More robust and effective protocols are required, before human decellularized liver ECM can be considered for tissue engineering applications. The aim of this study is to apply pressure-controlled perfusion and test the efficacy of two different detergents in porcine and human livers. To test this, porcine livers were decellularized using two different protocols; a triton-x-100 (Tx100)-only protocol (N = 3) and a protocol in which Tx100 was combined with SDS (N = 3) while maintaining constant pressure of 120 mm Hg. Human livers (N = 3) with different characteristics (age, weight and fat content) discarded for transplantation were decellularized using an adapted version of the Tx-100-only protocol. Decellularization efficacy was determined by histology and analysis of DNA and RNA content. Furthermore, the preservation of ECM components was assessed. After completing the perfusion cycles with detergents the porcine livers from both protocols were completely white and transparent in color. After additional washing steps with water and DNase, the livers were completely decellularized, as no DNA or cell remnants could be detected. The Tx100-only protocol retained 1.5 times more collagen and 2.5 times more sGAG than the livers decellularized with Tx100 + SDS. The Tx100-only protocol was subsequently adapted for decellularizing whole-organ human livers. The human livers decellularized with pressure-controlled perfusion became off-white in color and semi-transparent within 20 h. Livers decellularized without pressure-controlled perfusion took 64-96 h to completely decellularize, but did not become white or transparent. The addition of pressure-controlled flow did remove all cells and double stranded DNA, but did not damage the ultra-structure of the ECM as was analyzed by histology and scanning electron microscopy. In addition, collagens and sGAG were maintained with the decellularized ECM. In conclusion, we established effective, robust and fast decellularization protocols for both porcine and human livers. With this protocol the duration of decellularization for whole-organ human livers has been shortened considerably. The increased pressure and flow did not damage the ECM, as major ECM components remained intact.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Biomaterials; Extracellular matrix; Liver tissue engineering; Liver transplantation; Regenerative medicine; Whole organ decellularization

Year:  2019        PMID: 31923991     DOI: 10.1016/j.msec.2019.110200

Source DB:  PubMed          Journal:  Mater Sci Eng C Mater Biol Appl        ISSN: 0928-4931            Impact factor:   7.328


  10 in total

1.  Liver scaffolds obtained by decellularization: A transplant perspective in liver bioengineering.

Authors:  Marlon Lemos Dias; Bruno Andrade Paranhos; Regina Coeli Dos Santos Goldenberg
Journal:  J Tissue Eng       Date:  2022-06-20       Impact factor: 7.940

Review 2.  Decellularization for the retention of tissue niches.

Authors:  Deana Moffat; Kaiming Ye; Sha Jin
Journal:  J Tissue Eng       Date:  2022-05-21       Impact factor: 7.940

3.  Liver donor age affects hepatocyte function through age-dependent changes in decellularized liver matrix.

Authors:  Aylin Acun; Ruben Oganesyan; Korkut Uygun; Heidi Yeh; Martin L Yarmush; Basak E Uygun
Journal:  Biomaterials       Date:  2021-01-21       Impact factor: 12.479

4.  Development of a decellularized porcine bone matrix for potential applications in bone tissue regeneration.

Authors:  Ziyan Nie; Xuesong Wang; Liling Ren; Yunqing Kang
Journal:  Regen Med       Date:  2020-05-22       Impact factor: 3.806

Review 5.  Milestones and current achievements in development of multifunctional bioscaffolds for medical application.

Authors:  Jagoda Litowczenko; Marta J Woźniak-Budych; Katarzyna Staszak; Karolina Wieszczycka; Stefan Jurga; Bartosz Tylkowski
Journal:  Bioact Mater       Date:  2021-01-28

Review 6.  Recent Advances in Liver Engineering With Decellularized Scaffold.

Authors:  Qingqing Dai; Wei Jiang; Fan Huang; Fei Song; Jiqian Zhang; Hongchuan Zhao
Journal:  Front Bioeng Biotechnol       Date:  2022-02-10

7.  Development of Biomimetic Hepatic Lobule-Like Constructs on Silk-Collagen Composite Scaffolds for Liver Tissue Engineering.

Authors:  Lina Guo; Ziqing Zhu; Chuanzhou Gao; Kaiwen Chen; Shenzhou Lu; Hexin Yan; Wenming Liu; Mingqi Wang; Yanfang Ding; Lin Huang; Xiuli Wang
Journal:  Front Bioeng Biotechnol       Date:  2022-06-23

Review 8.  The emergence of regenerative medicine in organ transplantation: 1st European Cell Therapy and Organ Regeneration Section meeting.

Authors:  Martin J Hoogduijn; Nuria Montserrat; Luc J W van der Laan; Francesco Dazzi; Norberto Perico; Jens Kastrup; Nicholas Gilbo; Rutger J Ploeg; Valerie Roobrouck; Federica Casiraghi; Christian L Johnson; Marcella Franquesa; Marc H Dahlke; Emma Massey; Sarah Hosgood; Marlies E J Reinders
Journal:  Transpl Int       Date:  2020-04-28       Impact factor: 3.782

9.  Scaffolds obtained from decellularized human extrahepatic bile ducts support organoids to establish functional biliary tissue in a dish.

Authors:  Jorke Willemse; Floris J M Roos; Iris J Voogt; Ivo J Schurink; Marcel Bijvelds; Hugo R de Jonge; Luc J W van der Laan; Jeroen de Jonge; Monique M A Verstegen
Journal:  Biotechnol Bioeng       Date:  2020-11-09       Impact factor: 4.530

Review 10.  Design by Nature: Emerging Applications of Native Liver Extracellular Matrix for Cholangiocyte Organoid-Based Regenerative Medicine.

Authors:  Jorke Willemse; Luc J W van der Laan; Jeroen de Jonge; Monique M A Verstegen
Journal:  Bioengineering (Basel)       Date:  2022-03-07
  10 in total

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