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Immune response after allogeneic transplantation of decellularized uterine scaffolds in the rat

  • Arvind Manikantan Padma
  • , Ahmed Baker Alsheikh
  • , Min Jong Song
  • , Randa Akouri
  • , Levent M. Akyürek
  • , Mihai Oltean
  • , Mats Brännström
  • , Mats Hellström
  • University of Gothenburg
  • Hammarby allé 93

Research output: Contribution to journalArticlepeer-review

20 Scopus citations

Abstract

Data on how the immune system reacts to decellularized scaffolds after implantation is scarce and difficult to interpret due to many heterogeneous parameters such as tissue-type match, decellularization method and treatment application. The engraftment of these scaffolds must prove safe and that they remain inert to the recipient’s immune system to enable successful translational approaches and potential future clinical evaluation. Herein, we investigated the immune response after the engraftment of three decellularized scaffold types that previously showed potential to repair a uterine injury in the rat. Protocol (P) 1 and P2 were based on Triton-X100 and generated scaffolds containing 820 ng mg1 and 33 ng mg1 donor DNA per scaffold weight, respectively. Scaffolds obtained with a sodium deoxycholate-based protocol (P3) contained 160 ng donor DNA per mg tissue. The total number of infiltrating cells, and the population of CD45+ leukocytes, CD4+ T-cells, CD8a+ cytotoxic T-cells, CD22+ B-cells, NCR1+ NK-cells, CD68+ and CD163+ macrophages were quantified on days 5, 15 and 30 after a subcutaneous allogenic (Lewis to Sprague Dawley) transplantation. Gene expression for the pro-inflammatory cytokines INF-γ, IL-1β, IL-2, IL-6 and TNF were also examined. P1 scaffolds triggered an early immune response that may had been negative for tissue regeneration but it was stabilized after 30 d. Conversely, P3 initiated a delayed immune response that appeared negative for scaffold survival. P2 scaffolds were the least immunogenic and remained similar to autologous tissue implants. Hence, an effective decellularization protocol based on a mild detergent was advantageous from an immunological perspective and appears the most promising for future in vivo uterus bioengineering applications.

Original languageEnglish
Article number045021
JournalBiomedical Materials (Bristol)
Volume16
Issue number4
DOIs
StatePublished - Jul 2021

Bibliographical note

Publisher Copyright:
© 2021 The Author(s). Published by IOP Publishing Ltd

Keywords

  • Bioengineering
  • Decellularization
  • Immune response
  • Transplantation
  • Uterus

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