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Development of pH-responsive polymer coating as an alternative to enzyme-based stem cell dissociation for cell therapy

  • Yu Jin Kim
  • , Tae Jin Lee
  • , Gun Jae Jeong
  • , Jihun Song
  • , Taekyung Yu
  • , Doo Sung Lee
  • , Suk Ho Bhang
  • Sungkyunkwan University
  • Kangwon National University
  • Georgia Institute of Technology
  • Kyung Hee University

Research output: Contribution to journalArticlepeer-review

Abstract

Cell therapy usually accompanies cell detachment as an essential process in cell culture and cell collection for transplantation. However, conventional methods based on enzymatic cell detachment can cause cellular damage including cell death and senescence during the routine cell detaching step due to an inappropriate handing. The aim of the current study is to apply the pH-responsive degradation property of poly (amino ester) to the surface of a cell culture dish to provide a simple and easy alternative method for cell detachment that can substitute the conventional enzyme treatment. In this study, poly (amino ester) was modified (cell detachable polymer, CDP) to show appropriate pH-responsive degradation under mild acidic conditions (0.05% (w/v) CDP, pH 6.0) to detach stem cells (human adipose tissue-derived stem cells (hADSCs)) perfectly within a short period (less than 10 min). Compared to conventional enzymatic cell detachment, hADSCs cultured on and detached from a CDP-coated cell culture dish showed similar cellular properties. We further performed in vivo experiments on a mouse hindlimb ischemia model (1.0 × 106 cells per limb). The in vivo results indicated that hADSCs retrieved from normal cell culture dishes and CDP-coated cell culture dishes showed analogous therapeutic angiogenesis. In conclusion, CDP could be applied to a pH-responsive cell detachment system as a simple and easy nonenzymatic method for stem cell culture and various cell therapies.

Original languageEnglish
Article number491
Pages (from-to)1-13
Number of pages13
JournalMaterials
Volume14
Issue number3
DOIs
StatePublished - 1 Feb 2021

Keywords

  • Angiogenesis
  • Enzyme free cell detachment
  • Hindlimb ischemia
  • Human adipose tissue-derived stem cells
  • pH-sensitive polymer

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