4.5 Article

Human platelet lysate supports the formation of robust human periodontal ligament cell sheets

Journal

Publisher

WILEY
DOI: 10.1002/term.2511

Keywords

cell culture; cell sheet engineering; cellular materials; fetal bovine serum; periodontal ligament stem cells; platelet lysate

Funding

  1. Changjiang Scholars Program of Ministry of Education of the People's Republic of China [2016]
  2. National Natural Science Foundation of China [81471791, 81500853, 81530050]
  3. Program for New Century Excellent Talents in University [NCET-12-1005]

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The use of stem cell-derived sheets has become increasingly common in a wide variety of biomedical applications. Although substantial evidence has demonstrated that human platelet lysate (PL) can be used for therapeutic cell expansion, either as a substitute for or as a supplement to xenogeneic fetal bovine serum (FBS), its impact on cell sheet production remains largely unexplored. In this study, we manufactured periodontal ligament stem cell (PDLSC) sheets in vitro by incubating PDLSCs in sheet-induction media supplemented with various ratios of PL and FBS, i.e. 10% PL without FBS, 7.5% PL + 2.5% FBS, 5% PL + 5% FBS, 2.5% PL + 7.5% FBS or 10% FBS without PL. Cultures with the addition of all the designed supplements led to successful cell sheet production. In addition, all the resultant cellular materials exhibited similar expression profiles of matrix-related genes and proteins, such as collagen I, fibronectin and integrin 1. Interestingly, the cell components within sheets generated by media containing both PL and FBS exhibited improved osteogenic potential. Following in vivo transplantation, all sheets supported significant new bone formation. Our data suggest that robust PDLSC sheets can be produced by applying PL as either an alternative or an adjuvant to FBS. Further examination of the relevant influences of human PL that benefit cell behaviour and matrix production will pave the way towards optimized and standardized conditions for cell sheet production.

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