4.8 Article

In vitro response of mesenchymal stem cells to biomimetic hydroxyapatite substrates: A new strategy to assess the effect of ion exchange

期刊

ACTA BIOMATERIALIA
卷 76, 期 -, 页码 319-332

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.actbio.2018.06.025

关键词

Calcium phosphates; Mesenchymal stem cells; Intracellular calcium; Cell adhesion

资金

  1. Spanish Government [MAT2015-65601-R]
  2. EU through European Regional Development Funds
  3. FPI scholarship
  4. Generalitat the Catalunya [2017SGR-1165]
  5. Generalitat de Catalunya

向作者/读者索取更多资源

Biomaterials can interact with cells directly, that is, by direct contact of the cells with the material surface, or indirectly, through soluble species that can be released to or uptaken from the surrounding fluids. However, it is difficult to characterise the relevance of this fluid-mediated interaction separately from the topography and composition of the substrate, because they are coupled variables. These fluid-mediated interactions are amplified in the case of highly reactive calcium phosphates (Caps) such as biomimetic calcium deficient hydroxyapatite (CDHA), particularly in static in vitro cultures. The present work proposes a strategy to decouple the effect of ion exchange from topographical features by adjusting the volume ratio between the cell culture medium and biomaterial (V-CM/V-B). Increasing this ratio allowed mitigating the drastic ionic exchanges associated to the compositional changes experienced by the material exposed to the cell culture medium. This strategy was validated using rat mesenchymal stem cells (rMSCs) cultured on CDHA and beta-tricalcium phosphate (beta-TCP) discs using different V-CM/V-B ratios. Whereas in the case of beta-TCP the cell response was not affected by this ratio, a significant effect on cell adhesion and proliferation was found for the more reactive CDHA. The ionic exchange, produced by CDHA at low V-CM/V-B, altered cell adhesion due to the reduced number of focal adhesions, caused cell shrinkage and further rMCS5 apoptosis. This was mitigated when using a high V-CM/V-B, which attenuated the changes of calcium and phosphate concentrations in the cell culture medium, resulting in rMSCs spreading and a viability over time. Moreover, rMSCs showed an earlier expression of osteogenic genes on CDHA compared to sintered beta-TCP when extracellular calcium fluctuations were reduced. Statement of Significance Fluid mediated interactions play a significant role in the bioactivity of calcium phosphates. Ionic exchange is amplified in the case of biomimetic hydroxyapatite, which makes the in vitro characterisation of cell-material interactions especially challenging. The present work proposes a novel and simple strategy to explore the mechanisms of interaction of biomimetic and sintered calcium phosphates with mesenchymal stem cells. The effects of topography and ion exchange are analysed separately by modifying the volume ratio between cell culture medium and biomaterial. High ionic fluctuations interfered in the maturation of focal adhesions, hampering cell adhesion and leading to increased apoptosis and reduced proliferation rate. (C) 2018 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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