The effect of Si species released from bioactive glasses on cell behaviour: a quantitative review
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Published version
Author(s)
Type
Journal Article
Abstract
Despite over 50 years of silicate bioactive glass (SBG) research, commercial success, and 6000+ published articles, there remains a lack of understanding of how soluble silicate (Si) species released from SBGs influences cellular responses. Using a systematic approach, this article quantitatively compares the in vitro responses of cells to SBG dissolution products reported in the literature and determines if there is a Si concentration ([Si]) dependent effect on cell behaviour. Cell behavioural responses to SBGs [Si] in dissolution products included metabolic activity (reported in 52 % of articles), cell number (24 %), protein production (22 %), gene expression (22 %) and biomineralization (24 %). There was a difference in the [Si] reported to cause increased (desirable) cellular responses (median = 30.2 ppm) compared to the [Si] reported to cause decreased (undesirable) cellular responses (median = 52.0 ppm) (P ≤ 0.001). The frequency of undesirable outcomes increased with increasing [Si], with ∼3 times more negative outcomes reported above 52 ppm. We also investigated the effect of [Si] on specific cellular outcomes (e.g., metabolic activity, angiogenesis, osteogenesis), if cell type/species influenced these responses and the impact of other ions (Ca, P, Na) within the SBG dissolution media on cell behaviour. This review has, for the first time, quantitatively compared the cellular responses to SBGs from the literature, providing a quantitative overview of SBG in vitro practices and presents evidence of a range of [Si] where desirable cellular responses may be more likely (30-52 ppm). This review also demonstrates the need for greater standardisation of in vitro methodological approaches and recommends some minimum reporting standards.
Date Issued
2023-10-15
Date Acceptance
2023-09-09
Citation
Acta Biomaterialia, 2023, 170, pp.39-52
ISSN
1742-7061
Publisher
Elsevier
Start Page
39
End Page
52
Journal / Book Title
Acta Biomaterialia
Volume
170
Copyright Statement
© 2023 The Author(s). Published by Elsevier Ltd on behalf of Acta Materialia Inc. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/)
License URL
Identifier
https://www.sciencedirect.com/science/article/pii/S1742706123005469
Subjects
Bioactive glasses
BONE-FORMATION
Cell responses
DIETARY SILICON INTAKE
Dissolution products
DISSOLUTION PRODUCTS
Engineering
Engineering, Biomedical
EXPRESSION
HUMAN OSTEOBLASTS
IN-VITRO
IONIC PRODUCTS
Materials Science
Materials Science, Biomaterials
OSTEOGENIC DIFFERENTIATION
PROLIFERATION
Science & Technology
SEEDING DENSITY
Silicon
Systematic review
Technology
Publication Status
Published
Date Publish Online
2023-09-14