A model approach to show that monocytes can enter microporous β-TCP ceramics.

BMC Biotechnol

Department of Orthopedics and Trauma Surgery, G.E.R.N. Tissue Replacement, Regeneration & Neogenesis, Medical Center-Albert-Ludwigs-University of Freiburg, Faculty of Medicine, Albert-Ludwigs-University of Freiburg, Hugstetter Straße 55, 79106, Freiburg, Germany.

Published: May 2024

AI Article Synopsis

  • β-TCP ceramics are special materials used to help bones heal and can interact with certain immune cells called monocytes.
  • The study looked at whether these monocytes can go inside the microporous structure of β-TCP ceramics, which nobody had really studied before.
  • The results showed that monocytes were found inside the 2 mm and 6 mm β-TCP slices when using certain treatments, suggesting that they might play a new role in how this ceramic material breaks down.

Article Abstract

β-TCP ceramics are versatile bone substitute materials and show many interactions with cells of the monocyte-macrophage-lineage. The possibility of monocytes entering microporous β-TCP ceramics has however not yet been researched. In this study, we used a model approach to investigate whether monocytes might enter β-TCP, providing a possible explanation for the origin of CD68-positive osteoclast-like giant cells found in earlier works.We used flow chambers to unidirectionally load BC, PRP, or PPP into slice models of either 2 mm or 6 mm β-TCP. Immunofluorescence for CD68 and live/dead staining was performed after the loading process.Our results show that monocytes were present in a relevant number of PRP and BC slices representing the inside of our 2 mm slice model and also present on the actual inside of our 6 mm model. For PPP, monocytes were not found beyond the surface in either model.Our results indicate the possibility of a new and so far neglected constituent in β-TCP degradation, perhaps causing the process of ceramic degradation also starting from inside the ceramics as opposed to the current understanding. We also demonstrated flow chambers as a possible new in vitro model for interactions between blood and β-TCP.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11097456PMC
http://dx.doi.org/10.1186/s12896-024-00857-2DOI Listing

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