Literature DB >> 22052846

Flow perfusion maintains ex vivo bone viability: a novel model for bone biology research.

Edward H Davidson1, Derek D Reformat, Alessandro Allori, Orlando Canizares, I Janelle Wagner, Pierre B Saadeh, Stephen M Warren.   

Abstract

Encased in lacunae, osteocytes receive nutrition and biomechanical signals through the lacunocanalicular system. We have developed a novel flow-perfusion bioreactor designed to support lacunocanalicular fluid flow. We hypothesize that ex vivo fluid flow can maintain endochondral bone viability and, ultimately, serve as a novel model to study bone biology in vitro. Sprague-Dawley rat femurs were harvested, stripped of soft tissue, loaded into a custom-designed bioreactor and perfused with osteogenic culture medium. After 14 days of flow-perfusion or static culture, the bones were harvested, fixed, decalcified, embedded, sectioned and stained with haematoxylin and eosin. Fresh long bone samples were similarly processed for comparison. Osteocyte viability and function were also evaluated, using thiazolyl blue tetrazolium bromide (MTT), fluorospectrophotometric DNA quantification, alkaline phosphatase (ALP) colorimetric assay and fluorochrome labelling of mineralizing surfaces. All samples remained free of infection throughout the study period. After 14 days of flow perfusion, histological analysis showed normal-appearing bony architecture, with 72% of lacunae being osteocyte-filled compared with 93% in freshly harvested samples and only 36% in static samples. MTT staining and assay confirmed osteocyte viability in the flow-perfusion samples as well as in fresh samples. DNA quantification demonstrated DNA to be preserved in flow-perfused samples when compared with freshly harvested samples. ALP activity in flow-perfusion explants was upregulated compared with fresh and static samples. Fluorochrome-labelled mineralizing surfaces were seen throughout the explanted flow-perfused samples. This is the first demonstration that flow perfusion provides adequate chemotransportation to explanted murine endochondal bones.
Copyright © 2011 John Wiley & Sons, Ltd.

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Year:  2011        PMID: 22052846     DOI: 10.1002/term.478

Source DB:  PubMed          Journal:  J Tissue Eng Regen Med        ISSN: 1932-6254            Impact factor:   3.963


  7 in total

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2.  Osteogenic performance of donor-matched human adipose and bone marrow mesenchymal cells under dynamic culture.

Authors:  Wei Wu; Andrew V Le; Julio J Mendez; Julie Chang; Laura E Niklason; Derek M Steinbacher
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Authors:  Peipei Duan; L F Bonewald
Journal:  Int J Biochem Cell Biol       Date:  2016-05-19       Impact factor: 5.085

4.  Models of ex vivo explant cultures: applications in bone research.

Authors:  Silvia Marino; Katherine Ann Staines; Genevieve Brown; Rachel Anne Howard-Jones; Magdalena Adamczyk
Journal:  Bonekey Rep       Date:  2016-06-29

Review 5.  A Comparison of Osteoblast and Osteoclast In Vitro Co-Culture Models and Their Translation for Preclinical Drug Testing Applications.

Authors:  Alexander Sieberath; Elena Della Bella; Ana Marina Ferreira; Piergiorgio Gentile; David Eglin; Kenny Dalgarno
Journal:  Int J Mol Sci       Date:  2020-01-30       Impact factor: 5.923

Review 6.  Ex vivo Bone Models and Their Potential in Preclinical Evaluation.

Authors:  E E A Cramer; K Ito; S Hofmann
Journal:  Curr Osteoporos Rep       Date:  2021-01-11       Impact factor: 5.096

7.  Effects of cyclic compression on the mechanical properties and calcification process of immature chick bone tissue in culture.

Authors:  Eijiro Maeda; Masashi Nakagaki; Katsuhisa Ichikawa; Kazuaki Nagayama; Takeo Matsumoto
Journal:  Bone Rep       Date:  2017-04-04
  7 in total

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