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In vitro evaluation of MgSr and MgCaSr alloys via direct culture with bone marrow derived mesenchymal stem cells
Author(s) -
Wensen Jiang,
Aaron F. Cipriano,
Qiaomu Tian,
Chaoxing Zhang,
Marisa Lopez,
Amy Sallee,
Alan Lin,
Mayra Celene Cortez Alcaraz,
Yuanhao Wu,
Yufeng Zheng,
Huinan Liu
Publication year - 2018
Publication title -
acta biomaterialia
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.944
H-Index - 190
eISSN - 1878-7568
pISSN - 1742-7061
DOI - 10.1016/j.actbio.2018.03.049
Subject(s) - mesenchymal stem cell , materials science , biocompatibility , in vitro , ternary operation , magnesium , in vivo , bone marrow , biomedical engineering , metallurgy , nuclear chemistry , medicine , chemistry , microbiology and biotechnology , biochemistry , biology , pathology , computer science , programming language
Magnesium (Mg) and its alloys have been widely investigated as the most promising biodegradable metals to replace conventional non-degradable metals for temporary medical implant applications. New Mg alloys have been developed for medical applications in recent years; and the concept of alloying Mg with less-toxic elements have aroused tremendous interests due to the promise to address the problems associated with rapid degradation of Mg without compromising its cytocompatibility and biocompatibility. Of particular interests for orthopedic/spinal implant applications are the additions of calcium (Ca) and strontium (Sr) into Mg matrix because of their beneficial properties for bone regeneration. In this study, degradation and cytocompatibility of four binary MgSr alloys (Mg-xSr, x = 0.2, 0.5, 1 and 2 wt%) and four ternary MgCaSr alloys (Mg-1Ca-xSr, x = 0.2, 0.5, 1 and 2 wt%) were investigated and compared via direct culture with bone marrow-derived mesenchymal stem cells (BMSCs). The influence of the alloy composition on the degradation rates were studied and compared. Moreover, the cellular responses to the binary MgSr alloys and the ternary MgCaSr alloys were comparatively evaluated; and the critical factors influencing BMSC behaviors were discussed. This study screened the degradability and in vitro cytocompatibility of the binary MgSr alloys and the ternary MgCaSr alloys. Mg-1Sr, Mg-1Ca-0.5Sr and Mg-1Ca-1Sr alloys are recommended for further in vivo studies toward clinical translation due to their best overall performances in terms of degradation and cytocompatibility among all the alloys studied in the present work.

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