Abstract
Bioactive ceramics have gained increasing interest in biomedical applications. Strontium (Sr)-based ceramics show unique bioactivity in stimulating cell proliferation and migration and promoting angiogenesis. Incorporation of bioactive ceramics into nanofibers represents a facile approach to alter the material properties of electrospun nanofiber membranes. Herein, we prepared SrO-incorporated nanofiber membranes by electrospinning and investigated the effects of SrO particles on the physicochemical properties and cytocompatibility of these membranes. Our results indicate that simple one-stream electrospinning could smoothly introduce SrO particles into poly(L-lactic acid) (PLA)/gelatin nanofibers. SrO-incorporated membranes showed significantly improved wettability but became brittle compared with PLA/gelatin nanofiber membranes. Cells differentially responded to SrO-incorporated membranes: endothelial cells showed greater cell area and coverage on SrO-incorporated membranes; in contrast, fibroblasts were inhibited on these membranes. These findings suggest that SrO-incorporated membranes might find opportunities in specific biomedical applications in which pro-angiogenesis and antiadhesion are simultaneously demanded.
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Acknowledgements
The authors acknowledge financial support from the Science and Technology Commission of Shanghai Municipality (19440741300, 20DZ2254900).
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Binbin Sun and Zhe Chen designed the study and wrote the manuscript. Zhe Chen, Jitao Fan, Yangfan Ding, and Jinglei Wu performed the experiments. Binbin Sun, Ahmed I. Abd-Elhamid, and Jinglei Wu analyzed and interpreted the data. All authors discussed the results and approved the final version of this article.
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Chen, Z., Fan, J., Ding, Y. et al. Electrospun SrO-Incorporated Nanofiber Membranes for Biomedical Applications. Fibers Polym 24, 3775–3786 (2023). https://doi.org/10.1007/s12221-023-00361-y
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DOI: https://doi.org/10.1007/s12221-023-00361-y