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Cellulose-based scaffolds for fluorescence lifetime imaging-assisted tissue engineering.

Acta Biomater. 2018-10; 
O'DonnellNeil,OkkelmanIrina A,TimashevPeter,GromovykhTatyana I,PapkovskyDmitri B,DmitrievRusl
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Gene Synthesis … 1) was used. The fragment contained introduced flanking BamHI, KpnI, and SmaI restriction digestion sites, commercially synthesized by GenScript (Piscataway, NJ, USA) and supplied in the pUC-57 plasmid. The fragment was … Get A Quote

摘要

Quantitative measurement of pH and metabolite gradients by microscopy is one of the challenges in the production of scaffold-grown organoids and multicellular aggregates. Herein, we used the cellulose-binding domain (CBD) of the Cellulomonas fimi CenA protein for designing biosensor scaffolds that allow measurement of pH and Ca gradients by fluorescence intensity and lifetime imaging (FLIM) detection modes. By fusing CBD with pH-sensitive enhanced cyan fluorescent protein (CBD-ECFP), we achieved efficient labeling of cellulose-based scaffolds based on nanofibrillar, bacterial cellulose, and decellularized plant materials. CBD-ECFP bound to the cellulose matrices demonstrated pH sensitivity comparable to... More

关键词

Biomaterials,Biosensor,FLIM,Live cell imaging,Organoid,Scaf