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Merck

Biofunctionalized quantum dots for live monitoring of stem cells: applications in regenerative medicine.

Regenerative medicine (2012-05-19)
Achala de Mel, Jung-Taek Oh, Bala Ramesh, Alexander M Seifalian
RESUMEN

This study aimed to live monitor the degree of endothelial progenitor cell (EPC) integration onto tissue-engineering scaffolds by conjugating relevant antibodies to quantum dots (QDs). Biocompatible mercaptosuccinic acid-coated QDs were functionalized with two different antibodies to EPC (CD133 with QDs of 640 nm wavelength [λ] and later-stage mature EPCs; and von Willebrand factor with QDs of λ595 and λ555 nm) using conventional carbomide and N-hydroxysuccinimide chemistry. Biofunctionalization was characterized with Fourier-transform infrared spectroscopy. Cell viability assays and gross morphology observations confirmed cytocompatibility and normal patterns of celluar growth. The antigens corresponding to each state of cell maturation were determined using a single excitation at λ488 nm. The optimal concentrations of antibody-QD conjugates were biocompatible, hemocompatible and determined the state of EPC transformation to endothelial cells. Antibody-functionalized QDs suggest new applications in tissue engineering of polymer-based implants where cell integration can potentially be monitored without requiring the sacrifice of implants.

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Sigma-Aldrich
Mercaptosuccinic acid, 97%
Sigma-Aldrich
Mercaptosuccinic acid, ReagentPlus®, ≥99.0% (HPLC)