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1.
ACS Biomater Sci Eng ; 6(3): 1311-1320, 2020 03 09.
Article in English | MEDLINE | ID: mdl-33455403

ABSTRACT

Stem cells have attracted significant attention due to their regenerative capabilities and their potential for the treatment of disease. Consequently, significant research effort has focused on the development of protein- and polypeptide-based materials as stem cell substrates and scaffolds. Here, we explore the ability of reflectin, a cephalopod structural protein, to support the growth of murine neural stem/progenitor cells (mNSPCs). We observe that the binding, growth, and differentiation of mNSPCs on reflectin films is comparable to that on more established protein-based materials. Moreover, we find that heparin selectively inhibits the adhesion of mNSPCs on reflectin, affording spatial control of cell growth and leading to a >30-fold change in cell density on patterned substrates. The described findings highlight the potential utility of reflectin as a stem cell culture material.


Subject(s)
Cephalopoda , Neural Stem Cells , Animals , Cell Differentiation , Cell Proliferation , Mice , Proteins
2.
Adv Mater ; 28(38): 8405-8412, 2016 Oct.
Article in English | MEDLINE | ID: mdl-27454809

ABSTRACT

Films from the cephalopod protein reflectin demonstrate multifaceted functionality as infrared camouflage coatings, proton transport media, and substrates for growth of neural stem cells. A detailed study of the in vitro formation, structural characteristics, and stimulus response of such films is presented. The reported observations hold implications for the design and development of advanced cephalopod-inspired functional materials.


Subject(s)
Cephalopoda , Animals , Neural Stem Cells , Proteins , Protons
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