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  4. Peptide functionalized DNA hydrogel enhances neuroblastoma cell growth and differentiation
 
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Peptide functionalized DNA hydrogel enhances neuroblastoma cell growth and differentiation

Source
Nanoscale
ISSN
20403364
Date Issued
2022-05-18
Author(s)
Hivare, Pravin
Gangrade, Ankit
Swarup, Gitanjali
Bhavsar, Krishna
Singh, Ankur
Gupta, Ratnika
Thareja, Prachi  
Gupta, Sharad  
Bhatia, Dhiraj  
DOI
10.1039/d1nr07187d
Volume
14
Issue
24
Abstract
Designing programmable biomaterials that could act as extracellular matrices and permit functionalization is a current need for tissue engineering advancement. DNA based hydrogels are gaining significant attention owing to their self-assembling properties, biocompatibility, chemical robustness and low batch to batch variability. The real potential of DNA hydrogels in the biomedical domain remains to be explored. In this work, a DNA hydrogel was coated on a glass surface and coupled to a synthetic IKVAV peptide by a chemical crosslinker. We observe enhanced neuronal differentiation, prolonged neurite length, dynamic movement of microtubules and cytoskeleton, and altered endocytic mechanisms in neuroblastoma-based stem cells for the peptide modified DNA hydrogel compared to the unmodified DNA hydrogel and controls. We anticipate that a peptide-modified DNA hydrogel could emerge as a promising scaffold coating material to develop nerve tissue conduits in the future for application in neuroscience and neuroregeneration.
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URI
http://repository.iitgn.ac.in/handle/IITG2025/26076
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