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  4. Designer, Programmable DNA-peptide hybrid materials with emergent properties to probe and modulate biological systems
 
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Designer, Programmable DNA-peptide hybrid materials with emergent properties to probe and modulate biological systems

Source
Chembiochem
ISSN
14394227
Date Issued
2023-03-01
Author(s)
Menon, Dhruv
Singh, Ramesh  
Joshi, Kashti B.
Gupta, Sharad  
Bhatia, Dhiraj  
DOI
10.1002/cbic.202200580
Volume
24
Issue
5
Abstract
The chemistry of DNA endows it with certain functional properties that facilitate the generation of self-assembled nanostructures, offering precise control over their geometry and morphology, that can be exploited for advanced biological applications. Despite the structural promise of these materials, their applications are limited owing to lack of functional capability to interact favourably with biological systems, which has been achieved by functional proteins or peptides. Herein, we outline a strategy for functionalizing DNA structures with short-peptides, leading to the formation of DNA-peptide hybrid materials. This proposition offers the opportunity to leverage the unique advantages of each of these bio-molecules, that have far reaching emergent properties in terms of better cellular interactions and uptake, better stability in biological media, an acceptable and programmable immune response and high bioactive molecule loading capacities. We discuss the synthetic strategies for the formation of these materials, namely, solid-phase functionalization and solution-coupling functionalization. We then proceed to highlight selected biological applications of these materials in the domains of cell instruction & molecular recognition, gene delivery, drug delivery and bone & tissue regeneration. We conclude with discussions shedding light on the challenges that these materials pose and offer our insights on future directions of peptide-DNA research for targeted biomedical applications.
Unpaywall
URI
https://d8.irins.org/handle/IITG2025/26876
Subjects
bone and tissue regeneration | DNA nanotechnology | gene and drug delivery | molecular recognition | synthetic peptides.
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