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Self-Assembly of Di-Guanine Peptide Nucleic Acid Amphiphiles into Fractal Patterns

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dc.contributor.author Abraham, Jancy N. en_US
dc.contributor.author PAWAR, PRABHAKAR en_US
dc.contributor.author Kootteri, Dilna K. en_US
dc.date.accessioned 2020-03-13T05:09:40Z
dc.date.available 2020-03-13T05:09:40Z
dc.date.issued 2019-12 en_US
dc.identifier.citation Chemistryselect, 4(46), 13525-13532. en_US
dc.identifier.issn 2365-6549 en_US
dc.identifier.uri http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/4486
dc.identifier.uri https://doi.org/10.1002/slct.201902677 en_US
dc.description.abstract Peptide nucleic acids (PNAs) amphiphiles have been reported to assemble into different nanostructures; however, there is immense untapped potential to control their supramolecular assemblies by altering their lipid chain. Here, we functionalized di‐guanine PNA with various hydrophobic appendages, namely dodecyl, p‐dodecylbenzoyl and pentadecyl phenol groups, to investigate the effect of aromatic linkers, long alkyl and alkoxyl substituents on hierarchical self‐assembly of di‐guanine PNA. Systematic electron microscopy and atomic force microscopy studies revealed that while all three derivatives of di‐guanine‐PNA formed nanospheres, only nanospheres of dodecylamide and pentadecyl phenol derivatives matured into nanorods, these later formed higher order fractal assemblies. Furthermore, we observed that inclusion of a positively charged lysine at the C‐terminus prevented fractal assembly, possibly due to electrostatic repulsion between the head groups. Thus, the findings of the present work might guide rational design of PNA amphiphiles to obtain specific self‐assembled morphology. en_US
dc.language.iso en en_US
dc.publisher Wiley-VCH en_US
dc.subject Fractal pattern en_US
dc.subject Guanine en_US
dc.subject Pentadecylphenol en_US
dc.subject Peptide nucleic acid en_US
dc.subject Self-assembly en_US
dc.subject 2019 en_US
dc.subject 2020-MAR-WEEK2 en_US
dc.title Self-Assembly of Di-Guanine Peptide Nucleic Acid Amphiphiles into Fractal Patterns en_US
dc.type Article en_US
dc.contributor.department Dept. of Chemistry en_US
dc.identifier.sourcetitle Chemistryselect en_US
dc.publication.originofpublisher Foreign en_US


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