Poly (9-(2-diallylaminoethyl)adenine HCl-co-sulfur dioxide) deposited on silica nanoparticles constructs hierarchically ordered nanocapsules: Curcumin conjugated nanocapsules as a novel strategy to amplify guanine selectivity among nucleobases

dc.contributor.authorMouslmani, Mai
dc.contributor.authorBouhadir, Kamal Hani
dc.contributor.authorPatra, Digambara
dc.contributor.departmentDepartment of Chemistry
dc.contributor.facultyFaculty of Arts and Sciences (FAS)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:21:45Z
dc.date.available2025-01-24T11:21:45Z
dc.date.issued2015
dc.description.abstractPoly (9-(2-diallylaminoethyl)adenine HCl-co-sulfur dioxide) (Poly A) deposited on silica nanoparticles self-assembles to form hierarchically ordered nanocapsules. These nanocapsules can be conjugated with curcumin. The curcumin-conjugated nanocapsules are found to be spherical in size and their size ranges between 200 and 600. nm. We found that curcumin conjugated with silica nanoparticles marginally shows a selectivity (~20%) for guanine over adenine, cytosine, thymine and uracil, but this selectivity is extraordinarily amplified to more than 500% in curcumin-conjugated nanocapsules prepared from the above procedure. FT-IR spectra along with lifetime measurements suggest that specific interaction between adenine moieties of Poly A nanocapsules and thymine/uracil does not affect the fluorescence of poly A nanocapsules. Thus, the sensitivity and selectivity for guanine estimation is due to hydrophobic interactions, which are assisted by the low water solubility of guanine as compared to the other nucleobases. The present method illustrates a wider linear dynamic range in the higher concentration range as compared to the reported methods. Finally, the degradation study proves that stability of curcumin is improved dramatically in such nanocapsules demonstrating that nanotechnology could be a viable method to improve selectivity of specific analyte and robustness of probe molecule during fluorescence based bio-sensing. © 2015.
dc.identifier.doihttps://doi.org/10.1016/j.bios.2014.12.036
dc.identifier.eid2-s2.0-84920611343
dc.identifier.pmid25569875
dc.identifier.urihttp://hdl.handle.net/10938/25301
dc.language.isoen
dc.publisherElsevier Ltd
dc.relation.ispartofBiosensors and Bioelectronics
dc.sourceScopus
dc.subjectCurcumin
dc.subjectGuanine
dc.subjectNucleobases
dc.subjectPoly a
dc.subjectSelectivity
dc.subjectSilica nps
dc.subjectBiosensing techniques
dc.subjectCytosine
dc.subjectHydrophobic and hydrophilic interactions
dc.subjectNanocapsules
dc.subjectNanoparticles
dc.subjectSilicon dioxide
dc.subjectSpectroscopy, fourier transform infrared
dc.subjectThymine
dc.subjectUracil
dc.subjectCatalyst selectivity
dc.subjectFluorescence
dc.subjectHydrophobicity
dc.subjectPositive ions
dc.subjectSilica
dc.subjectSulfur
dc.subjectSulfur dioxide
dc.subjectAdenine
dc.subjectCopolymer
dc.subjectNanocapsule
dc.subjectNucleic acid base
dc.subjectPoly[9 (2 diallylaminoethyl)adenine hydrochloric acid co sulfur dioxide]
dc.subjectSilica nanoparticle
dc.subjectUnclassified drug
dc.subjectNanoparticle
dc.subjectPolyadenylic acid
dc.subjectHydrophobic interactions
dc.subjectLifetime measurements
dc.subjectLinear dynamic ranges
dc.subjectSilica nanoparticles
dc.subjectArticle
dc.subjectBiosensor
dc.subjectConjugation
dc.subjectControlled study
dc.subjectInfrared spectroscopy
dc.subjectParticle size
dc.subjectChemical phenomena
dc.subjectChemistry
dc.subjectGenetic procedures
dc.subjectIsolation and purification
dc.titlePoly (9-(2-diallylaminoethyl)adenine HCl-co-sulfur dioxide) deposited on silica nanoparticles constructs hierarchically ordered nanocapsules: Curcumin conjugated nanocapsules as a novel strategy to amplify guanine selectivity among nucleobases
dc.typeArticle

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