Modified frankincense resin stabilized gold nanoparticles for enhanced antioxidant and synergetic activity in in-vitro anticancer studies

For the first time, Frankincense resin (FR) has been carboxymethylated to produce CMFR – AuNPs and the conjugate was utilized for the Doxorubicin drug loading. The carboxymethylation of the carboxylic, phenolic, and hydroxyl functional groups of FR has been developed into carboxymethylated Frankince...

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Veröffentlicht in:International journal of biological macromolecules 2024-10, Vol.278 (Pt 3), p.134935, Article 134935
Hauptverfasser: Seku, Kondaiah, Bhagavanth Reddy, G., Osman, Ahmed I., Hussaini, Syed Sulaiman, Kumar, Nadavala Siva, Al-Abri, Mohammed, Pejjai, Babu, Alreshaidan, Salwa B., Al-Fatesh, Ahmed S., Kadimpati, Kishore Kumar
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Sprache:eng
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Zusammenfassung:For the first time, Frankincense resin (FR) has been carboxymethylated to produce CMFR – AuNPs and the conjugate was utilized for the Doxorubicin drug loading. The carboxymethylation of the carboxylic, phenolic, and hydroxyl functional groups of FR has been developed into carboxymethylated Frankincense resin (CMFR). A novel CMFR-AuNPs was synthesized using the developed CMFR as a stabilizing and reducing agent. The antibacterial, antioxidant, and in-vitro anticancer activities were investigated by using CMFR-AuNPs and CMFR – AuNPs@DOX. CMFR-AuNPs demonstrated antioxidative properties by quenching DPPH radicals effectively. CMFR-AuNPs and DOX@CMFR-AuNPs demonstrated strong antibacterial activity against K. pneumoniae, S. aureus, B. subtilis, and E. coli. The cell viability was tested for CMFR -AuNPs at various concentrations of Dox-loaded CMFR -AuNPs (CMFR-AuNPs + Dox1, CMFR-AuNPs + Dox 2, & CMFR-AuNPs + Dox 3). The highest inhibition was observed on MCF-7 and HeLa cell lines using CMFR-AuNPs + Dox 3, respectively. Various techniques such as UV, FTIR, TGA, XRD, SEM, EDAX and TEM were used to characterize the designed CMFR and CMFR-AuNPs. After carboxy methylation, the amorphous nature of FR changed to crystallinity, as reflected in the XRD spectra. The XRD spectrum of the CMFR- AuNPs showed FCC structure due to the involvement of hydroxyl and carboxylic functional groups of CMFR strongly bound with the AuNPs. TGA results revealed that the CMFR is thermally more stable than FR. TEM revealed that CMFR - AuNPs were well dispersed, spherical, and hexagonal with an average diameter of 7 to 10 nm, while the size of doxorubicin loaded (DOX@CMFR-AuNPs) AuNPs was 11 to 13 nm. Green CMFR-AuNPs have the potential to enhance the drug loading and anticancer efficacy of drugs. [Display omitted] •Modifying Frankincense Resin into carboxymethylated Frankincense Resin (CMFR).•TEM revealed that synthesized CMFR - AuNPs were hexagonal and 7–10 nm in size.•DOX@CMFR-AuNPs and CMFR-AuNPs showed excellent antimicrobial activities.•CMFR-AuNPs+Dox3 inhibited MCF-7 and HeLa cell proliferation.•This study can improve the anticancer drug efficacy and reduce adverse effects.•This study could lead to the development of targeted drug delivery systems.
ISSN:0141-8130
1879-0003
1879-0003
DOI:10.1016/j.ijbiomac.2024.134935