curcumin coated gold nanoparticles: synthesis, characterization, cytotoxicity, antioxidant activity and its comparison with citrate coated gold nanoparticles

Authors

elnaz shaabani department of medical nanotechnology, school of advanced technologies in medicine (satim), tehran university of medical sciences (tums), tehran, iran

seyed mohammad amini department of medical nanotechnology, school of advanced technologies in medicine (satim), tehran university of medical sciences (tums), tehran, iran

sharmin kharrazi department of medical nanotechnology, school of advanced technologies in medicine (satim), tehran university of medical sciences (tums), tehran, iran

roksana tajerian department of tissue engineering and applied cell sciences, school of advanced technologies in medicine (satim), tehran university of medical sciences (tums), tehran, iran

abstract

objective(s): biological applications of gold nanoparticles have limitations because of the toxic chemicals used in their synthesis. curcumin can be used as reducing as well as capping agent in synthesis of gnps to eliminate the cytotoxicity. conjugation of curcumin to gold also helps in increasing its solubility and bioavailability. materials and methods: here we report synthesis of gold nanoparticles coated with citrate and curcumin and of two different sizes via chemical routes. uv-vis absorbance spectroscopy, dynamic light scattering and transmission electron microscopy were applied to study the average particle size, size stability of the samples and zeta potential. fourier transform infrared, raman spectroscopy and fluorescence spectroscopy were applied for detection of curcumin on the surface of gnps. the antioxidant activity was evaluated using dpph assay and cytotoxicity was evaluated by mtt assay.results: particles were synthesized of 6 and 16 nm size. the average particle size was found to be 21.7 ± 5.7 by tem. the zeta potential on the surface of cur-gnps was negative and larger than 25 mv which is a sign of their high stability. the stability of these particles (with different coatings but with similar sizes) at different time intervals (up to 3 months) and also in different media like cell culture medium, different buffers, glucose and at different ph conditions have been investigated thoroughly. appearance of functional groups assigned to curcumin in ftir and sers spectra are sign of presence of curcumin in the sample. the quenching of the fluorescence in the presence of gnps reveals the clear indication of the capping and binding of curcumin with gnps. cur-gnp1 (16 nm) were found to exhibit highest antioxidant activity than other gold nanoparticles. cytotoxicity evaluation using mtt assay on l929 cell line proved curcumin coated gold nanoparticles were non-toxic up to 40 ppm.conclusion: the results revealed that larger curcumin coated gold nanoparticles were stable and also non-toxic and were found suitable for further in-vitro and in-vivo studies.

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Journal title:
nanomedicine journal

جلد ۴، شماره ۲، صفحات ۱۱۵-۱۲۵

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