4.6 Article

Xanthan gum stabilized PEGylated gold nanoparticles for improved delivery of curcumin in cancer

期刊

NANOTECHNOLOGY
卷 27, 期 32, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0957-4484/27/32/325101

关键词

gold nanoparticles; xanthan gum; PEGylation; curcumin; cancer

资金

  1. Research Initiation Grant (RIG) from BITS Pilani
  2. Department of Biotechnology (Bio-CARe scheme) [BT/Bio-CARe/07/10003/2013-2014]
  3. Department of Science & Technology, Government of India [SB/FT/CS-127/2013]

向作者/读者索取更多资源

In recent years, gold nanoparticles (AuNPs) have received immense interest in various biomedical applications including drug delivery, photothermal ablation of cancer and imaging agent for cancer diagnosis. However, the synthesis of AuNPs poses challenges due to the poor reproducibility and stability of the colloidal system. In the present work, we developed a one step, facile procedure for the synthesis of AuNPs from hydrogen tetrachloroaurate (III) hydrate (HAuCl4. 3H(2)O) by using ascorbic acid and xanthan gum (XG) as reducing agent and stabilizer, respectively. The effect of concentrations of HAuCl4, 3H(2)O, ascorbic acid and methoxy polyethylene glycol-thiol (mPEG800-SH) were optimized and it was observed that stable AuNPs were formed at concentrations of 0.25 mM, 50 mu M and 1 mM for HAuCl4.3H2O, ascorbic acid, and mPEG800-SH, respectively. The XG stabilized, deep red wine colored AuNPs (XG-AuNPs) were obtained by drop-wise addition of aqueous solution of ascorbic acid (50 mM) and XG (1.5 mg ml(-1)). Synthesized XG-AuNPs showed lambda max at 540 nm and a mean hydrodynamic diameter of 80 +/- 3 nm. PEGylation was performed with mPEG800-SH to obtain PEGylated XG-AuNPs (PX-AuNPs) and confirmed by Ellman's assay. No significant shift observed in lambda max and hydrodynamic diameter between XG-AuNPs and PX-AuNPs. Colloidal stability of PX-AuNPs was studied in normal saline, buffers within a pH range of 1.2-7.4, DMEM complete medium and in normal storage condition at 4 degrees C. Further, water soluble curcumin was prepared using PVP-K30 as solid dispersion and loaded on to PX-AuNPs (CPX-AuNPs), and evaluated for cellular uptake and cytotoxicity in Murine melanoma (B16F10) cells. Time and concentration dependent studies using CPX-AuNPs showed efficient uptake and decreased cell viability compared to free curcumin.

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