4.7 Article

Efficient Delivery of Curcumin by Alginate Oligosaccharide Coated Aminated Mesoporous Silica Nanoparticles and In Vitro Anticancer Activity against Colon Cancer Cells

期刊

PHARMACEUTICS
卷 14, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics14061166

关键词

pH-sensitive drug release; silica; brown algae oligosaccharides; curcumin; colon cancer cells

资金

  1. General Research Project of the Education Department of Zhejiang Province [Y202147540]
  2. National Natural Science Foundation of China [21476212]
  3. Natural Science Foundation of Liaoning Province [2019-ZD-0449]
  4. National Undergraduate Training Program for Innovation and Entrepreneurship [202110340002]

向作者/读者索取更多资源

In this study, we successfully synthesized a novel nanoparticle MSN-NH2-AOS for the delivery of the fat-soluble drug curcumin. The optimized preparation process resulted in high drug encapsulation efficiency and tumor cell targeting of the nanoparticles, which showed strong cytotoxicity against tumor cells.
We designed and synthesized aminated mesoporous silica (MSN-NH2), and functionally grafted alginate oligosaccharides (AOS) on its surface to get MSN-NH2-AOS nanoparticles as a delivery vehicle for the fat-soluble model drug curcumin (Cur). Dynamic light scattering, thermogravimetric analysis, and X-ray photoelectron spectroscopy were used to characterize the structure and performance of MSN-NH2-AOS. The nano-MSN-NH2-AOS preparation process was optimized, and the drug loading and encapsulation efficiencies of nano-MSN-NH2-AOS were investigated. The encapsulation efficiency of the MSN-NH2-Cur-AOS nanoparticles was up to 91.24 +/- 1.23%. The pH-sensitive AOS coating made the total release rate of Cur only 28.9 +/- 1.6% under neutral conditions and 67.5 +/- 1% under acidic conditions. According to the results of in vitro anti-tumor studies conducted by MTT and cellular uptake assays, the MSN-NH2-Cur-AOS nanoparticles were more easily absorbed by colon cancer cells than free Cur, achieving a high tumor cell targeting efficiency. Moreover, when the concentration of Cur reached 50 mu g/mL, MSN-NH2-Cur-AOS nanoparticles showed strong cytotoxicity against tumor cells, indicating that MSN-NH2-AOS might be a promising tool as a novel fat-soluble anticancer drug carrier.

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