4.7 Article

Novel curcumin-loaded human serum albumin nanoparticles surface functionalized with folate: characterization and in vitro/vivo evaluation

Journal

DRUG DESIGN DEVELOPMENT AND THERAPY
Volume 10, Issue -, Pages 2643-2649

Publisher

DOVE MEDICAL PRESS LTD
DOI: 10.2147/DDDT.S112039

Keywords

curcumin; folate; HSA nanoparticles; pharmacokinetic parameters

Funding

  1. National Nature Science Foundation of China [81573008]
  2. Fund of Pudong Health Bureau of Shanghai [PWRd2014-01]
  3. Key Disciplines Group Construction Project of Pudong Health Bureau of Shanghai [PWZxq2014-04]

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Folate-conjugated, curcumin-loaded human serum albumin nanoparticles (F-CM-HSANPs) were obtained by the chemical conjugation of folate to the surface of the curcumin (CM)-loaded human serum albumin nanoparticles (NPs). The NPs were characterized by various parameters, including size, polydispersity, zeta potential, morphology, encapsulation efficiency, and drug release profile. The mean particle size of F-CM-HSANPs was 165.6 +/- 15.7 nm (polydispersity index <0.28), and the average encapsulation efficiency percentage and drug loading percentage of the F-CM-HSANPs were 88.7%+/- 4.8% and 7.9%+/- 0.4%, respectively. Applied in vitro, the CM NPs, after conjugation with folate, maintained sustained release, and a faster release of CM was more visibly observed than the unconjugated NPs. F-CM-HSANPs can prolong the retention time of CM significantly in vivo. However, after intravenous injection of F-CM-HSANPs, the pharmacokinetic parameters of CM were not significantly different from those of CM-loaded human serum albumin NPs. The improved antitumor activity of F-CM-HSANPs may be attributable to the protection of drug from enzymatic deactivation followed by the selective localization at the desired site. These results suggest that the intravenous injection of F-CM-HSANPs is likely to have an advantage in the current clinical CM formulation, because it does not require the use of a solubilization agent and it is better able to target the tumor tissue.

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