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Biochemical, Ameliorative and Cytotoxic Effects of Newly Synthesized Curcumin Microemulsions: Evidence from In Vitro and In Vivo Studies. | LitMetric

AI Article Synopsis

  • Curcumin has antioxidant and tissue-healing properties, and this study focuses on creating oil-in-water F127 microemulsions to improve its bioavailability, showing high encapsulation efficiency and sustained release.
  • The research utilized Density Functional Theory (DFT) calculations and MTT assays to evaluate the interactions of curcumin with surfactants and its cytotoxic effects on various cell lines, revealing that MCF7 and HepG2 cells are particularly responsive to curcumin microemulsions, especially when combined with cisplatin.
  • In vivo experiments with thioacetamide-intoxicated rats demonstrated that curcumin microemulsions effectively reduce liver enzymes and enhance antioxidant enzyme activity, indicating their potential benefits as hepatoprotect

Article Abstract

Curcumin is known to exhibit antioxidant and tissue-healing properties and has recently attracted the attention of the biomedical community for potential use in advanced therapies. This work reports the formulation and characterization of oil-in-water F127 microemulsions to enhance the bioavailability of curcumin Microemulsions showed a high encapsulation efficiency and prolonged release. To investigate the interactions of curcumin with one unit of the polymeric chain of surfactant F127, ethyl butyrate, and sodium octanoate, as well as the interaction between ethyl butyrate and one unit of the F127 polymer chain, the Density Functional Theory (DFT) calculations at the M06-2X level of theory, were performed in water solution. The MTT assay was used to assess the cytotoxicity of free and encapsulated curcumin on non-malignant and malignant cell lines. Combination effects were calculated according to Chou-Talalay's principles. Results of in vitro studies indicated that MCF7 and HepG2 cells were more sensitive to curcumin microemulsions. Moreover, a synergistic relationship was observed between curcumin microemulsions and cisplatin in all affected fractions of MCF7 and HepG2 cells (CI < 0.9). For in vivo investigation, thioacetamide-intoxicated rats received thioacetamide (100 mg/kg Sc) followed by curcumin microemulsions (30 mg/kg Ip). Thioacetamide-intoxicated rats showed elevated serum liver enzymes, blood urea nitrogen (BUN), and creatinine levels, and a significant reduction in liver superoxide dismutase (SOD) and catalase (CAT) activities ( < 0.05). Curcumin microemulsions reduced liver enzymes and serum creatinine and increased the activity of antioxidant enzymes in thioacetamide-treated rats in comparison to the untreated thioacetamide-intoxicated group. Histopathological investigations confirmed the biochemical findings. Overall, the current results showed the desirable hepatoprotective, nephroprotective, and anti-cancer effects of curcumin microemulsions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8004644PMC
http://dx.doi.org/10.3390/nano11030817DOI Listing

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