Key result
Delivery of the squalenoyl-doxorubicin derivative by solid lipid nanoparticles increased its cytotoxic and apoptotic activity compared to free doxorubicin, particularly in doxorubicin-resistant ovarian cancer cells.
Why the study?
Does delivery of a squalenoyl-doxorubicin derivative via solid lipid nanoparticles increase cytotoxic and apoptotic activity in human ovarian cancer cells compared to free doxorubicin?
Does delivery of a squalenoyl-doxorubicin derivative via solid lipid nanoparticles increase cytotoxic and apoptotic activity in human ovarian cancer cells compared to free doxorubicin?
SLN-mediated delivery of a squalenoyl-doxorubicin derivative enhances cytotoxicity and apoptosis in doxorubicin-resistant ovarian cancer cells in vitro.
SLN doxorubicin prodrug entrapment is feasible in vitro; leaves open clinical translation and therapeutic benefit.
Solid lipid nanoparticles (SLNs) comprise a versatile drug delivery system that has been developed for the treatment of a variety of diseases. The present study will investigate the feasibility of entrapping an active doxorubicin prodrug (a squalenoyl-derivative) in SLNs. The doxorubicin derivative-loaded SLNs are spherically shaped, have a mean diameter of 300-400 nm and show 85% w/w drug entrapment efficiency. The effects on cell growth of loaded SLNs, free doxorubicin and the prodrug have been examined using cytotoxicity and colony-forming assays in both human ovarian cancer line A2780 wild-type and doxorubicin-resistant cells. Further assessments as to the treatment's ability to induce cell death by apoptosis have been carried out by analyzing annexin-V staining and the activation of caspase-3. The in vitro data demonstrate that the delivery of the squalenoyl-doxorubicin derivative by SLNs increases its cytotoxic activity, as well as its apoptosis effect. This effect was particularly evident in doxorubicin-resistant cells.
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Stella et al. (2018) studied Ovarian cancer (in vitro model). SQ-Dox-loaded solid lipid nanoparticles (SLNs) vs. Free doxorubicin, SQ-Dox NAs, and empty SLNs was evaluated on Inhibition of cell proliferation and induction of apoptosis. Delivery of the squalenoyl-doxorubicin derivative by solid lipid nanoparticles increased its cytotoxic and apoptotic activity compared to free doxorubicin, particularly in doxorubicin-resistant ovarian cancer cells.
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