MESOPOROUS SILICA NANOPARTICLES FOR THE SELECTIVE DELIVERY OF DOXORUBICIN TO FOLATE RECEPTOR- EXPRESSING CANCER CELLS
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Università della Calabria
Abstract
Breast and cervical cancers significantly impact women's health globally, with breast
cancer accounting for approximately 2.3 million new cases annually. This highlights the
urgent need for targeted therapeutic strategies that effectively eliminate tumor cells while
preserving normal tissues. In this study, we developed a mesoporous silica-based
nanodevice, FOL-MSN-DOXO, designed for the localized delivery of the
chemotherapeutic agent doxorubicin (DOXO). This nanodevice utilizes the acidic tumor
microenvironment for drug release via an acid-labile bond and incorporates folic acid
(FOL) to enhance uptake by folate receptor-expressing cancer cells (FR+).
The efficacy of FOL-MSN-DOXO was evaluated through various in vitro assays,
including fluorescence-activated cell sorting (FACS), growth assays, and ROS
measurements, as well as immunostaining of dorsal root ganglia (DRG) cells from
neonatal rats. Our results demonstrate that FOL-MSN-DOXO effectively induces
apoptosis in FR+ cancer cells (e.g., HeLa and T-47D), while exhibiting minimal toxicity
towards FR3 normal cells (3T3-L1 and BJhTERT). Conversely, free DOXO exhibited
significant toxicity across all tested cell lines. Notably, FOL-MSN-DOXO reduced
neuronal toxicity compared to free DOXO, underscoring its neuroprotective potential.
In summary, FOL-MSN-DOXO offers a promising targeted drug delivery system that
selectively induces cytotoxicity in FR+ cancer cells while sparing normal tissues. This
approach mitigates the neurotoxic effects associated with doxorubicin, highlighting the
efficacy and safety of folic acid-functionalized mesoporous silica nanoparticles in cancer
treatment.
Description
University of Calabria
Department of Pharmacy and Health
and Nutrition Sciences (DFSSN)
Research Doctorate in Translational Medicine
CYCLE XXXVII