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Investigating the Potential of Conjugated Selenium Redox Folic Acid as a Treatment for Triple Negative Breast Cancer
Soni Khandelwal1, Mallory Boylan1, Gilbert Kirsch2
1Department of Nutritional Sciences, Texas Tech University, Lubbock, TX 79409, USA.
Abstract:
Previous studies have demonstrated that redox selenium compounds arrest cancer cell viability in vitro through their pro-oxidative activity by generating superoxide (O2•-). Currently, there are no efficacious treatment options for women with Triple Negative Breast Cancer (TNBC). However, the association between the over-expression of the Folate Receptor Alpha (FRA) in TNBC and other cancer cells, has led to the possibility that TNBCs might be treated by targeting the FRA with redox selenium covalent Folic Acid conjugates. The present study reports the synthesis of the redox active vitamer, Selenofolate, generating superoxide. Superoxide (O2•-) catalytic generation by Selenofolate was assessed by an in vitro chemiluminescence (CL) assay and by a Dihydroethidium (DHE) in vivo assay. Cytotoxicity of Selenofolate was assessed against the TNBC cell line MDA-MB-468 and an immortalized, mammary epithelial cell line, HME50-5E. Cytotoxicity of Selenofolate was compared to Folic Acid and sodium selenite, in a time and dose dependent manner. Selenofolate and selenite treatments resulted in greater inhibition of MDA-MB-468 cell proliferation than HME50-5E as evaluated by Trypan Blue exclusion, 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) metabolic assay and Annexin V apoptosis assays. Folate receptor alpha (FRA) protein expression was assessed by Western blotting, with the experimental results showing that redox active Selenofolate and selenite, but not Folic Acid, was cytotoxic to MDA-MB-468 cells in vitro, suggesting a possible clinical option for treating TNBC and other cancers over-expressing FRA.
Insights
Researchers developed Selenofolate, a novel compound that generates superoxide to target cancer cells. This redox-active agent shows promise as a potential treatment for Triple Negative Breast Cancer (TNBC) by targeting Folate Receptor Alpha (FRA).
Area of Science:
- Biochemistry
- Oncology
- Medicinal Chemistry
Background:
- Triple Negative Breast Cancer (TNBC) lacks effective treatments.
- Folate Receptor Alpha (FRA) is over-expressed in TNBC, presenting a therapeutic target.
- Redox selenium compounds exhibit anti-cancer properties via superoxide generation.
Purpose of the Study:
- To synthesize and characterize Selenofolate, a redox-active Folic Acid conjugate.
- To evaluate Selenofolate's ability to generate superoxide.
- To assess Selenofolate's efficacy against TNBC cells and its selectivity compared to normal cells.
Main Methods:
- Synthesis of Selenofolate.
- Assessment of superoxide generation using chemiluminescence (CL) and Dihydroethidium (DHE) assays.
- Cytotoxicity evaluation using Trypan Blue, MTT, and Annexin V assays on MDA-MB-468 (TNBC) and HME50-5E (normal) cell lines.
- Folate Receptor Alpha (FRA) expression analysis via Western blotting.
Main Results:
- Selenofolate effectively generates superoxide.
- Selenofolate demonstrated significant cytotoxicity against MDA-MB-468 cells, with greater efficacy than Folic Acid.
- Both Selenofolate and sodium selenite showed selective toxicity towards TNBC cells compared to normal mammary epithelial cells.
- Results suggest FRA-targeted delivery of redox selenium is effective.
Conclusions:
- Selenofolate is a promising redox-active compound capable of generating superoxide.
- Targeting FRA with Selenofolate offers a potential therapeutic strategy for TNBC.
- Further investigation into Selenofolate as a treatment for FRA-overexpressing cancers is warranted.
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