Folate Receptor Alpha-A Novel Approach to Cancer Therapy
Teresita Gonzalez1, Meri Muminovic1, Olger Nano1
1Memorial Cancer Institute, Pembroke Pines, FL 33028, USA.
Abstract:
Folate receptor α (FR) was discovered many decades ago, along with drugs that target intracellular folate metabolism, such as pemetrexed and methotrexate. Folate is taken up by the cell via this receptor, which also targeted by many cancer agents due to the over-expression of the receptor by cancer cells. FR is a membrane-bound glycosyl-phosphatidylinositol (GPI) anchor glycoprotein encoded by the folate receptor 1 (FOLR1) gene. FR plays a significant role in DNA synthesis, cell proliferation, DNA repair, and intracellular signaling, all of which are essential for tumorigenesis. FR is more prevalent in cancer cells compared to normal tissues, which makes it an excellent target for oncologic therapeutics. FRα is found in many cancer types, including ovarian cancer, non-small-cell lung cancer (NSCLC), and colon cancer. FR is widely used in antibody drug conjugates, small-molecule-drug conjugates, and chimeric antigen-receptor T cells. Current oncolytic therapeutics include mirvetuximab soravtansine, and ongoing clinical trials are underway to investigate chimeric antigen receptor T cells (CAR-T cells) and vaccines. Additionally, FRα has been used in a myriad of other applications, including as a tool in the identification of tumor types, and as a prognostic marker, as a surrogate of chemotherapy resistance. As such, FRα identification has become an essential part of precision medicine.
Insights
Folate receptor alpha (FRα) is overexpressed in cancer cells, making it a key target for new cancer therapies. Its role in tumor growth and its presence across various cancers highlight its importance in precision medicine.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Folate receptor alpha (FRα), a GPI-anchored glycoprotein encoded by the FOLR1 gene, is crucial for DNA synthesis, cell proliferation, and intracellular signaling.
- FRα is significantly overexpressed in various cancer cells, including ovarian cancer, non-small-cell lung cancer (NSCLC), and colon cancer, compared to normal tissues.
Purpose of the Study:
- To review the role of Folate receptor alpha (FRα) as a therapeutic target and biomarker in oncology.
- To highlight the applications of FRα in developing novel cancer treatments and diagnostic tools.
Main Methods:
- Literature review of studies on Folate receptor alpha (FRα) in cancer.
- Analysis of FRα's role in tumorigenesis and its expression patterns in different cancer types.
- Examination of current and emerging therapeutic strategies targeting FRα.
Main Results:
- FRα is a validated target for oncologic therapeutics due to its cancer-specific overexpression.
- FRα is utilized in antibody drug conjugates, small-molecule-drug conjugates, and CAR-T cell therapies.
- FRα serves as a prognostic marker and a predictor of chemotherapy resistance.
Conclusions:
- FRα is a pivotal target in precision medicine for cancer treatment and diagnosis.
- Targeting FRα offers a promising avenue for developing effective oncologic therapeutics.
- Identification of FRα is essential for personalized cancer care strategies.
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