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amivantamab + leucovorin + fluorouracil + oxaliplatin

Development stage
Preclinical
Lead developer
Janssen Biotech
Modality
Monoclonal Antibodies → Antibody-Based Therapeutics, Small Molecules
Administration
Intravenous
01

Overview

This drug is a combination regimen consisting of **amivantamab**, **leucovorin** (also known as folinic acid), **fluorouracil**, and **oxaliplatin**. - **Amivantamab** is a bispecific monoclonal antibody targeting both **epidermal growth factor receptor (EGFR)** and **mesenchymal-epithelial transition (MET) receptor**. By binding to the extracellular domains of these receptors, amivantamab inhibits ligand binding, enhances receptor degradation, and facilitates immune-mediated cytotoxicity through mechanisms such as antibody-dependent cellular cytotoxicity and trogocytosis[3][5]. - **Leucovorin** is a reduced form of folic acid that enhances the binding of fluorouracil to the enzyme thymidylate synthase, thereby potentiating its antineoplastic effects[2][6]. - **Fluorouracil** (5-FU) is a pyrimidine analog and antimetabolite that inhibits thymidylate synthase, interfering with DNA and RNA synthesis and function[2][4][6]. - **Oxaliplatin** is a platinum-based chemotherapeutic that forms DNA adducts, damaging DNA and leading to apoptosis of cancer cells[2][4][6]. This combination is not a standard or widely referenced regimen in current clinical practice but is comprised of distinct, approved agents in oncology. **FOLFOX** (leucovorin + fluorouracil + oxaliplatin) is a standard regimen for colorectal and other gastrointestinal cancers, and amivantamab is approved for NSCLC in combination with platinum-based chemotherapy but not typically with FOLFOX components[1][2][3][4][5][6]. The mechanisms allow for targeting both signal transduction pathways (EGFR, MET) and cytotoxic activity against rapidly dividing cells.

Other names
folfox + amivantamab
02

Targets

EGFR T790M (Epidermal growth factor receptor T790M mutant)MET (Mesenchymal-epithelial transition factor receptor)TS (Thymidylate synthase)

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