Antifolates: the next generation.
Gini F. Fleming, Richard L. Schilsky
Abstract
Gini F. Fleming, Richard L. Schilsky
Abstract
A number of promising new antifolates have been entered in clinical trials in recent years. These agents have been rationally designed based on the current understanding of folate transport and metabolism and of the mechanisms by which cells become resistant to methotrexate. Methotrexate-resistant cell lines are generally sensitive to one or more of the newer antifolates, which differ from methotrexate by being either more lipid soluble, more extensively polyglutamated, or by inhibiting folate-requiring enzymes other than dihydrofolate reductase. Five of the agents furthest along in clinical testing, trimetrexate, piritrexim, edatrexate, lometrexol, and D1694, are discussed. These drugs offer exciting opportunities to expand the role of antifolates in cancer chemotherapy, as well as in antimicrobial and antirheumatic therapy.
OpenAlex reports 33 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
A number of promising new antifolates have been entered in clinical trials in recent years. These agents have been rationally designed based on the current understanding of folate transport and metabolism and of the mechanisms by which cells become resistant to methotrexate. Methotrexate-resistant cell lines are generally sensitive to one or more of the newer antifolates, which differ from methotrexate by being either more lipid soluble, more extensively polyglutamated, or by inhibiting folate-requiring enzymes other than dihydrofolate reductase. Five of the agents furthest along in clinical testing, trimetrexate, piritrexim, edatrexate, lometrexol, and D1694, are discussed. These drugs offer exciting opportunities to expand the role of antifolates in cancer chemotherapy, as well as in antimicrobial and antirheumatic therapy.
Key concepts: Antifolate, Dihydrofolate reductase, Methotrexate, Medicine, Antimetabolite, Chemotherapy, Folic Acid Antagonists, Pharmacology