Overview of Folidan
Quick Facts
| Property | Description |
|---|---|
| Active ingredient | Leucovorin Calcium (Calcium Folinate) |
| Form | Tablet and Injection (Solution/Powder for Injection) |
| Pharmacological class | Antidote, Chemoprotective agent, Folate Analog |
| Common purpose | To minimize the toxicity of certain drugs (Rescue Agent) |
| Origin | Synthetic Folate derivative |
What is Leucovorin Calcium and What Type of Medicine Is It?
Folidan is a prescription-only medicine whose active component is Leucovorin Calcium, scientifically termed Calcium Folinate. It is classified as a Folate Analog. The compound belongs to the broader pharmacological class of Antidotes and Chemoprotective agents, underscoring its role in protecting the body against the toxic effects of other powerful medications.
Its identity as a B9 metabolism modulating agent reflects its function to provide an essential chemical component necessary for cellular processes. The mechanism is clinically recognized for its ability to effectively mitigate harmful side effects associated with specific chemotherapy protocols.
Composition, Origin, and Available Forms
The medication is a synthetic single-ingredient product derived from folinic acid, a form of Vitamin B9. Commercially available Leucovorin is a racemic mixture of diastereoisomers, meaning it contains both the biologically active and inactive forms of the compound.
Folidan is available for oral administration as a Tablet and for parenteral administration via the intravenous or intramuscular routes as an Injection solution or powder for injection. This active ingredient is structurally engineered to bypass the enzymatic steps required for natural folate, making it rapidly available for use by the body's cells.
Folidan’s General Purpose as a Rescue Agent
The general purpose of Folidan is to diminish the toxicity associated with folic acid antagonists, acting as a highly specific Methotrexate antidote. This function is commonly known as a rescue agent because it provides Tetrahydrofolate replacement, ensuring that healthy, rapidly dividing tissues—like those in the bone marrow and gut—have the necessary chemical building blocks to sustain normal function. This supportive mechanism allows the primary therapy to maintain its effectiveness while simultaneously protecting the patient’s non-malignant tissues.

