Formaldehyde
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Clinical Pharmacology
Formidron has an antiseptic, deodorizing effect.
Indications
Formidron is prescribed as a remedy for sweating feet, for treating shoes, for treating skin with increased perspiration.
Composition
100 g of the solution for external use contains:
active substance: formaldehyde 10 g
Formaldehyde is marketed under different brands and generic names, and comes in different dosage forms:
Brand name | Manufacturer | Country | Dosage form |
---|---|---|---|
Formidron | Yaroslavl Pharmaceutical Factory | Russia | vials |
Formagel | Retinoids | Russia | gel |
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Dosage and Administration
Externally, it is recommended to wipe the interdigital folds of the legs with a small amount of liquid 1 time per day. After the hygienic shower and drying, the preparation is applied for 30-40 minutes to areas of excessive sweating (sole, palm, interdigital folds). Then the drug is washed off with warm water. For delicate sensitive skin (armpits and palms in women), the drug should be applied for a period of not more than 20 minutes. After that, the skin should be thoroughly washed with warm water without detergent and powdered with talcum powder or baby powder. After shaving the armpits, Formidron can be applied no earlier than in a day. One procedure is enough to reduce sweating for 7-12 days. With pronounced sweating, the procedure is carried out for 2-3 days in a row.
Adverse reactions
Allergic reactions, local reactions. With prolonged use - dry skin. In this case, the use of the drug is stopped.
Contraindications
- allergic to any of the components of the solution;
- skin inflammations and inflammatory diseases;
- age up to 14 years;
- In order to avoid irritation and allergic reactions do not apply on sensitive skin.
Drug interactions
No data.
Pregnancy and Lactation
No data.
Special instructions
The solution should not be applied to the face and mucous membranes.
- Brand name: Formidron
- Active ingredient: Formaldehyde
- Dosage form: external solution
- Manufacturer: Yaroslavl Pharmaceutical Factory
- Country of Origin: Russia
Studies and clinical trials of Formaldehyde (Click to expand)
- Rearrangement with Formaldehyde Extrusion in the Electrospray Mass Spectra of Alkoxymethylimidazolium Cations
- Photopolymerization of poly(melamine-co-formaldehyde) acrylate for dental restorative resins
- Analysis of formaldehyde in the headspace of urine from bladder and prostate cancer patients using selected ion flow tube mass spectrometry
- Occupational laryngitis caused by formaldehyde: A case report
- Airway response to formaldehyde inhalation in asthmatic subjects with suspected respiratory formaldehyde sensitization
- The impact of initial job assignment on formaldehyde exposure among African-American and white formaldehyde industry workers
- Reduced fertility among female wood workers exposed to formaldehyde
- Toxicity and biodegradation of formaldehyde in anaerobic methanogenic culture
- Assessment of the effects of gramicidin, formaldehyde, and surfactants on Escherichia coli by flow cytometry using nucleic acid and membrane potential dyes
- Selective binding of a monoclonal antibody to Aspergillus niger glucose oxidase by formaldehyde fixed human polymorphonuclear leukocytes
- Concerning the Chemical Shift Data (17O, 13C, 1H) of Formaldehyde
- The π, π* state in formaldehyde and thioformaldehyde
- Macroscopic solvent polarization-induced reorganization of the electron density in different excited states: A study on formaldehyde molecule by a multiconfiguration self-consistent reaction-field method
- Excited-state potential energy curves from time-dependent density-functional theory: A cross section of formaldehyde's 1A1 manifold
- From hydrogen bond to bulk: Solvation analysis of the n-π* transition of formaldehyde in water
- Formaldehyde-free zein fiber—preparation and investigation
- A 13C-NMR analysis method for MUF and MF resin strength and formaldehyde emission
- Modification of acetophenone–formaldehyde and cyclohexanone–formaldehyde resins
- Functional polymers for colloidal applications. X. Syntheses of graft-charged naphthalene–formaldehyde condensates and their ability to disperse dyes
- A 13C-NMR analysis method for MF and MUF resins strength and formaldehyde emission from wood particleboard. I. MUF resins
- A 13C-NMR analysis method for MF and MUF resins strength and formaldehyde emission from wood particleboard. II. MF resins
- Epoxy—phenol—cardanol—formaldehyde systems: Thermogravimetry analysis and their carbon fiber composites
- Chelating resins. III. Synthesis, characterization, and capacity studies of formaldehyde-condensed phenolic schiff bases derived from 1,2-diamines and hydroxy benzaldehydes
- Simultaneous free radical polymerization and acidic polycondensation of acrylamide—formaldehyde resin on jute fabric