Furosemide | 54-31-9

Cas No :

54-31-9

Form :

Solid

Molecular Weight :

330.74 G/Mol

Molecular Formula :

C12H11CLN2O5S

Boiling Point :

320 °C

Melting Point :

196 °C

Flash Point :

300 °C

Solubility :

Sparingly Soluble In Water; Soluble In Methanol And Ethanol

Description :

Overview of Furosemide

Furosemide is a synthetic, pharmaceutical-grade compound that is classified as a loop diuretic. It is mostly sold with the designation of active pharmaceutical ingredients (API). It is used extensively in the pharmaceutical manufacturing process that is controlled to formulate dosage forms for oral use and injectable solutions.

In the pharmaceutical industry, Furosemide is sought-after due to its well-known chemical profile, consistent batch performance, and compatibility with a variety of dosage forms. Furosemide is manufactured under controlled conditions in order to conform with pharmacopeial requirements for purity as well as particle size and chemical authenticity.

As a pharma chemical, Furosemide is handled exclusively within licensed pharmaceutical manufacturing and formulation environments.


Applications of Furosemide

Pharmaceutical API Use

Furosemide is used as an active pharmaceutical ingredient in the manufacture of diuretic formulations intended for fluid management and cardiovascular-related therapeutic products. It is formulated into tablets, injections, and oral liquids under strict regulatory compliance.

In API portfolio planning, Furosemide is commonly positioned alongside Hydrochlorothiazide, Spironolactone, and Torsemide for diuretic product development.

Finished Dosage Form Manufacturing

Furosemide is used in the production of solid oral dosage forms where controlled dissolution, bioavailability, and stability are required. Its physicochemical properties allow reliable formulation into tablets and capsules.

Injectable-grade Furosemide is also utilised in sterile pharmaceutical manufacturing for hospital-use formulations, produced under aseptic processing conditions.

Pharmaceutical Research & Reference Use

Furosemide is used as a reference standard in pharmaceutical research, quality control testing, and analytical method validation. It is employed in dissolution studies, stability testing, and comparative API profiling.

In pharmaceutical research environments, it may be referenced alongside Bumetanide and Ethacrynic Acid for loop diuretic comparison studies.


Safety & Handling Guidelines

  • Keep it in a cool, humid, dry, and well-controlled space
  • Be sure to protect yourself from moisture and light
  • Seal the containers tightly and properly labeled
  • Beware of inhaling dust fromthe  API.
  • Use appropriate personal protective equipment
  • Handle only in regulated pharmaceutical manufacturing areas
  • Dispose of waste according to pharmaceutical regulatory guidelines


Where to Buy Furosemide?

Furosemide Manufacturer

Furosemide is manufactured for pharmaceutical use under strict GMP-compliant conditions to ensure batch consistency, chemical purity, and regulatory acceptance.

Furosemide Supplier & Distributor

Pharma-grade Furosemide API is delivered in compliant packaging that is suitable for licensed pharmaceutical companies or formulation companies. As a pharmaceutical chemicals distributor, Chemicalbull Pvt. Ltd. ensures secure sourcing through the standard documents, COA, and regulatory assistance.


MSDS for Furosemide

The MSDS for Furosemide provides detailed information on chemical hazards, safe handling practices, storage requirements, exposure controls, and emergency response procedures. It should be reviewed before manufacturing, handling, or laboratory use.


Frequently Asked Questions (FAQs)

  1. What is Furosemide?

    Furosemide is a synthetic pharmaceutical compound supplied as an active pharmaceutical ingredient and used in the manufacture of diuretic drug formulations.

  2. What is Furosemide used for?

    Furosemide is used as an API in pharmaceutical manufacturing for formulations intended to manage fluid retention and related cardiovascular applications.

  3. What is the mechanism of action of Furosemide?

    Furosemide inhibits sodium and chloride reabsorption in the loop of Henle, leading to increased fluid excretion when formulated into finished pharmaceutical products.

  4. What is the structure of Furosemide?

    Furosemide has a sulfonamide-based chemical structure that contributes to its pharmacological activity and formulation behaviour.

  5. What are the side effects of Furosemide?

    Side effects are associated with finished dosage forms and may include electrolyte imbalance and dehydration; these are managed through controlled dosing and medical supervision.