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Department of Pharmaceutical Analysis and Quality Assurance, Viswanadha Institute of Pharmaceutical Sciences, Visakhapatnam, A.P, India
A simple, rapid, and reliable visible spectrophotometric method has been developed for the estimation of Molnupiravir, an antiviral drug, using 1,10-phenanthroline as a chromogenic reagent. The method is based on the formation of a red-colored complex between the ferrous ions, generated in situ, and 1,10-phenanthroline, in the presence of Molnupiravir which acts as a reducing agent for ferric to ferrous ions. The resulting colored complex exhibits maximum absorbance at 510 nm. The reaction conditions were optimized, and the Beer-Lambert law was found to be obeyed in the concentration range of [insert range, e.g., 1?5 ?g/mL]. The method has been validated according to ICH guidelines for parameters such as linearity, accuracy, precision, limit of detection (LOD), and limit of quantitation (LOQ). . Linearity range was 1 - 5?g/ml with correlation coefficient (R2) of 0.999. LOD and LOQ were found to be 0.05831?g/ml and 0.17672?g/ml respectively. The percentage relative standard deviation for intraday precision was 1.2% and for interday precision was 0.71%.,The robustness were found to be 0.7% and ruggedness 1.0%. The proposed method was successfully applied to the estimation of Molnupiravir in bulk and pharmaceutical dosage forms without interference from common excipients. This method offers a cost-effective and efficient alternative for routine quality control analysis of Molnupiravir.
The most commonly employed reagents for the determinations are the following:
Oxidation Followed by Complexation
1,10-Phenanthroline Synonym for 1,10-phenanthroline is o-phenanthroline. It is extensively chromogenic reagent used for the colorimetric or visible spectrophotometric determination of a number of drugs and pharmaceutical substances. It is also known as ortho- phenanthroline (O- phenanthroline). It is constantly utilized in combination with a popular oxidant or oxidizing agent namely ferric chloride.
MECHANISM
The analysis of drug by using 1,10- phenanthroline involves two steps. Initially the solution of the drug under investigation is allowed to react with 1,10- phenanthroline and Ferric chloride (at elevated temperature). During this process, the drug gets oxidized and results in the generation of ferrous iron [i.e., ferric chloride is converted to ferrous chloride, i.e., (II)]. The ferrous now complexes with 1,10- phenanthroline to form an orange red colored complex. In this method, the reason of the addition of phosphoric acid is to stop the photochemical reduction. The following are the chemical reactions involved:
Drug+ FeCl3
Reduced form of Fe+3 + 1,10-Phenanthroline → (Fe+2-1,10-Phenanthroline) complex
MATERIALS AND METHODS
Chemicals and reagents: Molnupiravir (pure drug) was obtained as a gift sample from Hetero Labs. Ferric Chloride(fecl3) Grade (Thermo Fisher Scientific India Pvt.Ltd), 1,10 Phenanathroline, Grade (Thermo Fisher Scientific India Pvt.Ltd) were purchased from Qualigens Company, Methanol, Rankem(Laboratory Reagent) and All chemicals and reagents used were of analytical grade. Tablets containing drug Molnupiravir (Molnuvid (200mg) were procured from local market.
Instruments: Electronic Precision balance (Infra Instruments Pvt. Ltd., Chennai), PC Based Double Beam Spectrophotometer 2202 (Systronics, India).
Drug name: Molnupiravir
Structure:
Fig.3.1: Chemical structure of Molnupiravir
Iupac Name: [(2R,3S,4R,5R)-3,4-dihydroxy-5-[(4Z)-4-(hydroxyimino)-2-oxo-1,2,3,4 tetrahydropyrimidin-1-yl] oxolan-2-yl] methyl 2- methyl propanoate
Category: Anti -viral drug.
Molecular weight: 336.35 g/mol
Molecular formula: C13H19N3O7
Melting point: 156-157?
Dosage form: Capsules
Description: White solid
pH: 7.2
Solubility: Soluble in methanol.
Route of administration: Oral route.
Storage: Stored in a closed container at room temperature
Dose: Movfor(200mg)
Principle:
Molnupiravir by using 1,10-Phenanthroline involves two steps. Initially the solution of the drug Under investigation is allowed to react with 1,10-Phenanthroline and Ferric chloride (at elevated Temperature). During this process, the drug gets oxidized and results in the generation of ferrous Iron [i.e., ferric chloride converted to ferrous chloride. The ferrous now complexes with 1,10- Phenanthroline to form an orange red colored complex
Step:1
Step:2
Experimental Work
UV-Visible Spectrometry for Molnupiravir
Preparation of Solutions
Preparation of Stock solution: 10mg of Molnupiravir was taken in a 10ml volumetric flask, dissolved in 2ml of Methanol and made upto 10ml with Distilled water. (1mg/ml or 1000µg/ml)
Preparation of Standard solution: 1ml of stock solution was taken in a 10 ml volumetric flask, and made upto 10 ml with Distilled water (100µg/ml)
Preparation Of 0.5% 1,10-Phenanthroline: 500mg 0f 1,10-Phenanthroline was taken in a 100ml volumetric flask , dissolved in 2 ml of methanol and made upto 10ml with Distilled water.
Preparation Of 0.3% Fecl3 : 300mg of Fecl3 was taken in a 100ml volumetric flask , dissolved in 2 ml of methanol and made upto 10ml with Distilled water.
Method Development
Determination Of Λ Max of Molnupiravir
Preparation of solution: 1ml of standard drug solution (100µg/ml) was taken in a 10ml volumetric flask, 1ml of ferric chloride and 1,10-phenanthroline reagent (0.5%) was added. It was heated for 15mins in a water bath for colour development and was allowed to cool. Then it was made up to 10ml with distilled water.
Preparation of blank solution: 1ml of ferric chloride and 1,10-phenanthroline was taken in 10ml of volumetric flask, then it was heated for 15mins. Then it was allowed to cool and made upto 10ml with distilled water.
B. Rama Madhuri*, Dr. P. V. Madhavi Latha, M. Swapna, Visible Spectrophotometric Method for the Estimation of Molnupiravir Using 1,10 Phenanthroline Reagent, Int. J. Sci. R. Tech., 2025, 2 (11), 101-110. https://doi.org/10.5281/zenodo.17530391
10.5281/zenodo.17530391