The development and validation of an UV-Vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage forms

Introduction The quality control of medicines is crucial for market surveillance worldwide. With the growing problem of counterfeit drugs, it is important to protect the population from substandard medicines and equip professionals with effective analysis tools. Analytical methods such as UV-Vis...

Full description

Saved in:
Bibliographic Details
Main Authors: Timothé Mavanga Mabaya, Jocelyn Mankulu Kakumba, Mannix Mayangi Makola, Adelard Mbenza Puati, Didi Mana Kialengila, Jean Mavar Tayey Mbay, Jeremie Mbinze
Format: Article
Language:English
Published: Orapuh, Inc. 2025-02-01
Series:Orapuh Journal
Subjects:
Online Access:https://www.orapuh.org/ojs/ojs-3.1.2-4/index.php/orapj/article/view/338
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1823864074947002368
author Timothé Mavanga Mabaya
Jocelyn Mankulu Kakumba
Mannix Mayangi Makola
Adelard Mbenza Puati
Didi Mana Kialengila
Jean Mavar Tayey Mbay
Jeremie Mbinze
author_facet Timothé Mavanga Mabaya
Jocelyn Mankulu Kakumba
Mannix Mayangi Makola
Adelard Mbenza Puati
Didi Mana Kialengila
Jean Mavar Tayey Mbay
Jeremie Mbinze
author_sort Timothé Mavanga Mabaya
collection DOAJ
description Introduction The quality control of medicines is crucial for market surveillance worldwide. With the growing problem of counterfeit drugs, it is important to protect the population from substandard medicines and equip professionals with effective analysis tools. Analytical methods such as UV-Vis spectrometry offer advantages over techniques like HPLC, which require more expensive equipment and solvents, especially in developing countries. Purpose This study aimed to develop and validate a simple, precise, accurate, reproducible, and less expensive UV-Vis spectrophotometric method for determining ciprofloxacin HCl in its pure form and dosage forms. Methods An appropriate wavelength was selected by scanning a ciprofloxacin HCl standard solution in 0.1M hydrochloric acid between 200–400 nm. The absorption maximum at 277 nm was chosen for further analysis. The method was developed and validated according to ICH guidelines, evaluating criteria such as linearity, precision, accuracy, specificity/selectivity, robustness, LOQ, and LOD. Results Ciprofloxacin HCl showed maximum absorption at 277 nm, following Beer-Lambert's law within the concentration range of 2.5 to 15 µg/ml. The linear regression equation was Y = 0.1104x, with a correlation coefficient of R² = 0.999. The LOD and LOQ were 0.4385 µg/ml and 1.4617 µg/ml, respectively. Intra- and inter-day precision had relative standard deviations under 2%, with recovery rates for selectivity (98.36–98.72%) and accuracy (100.10–100.83%) within acceptable ranges. Robustness standard deviations were below 2%, and ciprofloxacin levels in the samples ranged from 94.10% to 110%. Conclusion The validated method is suitable for routine quantification of ciprofloxacin HCl as raw API or in tablet forms, with revalidation needed for other pharmaceutical forms.
format Article
id doaj-art-50a0feaf421148389064fcecc9eafebc
institution Kabale University
issn 2644-3740
language English
publishDate 2025-02-01
publisher Orapuh, Inc.
record_format Article
series Orapuh Journal
spelling doaj-art-50a0feaf421148389064fcecc9eafebc2025-02-09T06:15:41ZengOrapuh, Inc.Orapuh Journal2644-37402025-02-016210.4314/orapj.v6i1.13The development and validation of an UV-Vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage formsTimothé Mavanga Mabaya0Jocelyn Mankulu Kakumba1Mannix Mayangi Makola2Adelard Mbenza Puati3Didi Mana Kialengila4Jean Mavar Tayey Mbay5Jeremie Mbinze6University of Kinshasa, Kinshasa XI, Democratic Republic of the CongoUniversity of Kinshasa, Kinshasa XI, Democratic Republic of the CongoUniversity of Kinshasa, Kinshasa XI, Democratic Republic of the CongoUniversity of Kinshasa, Kinshasa XI, Democratic Republic of the CongoUniversity of Kinshasa, Kinshasa XI, Democratic Republic of the CongoUniversity of Kinshasa, Kinshasa XI, Democratic Republic of the CongoUniversity of Kinshasa, Kinshasa XI, Democratic Republic of the Congo Introduction The quality control of medicines is crucial for market surveillance worldwide. With the growing problem of counterfeit drugs, it is important to protect the population from substandard medicines and equip professionals with effective analysis tools. Analytical methods such as UV-Vis spectrometry offer advantages over techniques like HPLC, which require more expensive equipment and solvents, especially in developing countries. Purpose This study aimed to develop and validate a simple, precise, accurate, reproducible, and less expensive UV-Vis spectrophotometric method for determining ciprofloxacin HCl in its pure form and dosage forms. Methods An appropriate wavelength was selected by scanning a ciprofloxacin HCl standard solution in 0.1M hydrochloric acid between 200–400 nm. The absorption maximum at 277 nm was chosen for further analysis. The method was developed and validated according to ICH guidelines, evaluating criteria such as linearity, precision, accuracy, specificity/selectivity, robustness, LOQ, and LOD. Results Ciprofloxacin HCl showed maximum absorption at 277 nm, following Beer-Lambert's law within the concentration range of 2.5 to 15 µg/ml. The linear regression equation was Y = 0.1104x, with a correlation coefficient of R² = 0.999. The LOD and LOQ were 0.4385 µg/ml and 1.4617 µg/ml, respectively. Intra- and inter-day precision had relative standard deviations under 2%, with recovery rates for selectivity (98.36–98.72%) and accuracy (100.10–100.83%) within acceptable ranges. Robustness standard deviations were below 2%, and ciprofloxacin levels in the samples ranged from 94.10% to 110%. Conclusion The validated method is suitable for routine quantification of ciprofloxacin HCl as raw API or in tablet forms, with revalidation needed for other pharmaceutical forms. https://www.orapuh.org/ojs/ojs-3.1.2-4/index.php/orapj/article/view/338UV-Vis spectrophotometryciprofloxacin HCldevelopmentvalidation
spellingShingle Timothé Mavanga Mabaya
Jocelyn Mankulu Kakumba
Mannix Mayangi Makola
Adelard Mbenza Puati
Didi Mana Kialengila
Jean Mavar Tayey Mbay
Jeremie Mbinze
The development and validation of an UV-Vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage forms
Orapuh Journal
UV-Vis spectrophotometry
ciprofloxacin HCl
development
validation
title The development and validation of an UV-Vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage forms
title_full The development and validation of an UV-Vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage forms
title_fullStr The development and validation of an UV-Vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage forms
title_full_unstemmed The development and validation of an UV-Vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage forms
title_short The development and validation of an UV-Vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage forms
title_sort development and validation of an uv vis spectrophotometric method for the determination of ciprofloxacin in raw material and dosage forms
topic UV-Vis spectrophotometry
ciprofloxacin HCl
development
validation
url https://www.orapuh.org/ojs/ojs-3.1.2-4/index.php/orapj/article/view/338
work_keys_str_mv AT timothemavangamabaya thedevelopmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT jocelynmankulukakumba thedevelopmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT mannixmayangimakola thedevelopmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT adelardmbenzapuati thedevelopmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT didimanakialengila thedevelopmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT jeanmavartayeymbay thedevelopmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT jeremiembinze thedevelopmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT timothemavangamabaya developmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT jocelynmankulukakumba developmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT mannixmayangimakola developmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT adelardmbenzapuati developmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT didimanakialengila developmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT jeanmavartayeymbay developmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms
AT jeremiembinze developmentandvalidationofanuvvisspectrophotometricmethodforthedeterminationofciprofloxacininrawmaterialanddosageforms