Colorimetric Determination of Salbutamol Sulfate using Spectrophotometry-Continuous Flow Injection Technique in Pure and Pharmaceutical Forms

Simple, precise and economic batch and flow injection analysis (FIA)-spectrophotometric methods have been established for simultaneous determination of salbutamol sulfate (SLB) in bulk powder and pharmaceutical forms. Both methods based on diazotization coupling reaction of SLB with another drug co...

Full description

Bibliographic Details
Main Authors: Wasan Abdulamir Al-Uzri, Mariam Jamal, Hind Hadi
Format: Article
Language:English
Published: College of Pharmacy University of Baghdad 2023-06-01
Series:Iraqi Journal of Pharmaceutical Sciences
Subjects:
Online Access:https://bijps.uobaghdad.edu.iq/index.php/bijps/article/view/1699
_version_ 1797802412232146944
author Wasan Abdulamir Al-Uzri
Mariam Jamal
Hind Hadi
author_facet Wasan Abdulamir Al-Uzri
Mariam Jamal
Hind Hadi
author_sort Wasan Abdulamir Al-Uzri
collection DOAJ
description Simple, precise and economic batch and flow injection analysis (FIA)-spectrophotometric methods have been established for simultaneous determination of salbutamol sulfate (SLB) in bulk powder and pharmaceutical forms. Both methods based on diazotization coupling reaction of SLB with another drug compound (sulfadimidine) as a safe and green diazotization agent in alkaline medium. At 444 nm, the maximum absorption of the orange azo-dye product was observed. A thorough investigation of all chemical and physical factors was conducted for batch and FIA procedures to achieve high sensitivity. Under the optimized experimental variables, SLB obeys Beer’s law in the concentration range of 0.25-4 and 10-100 μg/mL with limits of detection of 0.09 and 2.51 μg/mL for batch and FIA procedures respectively. The low percentage relative standard deviation of less than 1% (n=5) for both methods confirmed the applicability of these methods. Using F and t tests, a statistical comparison of the recommended approaches with the standard spectrophotometric method revealed no significant differences in accuracy or precision.  
first_indexed 2024-03-13T05:05:18Z
format Article
id doaj.art-e6d8647cbdde4a02b903a0fc979cff5e
institution Directory Open Access Journal
issn 2521-3512
1683-3597
language English
last_indexed 2024-03-13T05:05:18Z
publishDate 2023-06-01
publisher College of Pharmacy University of Baghdad
record_format Article
series Iraqi Journal of Pharmaceutical Sciences
spelling doaj.art-e6d8647cbdde4a02b903a0fc979cff5e2023-06-16T19:54:01ZengCollege of Pharmacy University of BaghdadIraqi Journal of Pharmaceutical Sciences2521-35121683-35972023-06-0132110.31351/vol32iss1pp45-52Colorimetric Determination of Salbutamol Sulfate using Spectrophotometry-Continuous Flow Injection Technique in Pure and Pharmaceutical FormsWasan Abdulamir Al-Uzri0Mariam Jamal1Hind Hadi2Department of Chemistry, College of Science, University of Baghdad, Baghdad, IraqMinistry of Education, Educational Rusafa Directorate IIDepartment of Chemistry, College of Science, University of Baghdad, Simple, precise and economic batch and flow injection analysis (FIA)-spectrophotometric methods have been established for simultaneous determination of salbutamol sulfate (SLB) in bulk powder and pharmaceutical forms. Both methods based on diazotization coupling reaction of SLB with another drug compound (sulfadimidine) as a safe and green diazotization agent in alkaline medium. At 444 nm, the maximum absorption of the orange azo-dye product was observed. A thorough investigation of all chemical and physical factors was conducted for batch and FIA procedures to achieve high sensitivity. Under the optimized experimental variables, SLB obeys Beer’s law in the concentration range of 0.25-4 and 10-100 μg/mL with limits of detection of 0.09 and 2.51 μg/mL for batch and FIA procedures respectively. The low percentage relative standard deviation of less than 1% (n=5) for both methods confirmed the applicability of these methods. Using F and t tests, a statistical comparison of the recommended approaches with the standard spectrophotometric method revealed no significant differences in accuracy or precision.   https://bijps.uobaghdad.edu.iq/index.php/bijps/article/view/1699Salbutamol, sulfadimidine, flow injection analysis, diazotization reaction
spellingShingle Wasan Abdulamir Al-Uzri
Mariam Jamal
Hind Hadi
Colorimetric Determination of Salbutamol Sulfate using Spectrophotometry-Continuous Flow Injection Technique in Pure and Pharmaceutical Forms
Iraqi Journal of Pharmaceutical Sciences
Salbutamol, sulfadimidine, flow injection analysis, diazotization reaction
title Colorimetric Determination of Salbutamol Sulfate using Spectrophotometry-Continuous Flow Injection Technique in Pure and Pharmaceutical Forms
title_full Colorimetric Determination of Salbutamol Sulfate using Spectrophotometry-Continuous Flow Injection Technique in Pure and Pharmaceutical Forms
title_fullStr Colorimetric Determination of Salbutamol Sulfate using Spectrophotometry-Continuous Flow Injection Technique in Pure and Pharmaceutical Forms
title_full_unstemmed Colorimetric Determination of Salbutamol Sulfate using Spectrophotometry-Continuous Flow Injection Technique in Pure and Pharmaceutical Forms
title_short Colorimetric Determination of Salbutamol Sulfate using Spectrophotometry-Continuous Flow Injection Technique in Pure and Pharmaceutical Forms
title_sort colorimetric determination of salbutamol sulfate using spectrophotometry continuous flow injection technique in pure and pharmaceutical forms
topic Salbutamol, sulfadimidine, flow injection analysis, diazotization reaction
url https://bijps.uobaghdad.edu.iq/index.php/bijps/article/view/1699
work_keys_str_mv AT wasanabdulamiraluzri colorimetricdeterminationofsalbutamolsulfateusingspectrophotometrycontinuousflowinjectiontechniqueinpureandpharmaceuticalforms
AT mariamjamal colorimetricdeterminationofsalbutamolsulfateusingspectrophotometrycontinuousflowinjectiontechniqueinpureandpharmaceuticalforms
AT hindhadi colorimetricdeterminationofsalbutamolsulfateusingspectrophotometrycontinuousflowinjectiontechniqueinpureandpharmaceuticalforms