Determination of arsanilic acid and sulfanilic acid as adulterant in feed additives by reversed-phase high performance liquid chromatography

2010 ◽  
Vol 28 (2) ◽  
pp. 218-220
Author(s):  
Jinping XU ◽  
Heng HE ◽  
Mengyi XU ◽  
Yanhua QU
Author(s):  
Jafariah Jaafar

Sebatian fenilarsonik digunakan dengan meluas sebagai bahan tambah makanan ternakan bagi membantu proses tumbesaran dan mengawal penyakit di dalam industri ternakan ayam. Satu kaedah dijalankan bagi analisis arsenik di dalam bahan tambah makanan ternakan secara HPLC fasa terbalik–pasangan ion dengan pengesan ultralembayung. Dengan menggunakan turus oktadekilsililsilika, pemisahan sebatian arsenik anion [asid 3–nitro–4–hidroksifenilarsonik (3–NHPAA), asid p–arsanilik (p–ASA) dan asid fenilarsonik (PA)] telah diperoleh menggunakan tetrabutilammonium klorida 5 mM sebagai reagen pasangan ion di dalam fasa bergerak yang mengandungi asid malonik 3 mM dan 5% metanol pada kadar alir 1.4 mL min–1. Pengaruh pH fasa bergerak ke atas pemisahan dikaji dan didapati pH optimum adalah 5.85. Had pengesanan yang diperoleh bagi 3–NHPAA ialah 0.43 ng As. Kata kunci: arsenik; bahan tambah makanan ternakan; HPLC fasa terbalik-pasangan ion Phenylarsonic compounds are extensively used as feed additives to promote growth and to control disease in the poultry industry. A method was conducted that allowed the analysis of arsenic animal feed additives by ion pairing–reversed phase HPLC (IP–RP–HPLC) with a UV detection using an octadecylsilylsilica column. The separation of anionic arsenic compounds [3–nitro–4–hydroxyphenylarsonic acid (3–NHPAA), p–arsanilic acid (p ASA) and phenylarsonic acid (PA)] was accomplished using 5 mM tetrabutylammonium chloride as the ion pairing reagent in aqueous mobile phase containing 3 mM malonic acid and 5% methanol at a flow rate of 1.4 mL min–1. The influence of mobile phase pH on the separation was studied; the optimum pH found was 5.85. The detection limit obtained for 3–NHPAA was 0.43 ng As. Key words: arsenic; animal feed additives; ion pairing-reversed phase-high performance liquid chromatography


2020 ◽  
Vol 20 (13) ◽  
pp. 1053-1059
Author(s):  
Mahmoud M. Sebaiy ◽  
Noha I. Ziedan

Background: Allergic diseases are considered as the major burden on public health with increased prevalence globally. Histamine H1-receptor antagonists are the foremost commonly used drugs in the treatment of allergic disorders. The target drug in this study, loratadine, belongs to this class of drugs and its biometabolite desloratadine which is also a non-sedating H1 receptor antagonist with anti-histaminic activity being 2.5 to 4 times greater than loratadine. This study aimed to develop and validate a novel isocratic Reversed-phase High-Performance Liquid Chromatography (RP-HPLC) method for rapid and simultaneous separation and determination of loratadine and its metabolite, desloratadine in human plasma. Methods: The drug extraction method from plasma was based on protein precipitation technique. The separation was carried out on a Thermo Scientific BDS Hypersil C18 column (5μm, 250 x 4.60 mm) in a mobile phase of MeOH: 0.025M KH2PO4 adjusted to pH 3.50 using orthophosphoric acid (85: 15, v/v) at an ambient temperature. The flow rate was maintained at 1 mL/min and maximum absorption was measured using the PDA detector at 248 nm. Results: The retention times of loratadine and desloratadine in plasma samples were recorded to be 4.10 and 5.08 minutes, respectively, indicating a short analysis time. Limits of detection were found to be 1.80 and 1.97 ng/mL for loratadine and desloratadine, respectively, showing a high degree of sensitivity of the method. The method was then validated according to FDA guidelines for the determination of the two analytes in human plasma. Conclusion: The results obtained indicate that the proposed method is rapid, sensitive in the nanogram range, accurate, selective, robust and reproducible compared to other reported methods.


1994 ◽  
Vol 59 (3) ◽  
pp. 569-574 ◽  
Author(s):  
Josef Královský ◽  
Marta Kalhousová ◽  
Petr Šlosar

The reversed-phase high-performance liquid chromatography of some selected, industrially important aromatic sulfones has been investigated. The chromatographic behaviour of three groups of aromatic sulfones has been studied. The optimum conditions of separation and UV spectra of the sulfones and some of their hydroxy and benzyloxy derivatives are presented. The dependences of capacity factors vs methanol content in mobile phase are mentioned. The results obtained have been applied to the quantitative analysis of different technical-grade samples and isomer mixtures. For all the separation methods mentioned the concentration ranges of linear calibration curves have been determined.


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