Simultaneous Electrochemical Determination of Articaine HCl and Epinephrine.

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Date

2017

Journal Title

Journal ISSN

Volume Title

Type

Article

Publisher

IMEDPUB JOURNALS

Series Info

Insights in Analytical Electrochemistry;Vol. 3 No. 1: 1

Scientific Journal Rankings

Abstract

A simple, precise, accurate and inexpensive voltammetric method was developed for the simultaneous determination of articaine HCl and epinephrine in bulk, pharmaceutical formulations and human urine at carbon paste electrode in Britton-Robinson buffer of pH 7 and 40 µL of 10−2 mol L−1 sodium dodecylsulphate. Several factors were studied such as buffer type, pH, surfactant, scan rate, and accumulation time to obtain the optimum conditions for analysis. The method showed linearity in concentration range of 1.0 × 10−6-2.6 × 10-5 mol L−1. The limits of detection and quantitation were found 2.88 × 10−7 mol L−1 and 8.72 × 10−7 mol L−1 for articaine HCl and 5.10 × 10−8 mol L−1 and 1.56 × 10-7 for epinephrine, respectively. The proposed voltammetric method was successfully applied for simultaneous determination of articaine HCl and epinephrine in bulk, injections and urine. The results obtained from the proposed method were statistically compared with those of a reported method and showed no significant difference. Thus, it can be used as quality control in laboratories

Description

Keywords

Urine, Bulk, Voltammetry, Carbon paste, Sodium dodecyl sulphate, Articaine HCl, Epinephrine

Citation

Budavari S (2002) The merck index: an encyclopedia of chemicals, drugs and biological. Merck and Co. Inc., White House Station, NJ, USA. 2 Snoeck M (2012) Articaine: a review of its use for local and regional anesthesia. Local and Regional Anesthesia 5: 23-33. 3 Whalen K, Finkel R, Panavelil TA (2015) Lippincott illustrated reviews: Pharmacology, Lippincott Williams and Wilkins. Philadelphia, New York, London. 4 Deck DH (2012) Basic and clinical pharmacology. Mc Graw-Hill Medical, Singapore. 5 Rustichelli C, Ferioli V,GamberiniG, Stancanelli R (2001) Enantiomeric separation of local anaesthetic drug by HPLC on chiral stationary phases. Chromatographia 54: 731-736. 6 Richter K, Oertel R (1999) Solid-phase extraction and highperformance liquid chromatographic determination of articaine and its metabolite articainic acid in human serum. J Chromatogr B Biomed Sci Appl 724: 109-115. 7 Hoizey G, Lamiable D, Gozalo C, Miric T, Thomas A, et al. (2009) Determination of articaine in human plasma by liquid chromatography-mass spectrometry and its application in a preliminary pharmacokinetic study. J Pharm Biomed Anal 49: 1082-1087. 8 Schmidt M, Bracher F (2006) A convenient TLC method for the identification of local anesthetics. Pharmazie 61: 15-17. 9 Manda CV, Popescu SM, Baniceru M (2015) Determination of articaine in human blood by gas and liquid chromatography and its application in a preliminary pharmacokinetic study. Inter J Drug Delivery Tech 5: 72-76. 10 Kulkarni AP, Khan SKA, Zahee ZA, Dehghan MH (2011) Spectroscopic estimation of articaine hydrochloride. J Pharm Res 4: 1596-1597. 11 Mishra A, Upadhyaym A, Patra A, Chaudhury S, Chattopadhyay P (2009) Simultaneous determination of epinephrine and norepinephrine by high performance liquid chromatography. Sci Pharm 77: 367-374. 12 Mishra KA, Mishra A, Chattopadhyay P (2010) A reversed-phase high performance liquid chromatographic method for determination of Epinephrine in pharmaceutical formulation. Arch App Sci Res 2: 251- 256. 13 Rane PV, Patil RK, Sangshetti NJ, Shinde BD (2008) Enantiomeric LC separation of epinephrine on amylose based sorbent. Chromatographia 67: 777-781. 14 Carrera V, Sabater E, Vilanova E, Sogorb AM (2007) A simple and rapid HPLC-MS method for the simultaneous determination of epinephrine, norepinephrine, dopamine and 5-hydroxytryptamine: Application to the secretion of bovine chromaffin cell cultures. J Chromatogr B 847: 88-94. 15 Jebaraj AS, Prasanna R, Sivakumar T (2014) Analytical method development and validation of stability indicating HPLC method for estimation of fixed dosage form of atropine sulphate, epinephrine bitartarate and lignocaine hydrochloride injection. Int J Innov Pharm Sci Res 2: 1337-1348. 16 Raja MMK, Patel RS, Mishra SH (2011) Identification and quantification of adrenaline from the leaves of clerodendrum phlomidis using thin-layer chromatography.J Chin Integr Med 9: 105-108. 17 Alemany G, Akaarir M, Rossello C, Gamundi A (1996) Thin-layer chromatographic determination of catecholamines in rat plasma. Biomed Chromatogr 10: 225-227. 18 Kudo M, Kudo T, Oyama T (1984) The simultaneous determination of plasma concentration of norepinephrine, epinephrine and dopamine by gas chromatography-mass spectrometry. The Jap J Anesthesiol 33: 1099-1103. 19 Gyllenhaal O, Johansson L, Vessman J (1980) Gas chromatography of epinephrine and norepinephrine after derivatization with chloroformates in aqueous medium. J Chromatogr A 190: 347-357. 20 Al-Ameri HAS (2016) Spectrophotometric determination of adrenaline in pharmaceutical preparations. Arab J Chem 9: 1000- 1004. 21 Bulatov AV, Petrova AV, Vishnikin AB, Moskvin AL, Moskvin LN (2012) Stepwise injection spectrophotometric determination of epinephrine. Talanta 96: 62-67. 22 Ekhtesasi A, Shishehbore MR (2016) Sensitive determination of epinephrine using kinetic spectrophotometric method. Orient J Chem 32: 467-472. 23 El-Hawary, WF, Orabi RGH, Al-Yami SA (2015) Spectrophotometric determination of adrenaline via reaction with iodic acid. Int J Chem Sci 13: 563-575. 24 MontaseriH, KhajehsharifiH, Yousefinejad S (2014)UVdetermination of epinephrine, uric acid and acetaminophen in pharmaceutical formulations and some human body fluids using multivariate calibration. Quimica Nova 37: 1404-1409. 25 Lavanya N, Fazio E, Bonavita A, Leonardi GS, Neri G, et al. (2015) Simultaneous determination of epinephrine and uric acid in the presence of ascorbic acid using SnO2/graphene nanocomposite modified glassy carbon electrode. Sens Actuators B 221: 1412-1422. 26 Taei M, Hadadzadeh H, Hasanpour F, Tavakkoli N, Dolatabadi MH (2015) Simultaneous electrochemical determination of ascorbic acid, epinephrine, and uric acid using a polymer film-modified electrode based on Au nanoparticles/poly(3,3′,5,5′-tetrabromo-mcresolsulfonphthalein). Ionics 21: 3267-3278. 27 Goyal RN, Agrawal B (2012) Ag ion irradiated based sensor for the electrochemical determination of epinephrine and 5-hydroxytryptamine in human biological fluids. Anal Chim Acta 743: 33-40. 28 Dorraji PS, Jalali F (2014) Novel sensitive electrochemical sensor for simultaneous determination of epinephrine and uric acid by using a nanocomposite of MWCNTs– chitosan and gold nanoparticles attached to thioglycolic acid. Sens Actuators B 200: 251-258. 29 Li H, Wang X (2015) Simultaneous determination of epinephrine and uric acid at poly (guanine) modified glassy carbon electrode. Electrochemistry 83: 434-439. 30 Moghaddam HM, Beitollahi H, Tajik S, Soltani H (2015) Fabrication of a nanostructure based electrochemical sensor for voltammetric determination of epinephrine, uric acid and folic acid. Electroanalysis 27: 2620-2628. 31 El-ries MA, Mohamed GG, Attia AK (2008) Electrochemical determination of the antidiabetic drug repaglinide. J Pharma Soci Japan 128: 171-177. 32 USP (2012) United States Pharmacopoeia, monographs Pharmacopoeial Forum, Asian Ed., Rand Mc Nally, USA. 33 Attia AK (2009) Determination of antihypertensive drug moexipril

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