Development of a new chromogenic spray reagent for the detection and identification of synthetic pesticide carbaryl in biological material by high-performance thin-layer chromatography

Bond C, Hallman A, Buhl K, Stone D (2016) Carbaryl General Fact Sheet. Oregon State University Extension Services, National Pesticide Information Center, Corvallis, OR

Google Scholar 

Khalaf KD, Morales-Rubio A, De la Guardia M (1993) Simple and rapid flow-injection spectrophotometric determination of carbaryl after liquid-liquid extraction. Anal Chim Acta 280(2):231–238

CAS  Article  Google Scholar 

Mukdasai S, Thomas C, Srijaranai S (2013) Enhancement of sensitivity for the spectrophotometric determination of carbaryl using dispersive liquid microextraction combined with dispersive μ-solid phase extraction. AnalMethods 5(3):789–796

CAS  Google Scholar 

Portela DC, Pereira IM, Paíga P, Delerue-Matos C, Vaz MCV (2003) Amperometric and spectrophotometric determination of carbaryl in natural waters and commercial formulations. Anal Bioanal Chem 377(2):356–361

CAS  Article  Google Scholar 

Petropoulou SSE, Gikas E, Tsarbopoulos A, Siskos PA (2006) Gas chromatographic–tandem mass spectrometric method for the quantitation of carbofuran, carbaryl and their main metabolites in applicators’ urine. J Chromatogr A 1108(1):99–110

CAS  Article  Google Scholar 

Petropoulou SSE, Tsarbopoulos A, Siskos PA (2006) Determination of carbofuran, carbaryl and their main metabolites in plasma samples of agricultural populations using gas chromatography–tandem mass spectrometry. Anal Bioanal Chem 385(8):1444–1456

CAS  Article  Google Scholar 

Pramauro E, Bianco Prevot A, Vincenti M, Brizzolesi G (1997) Photocatalytic degradation of carbaryl in aqueous solutions containing TiO2 suspensions. Environ Sci Technol 31(11):3126–3131

CAS  Article  Google Scholar 

Muino MF, Gandara JS, Lozano JS (1991) Simultaneous determination of pentachlorophenol and carbaryl in water. Chromatographia 32(5):238–240

Article  Google Scholar 

Granelli K, Branzell C (2007) Rapid multi-residue screening of antibiotics in muscle and kidney by liquid chromatography–electrospray ionization–tandem mass spectrometry. Anal Chim Acta 586(1–2):289–295

CAS  Article  Google Scholar 

Sun J, Dong T, Zhang Y, Wang S (2010) Development of enzyme linked immunoassay for the simultaneous detection of carbaryl and metolcarb in different agricultural products. Anal Chim Acta 666(1–2):76–82

CAS  Article  Google Scholar 

Abad A, Moreno MJ, Pelegri R, Martinez MI, Saez A, Gamon M, Montoya A (1999) Determination of carbaryl, carbofuran and methiocarb in cucumbers and strawberries by monoclonal enzyme immunoassays and high-performance liquid chromatography with fluorescence detection: an analytical comparison. J Chromatogr A 833(1):3–12

CAS  Article  Google Scholar 

Lanças FM, Rissato SR, Galhiane MS (1996) Analysis of carbaryl and carbofuran in tobacco samples by HRGC, HPLC, and CZE. J High Res Chromatogr 19(4):200–206

Article  Google Scholar 

Dong T, Sun J, Liu B, Zhang Y, Song Y, Wang S (2010) Development of a sensitivity-improved immunoassay for the determination of carbaryl in food samples. J Sci Food Agric 90(7):1106–1112

CAS  Article  Google Scholar 

Mickova B, Zrostlikova J, Hajslova J, Rauch P, Moreno MJ, Abad A, Montoya A (2003) Correlation study of enzyme-linked immunosorbent assay and high-performance liquid chromatography/tandem mass spectrometry for the determination of N-methylcarbamate insecticides in baby food. Anal Chim Acta 495(1–2):123–132

CAS  Article  Google Scholar 

Mayer-Helm B, Hofbauer L, Müller J (2006) Development of a multi-residue method for the determination of 18 carbamates in tobacco by high-performance liquid chromatography/positive electrospray ionisation tandem mass spectrometry. Rapid Commun Mass Spectrom 20(4):529–536

CAS  Article  Google Scholar 

Galani JH, Houbraken M, Wumbei A, Djeugap JF, Fotio D, Spanoghe P (2018) Evaluation of 99 pesticide residues in major agricultural products from the Western Highlands Zone of Cameroon using QuEChERS method extraction and LC–MS/MS and GC–ECD analyses. Foods 7(11):184. https://doi.org/10.3390/foods7110184

CAS  Article  PubMed Central  Google Scholar 

Park KY, Shin JC, Pyo D (2018) Simultaneous determination of carbaryl and organophosphorous pesticides in water by liquid chromatography–tandem mass spectrometry. Anal Sci Technol 31(1):39–46

CAS  Google Scholar 

Roudani A, Mamouni R, Saffaj N, Laknifli A, Gharby S, El Baraka N, Faouzi A (2017) Method validation in the determination of carbaryl pesticide in water samples using sonication and liquid chromatography–tandem mass spectrometry. J Mater Environ Sci 8(7):2409–2420

CAS  Google Scholar 

Ahmad R, Kookana RS, Alston AM, Skjemstad JO (2001) The nature of soil organic matter affects sorption of pesticides. 1. Relationships with carbon chemistry as determined by 13C CPMAS NMR spectroscopy. Environ Sci Technol 35(5):878–884

CAS  Article  Google Scholar 

Hogendoorn EA, Van Zoonen P (1993) Coupled-column reversed phase liquid chromatography as a versatile technique for the determination of polar pesticides. In: Barceló D (ed.) Techniques and Instrumentation in Analytical Chemistry, Vol. 13, Chapter 6, 181–224.

Zhang C, Ma G, Fang G, Zhang Y, Wang S (2008) Development of a capillary electrophoresis-based immunoassay with laser-induced fluorescence for the detection of carbaryl in rice samples. J Agric Food Chem 56(19):8832–8837

CAS  Article  Google Scholar 

da Silva CL, de Lima EC, Tavares MF (2003) Investigation of preconcentration strategies for the trace analysis of multi-residue pesticides in real samples by capillary electrophoresis. J Chromatogr A 1014(1–2):109–116

Article  Google Scholar 

Patil VB, Shingare MS (1994) Thin-layer chromatographic spray reagent for the screening of biological materials for the presence of carbaryl. Analyst 119(3):415–416

CAS  Article  Google Scholar 

Padalikar SV, Shinde SS, Shinde BM (1988) Specific spray reagents for the detection of carbaryl by thin-layer chromatography. Analyst 113(11):1747–1748

CAS  Article  Google Scholar 

Kulkarni UK, Kulkarni KV, Pardeshi RK, Mane DV (2016) A specific spray reagent for the identification and detection of carbaryl in biological materials. J Planar Chromatogr-Mod TLC 29(3):227–228

CAS  Article  Google Scholar 

Kulkarni UK, Kulkarni KV, Pardeshi RK, Mane DV (2016) A new chromogenic reagent for carbamate insecticides. J Planar Chromatogr-Mod TLC 29(6):477–479

CAS  Article  Google Scholar 

Chandegaonkar VR, Shinde DB, Mane DV (2008) A new chromogenic spray reagent for detection and identification of monocrotophos. J Planar Chromatogr-Mod TLC 21(3):199–200

CAS  Article  Google Scholar 

Pawar UD, Pawar CD, Kulkarni UK, Pardeshi RK, Shinde DB (2018) Use of cupric ferrocyanide reagent for the thin-layer chromatographic detection of organophosphate insecticide profenophos. J Planar Chromatogr-Mod TLC 31:405–407

CAS  Article  Google Scholar 

Pawar UD, Pawar CD, Kulkarni UK, Pardeshi RK, Farooqui M, Shinde DB (2019) New chromogenic reagent for high-performance thin-layer chromatographic detection of organophosphorus insecticide monocrotophos in biological materials. J Planar Chromatogr-Mod TLC 32(1):61–64

CAS  Article  Google Scholar 

Pawar UD, Pawar CD, Kulkarni UK, Pardeshi RK, Farooqui M, Shinde DB (2019) Use of diphenylamine reagent for highperformance thin-layer chromatographic detection of organochloro insecticide endosulfan in biological samples. J Planar Chromatogr-Mod TLC 32(1):65–68

CAS  Article  Google Scholar 

Pawar UD, Pawar CD, Mavle RR, Pardeshi RK (2019) Development of a new chromogenic reagent for the detectionof organophosphorus herbicide glyphosate in biological samples. J Planar Chromatogr-Mod TLC 32(5):435–437

CAS  Article  Google Scholar 

Pawar UD, Pawar CD, Kulkarni UK, Pardeshi RK (2020) Development method of high-performance thin-layer chromatographic detection of synthetic organophosphate insecticide profenofos in visceral samples. J Planar Chromatogr-Mod TLC 33(2):203–206

CAS  Article  Google Scholar 

Pawar UD, Pawar CD, Pansare DN, Humbe JG, Pardeshi RK (2021) Development of HPTLC detection of synthetic pesticide carbosulfan in biological material. J Planar Chromatogr-Mod TLC 34:183–186

CAS  Article  Google Scholar 

Dhas AK, Deshmukh SU, Pansare DN, Pawar RP, Kakade G (2021) Synthesis of imidazo[1,2-a]pyridine derivatives using copper silicate as an efficient and reusable catalyst. Lett App NanoBioSci 10(3):2565–2570

Article  Google Scholar 

Chavan PN, Pansare DN, Shelke RN, Shejul S, Bhoir P (2021) Ultrasound-assisted synthesis and biological significance of substituted 4H-chromene-3-carbonitrile using greenery approaches. Curr Chem Lett 9:43–52

Article  Google Scholar 

Walle M, Pansare D, Khan T, Pawar R, Shelke R, Ingle R (2021) One pot three component synthesis of 2-amino-5-oxo-4,5-dihydropyrano[3,2-c]chromene-3-carbonitrile derivatives catalyzed by cobalt doped iron (III) tartarate complex. Lett App NanoBioSci 11(1):3208–3217

Article  Google Scholar 

Chavan P, Salve A, Shelke R, Pansare DA (2021) A facile synthesis and biological screening of pyrimidine derivatives under ultrasonic irradiations by ZnCr2O4 nano-particles catalyst. Lett App NanoBioSci 11(1):2996–3005

Article  Google Scholar 

留言 (0)

沒有登入
gif