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Year 2020, Volume: 3 Issue: 3, 153 - 158, 31.12.2020

Abstract

References

  • Augustinsson KL (1957). Assay methods for cholinesterases. Methods in Biochemical Analysis; Interscience: New York, 5: 1-64.
  • Cesarino I, Moraes FC, Lanza MR, Machado SA (2012). Electrochemical detection of carbamate pesticides in fruit and vegetables with a biosensor based on acetylcholinesterase immobilized on a composite of polyaniline-carbon nanotubes. Food Chemistry 135(3):873-879.
  • De Jong CF, Derks RJE, Bruyneel B, Niessen W, Irth H (2006). High-performance liquid chromatography- mass spectrometry-based acetylcholinesterase assay for the screening of inhibitors in natural extracts. Journal of Chromatography A. 1112 (1-2): 303-310.
  • Dingova D, Leroy J, Check A, Garaj V, Krejci E, Hrabovska A (2014). Optimal detection of cholinesterase activity in biological samples: Modifications to the standard Ellman’s assay. Analytical Biochemistry 462: 67-75.
  • Ellman GL, Courtney D, Andres V, Jr., Featherstone RM (1961). A new and rapid colorimetric determination of acetylcholinesterase activity. Biochemical Pharmacology 7: 88-95. Guilbault GG, Kramer DN (1965). Resorufin butyrate and indoxyl acetate as fluorogenic substrates for cholinesterase. Anal. Chem. 37: 120-123.
  • Hadd AG, Jacobson SC, Ramsey JM (1999). Microfluidic assays of acetylcholinesterase inhibitors. Anal.Chem. 71 (22): 5206-5212. Koelle GB, Friedenwald JS (1949). A histochemical method for localizing cholinesterase activity. Proceedings of the Society for Experimental Biology and Medicine 70 (4): 617-622.
  • Marston A, Kissling J, Hostettmann K (2002). A rapid TLC bioautographic method for the detection of acetylcholinesterase and butyrylcholinesterase inhibitors in plants. Phytochemical Analysis 13 (1): 51-54.
  • McOsker DE, Daniel LJ (1959). A colorimetric micro method for the determination of cholinesterase. Arch. Biochem. Biophys. 79: 1-7.
  • Miao Y, He N, Zhu JJ (2010). History and new developments of assays for cholinesterase activity and inhibition. Chem. Rev. 110: 5216-5234.
  • O’Farrell HK, Chattopadhyay SK, Brown HD (1977). Calorimetry of cholinesterase activity in serum. Clinical Chemistry 23(10): 1853-1856. Walker JP, Asher SA (2005). Acetylcholinesterase-based organophosphate nerve agent sensing photonic crystal. Anal. Chem. 77: 1596-1600.
  • Wininteringham FPW, Disney RW (1962). Radiometric assay of acetylcholinesterase. Nature 195: 1303.

The effects of some organic solvents on the modified Ellman procedure for the assay of cholinesterases

Year 2020, Volume: 3 Issue: 3, 153 - 158, 31.12.2020

Abstract

Ellman’s method is the most acknowledged procedure in order to determine the cholinesterase inhibitory potential of substances. It is a quick and high-throughput screening method. Therefore, it is widely used to measure the activities of original molecules and mixtures in aqueous solvents through a UV method. Regarding that many original or known substances as well as mixtures require some organic solvent to guarantee dissolution within this methodology, it becomes critical to be aware of the inhibitory potential of organic solvents. From this perspective, within the present study, it was aimed to screen the inhibitory potential of some organic solvents on human acetylcholinesterase and human butyrylcholinesterase enzymes. The results displayed the potent inhibitory function of DMSO. On the other hand, alcohols also pointed out varying degrees of deactivation of the catalytic function of cholinesterases.

References

  • Augustinsson KL (1957). Assay methods for cholinesterases. Methods in Biochemical Analysis; Interscience: New York, 5: 1-64.
  • Cesarino I, Moraes FC, Lanza MR, Machado SA (2012). Electrochemical detection of carbamate pesticides in fruit and vegetables with a biosensor based on acetylcholinesterase immobilized on a composite of polyaniline-carbon nanotubes. Food Chemistry 135(3):873-879.
  • De Jong CF, Derks RJE, Bruyneel B, Niessen W, Irth H (2006). High-performance liquid chromatography- mass spectrometry-based acetylcholinesterase assay for the screening of inhibitors in natural extracts. Journal of Chromatography A. 1112 (1-2): 303-310.
  • Dingova D, Leroy J, Check A, Garaj V, Krejci E, Hrabovska A (2014). Optimal detection of cholinesterase activity in biological samples: Modifications to the standard Ellman’s assay. Analytical Biochemistry 462: 67-75.
  • Ellman GL, Courtney D, Andres V, Jr., Featherstone RM (1961). A new and rapid colorimetric determination of acetylcholinesterase activity. Biochemical Pharmacology 7: 88-95. Guilbault GG, Kramer DN (1965). Resorufin butyrate and indoxyl acetate as fluorogenic substrates for cholinesterase. Anal. Chem. 37: 120-123.
  • Hadd AG, Jacobson SC, Ramsey JM (1999). Microfluidic assays of acetylcholinesterase inhibitors. Anal.Chem. 71 (22): 5206-5212. Koelle GB, Friedenwald JS (1949). A histochemical method for localizing cholinesterase activity. Proceedings of the Society for Experimental Biology and Medicine 70 (4): 617-622.
  • Marston A, Kissling J, Hostettmann K (2002). A rapid TLC bioautographic method for the detection of acetylcholinesterase and butyrylcholinesterase inhibitors in plants. Phytochemical Analysis 13 (1): 51-54.
  • McOsker DE, Daniel LJ (1959). A colorimetric micro method for the determination of cholinesterase. Arch. Biochem. Biophys. 79: 1-7.
  • Miao Y, He N, Zhu JJ (2010). History and new developments of assays for cholinesterase activity and inhibition. Chem. Rev. 110: 5216-5234.
  • O’Farrell HK, Chattopadhyay SK, Brown HD (1977). Calorimetry of cholinesterase activity in serum. Clinical Chemistry 23(10): 1853-1856. Walker JP, Asher SA (2005). Acetylcholinesterase-based organophosphate nerve agent sensing photonic crystal. Anal. Chem. 77: 1596-1600.
  • Wininteringham FPW, Disney RW (1962). Radiometric assay of acetylcholinesterase. Nature 195: 1303.
There are 11 citations in total.

Details

Primary Language English
Subjects Clinical Chemistry
Journal Section Research Article
Authors

Tugba Ercetin

Açelya Mavideniz

Karar Shukur This is me

Ali Khosravi This is me

Bahamehr Riazi This is me

Fatameh Salamati This is me

Houra Shahinfar This is me

Mohammed Najjaran This is me

Muzahem Ahmed This is me

Nasim Maher This is me

Negar Khajeh This is me

Nezhla Davdar This is me

Salva Shahinfar This is me

Hayrettin Ozan Gülcan

Publication Date December 31, 2020
Published in Issue Year 2020 Volume: 3 Issue: 3

Cite

APA Ercetin, T., Mavideniz, A., Shukur, K., Khosravi, A., et al. (2020). The effects of some organic solvents on the modified Ellman procedure for the assay of cholinesterases. EMU Journal of Pharmaceutical Sciences, 3(3), 153-158.
AMA Ercetin T, Mavideniz A, Shukur K, Khosravi A, Riazi B, Salamati F, Shahinfar H, Najjaran M, Ahmed M, Maher N, Khajeh N, Davdar N, Shahinfar S, Gülcan HO. The effects of some organic solvents on the modified Ellman procedure for the assay of cholinesterases. EMUJPharmSci. December 2020;3(3):153-158.
Chicago Ercetin, Tugba, Açelya Mavideniz, Karar Shukur, Ali Khosravi, Bahamehr Riazi, Fatameh Salamati, Houra Shahinfar, Mohammed Najjaran, Muzahem Ahmed, Nasim Maher, Negar Khajeh, Nezhla Davdar, Salva Shahinfar, and Hayrettin Ozan Gülcan. “The Effects of Some Organic Solvents on the Modified Ellman Procedure for the Assay of Cholinesterases”. EMU Journal of Pharmaceutical Sciences 3, no. 3 (December 2020): 153-58.
EndNote Ercetin T, Mavideniz A, Shukur K, Khosravi A, Riazi B, Salamati F, Shahinfar H, Najjaran M, Ahmed M, Maher N, Khajeh N, Davdar N, Shahinfar S, Gülcan HO (December 1, 2020) The effects of some organic solvents on the modified Ellman procedure for the assay of cholinesterases. EMU Journal of Pharmaceutical Sciences 3 3 153–158.
IEEE T. Ercetin, “The effects of some organic solvents on the modified Ellman procedure for the assay of cholinesterases”, EMUJPharmSci, vol. 3, no. 3, pp. 153–158, 2020.
ISNAD Ercetin, Tugba et al. “The Effects of Some Organic Solvents on the Modified Ellman Procedure for the Assay of Cholinesterases”. EMU Journal of Pharmaceutical Sciences 3/3 (December 2020), 153-158.
JAMA Ercetin T, Mavideniz A, Shukur K, Khosravi A, Riazi B, Salamati F, Shahinfar H, Najjaran M, Ahmed M, Maher N, Khajeh N, Davdar N, Shahinfar S, Gülcan HO. The effects of some organic solvents on the modified Ellman procedure for the assay of cholinesterases. EMUJPharmSci. 2020;3:153–158.
MLA Ercetin, Tugba et al. “The Effects of Some Organic Solvents on the Modified Ellman Procedure for the Assay of Cholinesterases”. EMU Journal of Pharmaceutical Sciences, vol. 3, no. 3, 2020, pp. 153-8.
Vancouver Ercetin T, Mavideniz A, Shukur K, Khosravi A, Riazi B, Salamati F, Shahinfar H, Najjaran M, Ahmed M, Maher N, Khajeh N, Davdar N, Shahinfar S, Gülcan HO. The effects of some organic solvents on the modified Ellman procedure for the assay of cholinesterases. EMUJPharmSci. 2020;3(3):153-8.