화학공학소재연구정보센터
Korean Chemical Engineering Research, Vol.55, No.3, 287-295, June, 2017
Solid Phase Extraction of Celecoxib from Drug Matrix and Biological Fluids by Grafted Poly β-cyclodextrine/allyl Amine Magnetic Nano-particles
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Using nanotechnology, magnetic nanoparticles of iron oxide were produced via co precipitation method and followed modification with organic compounds. In the next step, functionalized monomer was provided via coupling β-cyclodextrine and allylamine onto modified magnetic nanoparticles. These nanoparticles were used to establish the adsorption rate of celecoxib. Magnetic nanoparticles are modified by (3 mercaptopropyl trimethoxysilane. Nano-adsorbent was characterized by analytical and spectroscopic methods, such as Fourier transform infrared spectroscopy, elemental analysis, thermo-gravimetric analysis, and transmission electron microscopy (TEM). Laboratory parameters, such as the kinetics of adsorption isotherms, pH, reaction temperature and capacity were optimized. Finally, by using this nanoadsorbent in the optimized condition, extraction of celecoxib from biological samples as urine, drug matrix and blood plasma was carried out by high performance liquid chromatography with sensitivity and high accuracy.
  1. Sreenivasu MK, Narayana CL, Sreenivas Rao D, Om RG, J. Pharm. Biomed. Anal., 22, 949 (2000)
  2. Zhang JY, Wang Y, Dudkowski C, Yang D, Chang M, Yuan J, Paulson SK, Breau AP, J. Mass Spectrom., 35, 1259 (2000)
  3. Paulson SK, Hribar JD, Liu NW, Hajdu EJ, Bible RH, Piergies A, Drug Metab. Dispos., 28, 308 (2000)
  4. Paulson SK, Vaughn MB, Jessen SM, Lawal Y, Gresk CJ, Yan B, J. Pharmacol. Exp. Ther., 297(2), 638 (2001)
  5. Neelam S, Sonu B, AAPS Pharm. Sci. Tech., 4(3), 33 (2003)
  6. Narender R, Tasneem R, Ramakrishna S, Chowdary K, Prakash V, AAPS Pharm. Sci. Tech., 6(1), 7 (2004)
  7. Nagarsenker MS, Joshi MS, Drug. Dev. Ind. Pharm., 31(2), 169 (2005)
  8. Dixit R, Nagarsenker M, Indian. J. Pharm. Sci., 69(3), 370 (2007)
  9. Gupta VR, Mutalik S, Patel MM, Jani GK, Acta Pharmacol. Sin., 57(2), 173 (2007)
  10. Guzman HR, Tawa M, Zhang Z, Ratanabanangkoon P, Shaw P, Gardner CR, J. Pharm. Sci., 96(10), 2686 (2007)
  11. Javed A, Shweta A, Alka A, Anil K, Rakesh K, Roop K, AAPS Pharm. Sci. Tech., 8(4), 119 (2007)
  12. Angel T, Spomenka S, Andrew K, Thomas R, Clive A, J. Control. Release, 134, 62 (2009)
  13. Azmin MN, Florence AT, Handjani-Vila RM, Stuart FB, Vanlerberghe G, Whittaker JS, J. Pharm. Pharmacol., 37, 237 (1985)
  14. Baillie AJ, Florence AT, Hume LR, Muirhead GT, Rogerson A, J. Pharm. Pharmacol., 37, 863 (1985)
  15. Namdeo A, Jain NK, J. Microencapsul., 16(6), 731 (1999)
  16. Blazek-Welsh AI, Rhodes DG, Pharm. Res., 18, 656 (2001)
  17. Hu C, Rhodes DG, Int. J. Pharm., 185, 23 (1990)
  18. Huang J, Zhong X, Wang L, Yang L, Mao H, Theranosticsn., 2, 86 (2012)
  19. Pankhurst QA, Thanh NKT, Jones SK, Dobson J, J. Phys. D-Appl. Phys., 42, 224001 (2009)
  20. Wang M, Thanou M, Pharmacol. Res., 62, 90 (2010)
  21. Lee DE, Koo H, Sun IC, Ryu JH, Kim K, Kwon IC, Chem. Soc. Rev., 41, 2656 (2012)
  22. Shubayev VI, Pisanic Ii TR, Jin S, Adv. Drug. Deliv. Rev., 61, 467 (2009)
  23. Pan B, Cui D, Sheng Y, Ozkan C, Gao F, He R, Cancer Res., 67, 8156 (2007)
  24. Qi LF, Wu LX, Zheng S, Wang YL, Fu HL, Cui DX, Biomacromolecules, 13(9), 2723 (2012)
  25. Ruan J, Wang K, Song H, Xu X, Ji J, Cui D, Nanoscale. Res. Lett., 6, 1 (2011)
  26. Nezhati MN, Panahi HA, Moniri E, Kelahrodi SR, Assadian F, Karimi M, Korean J. Chem. Eng., 27(4), 1269 (2010)
  27. Panahi HA, Sharif AAM, Bigonah M, Moniri E, Korean J. Chem. Eng., 26(6), 1723 (2009)
  28. Cole AJ, David AE, Wang J, Galban CJ, Hill HL, Yang VC, Biomaterials, 32, 2183 (2011)
  29. Gupta AK, Gupta M, Biomaterials, 26, 3995 (2005)
  30. Gupta AK, Naregalkar RR, Vaidya VD, Gupta M, Nanomedicine, 2, 23 (2007)
  31. Villanueva A, Canete M, Roca AG, Calero M, Veintemillas- Verdaguer S, Serna CJ, Nanotechnol., 20, 115103 (2009)
  32. Ye Y, Sun Y, Zhao H, Lan H, Gao M, Song F, Lou C, Li H, Wang W, Int. J. Pharm., 458, 110 (2013)
  33. Mandavian AR, Mirrahimi MAS, Chem. Eng. J., 159(1-3), 264 (2010)
  34. Langmuir I, J. Am. Chem. Soc., 40, 1361 (1918)
  35. Hall KL, Eagleton LC, Acrivos A, Vermeulen T, Ind. Eng. Chem. Fundam., 5, 212 (1966)
  36. Frendlich HM, J. Phys. Chem., 57, 385 (1906)
  37. Temkin MI, Pyzhev V, Acta Physiochim., 12, 327 (1940)
  38. Redlich O, Peterson DL, J. Phys. Chem., 63, 1024 (1959)