62
S. Iftekhar et al.
Nelson MA, Papastavros E, Dodlinger M, Hage DS (2007) Environmental analysis by on-line
immunoextraction and reversed-phase liquid chromatography: optimization of the immunoextraction/RPLC interface. J Agric Food Chem 55:3788–3797
Nelson MA, Reiter WS, Hage DS (2003) Chromatographic competitive binding immunoassays: a
comparison of the sequential and simultaneous injection methods. Biomed Chromatogr 17:188–
200
Nicolardi S, Herrera S, Bueno MJM, Fernandez-Alba AR (2012) Two new competitive ELISA
methods for the determination of caffeine and cotinine in wastewater and river waters. Anal
Methods 4:3364–3371
Nikolai LN, Mcclure EL, Macleod SL, Wong CS (2006) Stereoisomer quantification of the βblocker drugs atenolol, metoprolol, and propranolol in wastewaters by chiral high-performance
liquid chromatography–tandem mass spectrometry. J Chromatogr A 1131:103–109
Okamoto Y, Kawashima M, Hatada K (1984) Useful chiral packing materials for high-performance
liquid chromatographic resolution of enantiomers: phenylcarbamates of polysaccharides coated
on silica gel. J Am Chem Soc 1:5357–5359
Onnerfjord P, Eremin SA, Emneus J, Marko-Varga G (1998) High sample throughput flow
immunoassay utilising restricted access columns for the separation of bound and free label. J
Chromatogr A 800:219–230
Ou J, Hu L, Hu L, Li X, Zou H (2006) Determination of phenolic compounds in river water with
on-line coupling bisphenol A imprinted monolithic precolumn with high performance liquid
chromatography. Talanta 69:1001–1006
Papastavros E, Remmers RA, Snow DD, Cassada DA, Hage DS (2018) Affinity extraction of
emerging contaminants from water based on bovine serum albumin as a binding agent. J Sep Sci
41:1074–1082
Park JH, Whang YC, Jung YJ, Okamoto Y, Yamamoto C, Carr PW, McNeff CV (2003) Separation
of racemic compounds on amylose and cellulose dimethylphenylcarbamate-coated zirconia in
HPLC. J Sep Sci 26:1331–1336
Patel S, Wainer IW, Lough WJ (2006) Affinity based chiral stationary phases. In: Hage DS (ed)
Handbook of affinity chromatography, 2nd edn. CRC Press, Boca Raton, pp 571–592
Pichon V, Brothier F, Combès A (2015) Aptamer-based-sorbents for sample treatment—a review.
Anal Bioanal Chem 407:681–698
Piri-Moghadam H, Ahmadi F, Pawliszyn J (2016) A critical review of soid phase microextraction
for analysis of water samples. Trends Anal Chem 85:133–143
Qiao Y, Yang H, Wang B, Song J, Deng A (2009) Preparation and characterization of an
immunoaffinity chromatography column for the selective extraction of trace contraceptive drug
levonorgestrel from water samples. Talanta 80:98–103
Qin S, Deng S, Su L, Wang P (2012) Simultaneous determination of five sulfonamides in wastewater
using group-selective molecularly imprinted solid-phase extraction coupled with HPLC-DAD.
Anal Methods 4:4278–4283
Rollag JG, Beck-Westermeyer M, Hage DS (1996) Analysis of pesticide degradation products by tandem high-performance immunoaffinity chromatography and reversed-phase liquid
chromatography. Anal Chem 68:3631–3637
Ryu Y, Reid MJ, Thomas KV (2015) Liquid chromatography–high resolution mass spectrometry
with immunoaffinity clean-up for the determination of the oxidative stress biomarker 8-isoprostaglandin F2alpha in wastewater. J Chromatogr A 1409:146–151
Sambe H, Hoshina K, Haginaka J (2007) Molecularly imprinted polymers for triazine herbicides
prepared by multi-step swelling and polymerization method: their application to the determination
of methylthiotriazine herbicides in river water. J Chromatogr A 1152:130–137
Sanchez-Barragan I, Karim K, Costa-Fernandez JM, Piletsky SA, Sanz-medel A (2007) A
molecularly imprinted polymer for carbaryl determination in water. Sens Actuators B Chem
123:798–804
S. Iftekhar et al.
Nelson MA, Papastavros E, Dodlinger M, Hage DS (2007) Environmental analysis by on-line
immunoextraction and reversed-phase liquid chromatography: optimization of the immunoextraction/RPLC interface. J Agric Food Chem 55:3788–3797
Nelson MA, Reiter WS, Hage DS (2003) Chromatographic competitive binding immunoassays: a
comparison of the sequential and simultaneous injection methods. Biomed Chromatogr 17:188–
200
Nicolardi S, Herrera S, Bueno MJM, Fernandez-Alba AR (2012) Two new competitive ELISA
methods for the determination of caffeine and cotinine in wastewater and river waters. Anal
Methods 4:3364–3371
Nikolai LN, Mcclure EL, Macleod SL, Wong CS (2006) Stereoisomer quantification of the βblocker drugs atenolol, metoprolol, and propranolol in wastewaters by chiral high-performance
liquid chromatography–tandem mass spectrometry. J Chromatogr A 1131:103–109
Okamoto Y, Kawashima M, Hatada K (1984) Useful chiral packing materials for high-performance
liquid chromatographic resolution of enantiomers: phenylcarbamates of polysaccharides coated
on silica gel. J Am Chem Soc 1:5357–5359
Onnerfjord P, Eremin SA, Emneus J, Marko-Varga G (1998) High sample throughput flow
immunoassay utilising restricted access columns for the separation of bound and free label. J
Chromatogr A 800:219–230
Ou J, Hu L, Hu L, Li X, Zou H (2006) Determination of phenolic compounds in river water with
on-line coupling bisphenol A imprinted monolithic precolumn with high performance liquid
chromatography. Talanta 69:1001–1006
Papastavros E, Remmers RA, Snow DD, Cassada DA, Hage DS (2018) Affinity extraction of
emerging contaminants from water based on bovine serum albumin as a binding agent. J Sep Sci
41:1074–1082
Park JH, Whang YC, Jung YJ, Okamoto Y, Yamamoto C, Carr PW, McNeff CV (2003) Separation
of racemic compounds on amylose and cellulose dimethylphenylcarbamate-coated zirconia in
HPLC. J Sep Sci 26:1331–1336
Patel S, Wainer IW, Lough WJ (2006) Affinity based chiral stationary phases. In: Hage DS (ed)
Handbook of affinity chromatography, 2nd edn. CRC Press, Boca Raton, pp 571–592
Pichon V, Brothier F, Combès A (2015) Aptamer-based-sorbents for sample treatment—a review.
Anal Bioanal Chem 407:681–698
Piri-Moghadam H, Ahmadi F, Pawliszyn J (2016) A critical review of soid phase microextraction
for analysis of water samples. Trends Anal Chem 85:133–143
Qiao Y, Yang H, Wang B, Song J, Deng A (2009) Preparation and characterization of an
immunoaffinity chromatography column for the selective extraction of trace contraceptive drug
levonorgestrel from water samples. Talanta 80:98–103
Qin S, Deng S, Su L, Wang P (2012) Simultaneous determination of five sulfonamides in wastewater
using group-selective molecularly imprinted solid-phase extraction coupled with HPLC-DAD.
Anal Methods 4:4278–4283
Rollag JG, Beck-Westermeyer M, Hage DS (1996) Analysis of pesticide degradation products by tandem high-performance immunoaffinity chromatography and reversed-phase liquid
chromatography. Anal Chem 68:3631–3637
Ryu Y, Reid MJ, Thomas KV (2015) Liquid chromatography–high resolution mass spectrometry
with immunoaffinity clean-up for the determination of the oxidative stress biomarker 8-isoprostaglandin F2alpha in wastewater. J Chromatogr A 1409:146–151
Sambe H, Hoshina K, Haginaka J (2007) Molecularly imprinted polymers for triazine herbicides
prepared by multi-step swelling and polymerization method: their application to the determination
of methylthiotriazine herbicides in river water. J Chromatogr A 1152:130–137
Sanchez-Barragan I, Karim K, Costa-Fernandez JM, Piletsky SA, Sanz-medel A (2007) A
molecularly imprinted polymer for carbaryl determination in water. Sens Actuators B Chem
123:798–804
