Showing results (1-10 of 25) with videos related to
Sort By:
Pageof 3
Journal of Separation Science|October 9, 2019
Novel adsorptive materials by adenosine 5'-triphosphate imprinted-polymer over the surface of polystyrene nanospheres for selective separation of adenosine 5'-triphosphate biomarker from urineRamana Jadda, Sreenu Madhumanchi, Roongnapa SuedeeAnalytical Biochemistry|December 7, 2010
Interdigitated capacitive biosensor based on molecularly imprinted polymer for rapid detection of Hev b1 latex allergenChonlatid Sontimuang, Roongnapa Suedee, Franz DickertBiosensors & Bioelectronics|March 2, 2016
Dopaminergic receptor-ligand binding assays based on molecularly imprinted polymers on quartz crystal microbalance sensorsWanpen Naklua, Roongnapa Suedee, Peter A LieberzeitActa Pharmaceutica (Zagreb, Croatia)|June 8, 2017
Biomimetic insulin-imprinted polymer nanoparticles as a potential oral drug delivery systemPijush Kumar Paul, Alongkot Treetong, Roongnapa SuedeeTalanta|October 31, 2008
The use of trichloroacetic acid imprinted polymer coated quartz crystal microbalance as a screening method for determination of haloacetic acids in drinking waterRoongnapa Suedee, Wimon Intakong, Franz L DickertAnalytical Chemistry|December 9, 2015
Low-Density Lipoprotein Sensor Based on Molecularly Imprinted PolymerSuticha Chunta, Roongnapa Suedee, Peter A LieberzeitJournal of Pharmaceutical Sciences|March 12, 2005
The study of in vitro-in vivo correlation: pharmacokinetics and pharmacodynamics of albuterol dry powder inhalersTeerapol Srichana, Roongnapa Suedee, Det Muanpanarai, et al.Analytical and Bioanalytical Chemistry|July 1, 2017
High-density lipoprotein sensor based on molecularly imprinted polymerSuticha Chunta, Roongnapa Suedee, Peter A LieberzeitJournal of Pharmaceutical Sciences|September 17, 2010
Interaction of Amphotericin B with cholesteryl palmityl carbonate esterRabkwan Chuealee, Timothy S Wiedmann, Roongnapa Suedee, et al.Journal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences|November 4, 2004
Use of molecularly imprinted polymers from a mixture of tetracycline and its degradation products to produce affinity membranes for the removal of tetracycline from waterRoongnapa Suedee, Teerapol Srichana, Thitima Chuchome, et al.Pageof 3