Expliciting the interactions of Tramadol hydrochloride + Choline chloride-based Deep eutectic solvent +water systems: Thermodynamic aspects
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[1] A. Jain,et al. Thermophysical properties of 1-butyl-3-methylimidazolium octyl sulfate ionic liquid in aqueous and aqueous electrolyte solutions at different temperatures , 2022, Journal of Ionic Liquids.
[2] S. Zodape,et al. Solvation properties of 1-butyl 2, 3-dimethyl imidazolium chloride ionic liquid in aqueous and aqueous glycine solutions at different temperatures using volumetric and compressibility parameters , 2022, Journal of Molecular Liquids.
[3] A. Wankhade,et al. An insight into the thermodynamic investigation of important metabolite(KCl)-methyl nicotinate in aqueous solution at various temperatures , 2022, Chemical Thermodynamics and Thermal Analysis.
[4] Umesh Pratap,et al. Studies of solute–solvent interactions of imidazolium-based ionic liquid in water and aqueous l-alanine solution via volumetric and compressibility properties at T = (293.15–313.15) K , 2021 .
[5] R. Gardas,et al. Effect of alkyl chain length and temperature on volumetric, acoustic and apparent molar properties of pyrrolidinium based ionic liquids in acetonitrile , 2021, Journal of Molecular Liquids.
[6] S. Zodape,et al. Insights into the temperature and concentration dependent studies of the Anti-diabetic drug in aqueous binary and ternary (water +sucrose) mixtures at Body temperature , 2021, Chemical Physics Impact.
[7] N. Idkaidek,et al. Deep Eutectic Liquid as Transdermal Delivery Vehicle of Risperidone , 2021, Journal of Molecular Liquids.
[8] Masumeh Mokhtarpour,et al. Effect of some choline based deep eutectic solvents on volumetric and ultrasonic properties of gabapentin drug in water at T = (288.15 to 318.15) K , 2021, Journal of Molecular Liquids.
[9] Ashwani Kumar,et al. Effect of choline chloride and urea based deep eutectic solvent on the physicochemical properties of salicylic acid and salicylamide at T = (288.15 to 313.15) K , 2021, Journal of Molecular Liquids.
[10] José Juan Escobar-Chávez,et al. Transdermal Delivery Systems for Biomolecules , 2021, Journal of pharmaceutical innovation.
[11] Umesh Pratap,et al. Investigation of the thermodynamic and compressibility properties of antihypertensive drug Hydralazine hydrochloride in aqueous and aqueous amino acids solutions at various temperatures , 2020 .
[12] S. Emami,et al. Deep eutectic solvents for pharmaceutical formulation and drug delivery applications , 2020, Pharmaceutical development and technology.
[13] Mohammad Yusuf,et al. Non-invasive drug delivery technology: development and current status of transdermal drug delivery devices, techniques and biomedical applications , 2020, Biomedizinische Technik. Biomedical engineering.
[14] K. Vinayakumar,et al. A Perspective on Microneedle-Based Drug Delivery and Diagnostics in Paediatrics , 2019, Journal of personalized medicine.
[15] D. Brambilla,et al. A Snapshot of Transdermal and Topical Drug Delivery Research in Canada , 2019, Pharmaceutics.
[16] P. K. Banipal,et al. Effect of potassium chloride on the solvation behavior of caffeine, theophylline and theobromine: Volumetric, viscometric, calorimetry and spectroscopic approach. , 2018, Food chemistry.
[17] R. Reis,et al. Natural deep eutectic systems as alternative nontoxic cryoprotective agents. , 2018, Cryobiology.
[18] M. Malec-Milewska,et al. Transdermal and Topical Drug Administration in the Treatment of Pain , 2018, Molecules.
[19] Mohammed Taghi Zafarani-Moattar,et al. Thermophysical characterization of aqueous deep eutectic solvent (choline chloride/urea) solutions in full ranges of concentration at T = (293.15–323.15) K , 2017 .
[20] H. Ali. Transdermal Drug Delivery System & Patient Compliance , 2017 .
[21] I. Behal,et al. Volumetric, ultrasonic and UV absorption studies on interactions of antibiotic drug chloramphenicol with glycine and its dipeptide in aqueous solutions at T = (288.15–318.15) K , 2016 .
[22] P. Kumar,et al. Thermal and physical properties of (Choline chloride + urea + l-arginine) deep eutectic solvents , 2016 .
[23] Kaijia Xu,et al. Magnetic graphene oxide modified with choline chloride-based deep eutectic solvent for the solid-phase extraction of protein. , 2015, Analytica chimica acta.
[24] Haifeng Dong,et al. Effect of Water on the Density, Viscosity, and CO2 Solubility in Choline Chloride/Urea , 2014 .
[25] D. Aggarwal,et al. Critical attributes of transdermal drug delivery system (TDDS) – a generic product development review , 2014, Drug development and industrial pharmacy.
[26] A. Pal,et al. Solute–solvent interactions of glycine, l -alanine, and l -valine in aqueous 1-methyl imidazolium chloride ionic liquid solutions in the temperature interval (288.15 to 308.15) K , 2014 .
[27] S. Pandey,et al. Densities and Viscosities of (Choline Chloride + Urea) Deep Eutectic Solvent and Its Aqueous Mixtures in the Temperature Range 293.15 K to 363.15 K , 2014 .
[28] Meenu Singla,et al. Investigations on solute–solvent interactions of amino acids in aqueous solutions of sodium dihydrogen phosphate at different temperatures , 2014, Monatshefte für Chemie - Chemical Monthly.
[29] D. Holt,et al. Simultaneous determination of tramadol, O-desmethyltramadol and N-desmethyltramadol in human urine by gas chromatography-mass spectrometry. , 2013, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[30] G. Piccione,et al. ADP-induced platelet aggregation after addition of tramadol in vitro in fed and fasted horses plasma. , 2013, Research in veterinary science.
[31] M. Abdollahi,et al. Study of the pharmacokinetic changes of Tramadol in diabetic rats , 2013, DARU Journal of Pharmaceutical Sciences.
[32] Meng-Hui Li,et al. High-pressure density measurements for choline chloride: Urea deep eutectic solvent and its aqueous mixtures at T =(298.15 to 323.15)K and up to 50MPa , 2012 .
[33] S. Walsh,et al. Pharmacodynamic profile of tramadol in humans: influence of naltrexone pretreatment , 2012, Psychopharmacology.
[34] A. Gulati,et al. Tramadol antinociception is potentiated by clonidine through α₂-adrenergic and I₂-imidazoline but not by endothelin ET(A) receptors in mice. , 2012, European journal of pharmacology.
[35] S. Zodape,et al. Volumetric and viscometric studies of some drugs in aqueous solutions at different temperatures , 2012 .
[36] M. Paech,et al. Tramadol in pregnancy and lactation. , 2012, International journal of obstetric anesthesia.
[37] A. Sarkar,et al. Physicochemical Properties of L-Alanine in Aqueous Silver Sulphate Solutions at (298.15, 308.15, and 318.15) K , 2011 .
[38] A. Nain,et al. Volumetric, ultrasonic, and viscometric behaviour of l-histidine in aqueous-glucose solutions at different temperatures , 2011 .
[39] F. Mjalli,et al. Phosphonium-Based Ionic Liquids Analogues and Their Physical Properties , 2010 .
[40] M. .. Parmar,et al. A comparative study of partial molar volumes of some common, tetra-alkyl ammonium and multivalent electrolytes in aqueous and binary aqueous solutions of urea , 2007 .
[41] Mohammed Taghi Zafarani-Moattar,et al. Apparent molar volume and isentropic compressibility of ionic liquid 1-butyl-3-methylimidazolium bromide in water, methanol, and ethanol at T = (298.15 to 318.15) K , 2005 .
[42] Xingmei Lu,et al. A new theory for ionic liquids—the Interstice Model , 2004 .
[43] G. Prieto,et al. A volumetric study of two related amphiphilic beta-blockers as a function of temperature and electrolyte concentration , 2004 .
[44] K. R. Seddon,et al. Ionic liquids. Green solvents for the future , 2000 .
[45] Devendra Kumar. Apparent molar volume of some ω-amino acids in aqueous electrolyte systems , 1999 .
[46] V. Sosa,et al. Speed of sound in saturated pure water , 1985 .
[47] C. V. Krishnan,et al. Studies of hydrophobic bonding in aqueous alcohols: Enthalpy measurements and model calculations , 1973 .
[48] L. Hepler. Thermal expansion and structure in water and aqueous solutions , 1969 .
[49] J. Choi,et al. Tramadol induced paradoxical hyperalgesia. , 2013, Pain physician.
[50] M. El-shazly,et al. Safety and efficacy of tramadol hydrochloride on treatment of premature ejaculation. , 2013, Asian journal of andrology.
[51] J. Bhatt,et al. Study of interaction of tramadol with amlodipine in mice , 2013, Indian journal of pharmacology.
[52] David L Davies,et al. Novel solvent properties of choline chloride/urea mixtures. , 2003, Chemical communications.
[53] F. Spieweck,et al. Review: Solid and liquid density determination / Übersicht: Bestimmung der Dichte von Festkörpern und Flüssigkeiten , 1992 .
[54] A. K. Mishra,et al. Apparent molal volumes of amino acids N-acetylamino- acids, and peptides in aqueous solutions , 1984 .
[55] F. Millero. The apparent and partial molal volume of aqueous sodium chloride solutions at various temperatures , 1970 .