Long Term Goals: The ultimate purpose of this research is to improve upon our understanding of the manner in which the self-aggregation of non-ionic amphiphiles in water and other solvent environments might influence the energetics and pathways of biochemical and biophysical processes.
Specific Aims : We propose to continue to accumulate thermodynamic data for mixtures of non-ionic amphiphiles and water. There will a major focus on the enthalpies of mixing of those systems for which there is the least amount of information in the literature. We will also measure calorimetric and volumetric properties of mixtures of the same amphiphiles and the inert solvent heptane. Our recent studies give a clear indication of the formation of labile reverse micellar aggregation in the inert environment. We shall continue to develop strategies for analyzing the excess thermodynamic properties of these binary systems and for the establishment of structure-activity relationships. We plan to correlate the measured enthalpies of mixing with molecular modelling estimates of the energies of solvation of the non-ionic amphiphiles. We also wish to extend our earlier studies of the solubilization of hydrophobic metabolites by amphiphile+ water mixtures. Health Relatedness: The manner in which organic substances, including metabolites and therapeutic agents, perform in living systems is partly dictated by the nature of their functional groups and partly by their patterns of aggregation and the manner in which modify solvent structures.
Our aim i s to determine the effects of modifying the amphiphile's molecular structure upon the stability of the solvated clusters and the ability of such clusters to incorporate hydrophobic metabolites.

Project Start
2000-06-01
Project End
2001-05-31
Budget Start
Budget End
Support Year
30
Fiscal Year
2000
Total Cost
$40,378
Indirect Cost
Name
University of Texas El Paso
Department
Type
DUNS #
City
El Paso
State
TX
Country
United States
Zip Code
79968
Rocha-Gutiérrez, Beatriz A; Lee, Wen-Yee; Shane Walker, W (2016) Mass balance and mass loading of polybrominated diphenyl ethers (PBDEs) in a tertiary wastewater treatment plant using SBSE-TD-GC/MS. Water Sci Technol 73:302-8
Vargas-Medrano, Javier; Sierra-Fonseca, Jorge A; Plenge-Tellechea, Luis F (2016) 1,2-Dichlorobenzene affects the formation of the phosphoenzyme stage during the catalytic cycle of the Ca(2+)-ATPase from sarcoplasmic reticulum. BMC Biochem 17:5
Buhaya, Munir H; Galvan, Steven; Maldonado, Rosa A (2015) Incidence of Trypanosoma cruzi infection in triatomines collected at Indio Mountains Research Station. Acta Trop 150:97-9
Vasquez, Miguel A; Iniguez, Eva; Das, Umashankar et al. (2015) Evaluation of ?,?-unsaturated ketones as antileishmanial agents. Antimicrob Agents Chemother 59:3598-601
Dagda, Ruben K; Gasanov, Sardar E; Zhang, Boris et al. (2014) Molecular models of the Mojave rattlesnake (Crotalus scutulatus scutulatus) venom metalloproteinases reveal a structural basis for differences in hemorrhagic activities. J Biol Phys 40:193-216
Serna, Carylinda; Lara, Joshua A; Rodrigues, Silas P et al. (2014) A synthetic peptide from Trypanosoma cruzi mucin-like associated surface protein as candidate for a vaccine against Chagas disease. Vaccine 32:3525-32
Rodrigues, Marcio L; Nakayasu, Ernesto S; Almeida, Igor C et al. (2014) The impact of proteomics on the understanding of functions and biogenesis of fungal extracellular vesicles. J Proteomics 97:177-86
Rico-Martínez, Roberto; Walsh, Elizabeth J (2013) Sexual Reproductive Biology of a Colonial Rotifer Sinantherina socialis (Rotifera: Monogononta): Do mating strategies vary between colonial and solitary rotifer species? Mar Freshw Behav Physiol 46:419-430
Jin, Seoweon; Staniswalis, Joan G; Mallawaarachchi, Indika (2013) Principal Differential Analysis with a Continuous Covariate: Low Dimensional Approximations for Functional Data. J Stat Comput Simul 83:
Dagda, Ruben K; Gasanov, Sardar; De La Oiii, Ysidro et al. (2013) Genetic Basis for Variation of Metalloproteinase-Associated Biochemical Activity in Venom of the Mojave Rattlesnake (Crotalus scutulatus scutulatus). Biochem Res Int 2013:251474

Showing the most recent 10 out of 139 publications