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Continued development of Probabilistic Molecular Dynamics

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Available Theoretical/Computational Research Projects Isaac C. Sanchez Statistical Thermodynamics of Polymers with a Biophysics Emphasis. Continued development of Probabilistic Molecular Dynamics Computer/Analytical models for the Cold Denaturation of Proteins - PowerPoint PPT Presentation
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Continued development of Probabilistic Continued development of Probabilistic Molecular Dynamics Molecular Dynamics Computer/Analytical models for the Cold Denaturation of Proteins Computer simulation of cell aggregation & Available Theoretical/Computational Research Projects Isaac C. Sanchez Statistical Thermodynamics of Polymers with a Biophysics Emphasis
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Page 1: Continued development of Probabilistic Molecular Dynamics

Continued development of Probabilistic Molecular DynamicsContinued development of Probabilistic Molecular Dynamics

Computer/Analytical models for the Cold Denaturation of Proteins

Computer simulation of cell aggregation & growth onto a tissue scaffold

Available Theoretical/Computational Research ProjectsIsaac C. Sanchez

Statistical Thermodynamics of Polymers with a Biophysics Emphasis

Page 2: Continued development of Probabilistic Molecular Dynamics

Folding a Polymer Chain into a Simulation Box

Page 3: Continued development of Probabilistic Molecular Dynamics

COCO22

Diffusion by Probabilistic Molecular Dynamics

Page 4: Continued development of Probabilistic Molecular Dynamics

Solubility by Monte Carlo Simulation

COCO22

Page 5: Continued development of Probabilistic Molecular Dynamics

Computer/Analytical models for the Cold Denaturation of ProteinsComputer/Analytical models for the Cold Denaturation of Proteins

Computer simulation of cell aggregation & growth onto a tissue scaffold

Continued development of Probabilistic Molecular Dynamics

Available Theoretical/Computational Research ProjectsIsaac C. Sanchez

Statistical Thermodynamics of Polymers with a Biophysics Emphasis

Page 6: Continued development of Probabilistic Molecular Dynamics

Coil-Globule Transitions

Coil:S ~ r3/5

Globule:S ~ r1/3

T

x

T=F

UCST

LCST

Heating-inducedCGT (HCGT)

Cooling-inducedCGT (CCGT)

Globule:S ~ r1/3

Page 7: Continued development of Probabilistic Molecular Dynamics

Similarity to Gas-Liquid Transition

Page 8: Continued development of Probabilistic Molecular Dynamics

Globular Protein Structure

Page 9: Continued development of Probabilistic Molecular Dynamics

Motivations

• Cold–denaturation of proteins

• Drug delivery applications

Page 10: Continued development of Probabilistic Molecular Dynamics

Smart Hydrogels

• Hydrogels are made by cross-linking a water soluble polymer.• Expansion-contraction transition temperature is the approximately the same as the transition temperature of the uncross-linked polymer.• Hydrogels can be made to be target specific.

Page 11: Continued development of Probabilistic Molecular Dynamics

The Dream

Imagine delivering a drug imbibed in a gel via the blood stream to a diseased body part or organ. On arrival the gel

interacts with the diseased cells releasing the drug with the gel safely

dissolving.

Page 12: Continued development of Probabilistic Molecular Dynamics

Recent PhD Titles

• Phase and Conformational Behavior of LCST-driven Stimuli Responsive Polymers

• Effects of Supercritical Fluids on Thin Polymer Films

• Empty Space and How Things Move Around in It

• Monte Carlo Studies of Polymer Chain Solubility in Water

• Exploring Solvent Properties of High Pressure CO2 via Computer Simulation

• Monte Carlo Approaches to the Protein Folding Problem

Page 13: Continued development of Probabilistic Molecular Dynamics

Selected Recent Publications• “Gas Diffusion in Glasses via a Probabilistic Molecular Dynamics”

Frank T. Wilmore and Isaac C. Sanchez, J. Chem. Phys. 126, 234502, (2007) .

• “Welding Immiscible Polymers with a Supercritical Fluid,”

Xiaochu Wang and Isaac C. Sanchez, Langmuir 23, 12192, 2007

• “Structural, Sorption and Transport Characteristics of an Ultrapermeable Polymer ,” Xiao-Yan Wang, Anita Hill, Benny D. Freeman, & Isaac C. Sanchez, J. Membrane Sci., 314, 15, (2008).

• “A Model for a Thermally Induced Polymer Coil-to-Globule Transition,”

David S. Simmons and Isaac C. Sanchez, Macromolecules, 41, 5885 (2008).

• “On the Asymptotic Properties of a Hard Sphere Fluid,”

Isaac C. Sanchez and Jang S. Lee, , J. Phys. Chem. B, 113, 15572-15580, (2009).

• “Pressure Effects on Polymer Coil-Globule Transitions near an LCST”

David S. Simmons and Isaac C. Sanchez, Macromolecules 43, 1571–1574 (2010).


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