simulation of pulmonary monolayers: a scientific video game

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Simulation of Pulmonary Monolayers: a Scientific Video Game Huang-Chin Hung Division of Molecular Medicine Oregon Health and Science University

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Simulation of Pulmonary Monolayers: a Scientific Video Game. Huang-Chin Hung Division of Molecular Medicine Oregon Health and Science University. Alveolar Ventilation. Alveoli and Pulmonary Monolayer. Can I breath without Pulmonary Monolayers?. What are Pulmonary Surfactants?. - PowerPoint PPT Presentation

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Page 1: Simulation of Pulmonary Monolayers: a Scientific Video Game

Simulation of Pulmonary Monolayers: a Scientific Video Game

Huang-Chin Hung

Division of Molecular MedicineOregon Health and Science University

Page 2: Simulation of Pulmonary Monolayers: a Scientific Video Game

Alveolar Ventilation

Page 3: Simulation of Pulmonary Monolayers: a Scientific Video Game

Alveoli and Pulmonary Monolayer

Page 4: Simulation of Pulmonary Monolayers: a Scientific Video Game

Can I breath without Pulmonary Monolayers?

Page 5: Simulation of Pulmonary Monolayers: a Scientific Video Game

•Major Lipids (~ 90%)

DPPC (~ 30%)

• Major Proteins (~10%)

What are Pulmonary Surfactants?

Page 6: Simulation of Pulmonary Monolayers: a Scientific Video Game

How can Pulmonary Monolayers withstand high Surface Pressure?

Page 7: Simulation of Pulmonary Monolayers: a Scientific Video Game

Pulmonary monolayers function in metastable state

Not in equilibrium state.Can withhold very high surface

pressure without collapsing.Very stable.Can be achieved by fast compressing

the monolayers.

Page 8: Simulation of Pulmonary Monolayers: a Scientific Video Game

Procedures for MD simulation Input all parameters for all molecules Input coordinates for each atomMinimize the internal energyHeat up to desired temperatureRun simulation and collecting dataCompare simulation result with

experimental data.

Page 9: Simulation of Pulmonary Monolayers: a Scientific Video Game

Molecular Structure of DPPC

Page 10: Simulation of Pulmonary Monolayers: a Scientific Video Game

Constructing Monolayers

Page 11: Simulation of Pulmonary Monolayers: a Scientific Video Game

Periodic Boundary Condition

Page 12: Simulation of Pulmonary Monolayers: a Scientific Video Game

Control of Surface Pressure

Surface Tension 20C

-300

-200

-100

0

100

200

300

400

500

0 5 10 15 20 25 30

time (ps)

mN

/m

Surface Tension avg Tension

Page 13: Simulation of Pulmonary Monolayers: a Scientific Video Game

Different stats of Pulmonary Monolayers

Page 14: Simulation of Pulmonary Monolayers: a Scientific Video Game

What can we know from MD simulations?

Probability of atoms for 20 C, 20 dyne/cm

0

0.02

0.04

0.06

0.08

0.1

0.12

0.14

0.16

0.18

0 10 20 30 40 50

Distance from Center of Mass (A)

Pro

ba

bili

ty

head carbon of lipid tail middle carbon of lipid tail

first carbon of lipid tail nitrogen atom in head group

Page 15: Simulation of Pulmonary Monolayers: a Scientific Video Game

What can we know from MD simulations?

Radial Distribution of End Carbon Atom

0

0.5

1

1.5

2

2.5

3

3.5

4

4.5

0 5 10 15 20 25

Distance between two atoms (A)

Page 16: Simulation of Pulmonary Monolayers: a Scientific Video Game

SummaryPulmonary monolayers function in

metastable stat.Experimental result indicate the

formation of functional Pulmonary monolayer is a dynamic process

A better understanding of Pulmonary monolayers can be achieved from MD simulations.

Page 17: Simulation of Pulmonary Monolayers: a Scientific Video Game

Acknowledgement Steve Hall Ph.D. MD.Vincent Schram. Ph.D.Wen Fei Yan Ph.D.