Molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying

In pursuit of finding a more suitable way of drying microalgae that would require less energy input which will consequently lessen the production cost, a study was conducted to investigate the migration of water molecules across a cell membrane of microalgae. Molecular Dynamics simulations using GRO...

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Main Authors: Ducut, Melsa Rose D., Villagracia, Al Rey C., Corpuz, Jennifer, Arboleda, Nelson B., Jr., David, Melanie Y., Manrique, Robby B., Ubando, Aristotle T., Culaba, Alvin B.
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Published: Animo Repository 2014
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/1576
https://animorepository.dlsu.edu.ph/context/faculty_research/article/2575/type/native/viewcontent/HNICEM.2014.7016255
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-25752023-07-08T03:24:36Z Molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying Ducut, Melsa Rose D. Villagracia, Al Rey C. Corpuz, Jennifer Arboleda, Nelson B., Jr. David, Melanie Y. Manrique, Robby B. Ubando, Aristotle T. Culaba, Alvin B. In pursuit of finding a more suitable way of drying microalgae that would require less energy input which will consequently lessen the production cost, a study was conducted to investigate the migration of water molecules across a cell membrane of microalgae. Molecular Dynamics simulations using GROMACS software were utilized to obtain a molecular model of a cell membrane. The membrane model was composed of 32 dilauroylphosphatidylcholine (DLPC) lipids, 32 dioleolyphosphatidylcholine (DOPC) lipids, 32 dipalmitoylphosphatidylcholine (DPPC) lipids, 32 distearoylphosphatidylcholine (DSPC) lipids and 6000 water molecules in an all-Atom force field. The effect of varying the temperature on the bilayer thickness and the effect of varying the osmotic pressure on the water migration across the lipid bilayer were determined. The temperature was varied from 300 K to 345 K with 5 K interval and the pressure was changed from 100 MPa to 150 MPa with 10 MPa interval. Results showed that at increasing temperature the bilayer thickness increased but when it reached 340 K the bilayer thickness started thinning. Furthermore, at increasing osmotic pressure the water migration became faster. 2014-01-01T08:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/1576 info:doi/10.1109/HNICEM.2014.7016255 https://animorepository.dlsu.edu.ph/context/faculty_research/article/2575/type/native/viewcontent/HNICEM.2014.7016255 Faculty Research Work Animo Repository Microalgae—Drying Bilayer lipid membranes Molecular dynamics Physics
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Microalgae—Drying
Bilayer lipid membranes
Molecular dynamics
Physics
spellingShingle Microalgae—Drying
Bilayer lipid membranes
Molecular dynamics
Physics
Ducut, Melsa Rose D.
Villagracia, Al Rey C.
Corpuz, Jennifer
Arboleda, Nelson B., Jr.
David, Melanie Y.
Manrique, Robby B.
Ubando, Aristotle T.
Culaba, Alvin B.
Molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying
description In pursuit of finding a more suitable way of drying microalgae that would require less energy input which will consequently lessen the production cost, a study was conducted to investigate the migration of water molecules across a cell membrane of microalgae. Molecular Dynamics simulations using GROMACS software were utilized to obtain a molecular model of a cell membrane. The membrane model was composed of 32 dilauroylphosphatidylcholine (DLPC) lipids, 32 dioleolyphosphatidylcholine (DOPC) lipids, 32 dipalmitoylphosphatidylcholine (DPPC) lipids, 32 distearoylphosphatidylcholine (DSPC) lipids and 6000 water molecules in an all-Atom force field. The effect of varying the temperature on the bilayer thickness and the effect of varying the osmotic pressure on the water migration across the lipid bilayer were determined. The temperature was varied from 300 K to 345 K with 5 K interval and the pressure was changed from 100 MPa to 150 MPa with 10 MPa interval. Results showed that at increasing temperature the bilayer thickness increased but when it reached 340 K the bilayer thickness started thinning. Furthermore, at increasing osmotic pressure the water migration became faster.
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author Ducut, Melsa Rose D.
Villagracia, Al Rey C.
Corpuz, Jennifer
Arboleda, Nelson B., Jr.
David, Melanie Y.
Manrique, Robby B.
Ubando, Aristotle T.
Culaba, Alvin B.
author_facet Ducut, Melsa Rose D.
Villagracia, Al Rey C.
Corpuz, Jennifer
Arboleda, Nelson B., Jr.
David, Melanie Y.
Manrique, Robby B.
Ubando, Aristotle T.
Culaba, Alvin B.
author_sort Ducut, Melsa Rose D.
title Molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying
title_short Molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying
title_full Molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying
title_fullStr Molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying
title_full_unstemmed Molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying
title_sort molecular dynamics study on the effects of varying temperature and pressure on phosphatidylcholine lipids for microalgae drying
publisher Animo Repository
publishDate 2014
url https://animorepository.dlsu.edu.ph/faculty_research/1576
https://animorepository.dlsu.edu.ph/context/faculty_research/article/2575/type/native/viewcontent/HNICEM.2014.7016255
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