Interfacial Interactions and Nanostructure Changes in DPPG/HD Monolayer at the Air/Water Interface

Lung surfactant (LS) plays a crucial role in regulating surface tension during normal respiration cycles by decreasing the work associated with lung expansion and therefore decreases the metabolic energy consumed. Monolayer surfactant films composed of a mixture of phospholipids and spreading additi...

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Main Authors: Huaze Zhu, Runguang Sun, Tao Zhang, Changchun Hao, Pengli Zhang, Juan Wang, Shaorong Li
Format: Article
Language:English
Published: Hindawi Limited 2015-01-01
Series:Journal of Nanomaterials
Online Access:http://dx.doi.org/10.1155/2015/908585
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spelling doaj-a56c671188fa495aa32e60d7a037e8fd2020-11-25T00:25:50ZengHindawi LimitedJournal of Nanomaterials1687-41101687-41292015-01-01201510.1155/2015/908585908585Interfacial Interactions and Nanostructure Changes in DPPG/HD Monolayer at the Air/Water InterfaceHuaze Zhu0Runguang Sun1Tao Zhang2Changchun Hao3Pengli Zhang4Juan Wang5Shaorong Li6College of Physics and Information Technology, Shaanxi Normal University, Chang-an Street No. 199, Xi’an 710062, ChinaCollege of Physics and Information Technology, Shaanxi Normal University, Chang-an Street No. 199, Xi’an 710062, ChinaCollege of Science, Xi’an University of Science and Technology, Yanta Road No. 58, Xi’an 710054, ChinaCollege of Physics and Information Technology, Shaanxi Normal University, Chang-an Street No. 199, Xi’an 710062, ChinaCollege of Physics and Information Technology, Shaanxi Normal University, Chang-an Street No. 199, Xi’an 710062, ChinaCollege of Physics and Information Technology, Shaanxi Normal University, Chang-an Street No. 199, Xi’an 710062, ChinaCollege of Science, Xi’an University of Science and Technology, Yanta Road No. 58, Xi’an 710054, ChinaLung surfactant (LS) plays a crucial role in regulating surface tension during normal respiration cycles by decreasing the work associated with lung expansion and therefore decreases the metabolic energy consumed. Monolayer surfactant films composed of a mixture of phospholipids and spreading additives are of optional utility for applications in lung surfactant-based therapies. A simple, minimal model of such a lung surfactant system, composed of 1,2-dipalmitoyl-sn-glycero-3-[phosphor-rac-(1-gylcerol)] (DPPG) and hexadecanol (HD), was prepared, and the surface pressure-area (π-A) isotherms and nanostructure characteristics of the binary mixture were investigated at the air/water interface using a combination of Langmuir-Blodgett (LB) and atomic force microscopy (AFM) techniques. Based on the regular solution theory, the miscibility and stability of the two components in the monolayer were analyzed in terms of compression modulus (Cs-1) , excess Gibbs free energy (ΔGexcπ) , activity coefficients (γ), and interaction parameter (ξ). The results of this paper provide valuable insight into basic thermodynamics and nanostructure of mixed DPPG/HD monolayers; it is helpful to understand the thermodynamic behavior of HD as spreading additive in LS monolayer with a view toward characterizing potential improvements to LS performance brought about by addition of HD to lung phospholipids.http://dx.doi.org/10.1155/2015/908585
collection DOAJ
language English
format Article
sources DOAJ
author Huaze Zhu
Runguang Sun
Tao Zhang
Changchun Hao
Pengli Zhang
Juan Wang
Shaorong Li
spellingShingle Huaze Zhu
Runguang Sun
Tao Zhang
Changchun Hao
Pengli Zhang
Juan Wang
Shaorong Li
Interfacial Interactions and Nanostructure Changes in DPPG/HD Monolayer at the Air/Water Interface
Journal of Nanomaterials
author_facet Huaze Zhu
Runguang Sun
Tao Zhang
Changchun Hao
Pengli Zhang
Juan Wang
Shaorong Li
author_sort Huaze Zhu
title Interfacial Interactions and Nanostructure Changes in DPPG/HD Monolayer at the Air/Water Interface
title_short Interfacial Interactions and Nanostructure Changes in DPPG/HD Monolayer at the Air/Water Interface
title_full Interfacial Interactions and Nanostructure Changes in DPPG/HD Monolayer at the Air/Water Interface
title_fullStr Interfacial Interactions and Nanostructure Changes in DPPG/HD Monolayer at the Air/Water Interface
title_full_unstemmed Interfacial Interactions and Nanostructure Changes in DPPG/HD Monolayer at the Air/Water Interface
title_sort interfacial interactions and nanostructure changes in dppg/hd monolayer at the air/water interface
publisher Hindawi Limited
series Journal of Nanomaterials
issn 1687-4110
1687-4129
publishDate 2015-01-01
description Lung surfactant (LS) plays a crucial role in regulating surface tension during normal respiration cycles by decreasing the work associated with lung expansion and therefore decreases the metabolic energy consumed. Monolayer surfactant films composed of a mixture of phospholipids and spreading additives are of optional utility for applications in lung surfactant-based therapies. A simple, minimal model of such a lung surfactant system, composed of 1,2-dipalmitoyl-sn-glycero-3-[phosphor-rac-(1-gylcerol)] (DPPG) and hexadecanol (HD), was prepared, and the surface pressure-area (π-A) isotherms and nanostructure characteristics of the binary mixture were investigated at the air/water interface using a combination of Langmuir-Blodgett (LB) and atomic force microscopy (AFM) techniques. Based on the regular solution theory, the miscibility and stability of the two components in the monolayer were analyzed in terms of compression modulus (Cs-1) , excess Gibbs free energy (ΔGexcπ) , activity coefficients (γ), and interaction parameter (ξ). The results of this paper provide valuable insight into basic thermodynamics and nanostructure of mixed DPPG/HD monolayers; it is helpful to understand the thermodynamic behavior of HD as spreading additive in LS monolayer with a view toward characterizing potential improvements to LS performance brought about by addition of HD to lung phospholipids.
url http://dx.doi.org/10.1155/2015/908585
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