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Article

Tocopheryl Succinate-Induced Structural Changes in DPPC Liposomes: DSC and ANS Fluorescence Studies

by
Grażyna Neunert
1,
Jolanta Tomaszewska-Gras
2,
Stanislaw Witkowski
3 and
Krzysztof Polewski
1,*
1
Department of Physics and Biophysics, Faculty of Food Science and Nutrition, Poznan University of Life Sciences, Wojska Polskiego 38/42, 60-637 Poznań, Poland
2
Department of Food Safety and Quality Management, Faculty of Food Science and Nutrition, Poznan University of Life Sciences, Wojska Polskiego 31/33, 60-624 Poznań, Poland
3
Faculty of Chemistry, University of Bialystok, Ciolkowskiego 1K, 15-245 Bialystok, Poland
*
Author to whom correspondence should be addressed.
Molecules 2020, 25(12), 2780; https://doi.org/10.3390/molecules25122780
Submission received: 12 May 2020 / Revised: 10 June 2020 / Accepted: 12 June 2020 / Published: 16 June 2020
(This article belongs to the Special Issue 25th Anniversary of Molecules—Recent Advances in Physical Chemistry)

Abstract

Recent studies show that alpha-tocopheryl succinate (TS) exhibits selective toxicity against cancer cells. In this study, we investigated the effect of TS’s presence on the physico-chemical and structural properties of DPPC liposomes using fluorescence parameters (intensity, lifetime, and position of emission maximum) of 1-anilino-8-naphtalene sulphonate (ANS), differential scanning calorimetry (DSC) and zeta potential methods. Increasing the TS presence in the DPPC gel phase produced ANS fluorescence enhancement with a hypsochromic shift of the maximum. The zeta potential measurements show an increase in the negative surface charge and confirmed that this process is connected with the hydrophobic properties of dye, which becomes located deeper into the interphase region with a progressing membrane disorder. Temperature dependence studies showed that an increase in temperature increases the ANS fluorescence and shifts the ANS maximum emission from 464 to 475 nm indicating a shift from hydrophobic to a more aqueous environment. In the liquid crystalline phase, the quenching of ANS fluorescence occurs due to the increased accessibility of water to the ANS located in the glycerol region. The DSC results revealed that increasing the presence of TS led to the formation of multicomponent DSC traces, indicating the formation of intermediate structures during melting. The present results confirmed that TS embedded into the DPPC membrane led to its disruption due to destabilisation of its structure, which confirmed the measured biophysical parameters of the membrane.
Keywords: DPPC liposome; phase transition; membrane permeation; differential scanning calorimetry; ANS fluorescence; tocopheryl succinate DPPC liposome; phase transition; membrane permeation; differential scanning calorimetry; ANS fluorescence; tocopheryl succinate
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MDPI and ACS Style

Neunert, G.; Tomaszewska-Gras, J.; Witkowski, S.; Polewski, K. Tocopheryl Succinate-Induced Structural Changes in DPPC Liposomes: DSC and ANS Fluorescence Studies. Molecules 2020, 25, 2780. https://doi.org/10.3390/molecules25122780

AMA Style

Neunert G, Tomaszewska-Gras J, Witkowski S, Polewski K. Tocopheryl Succinate-Induced Structural Changes in DPPC Liposomes: DSC and ANS Fluorescence Studies. Molecules. 2020; 25(12):2780. https://doi.org/10.3390/molecules25122780

Chicago/Turabian Style

Neunert, Grażyna, Jolanta Tomaszewska-Gras, Stanislaw Witkowski, and Krzysztof Polewski. 2020. "Tocopheryl Succinate-Induced Structural Changes in DPPC Liposomes: DSC and ANS Fluorescence Studies" Molecules 25, no. 12: 2780. https://doi.org/10.3390/molecules25122780

APA Style

Neunert, G., Tomaszewska-Gras, J., Witkowski, S., & Polewski, K. (2020). Tocopheryl Succinate-Induced Structural Changes in DPPC Liposomes: DSC and ANS Fluorescence Studies. Molecules, 25(12), 2780. https://doi.org/10.3390/molecules25122780

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