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Spectroscopic Studies of R(+)-α-Lipoic Acid—Cyclodextrin Complexes

α-Lipoic acid (ALA) has a chiral center at the C6 position, and exists as two enantiomers, R(+)-ALA (RALA) and S(−)-ALA (SALA). RALA is naturally occurring, and is a cofactor for mitochondrial enzymes, therefore playing a major role in energy metabolism. However, RALA cannot be used for pharmaceutic...

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Autores principales: Ikuta, Naoko, Tanaka, Akira, Otsubo, Ayako, Ogawa, Noriko, Yamamoto, Hiromitsu, Mizukami, Tomoyuki, Arai, Shoji, Okuno, Masayuki, Terao, Keiji, Matsugo, Seiichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4264178/
https://www.ncbi.nlm.nih.gov/pubmed/25387076
http://dx.doi.org/10.3390/ijms151120469
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author Ikuta, Naoko
Tanaka, Akira
Otsubo, Ayako
Ogawa, Noriko
Yamamoto, Hiromitsu
Mizukami, Tomoyuki
Arai, Shoji
Okuno, Masayuki
Terao, Keiji
Matsugo, Seiichi
author_facet Ikuta, Naoko
Tanaka, Akira
Otsubo, Ayako
Ogawa, Noriko
Yamamoto, Hiromitsu
Mizukami, Tomoyuki
Arai, Shoji
Okuno, Masayuki
Terao, Keiji
Matsugo, Seiichi
author_sort Ikuta, Naoko
collection PubMed
description α-Lipoic acid (ALA) has a chiral center at the C6 position, and exists as two enantiomers, R(+)-ALA (RALA) and S(−)-ALA (SALA). RALA is naturally occurring, and is a cofactor for mitochondrial enzymes, therefore playing a major role in energy metabolism. However, RALA cannot be used for pharmaceuticals or nutraceuticals because it readily polymerizes via a 1,2-dithiolane ring-opening when exposed to light or heat. So, it is highly desired to find out the method to stabilize RALA. The purpose of this study is to provide the spectroscopic information of stabilized RALA and SALA through complexation with cyclodextrins (CDs), α-CD, β-CD and γ-CD and to examine the physical characteristics of the resultant complexes in the solid state. The RALA-CD structures were elucidated based on the micro fourier transform infrared (FT-IR) and Raman analyses. The FT-IR results showed that the C=O stretching vibration of RALA appeared at 1717 cm(−1) and then shifted on formation of the RALA-CD complexes. The Raman spectra showed that the S–S and C–S stretching vibrations for RALA at 511 cm(−1) (S–S), 631 cm(−1) (C–S) and 675 cm(−1) (C–S) drastically weakened and almost disappeared upon complexation with CDs. Several peaks indicative of O–H vibrations also shifted or changed in intensity. These results indicate that RALA and CDs form host-guest complexes by interacting with one another.
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spelling pubmed-42641782014-12-12 Spectroscopic Studies of R(+)-α-Lipoic Acid—Cyclodextrin Complexes Ikuta, Naoko Tanaka, Akira Otsubo, Ayako Ogawa, Noriko Yamamoto, Hiromitsu Mizukami, Tomoyuki Arai, Shoji Okuno, Masayuki Terao, Keiji Matsugo, Seiichi Int J Mol Sci Article α-Lipoic acid (ALA) has a chiral center at the C6 position, and exists as two enantiomers, R(+)-ALA (RALA) and S(−)-ALA (SALA). RALA is naturally occurring, and is a cofactor for mitochondrial enzymes, therefore playing a major role in energy metabolism. However, RALA cannot be used for pharmaceuticals or nutraceuticals because it readily polymerizes via a 1,2-dithiolane ring-opening when exposed to light or heat. So, it is highly desired to find out the method to stabilize RALA. The purpose of this study is to provide the spectroscopic information of stabilized RALA and SALA through complexation with cyclodextrins (CDs), α-CD, β-CD and γ-CD and to examine the physical characteristics of the resultant complexes in the solid state. The RALA-CD structures were elucidated based on the micro fourier transform infrared (FT-IR) and Raman analyses. The FT-IR results showed that the C=O stretching vibration of RALA appeared at 1717 cm(−1) and then shifted on formation of the RALA-CD complexes. The Raman spectra showed that the S–S and C–S stretching vibrations for RALA at 511 cm(−1) (S–S), 631 cm(−1) (C–S) and 675 cm(−1) (C–S) drastically weakened and almost disappeared upon complexation with CDs. Several peaks indicative of O–H vibrations also shifted or changed in intensity. These results indicate that RALA and CDs form host-guest complexes by interacting with one another. MDPI 2014-11-07 /pmc/articles/PMC4264178/ /pubmed/25387076 http://dx.doi.org/10.3390/ijms151120469 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ikuta, Naoko
Tanaka, Akira
Otsubo, Ayako
Ogawa, Noriko
Yamamoto, Hiromitsu
Mizukami, Tomoyuki
Arai, Shoji
Okuno, Masayuki
Terao, Keiji
Matsugo, Seiichi
Spectroscopic Studies of R(+)-α-Lipoic Acid—Cyclodextrin Complexes
title Spectroscopic Studies of R(+)-α-Lipoic Acid—Cyclodextrin Complexes
title_full Spectroscopic Studies of R(+)-α-Lipoic Acid—Cyclodextrin Complexes
title_fullStr Spectroscopic Studies of R(+)-α-Lipoic Acid—Cyclodextrin Complexes
title_full_unstemmed Spectroscopic Studies of R(+)-α-Lipoic Acid—Cyclodextrin Complexes
title_short Spectroscopic Studies of R(+)-α-Lipoic Acid—Cyclodextrin Complexes
title_sort spectroscopic studies of r(+)-α-lipoic acid—cyclodextrin complexes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4264178/
https://www.ncbi.nlm.nih.gov/pubmed/25387076
http://dx.doi.org/10.3390/ijms151120469
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