The Diversity of Linear Conjugated Polyenes and Colours in Nature: Raman Spectroscopy as a Diagnostic Tool

被引:21
作者
Maia, Lenize F. [1 ]
De Oliveira, Vanessa E. [2 ]
Edwards, Howell G. M. [3 ]
De Oliveira, Luiz Fernando C. [1 ]
机构
[1] Univ Fed Juiz De Fora, Dept Quim, Nucleo Espect & Estrutura Mol, Campus Univ S-N, BR-36033620 Martelos Juiz De Fora, MG, Brazil
[2] Univ Fed Fluminense, Dept Ciencias Nat, Campus Univ Rio Das Ostras,Rua Recife,Lotes 1-7, BR-28895532 Rio Das Ostras, RJ, Brazil
[3] Univ Bradford, Fac Life Sci, Sch Chem & Biosci, Bradford BD7 1DP, W Yorkshire, England
关键词
carotenoids; conjugated polyenes; polyenals; polyolefinic fatty acids; Raman spectroscopy; PRESSURE LIQUID-CHROMATOGRAPHY; LIGHT-HARVESTING COMPLEX; DONATOR ACCEPTOR MAP; CIS-TRANS ISOMERS; RESONANCE RAMAN; IN-SITU; ELECTRONIC ABSORPTION; OXIDATIVE STRESS; PURPLE PIGMENT; CANCER CHEMOPREVENTION;
D O I
10.1002/cphc.202000818
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This review is centered on the linear conjugated polyenes, which encompasses chromatic biomolecules, such as carotenoids, polyunsaturated aldehydes and polyolefinic fatty acids. The linear extension of the conjugated double bonds in these molecules is the main feature that determines the spectroscopic properties as light-absorbing. These classes of compounds are responsible for the yellow, orange, red and purple colors which are observed in their parent flora and fauna in nature. Raman spectroscopy has been used as analytical tool for the characterization of these molecules, mainly due to the strong light scattering produced by the delocalized pi electrons in the carbon chain. In addition, conjugated polyenes are one of the main target molecular species for astrobiology, and we also present a brief discussion of the use of Raman spectroscopy as one of the main analytical tools for the detection of polyenes extra-terrestrially.
引用
收藏
页码:231 / 249
页数:19
相关论文
共 212 条
  • [1] New look inside human breast ducts with Raman imaging. Raman candidates as diagnostic markers for breast cancer prognosis: Mammaglobin, palmitic acid and sphingomyelin
    Abramczyk, Halina
    Brozek-Pluska, Beata
    [J]. ANALYTICA CHIMICA ACTA, 2016, 909 : 91 - 100
  • [2] Isolation and HPLC method development of azafrin from Alectra parasitica var. chitrakutensis
    Agrawal, Poonam
    Laddha, Kirti
    Tiwari, Ashok
    [J]. NATURAL PRODUCT RESEARCH, 2014, 28 (13) : 940 - 944
  • [3] Localized induction of a generalized response against multiple biotic agents in Caribbean sea fans
    Alker, AP
    Kim, K
    Dube, DH
    Harvell, CD
    [J]. CORAL REEFS, 2004, 23 (03) : 397 - 405
  • [4] Carotenoid content and reflectance of yellow and red nuptial plumages in widowbirds (Euplectes spp.)
    Andersson, Staffan
    Prager, Maria
    Johansson, E. I. Anette
    [J]. FUNCTIONAL ECOLOGY, 2007, 21 (02) : 272 - 281
  • [5] Aulinger K, 2001, Z NATURFORSCH C, V56, P495
  • [6] Biological roles of fungal carotenoids
    Avalos, Javier
    Carmen Limon, M.
    [J]. CURRENT GENETICS, 2015, 61 (03) : 309 - 324
  • [7] Tissue-specific accumulation of carotenoids in carrot roots
    Baranska, Malgorzata
    Baranski, Rafal
    Schulz, Hartwig
    Nothnagel, Thomas
    [J]. PLANTA, 2006, 224 (05) : 1028 - 1037
  • [8] Recent Advances in Raman Analysis of Plants: Alkaloids, Carotenoids, and Polyacetylenes
    Baranska, Malgorzata
    Roman, Maciej
    Dobrowolski, Jan Cz.
    Schulz, Hartwig
    Baranski, Rafal
    [J]. CURRENT ANALYTICAL CHEMISTRY, 2013, 9 (01) : 108 - 127
  • [9] Raman investigation of pigmentary molecules in the molluscan biogenic matrix
    Barnard, W
    de Waal, D
    [J]. JOURNAL OF RAMAN SPECTROSCOPY, 2006, 37 (1-3) : 342 - 352
  • [10] Frequency dispersion reveals chromophore diversity and colour-tuning mechanism in parrot feathers
    Barnsley, Jonathan E.
    Tay, Elliot J.
    Gordon, Keith C.
    Thomas, Daniel B.
    [J]. ROYAL SOCIETY OPEN SCIENCE, 2018, 5 (07):