Single-cell Raman micro-spectroscopy for tracking of carotenoids in cyanobacteria exposed to Mn and Zn doped ferrite nanoparticles

被引:15
作者
Nekvapil, Fran [1 ,2 ,3 ]
Bunge, Alexander [2 ]
Tudoran, Lucian Barbu [4 ,5 ]
Pinzaru, Simona Cinta [1 ,3 ]
机构
[1] Babes Bolyai Univ, Biomol Phys Dept, Str Kogalniceanu 1, Cluj Napoca 400084, Romania
[2] Natl Inst Res & Dev Isotop & Mol Technol, Phys Nanostruct Syst Dept, Str Donath 67-103, Cluj Napoca 400293, Romania
[3] Babes Bolyai Univ, RDI Inst Appl Nat Sci IRDI ANS, RDI Lab Appl Raman Spect, Fantanele 42, Cluj Napoca 400293, Romania
[4] Babes Bolyai Univ, Electron Microscopy Ctr, Clin 5-7, Cluj Napoca 400006, Romania
[5] Natl Inst Res & Dev Isotop & Mol Technol, Adv Res & Technol Ctr Alternat Energy, Donat 67-103, Cluj Napoca 400293, Romania
关键词
Raman spectroscopy; Stress; Cyanobacteria; UV?Vis absorption; Electron microscopy; Carotenoids; OXIDATIVE STRESS; PROTEINS;
D O I
10.1016/j.saa.2021.119607
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
Ferrite nanoparticles are increasingly produced and exploited as adsorbents for environmental pollutants. However, their impact on the aquatic microbiota such as cyanobacteria, are not yet investigated. Targeting the environmental monitoring context, in this paper we explored for the first time if any change in the carotenoid signal from cyanobacteria Coelomoron pussilum (AICB 1012) exposed to nonlethal doses of Mn and Zn doped ferrite nanoparticles (NPs) can be associated with the nanoaggression on single-cell level, using micro-Raman spectroscopy. UV?Vis absorption spectroscopy of the bulk culture and single-cell Raman microscopy showed that the carotenoid signal increases relative to the chlorophyll contribution upon exposure of the cells to the Mn-ferrite NPs throughout the 7 days of the experiment. The red-shift and broadening of the strongest carotenoid Raman band arising from (C@C) stretching modes indicates the change of carotenoid profile towards increased amount of b-carotene in answer to the NPs stress. The increase of this band intensity relative to the fluorescence background was also observed in Zn-ferrite NPs treatment. Using a simplified and rapid sample preparation procedure, electron microscopy in both transmission and scanning modes, showed greater coverage of the cells by the stable colloidal AgNPs than by the magnetic ferrite NPs. The latter mostly clumped together rather than adhering to the cells. The combined single-cell micro-Raman tracking of physiological response of the unicellular photosynthetic microorganisms coupled with electron microscopy approach to visualise cell-NPs interaction and the extracellular polymeric substance secretion holds the promise for rapid assessment of the NPs-induced environmental stress acting on the unicellular organisms. (c) 2021 Elsevier B.V. All rights reserved.
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页数:8
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