Literature DB >> 19795108

Layer-by-layer coating of bacteria with noble metal nanoparticles for surface-enhanced Raman scattering.

Mehmet Kahraman1, Alsu I Zamaleeva, Rawil F Fakhrullin, Mustafa Culha.   

Abstract

A simple layer-by-layer method to coat the bacterial cells with gold and silver nanoparticles (AuNPs and AgNPs) for the acquisition of surface-enhanced Raman scattering (SERS) spectra is reported. First, the bacteria cell wall is coated with poly (allylamine hydrochloride) (PAH), a positively charged polymer, and then with citrate reduced Au or AgNPs. In order to increase the stability of the coating, another layer of PAH is prepared on the surface. The SEM and AFM images indicate that the nanoparticles are in the form of both isolated and aggregated nanoparticles on the bacterial wall. The coating of bacterial cells with AgNPs or AuNPs not only serves for their preparation for SERS measurement but also helps to visualize the coated of bacterial cells under the ordinary white-light microscope objective due to efficient light-scattering properties of Au and AgNPs. A comparative study single versus aggregates of bacterial cells is also demonstrated for possible single bacterial detection with SERS. The two bacteria that differ in shape and cell wall biochemical structure, Escherichia coli and Staphylococcus cohnii, Gram-negative and -positive, respectively, are used as models. The preliminary results reveal that the approach could be used for single bacterial cell identification.

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Year:  2009        PMID: 19795108     DOI: 10.1007/s00216-009-3159-0

Source DB:  PubMed          Journal:  Anal Bioanal Chem        ISSN: 1618-2642            Impact factor:   4.142


  20 in total

1.  Black silicon as a platform for bacterial detection.

Authors:  Jennifer S Hartley; M Myintzu Hlaing; Gediminas Seniutinas; Saulius Juodkazis; Paul R Stoddart
Journal:  Biomicrofluidics       Date:  2015-11-03       Impact factor: 2.800

2.  Spatial Mapping of Pyocyanin in Pseudomonas Aeruginosa Bacterial Communities Using Surface Enhanced Raman Scattering.

Authors:  Sneha Polisetti; Nameera F Baig; Nydia Morales-Soto; Joshua D Shrout; Paul W Bohn
Journal:  Appl Spectrosc       Date:  2016-07-20       Impact factor: 2.388

3.  The biochemical origins of the surface-enhanced Raman spectra of bacteria: a metabolomics profiling by SERS.

Authors:  W Ranjith Premasiri; Jean C Lee; Alexis Sauer-Budge; Roger Théberge; Catherine E Costello; Lawrence D Ziegler
Journal:  Anal Bioanal Chem       Date:  2016-04-21       Impact factor: 4.142

Review 4.  Gold Nanoparticles for In Vitro Diagnostics.

Authors:  Wen Zhou; Xia Gao; Dingbin Liu; Xiaoyuan Chen
Journal:  Chem Rev       Date:  2015-06-26       Impact factor: 60.622

5.  Bio-imaging, detection and analysis by using nanostructures as SERS substrates.

Authors:  Wei Xie; Penghe Qiu; Chuanbin Mao
Journal:  J Mater Chem       Date:  2011-04-14

6.  Plasmonic nanoparticles assemblies templated by helical bacteria and resulting optical activity.

Authors:  Wenchun Feng; Usha Kadiyala; Jiao Yan; Yichun Wang; Victor J DiRita; J Scott VanEpps; Nicholas A Kotov
Journal:  Chirality       Date:  2020-04-22       Impact factor: 2.437

7.  Layer-by-layer polyelectrolyte encapsulation of Mycoplasma pneumoniae for enhanced Raman detection.

Authors:  Omar E Rivera-Betancourt; Edward S Sheppard; Duncan C Krause; Richard A Dluhy
Journal:  Analyst       Date:  2014-07-14       Impact factor: 4.616

8.  Surface-enhanced Raman scattering (SERS) revealing chemical variation during biofilm formation: from initial attachment to mature biofilm.

Authors:  Yuanqing Chao; Tong Zhang
Journal:  Anal Bioanal Chem       Date:  2012-07-21       Impact factor: 4.142

9.  A Self-Referencing Detection of Microorganisms Using Surface Enhanced Raman Scattering Nanoprobes in a Test-in-a-Tube Platform.

Authors:  Nan Xiao; Chao Wang; Chenxu Yu
Journal:  Biosensors (Basel)       Date:  2013-09-13

10.  Development of functionalised polyelectrolyte capsules using filamentous Escherichia coli cells.

Authors:  Franziska L Lederer; Tobias J Günther; Ulrike Weinert; Johannes Raff; Katrin Pollmann
Journal:  Microb Cell Fact       Date:  2012-12-23       Impact factor: 5.328

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