Processing of high resolution magic angle spinning spectra of breast cancer cells by the filter diagonalization method


Autoria(s): Maria, Roberta Manzano; Moraes, Tiago Bueno; Magon, Claudio Jose; Venancio, Tiago; Altei, Wanessa Fernanda; Andricopulo, Adriano Defini; Colnago, Luiz Alberto
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

05/11/2013

05/11/2013

2012

Resumo

Proton nuclear magnetic resonance (H-1 NMR) spectroscopy for detection of biochemical changes in biological samples is a successful technique. However, the achieved NMR resolution is not sufficiently high when the analysis is performed with intact cells. To improve spectral resolution, high resolution magic angle spinning (HR-MAS) is used and the broad signals are separated by a T-2 filter based on the CPMG pulse sequence. Additionally, HR-MAS experiments with a T-2 filter are preceded by a water suppression procedure. The goal of this work is to demonstrate that the experimental procedures of water suppression and T-2 or diffusing filters are unnecessary steps when the filter diagonalization method (FDM) is used to process the time domain HR-MAS signals. Manipulation of the FDM results, represented as a tabular list of peak positions, widths, amplitudes and phases, allows the removal of water signals without the disturbing overlapping or nearby signals. Additionally, the FDM can also be used for phase correction and noise suppression, and to discriminate between sharp and broad lines. Results demonstrate the applicability of the FDM post-acquisition processing to obtain high quality HR-MAS spectra of heterogeneous biological materials.

FAPESP

FAPESP

FINEP

FINEP

CNPq

CNPq

Identificador

ANALYST, CAMBRIDGE, v. 137, n. 19, supl. 2, Part 3, pp. 4546-4551, JAN, 2012

0003-2654

http://www.producao.usp.br/handle/BDPI/41860

10.1039/c2an35451a

http://dx.doi.org/10.1039/c2an35451a

Idioma(s)

eng

Publicador

ROYAL SOC CHEMISTRY

CAMBRIDGE

Relação

ANALYST

Direitos

openAccess

Copyright ROYAL SOC CHEMISTRY

Palavras-Chave #NMR-SPECTROSCOPY #DIFFUSION #SIGNALS #CHEMISTRY, ANALYTICAL
Tipo

article

original article

publishedVersion