| Literature DB >> 31717715 |
Fazle Rakib1, Carmen M Ali1, Mohammed Yousuf2, Mohammed Afifi1, Pooja R Bhatt1, Ehsan Ullah3, Khalid Al-Saad1, Mohamed H M Ali4,5.
Abstract
OBJECTIVE: Brain damage, long-term disability and death are the dreadful consequences of ischemic stroke. It causes imbalance in the biochemical constituents that distorts the brain dynamics. Understanding the sub-cellular alterations associated with the stroke will contribute to deeper molecular understanding of brain plasticity and recovery. Current routine approaches examining lipid and protein biochemical changes post stoke can be difficult. Fourier Transform Infrared (FTIR) imaging spectroscopy can play a vital role in detecting these molecular alterations on a sub-cellular level due to its high spatial resolution, accuracy and sensitivity. This study investigates the biochemical and molecular changes in peri-infract zone (PIZ) (contiguous area not completely damaged by stroke) and ipsi-lesional white matter (WM) (right below the stroke and PIZ regions) nine weeks post photothrombotic ischemic stroke in rats.Entities:
Keywords: Fourier transform infrared (FTIR) imaging spectroscopy; photothrombotic stroke; transmission electron microscope (TEM), brain ischemia
Year: 2019 PMID: 31717715 PMCID: PMC6895834 DOI: 10.3390/brainsci9110293
Source DB: PubMed Journal: Brain Sci ISSN: 2076-3425
Spectral regions used for analytical interpretation for Stroke study.
| Infrared Band Assignment | Spectral Range (cm−1) | Comments | |
|---|---|---|---|
| Amide I + II | 1700–1500 | Total protein region | |
| Protein components | Amide I | 1700–1600 | Specifically sensitive to protein secondary structure |
| Amide II | 1555–1535 | Mainly ν(C–N) associated with proteins | |
| β-sheet | 1610–1635 | Functional protein, protein secondary structure | |
| α-helix | 1660–1650 | Functional protein, protein secondary structure | |
| Random coil | 1645–1630 | protein secondary structure | |
| C-H region | 3100–2800 | Total lipid region | |
| Lipid component | νsCH2 | 2852–2800 | to measure lipid acyl chain length |
| νasCH2 | 2915–2930 | ||
| νasCH3 | 2950–2960 | to measure concentration of methyl content | |
| 1755–1715 | to measure oxidative stress | ||
| 3000–3027 | to measure unsaturated lipid |
ν = stretching vibration; νas = asymmetric stretch; νs = symmetric stretch. * Resolutions Pro data analyzing software (V5.0), Cytospec (V2.00.03) Origin Lab (2019), Matlab (V2018b) and Cytospec (2.00.06) were used intensively to process all spectra and spectral images.
Figure 1The hematoxylin and eosin (H&E) staining and transmission electron microscopy (TEM) images. (A) Contra-lesional and Ipsi-lesional hemispheres of nine weeks stroke brain tissues showing the regions of interest—peri-infract zone (PIZ) and white matter (WM). (B) Representative TEM images of contra-lesional cortex (unaffected neurons), whereas (B) representing ipsi-lesional PIZ (affected side) and (B) representing ipsi-lesional WM showing the ultrastructural changes—axonal shearing, formation of vacuoles and swelling marked with black arrows on the images. Scale bar = 100 µm for H&E and 1 µm for TEM.
Figure 2Fourier Transform Infrared (FTIR) biochemical images of Total Lipid (C-H region) and Total Protein (Amide I + II) on (A) Contra-lesional and (B) Ipsi-lesional hemisphere of nine weeks post stroke brain tissues. The images show significant changes in distribution of lipid and protein at peri-infract zone (PIZ) and white matter (WM). The stars in the bright field images shows where the spectra where taken. The color bars showing the intensity of the biochemical components—red as maximum and blue as minimum. Scale bar = 100 µm.
Figure 3Fourier Transform Infrared (FTIR) images of different lipid components—Olefin=CH/Lipid, Lipid ester/Lipid, CH2/Lipid, CH3/Lipid and Lipid/Protein at (A) Contra-lesional and (B) Ipsi-lesional of nine weeks post stroke brain tissue. The color bars showing the intensity of the biochemical components—red as maximum and blue as minimum. Scale bar = 100 µm.
Figure 4Comparison of Fourier Transform Infrared (FTIR) spectra from (A) White matter—WM and (B) Peri-infract zone—PIZ at contra-lesional (black) and ipsi-lesional (red) hemisphere of nine weeks post stroke showing the changes of peaks in Protein and Lipid regions separately. (C) Representative curve fitting spectra from– contra-lesional gray matter (GM) (left) and ipsi-lesional PIZ (right) quantifying changes in relative amount of aggregated protein from α-helix and β-sheet variations. (D) Representative second derivative spectra from PIZ showing α-helix and β-sheet variations. The peak assignments (name + wavenumbers) are specified by blue arrow.
Normalized values of biochemical components in regions of interest (ROI) at both sides.
| ROI | Total Lipid | Total Protein | Lipid/Protein | CH2/Lipid | CH3/Lipid | Olefin/Lipid | Lipid Ester/Lipid | |
|---|---|---|---|---|---|---|---|---|
| Contra-lesional | GM | 0.69 ± 0.022 * | 14.881 ± 0.043 * | 5.887 ± 0.0013 ** | 0.233 ± 0.0001 ** | 0.165 ± 0.0003 ** | 0.0032 ± 0.0003 ** | 0.063 ± 0.0051 ** |
| WM | 1.39 ± 0.072 * | 9.061 ± 0.0014 * | 6.991 ± 0.0013 ** | 0.341 ± 0.0002 ** | 0.281 ± 0.0002 ** | 0.0045 ± 0.0003 ** | 0.086 ± 0.0031 ** | |
| Ipsi-lesional | PIZ | 0.59 ± 0.032 ** | 11.003 ± 0.012 ** | 5.256 ± 0.0033 ** | 0.194 ± 0.0002 ** | 0.394 ± 0.0003 ** | 0.0052 ± 0.0005 ** | 0.057 ± 0.0062 ** |
| WM | 0.93 ± 0.052 ** | 8.995 ± 0.0014 ** | 6.367 ± 0.0013 ** | 0.125 ± 0.0001 ** | 0.399 ± 0.0006 ** | 0.0062 ± 0.0003 ** | 0.067 ± 0.0033 ** |
The values are shown as ‘mean ± standard deviation’ for each group. The degree of significance is denoted as: * p < 0.05, ** p < 0.0001 and obtained by comparing each treated group with the control group. ROI: regions of interest; GM: gray matter; WM: white matter; PIZ: peri-infract zone.
Ratios of protein alterations in GM and PIZ.
| Location of Brain | Contra-Lesional GM | Ipsi-Lesional PIZ | |
|---|---|---|---|
| Ratios | |||
| α-helix/Amide I | 51% * | 32% * | |
| β-sheet/Amide I | 37% * | 66% * | |
| Random coil/Amide I | 12% * | 10% * |
The degree of significance is denoted as: * p < 0.05. PIZ: peri-infract zone.