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Published on: June 13, 2020
[Label-free monitoring 5-FU induced SW 620 cells apoptosis using FTIR microspectroscopy]
Dong Liu1, Xue-Jun Sun2, Chao Zhang2
1Department of General Surgery, First Affiliated Hospital of Medical College of Xi'an Jiaotong University, Xi'an China. liudong522@163.com
Abstract:
The aim of the present study was to evaluate Fourier transform infrared spectroscopy (FTIR) monitoring of biochemical changes in apoptosis cells. Different concentrations of 5-fluorouracil (5-FU) treated colon cancer cell lines SW620 were used to determine the optimum concentration of 5-FU IC50 by means of MTT assay. Cell starvation and 5-Fu synergistic cell cycle arrest was in G1 and S phase. FTIR combined with flow cytometry was applied to analysis of SW 620 cells and SW620 cells treated with 5-FU for 12h, 24h (early apoptosis) and 48 h (late apoptosis) respectively. The peak position and the intensity of all bands were measured and comparison was made between the SW620 and apoptotic SW620 cells. Apoptosis cells have following characteristics compared with SW620 cells (1) The band at 1 740 cm-1 is an C=O stretching vibration. Changes in these bands can reflect lipid changes, and relative peak intensity ratio 11740/11460 significantly increased (p<0. 05), indicating that the relative contents of lipid in apoptosis cells increased. (2) The band at the 1 410 cm-1 peak represents that C-H stretching related was increased to amino acid residues and shifted to higher wave numbers compared to other groups. I1410o/I 460 at early and late death phase was significantly increased, which suggests that the relative contents of amino acid residues in apoptosis cells increased (p <0. 05). New vibrational bands at 1 120 cm-1 appeared at 24 h and increased at 48 h compared with other groups. The 1 120 cm-1 absorption band is mainly due to ser, serine and threonine C-O(H) stretching vibration, and I1120/I 1460 significantly increased (p<0. 05), indicating that the relative quantity of amino acid residues in apoptosis cells increased due to that DNA unwinds the double helix. (3) 1 240 cm-1 is mainly due to the asymmetric stretching modes of phosphodiester groups shifting to higher wave number, illustrating that nucleic acid conformation was changed in apoptosis cells. (4) The band 1 040 cm-1 associated with polysaccharide appeared at 24 and 48 h, meanwhile shifted to higher wave number, suggesting that polysaccharide decreased in late apoptotic cells, and I 1040/I1400 increased at late stage apoptosis, indicating that the relative content of polysaccharide in apoptosis cells increased. The authors' results suggest that FTIR applied to monitoring SW620 cells apoptosis may be as a potential diagnostic tool for cancer chemotherapy monitoring.
Insights
Fourier transform infrared spectroscopy (FTIR) effectively monitors biochemical changes in colon cancer cells undergoing apoptosis. This technique can identify increased lipids, amino acids, and altered nucleic acids, showing potential as a cancer chemotherapy monitoring tool.
Area of Science:
- Biochemistry
- Spectroscopy
- Cell Biology
Background:
- Apoptosis, or programmed cell death, is crucial in cancer development and treatment.
- Monitoring biochemical changes during apoptosis is vital for understanding cancer chemotherapy efficacy.
- Fourier transform infrared spectroscopy (FTIR) offers a label-free method for analyzing cellular biochemical composition.
Purpose of the Study:
- To evaluate Fourier transform infrared spectroscopy (FTIR) for monitoring biochemical alterations in apoptosis.
- To determine the optimal 5-fluorouracil (5-FU) concentration (IC50) for inducing apoptosis in SW620 colon cancer cells.
- To analyze spectral differences between normal and apoptotic SW620 cells.
Main Methods:
- SW620 colon cancer cells were treated with varying concentrations of 5-fluorouracil (5-FU).
- MTT assay was used to determine the IC50 concentration of 5-FU.
- FTIR spectroscopy combined with flow cytometry analyzed cells at different apoptosis stages (12h, 24h, 48h).
Main Results:
- FTIR identified significant changes in lipid, amino acid, nucleic acid, and polysaccharide content during apoptosis.
- Increased relative peak intensity ratios for lipids (1740/11460 cm-1) and amino acids (1410/1460 cm-1, 1120/1460 cm-1) were observed.
- Alterations in nucleic acid conformation (1240 cm-1) and polysaccharide content (1040 cm-1) were detected in apoptotic cells.
Conclusions:
- FTIR spectroscopy can detect distinct biochemical signatures of apoptosis in SW620 colon cancer cells.
- The observed spectral changes correlate with increased lipid and amino acid content and altered nucleic acid and polysaccharide levels.
- FTIR shows promise as a diagnostic tool for monitoring cancer chemotherapy effectiveness.
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