| Literature DB >> 34527954 |
Aoli Xiong1,2,3, Simran Kaushal4,5, Ian Junjie Tay4, Bevin P Engelward4, Jongyoon Han2,3,4,6, Peter R Preiser1,3.
Abstract
Comet assay is a standard approach for studying DNA damage in malaria, but high-throughput options are not available. The CometChip was previously developed using mammalian cells as a high-throughput version of the comet assay. It is based on the same principle as the comet assay but provides greater efficacy, automated data processing, and improved consistency between experiments. In this protocol, we present MalariaCometChip to quantitatively assess drug-induced DNA damage in Plasmodium falciparum. For complete details on the use and execution of this protocol, please refer to Xiong et al. (2020).Entities:
Keywords: Biotechnology and bioengineering; High-Throughput Screening; Microbiology; Microscopy; Molecular Biology
Mesh:
Substances:
Year: 2021 PMID: 34527954 PMCID: PMC8430384 DOI: 10.1016/j.xpro.2021.100797
Source DB: PubMed Journal: STAR Protoc ISSN: 2666-1667
Figure 1Depiction of the CometChip apparatus
The CometChip apparatus consists of a glass plate onto which a GelBond® film with micropatterned agarose is placed. The agarose gel is then overlaid with a bottomless 96-well plate to create 96 macrowells, each of which contains ~300 microwells. The bottomless 96-well plate is affixed to the glass plate using 1.5” binder clips.
Figure 2Blood smear of enriched live ring stage parasites after SLO treatment
Scale bar, 10 μm.
Figure 3Illustration of key steps for on-chip (A) and off-chip (B) drug treatment
Figure 4Illustration of image analysis using guicometanalyzer algorithm (Figure S1 from Xiong et al., 2020)
Guicometanalyzer is customized software developed in MATLAB that can be used to analyze images generated from the CometChip experiment. During the analysis, the algorithm can automatically identify comets in the microarray, differentiate the head and tail of each comet, and report values accordingly as shown in the figure.
(A) Dialog window for file selection and parameter settings.
(B) Analysis of one individual comet; (i) the head is defined as the region between the white and red vertical lines and the tail is defined as the region between the red and blue vertical lines. (ii) Parameters reported by the algorithm.
(C) The text file list generated by the algorithm for each macrowell.
(D) Data layout in each text file. For each image file representing one macrowell, a text file containing all the reported value will be generated. Median can then be calculated for each well and exported to an Excel file for further analysis.
Example of median values calculated from raw data processed by guicometanalyzer
| Concentration of H2O2 | 0 μM | 100 μM | 250 μM | 500 μM | 1000 μM |
|---|---|---|---|---|---|
| 01 | 02 | 03 | 04 | 05 | |
| A | 11.7431 | 25.4292 | 38.4646 | 71.1999 | 84.9277 |
| B | 17.167 | 37.4377 | 40.2895 | 64.3712 | 74.1999 |
| C | 13.9267 | 35.1313 | 48.37405 | 68.3496 | 81.4094 |
| Mean | 14.27893 | 32.66607 | 42.37605 | 67.97357 | 80.179 |
Columns 1–5 represent increasing concentrations of drug treatment. Rows A, B, and C represent technical triplicates.
| REAGENT or RESOURCE | SOURCE | IDENTIFIER |
|---|---|---|
| RPMI Medium 1640 | Gibco | Cat#31800089 |
| Sodium bicarbonate | Sigma-Aldrich | Cat#S5761 |
| Hypoxanthine | Sigma-Aldrich | Cat#H9636 |
| Gentamicin | Gibco | Cat#15750060 |
| AlbuMAX™ II Lipid-Rich BSA | Gibco | Cat#11021037 |
| D-Sorbitol | Sigma-Aldrich | Cat#S6021 |
| Low melting point agarose | ThermoFisher Scientific | Cat#16520050 |
| Normal melting point agarose | Bio-Rad | Cat#1613101 |
| Rectangular petri plates | VWR | Cat#73521-420 |
| Phosphate Buffered Saline | Lonza | Cat#17–516F (38210090) |
| Sodium chloride | Sigma-Aldrich | Cat#S3014 |
| Disodium EDTA | Sigma-Aldrich | Cat#E5134 |
| Trizma® base (Tris base) | Sigma-Aldrich | Cat#T1503 |
| Triton X-100 | Sigma-Aldrich | Cat#T8787 |
| Trizma® hydrochloride | Sigma-Aldrich | Cat#T3523 |
| SYBR™ Gold | InvitrogenTM | Cat#S11494 |
| Streptolysin O | Sigma-Aldrich | Cat#S5265-25KU |
| Dithiothreitol | Sigma-Aldrich | Cat#10197777001 |
| Percoll | Sigma-Aldrich | Cat#P1644 |
| Sodium hydroxide | Sigma-Aldrich | Cat#S5881-500G |
| Artesunate | Sigma-Aldrich | Cat#A3731 |
| Plasmodium falciparum 3D7 | MR4 | N/A |
| ImageJ | ||
| MATLAB | The MathWorks Inc. | 2018a |
| Guicometanalyzer | ||
| PDMS stamp | N/A | |
| GelBond® film | Lonza | Cat#53748; 110 mm |
| Bio-OneTM 96-Well No Bottom Microplates | Greiner | Cat#07-000-626 |
| Reagents | Final concentration | Amount |
|---|---|---|
| RPMI 1640 | - | Up to 1 L |
| Sodium bicarbonate | 2.3 g/L | 2.3 g |
| AlbuMAX® II Lipid-Rich BSA | 2.5 g/L | 2.5 g |
| Hypoxanthine | 0.05 g/L | 0.05 g |
| Gentamicin | 10 mg/L | 1 mL |
| Reagents | Final concentration | Amount |
|---|---|---|
| RPMI 1640 | - | Up to 1 L |
| Sodium bicarbonate | 2.3 g/L | 2.3 g |
| Hypoxanthine | 0.05 g/L | 0.05 g |
| Gentamicin | 10 mg/L | 1 mL |
| Reagents | Final concentration | Amount |
|---|---|---|
| D-sorbitol powder | 5% | 25 g |
| 1 | - | 500 mL |
| Reagents | Final concentration | Amount |
|---|---|---|
| Percoll solution | 63% | 63 mL |
| 10 | 10% | 10 mL |
| iRPMI | 27% | 27 mL |
| Reagents | Final concentration | Amount |
|---|---|---|
| SLO | - | 25,000 units |
| 1 | - | 2.25 mL |
| Reagents | Final concentration | Amount |
|---|---|---|
| DTT | 1 M | 154 mg |
| Deionized water | - | 1 mL |
| Reagents | Final concentration | Amount |
|---|---|---|
| NaCl | 2.5 M | 146.1 g |
| Disodium EDTA | 100 mM | 37.22 |
| Tris base | 10 mM | 1.211 g |
| Sodium hydroxide | - | ~1 g |
| Distilled water | - | Up to 1 L |
| Reagents | Stock concentration | Amount | Final concentration |
|---|---|---|---|
| NaOH | 5 M | 60 mL | 0.3 M |
| Disodium EDTA | 0.2 M | 5 mL | 1 mM |
| Distilled water | - | 935 mL | - |
| Reagents | Stock concentration | Amount | Final concentration |
|---|---|---|---|
| Tris | 1 M | 400 mL | 0.4 M |
| Distilled water | - | 600 mL | - |
| Reagents | Final concentration | Amount |
|---|---|---|
| Low melting point agarose powder | 1% | 0.5 g |
| 1 | - | 50 mL |
| 50 mL |
| Reagents | Final concentration | Amount |
|---|---|---|
| Normal melting point agarose powder | 3% | 0.6 g |
| 1 | - | 20 mL |
| 20 mL |
| Final concentration | 1000 nM | 500 nM | 250 nM | 50 nM | 5 nM |
|---|---|---|---|---|---|
| 10 | 10 μM | 5 μM | 2.5 μM | 500 nM | 50 nM |
| Volume of [artesunate solution] | 100 μL of [100 μM artesunate solution] | 500 μL of [10 μM artesunate solution] | 500 μL of [5 μM artesunate solution] | 200 μL of [2.5 μM artesunate solution] | 100 μL of [500 nM artesunate solution] |
| Volume of 7.5% sodium bicarbonate solution | 900 μL | 500 μL | 500 μL | 800 μL | 900 vL |