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| using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs [2014/02/14 10:19] – rosario | using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs [2026/08/22 21:11] (current) – removed - external edit (Unknown date) 127.0.0.1 | ||
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| - | ====== Using the FLCS script for spectral crosstalk removal via FLCCS ====== | ||
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| - | ===== Summary ===== | ||
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| - | This tutorial shows step-by-step, | ||
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| - | ===== Background Information ===== | ||
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| - | **Note:** Fluorescence Cross-Correlation Spectroscopy (FCCS) is a method to determine molecular interactions between two molecules labeled with different dyes. Usually, the dyes attached to the two molecules differ in their absorption and emission properties but they can also vary in their fluorescence lifetime.\\ | ||
| - | To quantify the cross-correlation signal and connect it to a binding fraction, a calibration of the effective confocal volumes for each dye and the overlapping confocal volume must be performed.\\ | ||
| - | The calibration can be done using a macromolecule labeled with both fluorophores.\\ | ||
| - | FCCS calibration dyes are available e.g. from IBA ([[http:// | ||
| - | Usually, a positive control is needed, in which both dyes are moving in a coordinated fashion.\\ | ||
| - | Additionally, | ||
| - | If one dye is excited with a pulsed and the other with a cw laser, fluorescence lifetime cross-correlation (FLCCS) is an ideal tool to remove the unwanted spectral crosstalk as demonstrated in this tutorial. As a consequence, | ||
| - | The main idea of the method stems from the fact that if the fluorescence signal from the dye excited with a pulsed laser leaks into the second spectral channel, it will also show a decay behaviour corresponding to its fluorescence lifetime. If the second dye is excited with a continuous wave laser, the fluorescence response in the TCSPC window will be a homogenous background similar to roomlight.\\ | ||
| - | Therefore, it is possible to generate two patterns: one for the fluorescence response after pulsed excitation (e.g. for the green fluorescent dye) and one for the fluorescence response after cw excitation.\\ | ||
| - | After these TCSPC patterns have been generated, the green spectral channel using the pulsed response pattern is cross-correlation with the red spectral channel using the cw-response pattern. | ||
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| - | ===== Preparations ===== | ||
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| - | * To demonstrate the effect of the FLCCS procedure described in this script, first proceed the steps according to the tutorial " | ||
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| - | **Note:** This way you can compare the data from the results originating from a standard spectral crosscorrelation and a correlation that involves the fluorescence lifetime information. As the fluorescence lifetime information is used to remove a false positive contribution due to spectral crosstalk, cross correlation calculated in a purely spectral fashion is always higher, if a significant amount of spectral bleedthrough is present. | ||
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| - | ===== Step-by-Step Tutorial ===== | ||
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| - | ==== Select a file and start the script ==== | ||
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| - | * Start [[products: | ||
| - | * Open the " | ||
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| - | **Note:** The " | ||
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| - | **Response: | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_1.png }} | ||
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| - | * Highlight the file '' | ||
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| - | **Note:** This file contains a FCS measurement of a FCCS negative control (two DNA oligonucleotides labeled with a green and a red fluorophore, | ||
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| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_2.png }} | ||
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| - | * Select the " | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_3.png }} | ||
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| - | **Note:** The drop down menu can be opened and closed by clicking on the grey button on the left side of the header of the drop down menu: {{grey_button.png}} | ||
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| - | * Start the Grouped FCS script by clicking on " | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_4.png }} | ||
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| - | **Response: | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_5.png? | ||
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| - | **Note:** The window contains three different regions: | ||
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| - | - **Left:** Analysis and display options. For explanation of the different parameters, place the mouse cursor over this part of the window and press <F1> to open the corresponding help page. | ||
| - | - **Upper center/ | ||
| - | - **Lower center/ | ||
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| - | ==== Select the patterns for the pulsed and the cw-contribution ==== | ||
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| - | * In the " | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_6.png }} | ||
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| - | **Response: | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_7.png? | ||
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| - | **Note:** This window consists of different sections:\\ | ||
| - | - **Left:** Controls for importing and fitting the patterns. Click on the " | ||
| - | - **Upper center:** The graph for the imported patterns. As we haven' | ||
| - | - **Upper right:** A graph containing the TCPSC curve of the measured data. | ||
| - | - **Lower center/ | ||
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| - | * Click: " | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_8.png }} | ||
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| - | **Response: | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_9.png? | ||
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| - | * Select the file '' | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_10.png? | ||
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| - | **Response: | ||
| - | * The TCSPC histogram for this file appears in the " | ||
| - | * A few parameters are added in the parameter display on the left. | ||
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| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_11.png? | ||
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| - | * Now, press " | ||
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| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_12.png }} | ||
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| - | **Response: | ||
| - | * The background subtracted decay pattern is fitted into the decay and appear in the graph on the upper right, as well as a fitting curve. The residuals of this graph are not visible, as the pattern was created from the same file, which makes the fitting perfect. | ||
| - | * Fitting values are added to the Fitting table. | ||
| - | * Two FLCS filters are generated: The pattern generated from the fluorescence decay is named according to the file (it corresponds to the filter for the pulsed excitation, i.e. the green dye), the filter for the flat line below the curve is called " | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_13.png? | ||
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| - | * The patterns have been calculated successfully, | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_14.png }} | ||
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| - | **Response: | ||
| - | * The pattern definition window is closed. | ||
| - | * The FLCS filter functions are displayed in the graph on the left in the FLCS script main window. The decay pattern ('' | ||
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| - | ==== Calculate the FCS crosscorrelation curve ==== | ||
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| - | * Press "Cross Correlation", | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_15.png }} | ||
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| - | * Press " | ||
| - | **Response: | ||
| - | * The FLCCS curve is calculated and plotted (the calculation may take some time). | ||
| - | * The result is practically a flat baseline with a certain degree of noise. Compare with the result of the FCCS correlation obtained with the " | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_16.png? | ||
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| - | * Save the result by clicking "Save Results" | ||
| - | **Response: | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_17.png }} | ||
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| - | ==== Behavior in case of a positive calibration ==== | ||
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| - | **Note:** It has been demonstrated, | ||
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| - | * Run the same procedure as shown before with the file '' | ||
| - | **Response: | ||
| - | {{ using_the_flcs_script_for_spectral_crosstalk_removal_via_flccs_Image_18.png? | ||
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