The depletion efficiency can be assessed flow cytometrically by labeling the magnetically unlabeled cell fraction for CD4 and CD8 after immunomagnetic cell separation (MACS) and analyzing this on a two-dimensional bivariate dot-plot (Figure 3). A good yield of double negative (CD4−, CD8−) cells is 95% or above, as represented in Figure 3. Two of the most common causes of lower yield are the miscalculation of the microbeads based on the number of cells and the number of labeled cells exceeding the column capacity. It is recommended to choose the correct number of MACS columns according to the number of labeled cells. When working with thymocytes, the number of labeled cells (DP and SP cells) is almost equal to the number of total cells (more than 96%). Cell counting can be done in an automatic cell counter, a Neubauer chamber, or with any alternative method. As a result, the volumes allocated for cell counting may need to be adjusted depending on the specific machine and the chosen counting method.
It is important to determine the number of cells present before and after depletion. These cell counts are needed to calculate the number of LD depletion columns needed and to evenly distribute the DN thymocytes into the appropriate number of OP9-DL4 flasks. The controls for flow cytometry (unlabeled cells, cells labeled for CD4, and cells labeled for CD8) can be performed with the reserved pre-depletion sample, as this contains more cells. However, as most of the cells are expected to be retained within the column, the post-depletion sample to be labeled will require a higher volume. Consequently, adjustments may need to be made according to the labeling protocol selected.
When using vectors that express screenable markers, such as a fluorescence gene, the transfection and transduction can be roughly and empirically assessed by fluorescence microscopy (Figure 2). The transduction efficiency can be analyzed by harvesting the thymocyte from the OP9-DL4 monolayer, as described in step 8.3, and looking at the expression of a fluorescence gene by flow cytometry. The efficiency of transduction using an empty retroviral vector with GFP as the reporter gene was 84.2% (Figure 4).
T cell differentiation on OP9-DL4 cells can be observed 4 days after transduction. Flow cytometry is usually performed to assess the cell differentiation induced by the co-culture on OP9-DL4 cells and/or the transgene expression, as represented in Figure 5, where the cells were labeled for CD4, CD8, CD44, and CD25. There are several possible combinations of cell surface molecule labeling that have been shown to be useful for investigating the molecular and cellular mechanisms of T cell development in mice24,25,26,27. Therefore, the panels of fluorescent antibodies may vary according to the question of interest being addressed. The transduction of DN thymocytes with the empty retroviral vector pMIG, shown in panel B, presented approximately the same proportions of single positives (CD4+ or CD8+), double positives (CD4+/CD8+), double negatives (CD4−/CD8−), and its substages double-negative 1–4 (DN1–DN4) as the untransduced thymocytes, shown in panel A, indicating that T cell development was not affected by the transduction process.

Figure 1: Diagram of the steps of thymocyte isolation, transduction, and co-culture. Abbreviation: DN = double-negative. Please click here to view a larger version of this figure.

Figure 2: Co-culture fluorescence microscopy of GFP-transduced thymocytes or untransduced thymocytes and OP9-DL4 cells. (A) Untransduced thymocytes and (B) stable GFP-expressing murine thymocytes on OP9-DL4 at day 3 after the second transduction. An Olympus-IX71 fluorescence microscope with a 40x lens and a 480/30 filter suitable for GFP detection was used. Scale bar = 40 µm. Abbreviations: GFP = green fluorescent protein; DN = double-negative. Please click here to view a larger version of this figure.

Figure 3: Flow cytometry of thymocyte depletion. Representative flow cytometry plots analyzing the expression of CD4 and CD8 on thymocytes obtained from 7-8 week old C57BL/6J female mice (A) pre-depletion and (B) post-depletion of CD4+ and CD8+ using microbeads and LD columns according to the manufacturer's instructions. The dot plots on the left show gates based on the size and complexity of the event (FCS-A and SSC-A, respectively). The middle panel shows FSC-H versus FSC-A to gate single cells and exclude doublets. In the plots on the right, cells were defined as CD4 and CD8 from the single-cell gate. Abbreviations: FSC-A = forward scatter-peak area; SSC-A = side scatter-peak area; FSC-H = forward scatter-peak height; FITC = fluorescein isothiocyanate; PE = phycoerythrin. Please click here to view a larger version of this figure.

Figure 4: Flow cytometry of the thymocyte retroviral transduction efficiency. (A) Untransduced thymocytes co-cultured on OP9-DL4; (B) retrovirally transduced thymocytes on OP9-DL4 at day 3 post transduction. Abbreviations: FSC-A = forward scatter-peak area; SSC-A = side scatter-peak area; FSC-H = forward scatter-peak height; FITC = fluorescein isothiocyanate; PE = phycoerythrin; DN = double-negative. Please click here to view a larger version of this figure.

Figure 5: Flowcytometry of transduced thymocytes after 4 days of OP9-DL4 co-culture. (A) Untransduced and (B) transduced with pMIG retrovirus. The cells were first gated on live cells and then gated based on size and complexity (FCS-A and SSC-A, respectively), followed by plotting FSC-H versus FSC-A to gate on single cells and exclude doublets. For untransduced cells, we used the following gate strategy. From the single-cell gate, the cells were defined as single positives (CD4+ or CD8+), double positives (CD4+/CD8+), and double negatives (CD4−/CD8−). Then, from the double negatives (CD4−/CD8−) gate, the cells were defined as CD44+, CD25+, CD44+/CD25+, and CD44−/CD25−, as shown in panel A. For the pMIG transduced cells, shown in panel B, from the single-cell gate, the cells were first defined as GFP+/GFP−, and then from GFP+ cells, the cell population distribution into the major T cell development stages, as defined by CD4, CD8, CD44, and CD25 expression, was determined using the same gate strategy as for the untraduced cells. Abbreviations: FSC-A = forward scatter-peak area; SSC-A = side scatter-peak area; FSC-H = forward scatter-peak height; FITC = fluorescein isothiocyanate; GFP = green fluorescent protein. Please click here to view a larger version of this figure.