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1. Preparation of human foreskin fibroblasts (HFF)-coated coverslips
- Place a sterile round glass coverslip on the bottom of the wells of a 24-well tissue culture plate.
- To harvest HFFs from a confluent 150cm2 flask, rinse the flask twice with 1X PBS and add 2.5 ml of 0.025% trypsin-EDTA. Incubate flask at 37°C for 5-10 minutes.
- Tapping the side of the flask against the palm of your hand can aid in detaching the cells from the flask. Once cells have released from the flask, add 150 ml of HFF medium (Dulbecco's Modified Eagle Medium [DMEM] with 10% FBS, 2 mM L-glutamine, and 1% penicillin-streptomycin) and use the medium to rinse the flask and collect the cells.
- Dispense 1 ml of cells per well with the coverslips.
- Allow cells to become confluent at 37°C, 5% CO2.
2. Preparing L929 conditioned medium (CM) for BMC development
- L929 is a murine aneuploid fibrosarcoma cell line that secretes macrophage colony stimulating factor after long periods of confluency. This secretion enables the CM from L929 cells to be used to develop mouse bone marrow cells into macrophages in cell culture1.
- Once L929 cells are confluent, let them incubate for an additional 7-9 days until they appear spherical and begin lifting off the flask. Collect supernatant and pellet any detached cells at 425 x g for 10 minutes. This supernatant is the CM.
- One 150 cm2 flask of L929 cells yields 30 ml of CM, which generates 150 ml of BMC medium. BMC medium is composed of 10% FBS, 20% CM, 1% penicillin-streptomycin, and 1% L-glutamine in DMEM.
3. Isolation of bone marrow and cell culture of BMCs
- Sacrifice one C57BL/6 mouse by CO2 asphyxiation and surface sterilize with 70% ethanol.
- Expose the peritoneum by lifting the abdominal skin near the leg and cutting with scissors. Avoid puncturing the peritoneal cavity. Cut down to the leg to expose the tibia and the femur. Cut muscle tissue from the leg bones using scissors.
- To remove the femur, cut once below the knee and once near the hip. Place the bones in a bacteriological Petri dish containing cold 1X PBS. Do not use tissue culture treated Petri dishes for these steps because the BMCs will adhere permanently. Use a scalpel to scrape off extra muscle tissue. Cut the bone just above the knee to expose the marrow.
- Repeat steps (b) and (c) to collect bone marrow from the second femur.
- Use a 10cc syringe filled with cold 1X PBS and a 25 gauge needle to dislodge the bone marrow into a 50 ml conical tube. The bone should appear pure white once marrow is removed.
- Pass the PBS/marrow mixture through a 22 gauge needle to break up any bone marrow aggregates.
- Spin the mixture at 425 x g for 10 minutes, and remove the supernatant.
- Resuspend the pellet in 8 ml of BMC medium. Add 1 ml of cell suspension and 9 ml BMC medium to 8 bacteriological Petri dishes.
- Incubate at 37°C, 5% CO2.
- On day 5, add 10 ml BMC medium to each plate. By day 7, the cells will be fully developed. BMCs may be passaged for 1-2 weeks after maturation.
- To split BMCs, remove the medium and add 5 ml of cold 1X PBS to each Petri dish. Incubate at 4°C for 30 minutes, until the cells begin to lift. Rinse the BMCs off the plate with a sterile transfer pipette.
- Pool the BMCs in a 50 ml conical tube and pellet at 425 x g for 10 minutes.
- Resuspend the pellet in 10 ml BMC medium and count on a hemocytometer. Seed 2x105 BMCs per well in a 24-well plate with round glass coverslips on the bottom. Let the BMCs adhere overnight before infecting with T. gondii. Excess BMCs can be reseeded on Petri dishes for later use.
4. Infecting cells with T. gondii
- Infect 25 cm2 flask of confluent HFFs with 2x106 T. gondiiand grow until cells begin to lyse (about 2-3 days).
- Use a cell scraper to remove the infected host cell monolayer from the tissue culture flask then release the parasites from the host cells by passing the dislodged monolayer through a 27-gauge needle.
- Use a hemocytometer to determine the number of parasites in the medium.
- Infect 105 parasites per well with coverslip of HFF monolayers from Protocol 1, or BMCs from Protocol 3. Let the parasites invade for 3 hours at 37°C, 5% CO2.
5. Initiating T. gondii bradyzoite development by environmental stresses
- Bradyzoite development in HFFs with medium pH increase and CO2 starvation
- Prepare development medium. Development medium contains RPMI 1640 without bicarbonate, 1% FBS, 1% penicillin-streptomycin, and 42 mM HEPES. pH to 8.0 and filter sterilize.
- Remove DMEM from infected HFFs, rinse with 1X PBS, and add 1ml of development medium.
- Incubate for 3 days at 37°C with ambient air.
- Activation of BMCs
- Prepare medium to activate BMCs. Activation medium is BMC medium
supplemented with 100U/ml IFN-γ and 100 ng/ml LPS. Sonicate LPS in a water bath for 2 minutes before use to disrupt aggregates.
- Remove BMC medium from wells and replace with 1 ml of activation medium.
- Incubate at 37°C, 5% CO2 for 3 days.
6. Immunofluorescence detection
- Rinse infected wells three times with 1X PBS.
- Fix the monolayer with 200ul of 3% formaldehyde for 20 minutes.
- Remove fixative and rinse wells with 1X PBS.
- Add 200μl of 0.1 M glycine to wells and let sit for 5 minutes.
- Remove glycine and rinse wells with 1X PBS.
- Add 250 μl of 3% BSA/0.2% TritonX-100 in 1X PBS to permeabilize and block the monolayer for 30 minutes.
- Remove blocking solution and rinse wells with 1X PBS.
- Add 50 μl of a 1:250 dilution of rhodamine Dolichos biflorus agglutinin in 3% BSA/0.2% Triton X-100 in 1X PBS.
- Cover plate and place on platform shaker at room temperature for 1 hour
- Wash the coverslips 3 times with 0.2% Triton X-100 in 1X PBS for 5 minutes each on a platform shaker.
- Mount coverslips using VectaShield mounting medium containing 4'6-diamidino-2-phenylindole (DAPI).
- Stained T. gondiican be visualized using a fluorescent microscope with a filter appropriate for rhodamine at a magnification of 100x.
7. Representative results
Figure 1 shows representative DBA staining of T. gondii in activated BMMs and HFFs under pH stress. Both show DBA staining around parasite containing vacuoles, indicating the presence of cyst wall components. The activated BMM image shows DBA staining that is consistent with the surface of the vacuole. The cross section of T. gondii in pH stressed HFFs shows the cyst wall with no internal structures stained.

Figure 1. DBA staining of stressed T. gondii. Intracellular parasites under stress conditions, activated BMMs or pH stressed HFFs, were stained with rhodamine conjugated DBA (red). Differential interference contrast (DIC) shows the outline of the cyst and the black scale bar equals 2 μM.
Experiments on Animals
Experiments on animals were performed in accordance with the guidelines and regulations set forth by University of Wisconsin Animal Care and Use Committee.