Human-derived chordoma bone in-situ PDX model construction method and application thereof
A construction method and chordoma technology, applied in the field of human chordoma bone orthotopic PDX model construction
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Embodiment 1
[0021] The construction of embodiment 1 chordoma model
[0022] 1 method
[0023] (1) After surgically removing the chordoma completely, the chordoma tissue was quickly transferred to the experimenter for processing. Under sterile conditions, place the tumor tissue in normal saline, remove blood clots, necrotic tissue, fat and connective tissue on the surface of the tumor tissue, and take typical fresh tumor tissue ( figure 1 ), use tissue scissors and tweezers alternately, and store the tumor tissue in three parts;
[0024] (2) The first tumor tissue was quickly placed in a cryopreservation tube filled with RNAlater protection solution (Invitrogen, USA) under aseptic conditions, and quickly transferred to liquid nitrogen for preservation for transcriptome sequencing;
[0025] (3) The second tumor tissue was stored in formalin, embedded in paraffin, made into a wax block and sectioned, stained with hematoxylin and eosin, observed under a microscope, and circled the typical v...
Embodiment 2
[0033] The detection of embodiment 2 chordoma model
[0034] 1 method
[0035] The model constructed in Example 1 was taken and sacrificed, and the mouse tumor tissue was taken for histopathological examination and evaluation.
[0036] 2 results
[0037] The results show that chordoma tumors can be transplanted into the tibial medullary cavity of immunodeficient mice, and the tumor retains the original tissue structure characteristics. By detecting chordoma tumor markers, it can be proved that the constructed model has a high degree of simulation, and the success rate of modeling is over 70%. , indicating that the method is feasible.
Embodiment 3
[0038] In vivo passage of embodiment 3 chordoma model
[0039] 1 method
[0040] According to the model obtained by the method described in Example 1, when the tumor volume reaches 0.5~1×10 3 mm 3 chordoma tissues in the tibia were harvested using fine ophthalmic shears, the tumors were passaged in vivo, and the validity and feasibility of the model were evaluated by histopathological examination.
[0041] 2 results
[0042] The tumor markers of passaged tumors (Brachyury, Aggrecan, Collagen type II alpha 1chain) showed that after passage in immunodeficient mice, the tumor retained the original tissue structure characteristics, the results are shown in Figure 5 , Image 6 . Chordoma can grow in the tibial medullary cavity of immunodeficient mice, which shows that transplantation by this method is feasible.
[0043] Experimental results show that at least 5 passages can be performed.
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