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2 r, have emerged from quantitative studies of spontaneous transformation among mammalian cells in cult
3 er cell cycle, increased saturation density, spontaneous transformation, and formation of tumors at l
4 extended periods of time, and do not undergo spontaneous transformation; and (iv) lymphoid cells are
5 Unexpectedly, variants that are resistant to spontaneous transformation are selected in vitro by grow
7 ymphoma; PE-3T, a T-cell line that underwent spontaneous transformation ex vivo; and P815, a mastocyt
9 histopathological changes in human lung and spontaneous transformation in cell culture to illustrate
11 e number of genetic alterations, we compared spontaneous transformation in cloned and uncloned popula
13 in adult mice retains its susceptibility for spontaneous transformation into mPanIN lesions, a findin
17 insight into the mechanisms associated with spontaneous transformation of human pluripotent stem cel
18 tailed time-dependent experiments reveal the spontaneous transformation of initial rod-like aggregate
19 es with increased cell proliferation and the spontaneous transformation of MdmX/p53-null mouse embryo
20 4a)-insensitive Cdk4(R24C) mutation leads to spontaneous transformation of MEF cultures in vitro and,
22 tors was also found in an in vitro model for spontaneous transformation of rat ovarian epithelial cel
23 enerating systems are discussed based on the spontaneous transformation of resorufin to less fluoresc
25 ed calcium and phosphate concentrations, the spontaneous transformation of spherical colloidal primar
30 uman pluripotent stem cells before and after spontaneous transformation to abnormal karyotypes and in
31 ion of stem and progenitor compartments, and spontaneous transformation to acute myeloid leukemia.
32 d and subjected in parallel to selection for spontaneous transformation to determine whether spontane
36 SMX-NO was found to be unstable in solution; spontaneous transformation yielded appreciable amounts o