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In contrast, when islets were transplanted in the epididymal fat pad without a microwell scaffold, only two out of seven mice reverted to stable normoglycemia.
Six out of eight mice reverted to stable normoglycemia with a mean time to remission of 6.2 ± 3.2 days, which was comparable to that of the gold standard of renal subcapsular islet grafts.
Interestingly, after an initial depressing effect during application of the high cocaine dose (10 μM), cells from master mice reverted to an increased level of sEPSC frequency shortly after washout, i.e., the frequency was higher than before cocaine application.
Moreover, the altered neuropathological phenotype and biochemical properties at the primary passage in the 129 M/M mice reverted to the original ones in the secondary passage in the 129 V/V mice.
Ablated mice reverted to lower densities of viable GPT neurons, with reliable differences from controls at P1 P4 (compare Figures 2A and 5A; Pα<0.05) corresponding with the late-onset phase of excess apoptosis.
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In fact, when this cohort of mice was retested after 48 h of rest and without treatments, we found that FDDKI mice had reverted to a memory-loss phenotype (Fig 4B).
By 2003 researchers he had funded were able to turn embryonic stem cells into dopamine-producing neurons, but once they were put into mice, the neurons either reverted to embryonic stem cells or stopped producing dopamine.
When subtype stability was tested in a small subset of GC lines (Fig. 7), two out of three were found to change their subtype following orthotopic xenotransplantation to NOD-SCID mice, although one of these reverted to the original subtype after explantation.
Spleens of PBS mice reached 2.3±0.3 mm, while it was reverted to normal size of 1.4±0.1 mm in NSC23766-treated mice.
All mice belonging to these groups responded to the treatment and reverted to negative as determined by coprological examination.
In 2007 Japanese scientists reported, first in mice and later in humans, that an adult cell could be reverted to an embryo-like stem cell.
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