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ATCC
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Serono
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STEMCELL Technologies Inc
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Qiagen
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STEMCELL Technologies Inc
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MagQu Co Ltd
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AllCells LLC
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Santa Cruz Biotechnology
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Corning Life Sciences
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US Biological Life Sciences
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Biocoll GmbH
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Image Search Results
Journal: International Journal of Molecular Sciences
Article Title: Altered Induction of Reactive Oxygen Species by X-rays in Hematopoietic Cells of C57BL/6-Tg (CAG-EGFP) Mice
doi: 10.3390/ijms22136929
Figure Lengend Snippet: Induction of ROS by ex vivo X-irradiation in hematopoietic cells from mice at eight postnatal weeks. Nucleated bone marrow cells were irradiated (0.1–7.5 Gy) or sham-irradiated (0.0 Gy) with X-rays, and induction of ROS was measured. Data are presented as ratios normalized to the ROS results of the cells from sham-irradiated control WT mice. One (*) and two asterisks (**) indicate statistically significant differences (* p < 0.05; ** p < 0.01) between the two groups that were compared. For comparison of the irradiated group to the sham-irradiated control in WT mice, one letter “a” and two letters “aa” stand for statistically significant differences at p < 0.05 and p < 0.01, respectively. For comparison of the irradiated group to the sham-irradiated control in GFP mice, one letter “b” and two letters “bb” stand for statistically significant differences at p < 0.05 and p < 0.01, respectively.
Article Snippet: For ex vivo irradiation of the
Techniques: Ex Vivo, Irradiation, Control, Comparison
Journal: International Journal of Molecular Sciences
Article Title: Altered Induction of Reactive Oxygen Species by X-rays in Hematopoietic Cells of C57BL/6-Tg (CAG-EGFP) Mice
doi: 10.3390/ijms22136929
Figure Lengend Snippet: The effect of priming TBI at six postnatal weeks on ROS induction by ex vivo X-irradiation in the hematopoietic cells from mice at eight postnatal weeks. The animals were irradiated with a priming dose of 0.5 Gy or sham-irradiated (0.0 Gy) at six postnatal weeks. Nucleated bone marrow cells collected from the animals at eight postnatal weeks were irradiated (4.5 Gy) or sham-irradiated (0.0 Gy) with X-rays, and induction of ROS was measured. “0.0 + 0.0 Gy” represents the cells from mice receiving sham-irradiation at six postnatal weeks and being sham-irradiated ex vivo. “0.5 + 0.0 Gy” represents the cells from mice receiving a priming dose of 0.5 Gy at six postnatal weeks and being sham-irradiated ex vivo. “0.0 + 4.5 Gy” represents the cells from mice receiving sham-irradiation at six postnatal weeks and being irradiated with 4.5 Gy ex vivo. “0.5 + 4.5 Gy” represents the cells from mice receiving a priming dose of 0.5 Gy at six postnatal weeks and being irradiated with 4.5 Gy ex vivo. Data are presented as ratios normalized to the ROS results of the cells from WT mice receiving sham-irradiation at six postnatal weeks and being sham-irradiated ex vivo. Two asterisks (**) indicate a statistically significant difference (** p < 0.01) between the two groups that were compared. Letters “ ns ” indicate no statistically significant difference between the two groups that were compared. For comparison of the irradiated group to the sham-irradiated control in WT mice, two letters “aa” stand for statistically significant differences at p < 0.01. For comparison of the irradiated group to the sham-irradiated control in GFP mice, one letter “b” and two letters “bb” stand for statistically significant differences at p < 0.05 and p < 0.01, respectively.
Article Snippet: For ex vivo irradiation of the
Techniques: Ex Vivo, Irradiation, Comparison, Control
Journal: International Journal of Molecular Sciences
Article Title: Altered Induction of Reactive Oxygen Species by X-rays in Hematopoietic Cells of C57BL/6-Tg (CAG-EGFP) Mice
doi: 10.3390/ijms22136929
Figure Lengend Snippet: Modal representation of the number of cells as a function of the fluorescence emission intensity of ROS detector Deep Red. Nucleated bone marrow cells collected from animals at eight postnatal weeks were ex vivo irradiated (4.5 Gy) or sham-irradiated (0.0 Gy) with X-rays, and induction of ROS was measured flow cytometrically using channel FL-4. The fluorescence signal was monitored at an excitation wavelength of 650 nm and an emission wavelength of 675 nm for Deep Red detection. “0.0 Gy” represents cells receiving sham-irradiation. “4.5 Gy” represents cells receiving 4.5 Gy.
Article Snippet: For ex vivo irradiation of the
Techniques: Fluorescence, Ex Vivo, Irradiation