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G Anderson

Publications and source records attributed to G Anderson.

425 records · Page 24Linked to original sources

Correlation of cell surface fluorescence with conventional PAP analysis of cells of cytological interest obtained from cervical scrapes.

Archival PAP stained cervical smears were destained and treated with a fluorescent probe for a cell surface enzyme (GB). Cells which exhibited cell surface fluorescence were demonstrated to be cells of cytological interest in the analysis of cervical smears. These cells could be directly related to PAP and reclassified by subsequent restaining with PAP. Fluorescent cell surface technology was shown to be compatible with conventional PAP staining.

Cervix Uteri↗

Effect of oxygen and temperature on the potassium efflux of irradiated, stored red blood cells.

Gamma irradiation of blood is performed to prevent transfusion-associated graft-versus-host disease and can result in an accelerated efflux of intracellular potassium (K+). The oxygen content of the blood and the temperature at which the irradiation is carried out are two variables reported to affect this shift; they were investigated in two separate studies. Study A-Four units of AS-5 red blood cells were each split equally into four transfer bags. One set of transfer bags was stored at 4 degrees C for 42 days (Control), the second set (IRR) was irradiated and stored. The third and fourth groups were oxygenated; the third set (+O2) was placed at 4 degrees C. The fourth set (IRR+O2) was irradiated, then stored. Supernatant K+ and hemoglobin increased in the IRR + O2 group over IRR and Control, +O2 did not rise compared to Control. Study B-Six units of CPDA-1 whole blood were each equally separated into four transfer bags. The first set of bags was placed at 4 degrees C, the second set was irradiated and then stored (IRR). The third group of bags was irradiated and given an 8-hour 22 degrees C incubation prior to storage at 4 degrees C (IRR-22). The fourth set was irradiated, placed at 37 degrees C for 2 hours, then stored. Supernatant K+ was lower during the first 7 days of storage for the IRR-22 and IRR-37 groups compared to IRR, but these increased to IRR levels by day 35. Irradiation of blood products results in an accelerated K+ shift that can be exacerbated by the presence of oxygen. The injury can be partially and temporarily corrected by a post-irradiation incubation at 22 degrees C or 37 degrees C.

Blood Preservation↗

Effect of gamma irradiation on the in vivo recovery of stored red blood cells.

Gamma irradiation of blood components is used to prevent posttransfusion graft versus host disease. This process has been demonstrated to cause an increase in the permeability of the red blood cell membrane to potassium and sodium. Because of this red cell membrane lesion, it is important to investigate the effect of irradiation on the posttransfusion recovery of stored red blood cells. In the present study, the 24-hour posttransfusion recovery of AS-1 red cells irradiated with 30 Gy one or 14 days after collection and stored for a total of 35 days was compared to the recovery of unirradiated red blood cells stored for 35 days. There was no significant difference in the mean 24-hour posttransfusion recovery of 51Cr labeled red blood cells among any of the groups studied. Each group had a mean recovery > 75 percent. The mean potassium and hemoglobin concentrations at the end of 35 days of storage were significantly higher in both of the irradiated groups compared to the unirradiated group, but were not significantly different from each other. Under the conditions of this study, gamma irradiation did not significantly affect the 24-hour posttransfusion recovery of red blood cells stored for 35 days.

Blood Component Transfusion↗