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101.
The effect of the Fanconi anemia polypeptide, FAC, upon p53 induction and G2 checkpoint regulation 总被引:3,自引:2,他引:3
Fanconi anemia (FA) is an autosomal recessive disease marked by developmental defects, bone marrow failure, and cancer susceptibility. FA cells are hypersensitive to DNA cross-linking and alkylating agents and accumulate in the G2 phase of the cell cycle in response to these agents. FA cells also display genomic instability, suggesting a possible defect in the p53 pathway. To test the effect of heterologous expression of FAC cDNA on drug-induced cytotoxicity, G2 accumulation, and p53 induction in FA cells, we compared two isogenic FA cell lines: HSC536N (mock), a FA type C cell line sensitive to mitomycin C (MMC), and the same cell line transfected (corrected) with wild-type FAC cDNA (HSC536N [+FAC]). HSC536N (+FAC) cells showed a 30-fold increase in resistance to MMC concentration. Similarly, increases in resistance were observed following exposure to cisplatin, carboplatin, and cyclophosphamide. In addition, HSC536N (+FAC) cells showed a twofold lower G2 accumulation following MMC treatment. To analyze the possible interaction of FAC with the p53 pathway, we analyzed p53 induction in mock and corrected cell lines following exposure to MMC. HSC536N (mock) cells induced p53 at lower MMC concentrations than HSC536N (corrected). Caffeine, a known G2 checkpoint inhibitor, not only inhibited G2 accumulation seen in both cell lines but also caused the resistant HSC536N (+FAC) to become as sensitive to MMC as HSC536N (mock) cell line. We conclude that the FAC protein has a specific cytoprotective effect and may function as a cell cycle regulator of the G2 phase of the cell cycle. 相似文献
102.
Mathematical solutions for oxygen concentration gradients predicted by a one-dimensional, steady-state model of oxygen diffusion and chemical reaction are compared with experimental PO2 microelectrode measurements in rat brain and liver tissue slices. Four kinetic relationships are investigated: zero-order kinetics, first-order kinetics, zero- to first-order kinetics, and Michaelis—Menten (saturation) kinetics. An optimization method is used to estimate parameters for each model in both tissues and average metabolic rates are calculated for comparison with literature values for whole organ oxygen consumption. The computer simulations indicate that the Michaelis—Menten kinetic model provides the most accurate fit of the experimentally observed PO2 gradients. From the Km values for the Michaelis—Menten model, we conclude that brain tissue has a higher affinity for oxygen than liver tissue. Furthermore, the results from this study imply that the apparent kinetics for oxygen consumption in tissue differs from the kinetics for mitochondrial suspensions. 相似文献
103.
104.
Lukoye Atwoli Abdullah H. Baqui Thomas Benfield Raffaella Bosurgi Fiona Godlee Stephen Hancocks Richard Horton Laurie Laybourn-Langton Carlos Augusto Monteiro Ian Norman Kirsten Patrick Nigel Praities Marcel GM Olde Rikkert Eric J. Rubin Peush Sahni Richard Smith Nick Talley Sue Turale Damin Vzquez 《Croatian medical journal》2021,62(5):429
105.
106.
Dachman AH; Lieberman J; Osnis RB; Chen SY; Hoffmann KR; Chen CT; Newmark GM; McGill J 《Radiology》1997,203(2):427
107.
108.
Sala A; Aliev GM; Rossoni G; Berti F; Buccellati C; Burnstock G; Folco G; Maclouf J 《Blood》1996,87(5):1824-1832
Morphological and functional modifications occurring in Langendorff rabbit heart preparations perfused with purified human leukocytes (PMNL), as an organ model of sulfidopeptide-leukotrienes (sLT) transcellular biosynthesis, were studied. Coronary perfusion pressure (CPP), monitored as an index of coronary vasospasm, increased by 295% after challenge with the Ca(2+)-ionophore A-23187 (0.5 micromol/L) for 30', accompanied by a significant formation of sLT. Increase in CPP was prevented by PMNL pretreatment with the 5-lipoxygenase inhibitor MK-886 (1 micromol/L) or by heart pretreatment with LTD4-receptor antagonist SKF 104353, indicating a pivotal role of PMNL-derived 5-lipoxygenase (5- LO) products in the observed functional modifications. Similar effects were obtained using granulocyte macrophage-colony stimulating factor- primed PMNL challenged with the tripeptide n-formyl-methionyl-leucyl- phenylalanine. Scanning electron microscopy (SEM) of coronary arteries showed craters on the vessel luminal surface, PMNL adhering to endothelial cells (EC), increased number of microvilli on EC, presence of nonviable, desquamating, fusiform EC. SEM and transmission electron microscopy of myocardial microvessels, showed presence of perivascular and intermuscle edema, presence of activated PMNL and decreased number of patent microvessels. These morphological alterations were significantly blunted by MK-886 or SKF 104353. These data provide evidence of close interaction between PMNL and myocardial EC, resulting in enhanced sLT formation via transcellular biosynthesis, originating from transfer of PMNL-derived LTA4 to EC. These potent proinflammatory autacoids are responsible for coronary vasospasm and the morphological alternations observed. 相似文献
109.
110.
GM Thambugala A Mohamed GFA O Neill MJ Fulham 《Journal of Medical Imaging and Radiation Oncology》2006,50(6):604-606
We present the FDG PET‐CT findings in a patient with persistent pain 7 weeks after a nephrectomy and lymph node dissection for a sarcomatoid renal cell carcinoma. Although conventional imaging was unable to detect evidence of metastatic spread outside the para‐aortic nodes, a PET‐CT scan showed unexpected extensive dissemination. Currently, there are no reports in the literature of the PET‐CT findings in sarcomatoid renal cell carcinomas. 相似文献