Rapidly transfusing RBCs using hand-held syringes through 23-ga or smaller needles can cause hemolysis. In RBCs stored 2 weeks or more, NAH does not measurably increase K+ concentrations above that present from storage-related efflux. During rapid transfusions, RBC storage time is the primary risk factor for transfusion-associated hyperkalemia.
Alterations in apoptotic mechanisms favoring cell survival may be vital for modifying tumor behavior. Survivin, an inhibitor of apoptosis, and caspase 8, a proapoptotic enzyme, are key players in cellular apoptotic mechanisms. We investigated whether the levels of survivin and caspase 8 and the ratio between these 2 apoptotic factors correlate with tumor biology and predicts outcome in patients with neuroblastoma. Survivin and caspase 8 levels were quantified in 38 primary tumor specimens and analyzed individually and in relation to each other. High survivin expression and high survivin:caspase 8 ratios were associated with MYCN amplification, unfavorable histology, and high-risk group of disease (P<0.0008). High survivin mRNA levels were associated with worse overall survival (P=0.02) although the median follow up was only 22.6 months with a range of 1 day to 3.3 years. Low caspase 8 expression was associated with stage 4 disease, high-risk group, MYCN amplification, and unfavorable histology. Although the survivin:caspase 8 ratio was associated with these risk factors, the ratio did not improve the predictive value of survivin alone in this small series. Quantifying multiple apoptotic genes in neuroblastoma may supplement current risk stratification. Moreover, categorizing aberrant apoptotic gene expression in neuroblastoma may translate into novel therapeutic targets.
Caspase 8 is a key apoptotic factor in the receptor/ligand apoptosis-signaling cascade. Absent caspase 8 expression is shown to correlate with poor prognosis in neuroblastoma. Paradoxically, the caspase 8 gene can produce as plice variant and novel inhibitor of itself-caspase 8l. The presence of caspase 8 alone in tumors may not necessarily portend a good prognosis. We sought to determine whether caspase 8l is present in neuroblastoma and whether over-expression of this protein could inhibit caspase 8-dependent apoptosis. Six of 6 histologically undifferentiated and 2 of 5 differentiated neuroblastoma tumors expressed the caspase 8l isoform, whereas caspase 8l was absent in 3 of 3 ganglioneuromas. Seven human neuroblastoma cell lines were surveyed. Two of the 5 cell lines that expressed caspase 8 also expressed the caspase 8l isoform and both were of a less differentiated neuronal phenotype. Over-expression of caspase 8l in cell lines afforded protection against TRAIL, but not against etoposide induced apoptosis. Conversely, blockade of Caspase 8l in cells that express this splice variant made them more sensitive to apoptosis induced cell death. We demonstrate the caspase 8l isoform is present in neuroblastoma and appears to be associated with undifferentiated cell lines and tumors. Furthermore, it suppresses caspase 8-dependent apoptosis.
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