L-Asparaginase-associated hyperlipidemia with hyperviscosity syndrome in a patient with T-cell lymphoblastic lymphoma.
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Biomedical subjects
Publications and source records attributed to W Hagen.
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The effectiveness of intravenous folinic acid or intravenous folic acid for the treatment of hyperhomocysteinemia of hemodialysis patients is unknown. In a randomized, controlled, double-blind trial, 66 hemodialysis patients were administered either 15 mg of folic acid or an equimolar amount (16.1 mg) of folinic acid intravenously three times weekly. Normalization of total homocysteine (tHcy) plasma levels after 4 weeks of treatment was achieved in 10 patients (30.3%) in the folic-acid group and 6 patients (18.2%; P: = 0.389) in the folinic-acid group (normalization at any time during the study period in 39.4% and 33.3% of the patients; P: = 0.798). The relative reduction in tHcy plasma levels at week 4 was 32.2% in the folic-acid group and 34.1% in the folinic-acid group. A high baseline tHcy plasma concentration (P: = 0.00001), methylenetetrahydrofolate reductase (MTHFR) 677TT/1298AA genotype (P: = 0.03540), and low red blood cell folate concentrations (P: = 0.02285) were associated with a better relative response to treatment. Normalization of tHcy plasma levels was dependent on a lower baseline tHcy level (P: = 0.01976), younger age (P: = 0.00896), and MTHFR 677TT/1298AA or 677CT/1298AC genotypes (P: = 0.00208 and P: = 0.02320, respectively). A 4-week course of intravenous folinic acid is not superior to intravenous folic acid in reducing elevated tHcy plasma levels in hemodialysis patients. The response to treatment is predicted by tHcy plasma level, red blood cell folate content, and MTHFR genotype.
BACKGROUND: The total homocysteine (tHcy) plasma level, which is partly determined by the MTHFR 677C-->T genotype, may be associated with vascular disease. We prospectively examined the influence of MTHFR genotypes (677C-->T, 1298A-->C) and tHcy plasma concentration on all cause mortality and graft outcomes of renal transplant recipients. METHODS: Baseline tHcy plasma levels of 189 patients (three groups with either the MTHFR 677CC, CT or TT genotype, including 63 patients in each group, were matched for age, gender, body mass index and creatinine clearance at baseline), were obtained between September 1996 and May 1997. Follow-up data (time until return to dialysis therapy, time and cause of death) were collected from April to June 1999. Kaplan-Meier survival estimations were calculated and plotted, the groups (three MTHFR 677C-->T genotype groups, or three MTHFR 1298A-->C genotype groups, or two groups with tHcy plasma levels above/below 15 micromol/L) were compared by log-rank test. Age, gender, body mass index (BMI), time since transplantation, serum creatinine, creatinine clearance, combined MTHFR 677C-->T/1298A-->C genotypes, tHcy, folate and vitamin B12 plasma levels were evaluated with regard to graft and patient survival in a multivariate Cox-proportional hazard regression model. RESULTS: During the follow-up period of 2.26 +/- 0.66 years, 9 patients died (5 in the TT, 2 in the CT and 2 in the CC genotype group; P = 0.34) and 22 returned to dialysis treatment (7 in the TT, 9 in the CT and 6 in the CC genotype group; P = 0.65). There was also no influence of MTHFR 1298A-->C genotypes (AA genotype, 114 patients; AC genotype, 64 patients; CC genotype, 11 patients) on patient or graft survival (P = 0.7087 and P = 0.1633, respectively). Two of 93 patients with a tHcy plasma level < or = 15 micromol/L died, in contrast to 7 of 96 patients in the tHcy > 15 micromol/L group, P = 0.0778. Two patients in the low tHcy group had to return to dialysis, in contrast to 20 patients in the high tHcy group (P = 0.0001). In the multivariate model there was no significant predictor of patient survival, and the serum creatinine was the only predictor of graft survival (P < 0.0001). CONCLUSIONS: In summary, our study shows that neither MTHFR 677C-->T/1298A-->C genotypes nor hyperhomocysteinemia are independently associated with patient or graft survival following kidney transplantation.
Oceanic zooplankton species exhibit quite diverse life history traits. A major driving force determining their life strategies is the seasonal variability in food supply, which is most pronounced in polar oceans where fluctuations in primary production are extreme. Seasonal adaptations are closely related to the trophic level of zooplankters, with strongest pressures occurring on herbivorous organisms. The dominant grazers, calanoid copepods and krill (Euphausiacea), have developed fascinating solutions for successful overwintering at higher latitudes. They usually exhibit a very efficient storage and utilization of energy reserves to reduce the effect of a highly seasonal primary production. The predominant larger Calanus species from the Arctic and Calanoides acutus from the Antarctic biosynthesize large amounts of high-energy wax esters with long-chain monounsaturated fatty acids and alcohols (20:1 and 22:1 isomers) as major components. They survive the dark season at depth in a stage of dormancy called diapause. In contrast, the Antarctic Calanus propinquus, a winter-active species, synthesizes primarily triacylglycerols, which are dominated by long-chain monounsaturated fatty acids with 22 carbon atoms (2 isomers) and yield even higher calorific contents. The omnivorous and carnivorous species, which are less subjected to seasonal food shortage, usually do not exhibit such an elaborate lipid biosynthesis. Herbivores usually do not utilize much of their enormous lipid reserves for overwintering, but channel this energy towards reproductive processes in late winter/early spring. Timing of reproduction is critical especially at high latitudes due to the short production period, and lipid reserves ensure early spawning independent of external resources. These energetic adaptations (dormancy, lipid storage) are supplemented by other life strategies such as extensive vertical migrations, change in the mode of life, and trophic flexibility.
Because of a potential association with cardiovascular disease, birth defects, and various other conditions, an elevation of tHcy plasma levels has gained broad interest. The majority of chronic renal failure patients present with hyperhomocysteinemia, the causes of which are not completely understood. An increasing number of studies addressed the treatment of hyperhomocysteinemia in chronic renal failure patients. Folic acid combined with vitamin B6 and vitamin B12 is more effective in lowering tHcy levels than either cofactor alone. The optimal dose of folic acid appears to be 1 mg orally per day. Intravenous application of vitamin B12, giving 1 to 1.5 mg per week may be more effective than therapy with 1 mg orally per day. The role of vitamin B6 is far from clear. It may play a role in combination with folic acid and/or vitamin B12. Finally, general screening for and treatment of hyperhomocysteinemia is not recommended.
Interferon (IFN)-alpha, a known inhibitor of myelopoiesis, is increasingly used to treat patients with systemic mastocytosis (SM). However, the mechanisms of IFN-alpha effects on mast cell (MC) growth remain unknown, and the treatment responses may be variable. In the present study, factor-dependent ex-vivo differentiation of MCs from peripheral blood mononuclear cells (PBMNCs) was analyzed in a patient with SM treated with IFN-alpha2b (3 million U/day). The patient exhibited an extensive MC infiltration in his bone marrow (BM) and increasing serum total tryptase levels (spiking to > 1,400 ng/ml). PBMNCs were collected before and during IFN-alpha2b treatment and cultured in the presence or absence of stem cell factor (SCF, 100 ng/ml) for 42 days. In the absence of SCF, no MC growth was detectable. However, in the presence of SCF, MC containing tryptase appeared in the cultures. Treatment with IFN-alpha2b resulted in a time-dependent decrease in SCF-inducible formation of MCs from PB progenitor cells in vitro. Also, during IFN-alpha2b treatment, blood histamine concentrations decreased. Serum total tryptase levels initially increased despite IFN-alpha2b treatment. However, after a latency period of a few months, tryptase concentrations declined and then reached a plateau. In healthy individuals, the SCF-induced in vitro growth of MCs from their progenitor cells was also inhibitable by the addition of IFN-alpha2b. In summary, our data show that IFN-alpha2b can exhibit inhibitory effects on factor-dependent growth of MC progenitor cells. However, it still remains open which of the patients with mastocytosis can benefit from long-term IFN-alpha treatment.
Mast cells (MC) and blood basophils (Ba) are multifunctional effector cells of the immune system and accumulate in areas of ongoing disease. However, despite of similar morphology, MC and Ba differ from each other in terms of cell surface receptor expression, mediator content, and tissue distribution. In order to gain new insights into mechanisms and molecules responsible for the distribution and accumulation of MC and Ba, we have investigated expression of homing receptors on primary human MC (lung, n=28; uterus, n=17), Ba (healthy donors, n=64), the mast cell line HMC-1, and the basophil line KU-812. Expression of cell surface antigens on MC and Ba was analyzed by mAb and indirect immunofluorescence staining techniques. In addition to previous findings, Ba were found to react with mAb against the selectin-ligands sLe(x) (CD15s) and PSGL-1 (CD162), L-selectin (CD62L), beta7-integrin, the 'matrix-receptor' neurothelin (CD147), platelet-endothelial cell tetraspan antigen-3 (PETA-3=CD151), and BST-1 (CD157). Novel antigens detectable on MC (lung and uterus) were CD147, CD151, CD157 and CD49c (VLA-3alpha). By contrast, MC were not recognized by mAb to sLe(x), PSGL-1, L-selectin, or beta7 integrin. No reactivity of Ba or MC with mAb to syndecan-1 (CD138), VE-cadherin (CD144), MUC18/MCAM (CD146), MGC-24 (CD164), or ALCAM (CD166) was found. The cell lines HMC-1 and KU-812 expressed a similar profile of antigens when compared to primary cells. In summary, Ba and MC express a unique profile of homing molecules. Apparently, Ba differ from MC in expression of recognition receptors relevant for binding to endothelium and consecutive transmigration.
A subset of patients with systemic mastocytosis (SM) develop acute myeloid leukaemia (AML). However, little is known about the biology of such leukaemias and their relationship to the mast cell (MC) lineage. We report on two female patients who suffered from SM and AML. According to FAB criteria, the leukaemias were classified as AML-M4 (patient 1) and AML-MO (patient 2). The coexistence of the two distinct neoplasms (AML and SM) was demonstrable by immunostaining of serial bone marrow (BM) sections with monoclonal antibodies (mAb). In particular, the MC infiltrates were found to react with mAb against MC-tryptase and MC growth factor receptor c-kit (CD117), but not with mAb to CD15 or CD34. In contrast, the AML blasts were immunoreactive for CD15 (patient 1) or CD34 (patient 2), but did not express tryptase. The c-kit point mutation Asp-->Val at codon 816, considered to play a role in the transformation of MC progenitors, was detected in patient 1 in a BM cell fraction containing 4% MC. However, no c-kit mutation was found in pure AML blasts (<1% MC). These findings argue against an evolution of the AML clone from neoplastic MC or MC-committed progenitors.
Crystals of the prismane protein from Desulfovibrio vulgaris (Hildenborough) containing a putative [6Fe-6S] cluster have been obtained and X-ray data collected to a resolution of 1.7 A using synchrotron radiation. The unit cell is orthorhombic with a = 64.1, b = 65.1 and c = 154.1 A, space group P2(1)2(1)2(1) (No. 19). The unit cell will readily accommodate four molecules of molecular weight 60 kDa with a corresponding solvent content of approximately 48%.
Farming of the ostrich--a non domesticated species--cannot be done species-conforming; it is even a cruelty to the animals. Keeping in captivity leads to a steady rank order stress; the biology of their reproduction is heavily impaired and their typical moving requirements can only be poorly satisfied. The specific habit of food intake cannot be performed accordingly, and the early deprivation, caused by the absence of parents during the weanling period, creates extremely abnormal behaviour. Summing up, all these deficiencies constitute the fact of cruelty to animals according to the German Animal Protection Act.
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