Therapeutic drug monitoring of tacrolimus early after liver transplantation.
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Biomedical subjects
Publications and source records attributed to E Schütz.
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BACKGROUND: Corticosteroids have been used traditionally for immunosuppression after solid organ transplantation. The variety of modern immunosuppressive agents offers the chance to replace drugs with an unfavorable risk-benefit ratio. The objective of this prospective pilot study was to investigate a novel steroid-free immunosuppressive regimen after clinical liver transplantation. METHODS: 30 adult liver graft recipients were included in an intent-to-treat analysis. Dual induction immunosuppression consisted of tacrolimus and mycophenolate mofetil. Prophylactic steroids were not given. Efficacy and safety parameters analyzed were patient and graft survival, incidence and severity of rejection, and adverse events in correlation to immunosuppressive drug levels. RESULTS: Patient and graft survival at 2 years was 86.7 and 83.9%, respectively. Acute rejection occurred in 26.2%, and was associated with subtherapeutic tacrolimus blood levels and diarrhea. All rejections were completely reversible by temporary addition of steroids. Acute renal failure was seen in 10/30 patients, and was related to high tacrolimus blood levels together with primary liver graft dysfunction. 43% of all patients never received any steroids, and 73% were on a steroid-free maintenance regimen. CONCLUSIONS: These results confirm that corticosteroids can be completely avoided from the beginning after liver transplantation. Double drug immunosuppression with tacrolimus and mycophenolate mofetil is effective and safe in terms of patient and graft survival as well as incidence and severity of rejection. In order to avoid under- or over-immunosuppression, which may be caused by impaired absorption or metabolism, close drug monitoring is advised.
Hippocampal slices of newborn rats were exposed to either heat-inactivated Streptococcus pneumoniae R6 (hiR6) equivalent to 10(6) and 10(8) CFU/ml, lipoteichoic acid (LTA) (0.3 microg/ml and 30 microg/ml), peptidoglycans (PG) (0.3, 30, 50 and 100 microg/ml), pneumococcal DNA (pDNA) (0.3 and 30 microg/ml) or medium only (control). Cell injury was examined by Nissl staining, Annexin V and NeuN immunohistochemistry, and quantified by propidium iodide (PI) uptake and by determining neuron-specific enolase (NSE) concentration in the culture medium. Necrotic and apoptotic cell damage occurred in all treatment groups. Overall damage (Nissl and PI staining) was most prominent after hiR6 (10(8) CFU/ml), followed by LTA (30 microg/ml), pDNA (30 microg/ml), and not detectable after PG (30 microg/ml) exposure. PG (100 microg/ml) induced severe damage. Apoptotic cells were most frequent after exposure to LTA and hiR6. Damage in the neuronal cell layers (NeuN, NSE) was most severe after treatment with hiR6 (10(8) CFU/ml), followed by PG (100 microg/ml), pDNA (30 microg/ml), and LTA (30 microg/ml).
OBJECTIVES: Little is known about the effect of ischemia/reperfusion with xenogenic blood on function and gene expression of CYP3A4, the enzyme largely responsible for the metabolism of the immunosuppressants Cyclosporin A (CsA) and Tacrolimus. DESIGN AND METHODS: In a pig liver perfusion model, we have compared the effect of perfusion (3 h) after 20 h cold storage, with either pig or human blood on CsA metabolism and CYP3A4-mRNA expression. mCYP3A4-mRNA was quantified by RT-PCR, CsA and its major metabolites AM1, AM9, AM4N by RP-HPLC. IL-6 served as inflammation marker, GLDH and ALT to estimate tissue damage. RESULTS: Inflammatory response and tissue damage were more extensive during xenoperfusion. CYP3A4 expression decreased similarly during xenogenic and allogenic perfusion. CsA conversion to its metabolites was also comparable during xeno- and alloperfusion. CONCLUSION: There is no evidence that during the early reperfusion period pig liver CYP3A4 is severely affected if the organ is xenoperfused with human blood in comparison with alloperfusion.
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Twelve fungal species were screened for microbial volatile organic compounds (MVOCs): Aspergillus fumigatus, A. versicolor, A. niger, A. ochraceus, Trichoderma harzianum, T. pseudokoningii, Penicillium brevicompactum, P. chrysogenum, P. claviforme, P. expansum, Fusarium solani and Mucor sp. More than 150 volatile substances derived from fungal cultures have been analysed by head-space solid-phase microextraction (HS-SPME). Each species had a defined MVOC profile which may be subjected to considerable modification in response to external factors such as cultivation on different substrata. The cultivation on different substrata changes the number and concentration of MVOCs. Species-specific volatiles may serve as marker compounds for the selective detection of fungal species in indoor environments. Examination of MVOCs from indoor air samples may become an important method in indoor air hygiene for the detection of type and intensity of masked contamination by moulds.
In a rabbit model of Streptococcus pneumoniae meningitis single doses of 10 and 2.5 mg of the glycopeptide LY333328 per kg of body weight reduced bacterial titers in cerebrospinal fluid (CSF) almost as rapidly as ceftriaxone at 10 mg/kg/h (changes in log CFU, -0.29 +/- 0.21 and -0.26 +/- 0.22 versus -0.34 +/- 0.15/ml/h). A dose of 1 mg/kg was bacteriostatic (change in log CFU, 0.01 +/- 0.11/ml/h). In two animals receiving LY333328 at a dose of 40 mg/kg the bacterial titers were reduced by 0.54 and 0.51 log CFU/ml/h. The penetration of CSF by LY333328 was 1 to 5%. The concentrations of lipoteichoic and teichoic acids in CSF and neuronal damage were similar in ceftriaxone- and LY333328-treated animals.
BACKGROUND: Balsalazide is a new 5-aminosalicylic acid (5-ASA) containing prodrug. Its efficacy in comparison with standard mesalazine therapy and the optimum dose for maintaining remission of ulcerative colitis are still unclear. AIMS: To compare the relapse preventing effect and safety profile of two doses of balsalazide and a standard dose of Eudragit coated mesalazine. METHODS: A total of 133 patients with ulcerative colitis in remission were recruited to participate in a double blind, multicentre, randomised trial: 49 patients received balsalazide 1.5 g twice daily, 40 received balsalazide 3.0 g twice daily, and 44 received mesalazine 0.5 g three times daily. Efficacy assessments were clinical activity index (CAI) and endoscopic score according to Rachmilewitz, and a histological score. In addition, laboratory tests were performed and urinary excretion of 5-ASA and its metabolite N-Ac-5-ASA was analysed. The study lasted for 26 weeks. RESULTS: Balsalazide 3.0 g twice daily resulted in a significantly higher clinical remission rate (77.5%) than balsalazide 1.5 g twice daily (43.8%) and mesalazine 0.5 g three times daily (56.8%) (p=0.006). The respective times to relapse were 161 days, 131 days (p=0.003), and 144 days (NS). Accordingly, pairwise contrasts of the final endoscopic score demonstrated a significant difference (p=0.005) between the two balsalazide treatment groups while differences between either of these two groups and mesalazine were not statistically significant. Patients treated with balsalazide excreted less 5-ASA and N-Ac-5-ASA than patients receiving mesalazine but these differences were not statistically significant. Discontinuation of the trial because of adverse effects occurred in nine patients: three in the balsalazide 1.5 g twice daily group, two in the balsalazide 3.0 g twice daily group, and four in the mesalazine 0.5 g three times daily group. No clinically important new drug safety related findings were identified in this study. CONCLUSIONS: High dose balsalazide (3.0 g twice daily) was superior in maintaining remission in patients with ulcerative colitis compared with a low dose (1.5 g twice daily) or a standard dose of mesalazine (0.5 g three times daily). All three treatments were safe and well tolerated.
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BACKGROUND: Many techniques in molecular biology depend on the oligonucleotide melting temperature (T(m)), and several formulas have been developed to estimate T(m). Nearest-neighbor (N-N) models provide the highest accuracy for T(m) prediction, but it is not clear how to adjust these models for the effects of reagents commonly used in PCR, such as Mg(2+), deoxynucleotide triphosphates (dNTPs), and dimethyl sulfoxide (DMSO). METHODS: The experimental T(m)s of 475 matched or mismatched target/probe duplexes were obtained in our laboratories or were compiled from the literature based on studies using the same real-time PCR platform. This data set was used to evaluate the contributions of [Mg(2+)], [dNTPs], and [DMSO] in N-N calculations. In addition, best-fit coefficients for common empirical formulas based on GC content, length, and the equivalent sodium ion concentration of cations [Na(+)(eq)] were obtained by multiple regression. RESULTS: When we used [Na(+)(eq)] = [Monovalent cations] + 120(square root of ([Mg2+]-[dNTPs])) (the concentrations in this formula are mmol/L) to correct DeltaS(0) and a DMSO term of 0.75 degrees C (%DMSO), the SE of the N-N T(m) estimate was 1.76 degrees C for perfectly matched duplexes (n = 217). Alternatively, the empirical formula T(m) ( degrees C) = 77.1 degrees C + 11.7 x log[Na(+)(eq)] + 0.41(%GC) - 528/bp - 0.75 degrees C(%DMSO) gave a slightly higher SE of 1.87 degrees C. When all duplexes (matched and mismatched; n = 475) were included in N-N calculations, the SE was 2.06 degrees C. CONCLUSIONS: This robust model, accounting for the effects of Mg(2+), DMSO, and dNTPs on oligonucleotide T(m) in PCR, gives reliable T(m) predictions using thermodynamic N-N calculations or empirical formulas.
A common mutation in the prothrombin gene (G20210A) is associated with elevated prothrombin levels and thrombosis. The pathomechanism related to the G20210A mutation is currently not understood and the interdependence of prothrombin activity and prothrombin concentration in plasma is still poorly defined. Six of 191 blood donors examined in the present study carried the prothrombin allele G20210A. Despite the small number of cases, plasma samples from these individuals had significantly higher prothrombin activities than wild type carriers, whereas their prothrombin concentrations-although elevated-did not differ significantly from wild type. In subjects with the G20210A mutation there was also no significant correlation between prothrombin activity and concentration. Analyzing data from healthy blood donors without the prothrombin G20210A mutation, we found only weak correlations between prothrombin activity and concentration of immunoreactive prothrombin. Samples with a relatively high prothrombin concentration but low activity were observed as well as samples with a relatively high activity for a given concentration (hyperactive prothrombin). F1+2 concentrations as indicators of activated coagulation were only elevated in 13 of 125 investigated samples and could not explain any of these findings. Dysfunctional variants of prothrombin, a well known phenomenon, may be responsible for the former, and we speculate that posttranscriptionally modified prothrombin species may explain the observed functional diversity of this factor including hyperactivity. The genotype-phenotype association of the non-coding G20210A mutation is not clear cut. Therefore, further studies are needed to determine which factors apart from the known G20210A polymorphism regulate prothrombin concentration and/or activity and may trigger the manifestation of thrombosis.
OBJECTIVES: To investigate mycophenolate mofetil (MMF) plasma levels and impact on acute graft versus host disease (aGvHD) after stem cell transplantation (SCT). METHODS: SCT patients (n = 14) with aGvHD (>/= II) receiving MMF (1-3 g/d) in addition to cyclosporine, prednisolone, and methotrexate for aGvHD prophylaxis were investigated. Plasma levels of mycophenolic acid (MPA) and its glucuronide metabolite (MPAG) were determined by high-performance liquid chromatography. RESULTS: Overall median steady state pre-dose plasma MPA concentration was 0.47 mg/L and increased within 75 min after administration to 1.64 mg/L. In comparison to patients with skin aGvHD, patients with gut aGvHD had lower MPA concentrations, both pre-dose (p = 0.16) and after 75 min, (p = 0.02). All 7 patients with skin aGvHD but only 2 patients with gut aGvHD responded to MMF. Overall, the pre-dose plasma MPA concentration was significantly (p = 0.007) greater in responders (n = 9) than in non-responders (n = 5). CONCLUSION: MMF seems to be an effective treatment for aGvHD in SCT patients particular in those patients without gut involvement.
OBJECTIVES: To set up an optimized multiplex polymerase chain reaction for real-time genotyping of the prothrombotic risk factors methylenetetrahydrofolate reductase C677T and factor V Leiden on the LightCycler. DESIGN AND METHODS: Novel primer and probe sets were designed on the basis of thermodynamic double-strand DNA stability calculations. Detection probes were labeled with LC-Red640 or Cy5.5 dye. RESULTS: The polymerase chain reaction efficiency was reduced in multiplex polymerase chain reaction but this could be overcome by the design of novel amplification primers. The selection of detection probes with a lower melting temperature (T(m)) and high Delta T(m) improved the discrimination of heterozygous samples. Color compensation was not compromised by either the use of the Cy5.5 dye or different fluorescein linker chemistries. CONCLUSIONS: Probes with a Delta T(m) of 5 degrees C or more between the matched and mismatched state are desirably for genotyping. Such probes can be selected by using a priori calculations based on the thermodynamic nearest neighbor model.
OBJECTIVES: We have identified an acyl glucuronide (M-2) of the immunosuppressant mycophenolic acid (MPA). Acyl glucuronides have toxic potential and may contribute to drug toxicity. Whether acyl glucuronides are able to induce release of proinflammatory cytokines is unknown. Gastrointestinal disturbances have been observed during MPA therapy and may involve an inflammatory reaction. This study investigated whether M-2 can induce IL-6 and TNF-alpha release as well as gene expression of these cytokines in leukocytes. DESIGN AND METHODS: M-2 was produced by incubation of MPA with human liver microsomes. Human mononuclear leukocytes were incubated in the presence of M-2. Concentrations of IL-6 and TNF-alpha were measured by ELISA. Expression of mRNA was determined by quantitative RT-PCR. RESULTS: Incubation of 3 x 10(6) cells with M-2 resulted in a time and dose dependent release of cytokines, whereas MPA or its phenolic glucuronide MPAG were without effect. Cytokine liberation depended on mRNA induction. Response to M-2 showed much inter individual variability (30-fold for IL-6, 3-fold for TNF-alpha). CONCLUSIONS: If M-2 promotes release of cytokines in vivo, these may mediate some of the toxic actions of MPA.
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