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Biomedical subjects

T H Müller

Publications and source records attributed to T H Müller.

At least 19 recordsLinked to original sources

Comparison of three bacterial detection methods under routine conditions.

BACKGROUND AND OBJECTIVES: Since 2004, bacterial screening of platelets has been required in the USA and is also done on a voluntary basis in many European countries. The German Red Cross blood donor services conducted a prospective multicentre study in order to investigate the prevalence of bacterially contaminated pool platelet concentrates and apheresis platelet concentrates. This substudy compares three different bacterial detection systems. STUDY DESIGN AND METHODS: Platelet concentrates were tested in parallel with BacT/ALERT, Scansystem and Pall eBDS (n = 6307) in pool platelets. Apheresis platelets were tested in parallel with BacT/ALERT and Pall eBDS (n = 4730). All initially positive results were evaluated by a standardized procedure including evaluation by a microbiology reference laboratory. RESULTS: One in 6307 pool platelets were confirmed positive by BacT/ALERT, whereas Pall eBDS and Scansystem failed to detect these samples. Only three samples were initially reactive with Pall eBDS without proof of any bacteria strains. The rate of false-positive results was substantially higher for BacT/ALERT (0.25%, 28 in 11,037 tested samples) than for eBDS (0.03%, 3 in 11 037 tested samples) or Scansystem (0.0%, 0 in 6307 tested samples). Three of 4730 apheresis platelets were confirmed positive by BacT/ALERT. These were negative with Pall eBDS. CONCLUSION: Sensitivity was best for BacT/ALERT, whereas specificity was enhanced for Pall eBDS and Scansystem. Scansystem required specially trained staff, whereas BacT/ALERT and Pall eBDS were easy, quick, user-friendly and objective methods.

Bacteria↗

False-positive alarms for bacterial screening of platelet concentrates with BacT/ALERT new-generation plastic bottles: a multicenter pilot study.

BACKGROUND: The microbial detection system BacT/ALERT (bioMérieux) is widely used to monitor bacterial contamination of platelet concentrates (PCs). Recently, the manufacturer introduced polycarbonate culture bottles and a modified pH-sensitive liquid emulsion sensor as microbial growth indicator. This reconfigured assay was investigated in a routine setting. STUDY DESIGN AND METHODS: In each of eight transfusion centers, samples from 500 consecutive PCs were monitored for 1 week. For all PCs with a positive BacT/ALERT signal, retained samples and, if available, original PC containers and concomitant red blood cell concentrates were analyzed independently. Initially BacT/ALERT-positive PCs without bacterial identification in any sample were defined as false-positive. BacT/ALERT-positive PCs with bacteria in the first sample only were called potentially positive. PCs with bacteria in the first sample and the same strain in at least one additional sample were accepted as positive. RESULTS: Five PCs (0.13%) were positive, 9 PCs (0.23%) were potentially positive, and 35 PCs (0.9%) were false-positive. The rate of false-positive BacT/ALERT results varied substantially between centers (<0.2%-3.2%). Tracings from false-positive cultures lacked an exponential increase of the signal during incubation. Most of these false-positives were due to malfunctioning cells in various BacT/ALERT incubation units. CONCLUSION: Careful assessment of individual tracings of samples with positive signals helps to identify malfunctioning incubation units. Their early shutdown or replacement minimizes the high rate of unrectifiable product rejects attributed to false-positive alarms and avoids unnecessary concern of doctors and patients after conversion to a reconfigured BacT/ALERT assay.

Bacteria↗

RHCE-D-CE hybrid genes can cause false-negative DNA typing of the Rh e antigen.

BACKGROUND AND OBJECTIVES: DNA typing of the human Rh blood groups generally shows good agreement with serologically defined phenotypes. However, in the present report we describe four individuals who were declared Rh e negative by genotyping although they express the Rh e antigen. MATERIALS AND METHODS: Serotyping was performed using mono- and polyclonal Rh antisera. Fluorescent multiplex sequence-specific polymerase chain reactions (PCR-SSPs) identified RHD exons and the polymorphisms usually associated with the Rh E/e or Rh C/c/C(W) antigens. Additional PCR amplification reactions, which were carried out to reveal RHCE-D-CE hybrid genes, analysed exon 5 of the RH genes, the location of the polymorphism (676C-->G) coding for the Rh E and Rh e antigens. RESULTS: Four individuals were identified who expressed Rh e antigens but were negative by PCR-SSP typing for common Rhe-coding sequences. In one family analysed in detail, an RHCE-D5-CE hybrid gene associated with Rh e antigen expression was identified. A concomitant RHcE allele accounted for a seemingly regular typing pattern by conventional RH PCR. CONCLUSIONS: The presence of RHCE-D5-CE hybrid alleles may cause false-negative DNA-typing results for the Rh e antigen that are easily overlooked unless appropriate RH hybrid PCR-SSPs are incorporated into conventional DNA-typing protocols. These and previous data strongly caution against an uncritical interpretation of RH DNA-typing results.

Blood Grouping and Crossmatching↗

PCR screening for common weak D types shows different distributions in three Central European populations.

BACKGROUND: DNA sequencing showed RHD mutations for all weak D phenotypes investigated in a study from Southwestern Germany. Molecular classification of weak D offers a more reliable basis than serotyping and is relevant for optimal D transfusion strategies. STUDY DESIGN AND METHODS: Sequence-specific primers were designed to detect weak D types 1 to 5 and the partial D phenotype HMi in a modular set for conventional PCR analysis. Alternatively, all reactions were multiplexed into a single tube, and the products were identified after automated capillary electrophoresis by their size and fluorescence. Weak D phenotype samples from 436 donors in the Tyrol (Austria) and Northern Germany were investigated by PCR. RESULTS: More than 90 percent of the weak D types identified by PCR represented type 1, 2, or 3. The distribution among the common types varied between the Tyrol and Northern Germany (p<0.0001). Three new RHD alleles were identified. CONCLUSION: A PCR method of detecting the common weak D types was validated. This PCR system introduces a simple and rapid tool for routine DNA typing of weak D samples. The results confirmed that all weak D phenotype samples identified by current serologic criteria carry altered D proteins.

Alleles↗

SPECT imaging with [123I]-beta-CIT in Parkinsonism: comparison of SPECT images obtained by a single-headed and a three-headed gamma camera.

Single photon emission computed tomography (SPECT) imaging of dopamine transporters by using the cocaine derivative [123I]-(1R)-2-beta-carbomethoxy-3-beta-(4-iodophenyl)-tropane ([123I]-beta-CIT) has been shown to be useful in patients with Parkinsonism. The aim of this study was to compare beta-CIT imaging with single-headed (SHS) and three-headed gamma camera systems (THS). In 17 patients with Parkinsonism, SPECT imaging with an SHS and a THS was performed 24 h after injection of 180 MBq of [123I]-beta-CIT. The SPECT studies were evaluated by visual assessment of the caudate nucleus (CN) and the putamen (PT) and the calculation of the striatal/cerebellar (S/C) ratios (with additional comparison to clinical symptoms measured by the Unified Parkinson's Disease Rating Scale (UPDRS)). The S/C ratios measured by the SHS and THS showed highly significant correlation (two-tailed P < 0.01) with Spearman correlation coefficients (SCCs) of 0.864 for the right side, 0.676 for the left side, and 0.761 for both sides. By the SHS, a sufficient visual differentiation between the CN and the PT could not be achieved. A significantly better distinction could be achieved by using the THS (Wilcoxon P<0.05). The S/C ratios of the THS only showed a significant (P < 0.05) SCC of -0.514 comparing to the UPDRS. Pathological alterations in the beta-CIT uptake pattern could be identified by using the SHS, but a significantly better differentiation of CN and the PT was possible by using the THS. The significant correlation of the S/C ratios measured by THS only emphasizes the value of THS in beta-CIT imaging.

Aged↗

Inhibition of thrombus formation by low-dose acetylsalicylic acid, dipyridamole, and their combination in a model of platelet-vessel wall interaction.

Effects of low-dose acetylsalicylic acid (ASA, 50 mg/day), dipyridamole (sustained-release preparation 400 mg/day), and their combination were investigated in a model of human platelet-vessel wall interaction. In a randomized, double-blind clinical pharmacology trial in 96 healthy subjects, the inhibition of mural platelet thrombus was measured ex vivo using blood samples collected both before and 2 hours after a 3.5-day treatment with ASA, dipyridamole, ASA combined with dipyridamole, or placebo. Both the size and the number of platelet thrombi adherent to a thrombogenic matrix after a 15-minute flow experiment were identified by automated fluorescence microscopy. ASA treatment alone reduced the mean size of all thrombi by about 45%, and dipyridamole alone achieved an approximate 17% reduction in the mean size of all thrombi. The combination of both agents had an additive effect. Formation of the subpopulation of very large thrombi was reduced by ASA and dipyridamole to a similar extent, with their combination producing an effect at least twice as strong as that witnessed in a single treatment. These results suggest that ASA and dipyridamole affect platelet thrombus growth by different mechanisms of action. These findings provide the pharmacologic rationale for the combination of ASA (suppressing the synthesis of prothrombotic thromboxane A2) and dipyridamole (by feedback inhibition of platelet activation via local accumulation of adenosine) as a highly effective and safe combination for secondary prevention of stroke. They are consistent with the clinical findings of the Second European Stroke Prevention Study (ESPS-2). In this large trial, the addition of dipyridamole (400 mg/day in a sustained-release preparation) to aspirin (50 mg/day) doubled the efficacy of aspirin in the secondary prevention of stroke without increasing the risk for bleeding.

Aspirin↗

Weak D alleles express distinct phenotypes.

The weak D phenotype is caused by many different RHD alleles encoding aberrant RhD proteins, raising the possibility of distinct serologic phenotypes and of anti-D immunizations in weak D. We reported 6 new RHD alleles, D category III type IV, DIM, and the weak D types 4.1, 4.2.1, 4.2.2, and 17. The immunohematologic features of 18 weak D types were examined by agglutination and flow cytometry with more than 50 monoclonal anti-D. The agglutination patterns of the partial D phenotypes DIM, D(III) type IV, and D(IV) type III correlated well with the D epitope models, those of the weak D types showed no correlation. In flow cytometry, the weak D types displayed type-specific antigen densities between 70 and 4000 RhD antigens per cell and qualitatively distinct D antigens. A Rhesus D similarity index was devised to characterize the extent of qualitative changes in aberrant D antigens and discriminated normal D from all tested partial D, including D category III. In some rare weak D types, the extent of the alterations was comparable to that found in partial Ds that were prone to anti-D immunization. Four of 6 case reports with anti-D in weak D represented auto-anti-D. We concluded that, in contrast to previous assumptions, most weak D types, including prevalent ones, carry altered D antigens. These observations are suggestive of a clinically relevant potential for anti-D immunizations in some, but not in the prevalent weak D types, and were used to derive an improved transfusion strategy in weak D patients. (Blood. 2000;95:2699-2708)

Alleles↗

Guanidine derivatives as combined thromboxane A2 receptor antagonists and synthase inhibitors.

A new series of omega-disubstituted alkenoic acid derivatives derived from samixogrel 5 were designed and synthesized as combined thromboxane A2 receptor antagonists/thromboxane A2 synthase inhibitors with improved solubility and reduced protein binding compared to 5. Hexenoic acid derivatives with a 3-pyridyl group and 3-(2-cyano-3-alkyl-guanidino)phenyl substituent were found to be optimal with regard to this dual mode of action. The most potent compound, E-6-(3-(2-cyano-3-tert-butyl-guanidino)phenyl)-6-(3-pyridyl)hex-5-eno ic acid, "terbogrel" 32 inhibits the thromboxane A2 synthase in human gel-filtered platelets with an IC50 value of 4.0 +/- 0.5 nM (n = 4). Radioligand binding studies with 3H-SQ 29,548 revealed that 32 blocks the thromboxane A2/endoperoxide receptor on washed human platelets with an IC50 of 11 +/- 6 nM (n = 2) and with an IC50 of 38 +/- 1 nM (n = 15) in platelet-rich plasma. Terbogrel inhibits the collagen-induced platelet aggregation in human platelet-rich plasma and whole blood with an IC50 of 310 +/- 18 nM (n = 8) and 52 +/- 20 nM (n = 6), respectively. This was shown to translate into a potent antithrombotic effect in vivo as demonstrated in studies using a model of arterial thrombosis in rabbits (ED50 = 0.19 +/- 0.07 mg/kg; n = 20). Thus, terbogrel is the first compound with a guanidino moiety demonstrating both a potent TXA2 synthase inhibition and a potent TXA2 receptor antagonism and has been selected for further clinical development.

Animals↗

Molecular basis of weak D phenotypes.

A Rhesus D (RhD) red blood cell phenotype with a weak expression of the D antigen occurs in 0.2% to 1% of whites and is called weak D, formerly Du. Red blood cells of weak D phenotype have a much reduced number of presumably complete D antigens that were repeatedly reported to carry the amino acid sequence of the regular RhD protein. The molecular cause of weak D was unknown. To evaluate the molecular cause of weak D, we devised a method to sequence all 10 RHD exons. Among weak D samples, we found a total of 16 different molecular weak D types plus two alleles characteristic of partial D. The amino acid substitutions of weak D types were located in intracellular and transmembraneous protein segments and clustered in four regions of the protein (amino acid positions 2 to 13, around 149, 179 to 225, and 267 to 397). Based on sequencing, polymerase chain reaction-restriction fragment length polymorphism and polymerase chain reaction using sequence-specific priming, none of 161 weak D samples investigated showed a normal RHD exon sequence. We concluded, that in contrast to the current published dogma most, if not all, weak D phenotypes carry altered RhD proteins, suggesting a causal relationship. Our results showed means to specifically detect and to classify weak D. The genotyping of weak D may guide Rhesus negative transfusion policy for such molecular weak D types that were prone to develop anti-D.

Alleles↗

Two-dimensional determination of the cellular Ca2+ binding in bovine chromaffin cells.

The spatiotemporal profile of intracellular calcium signals is determined by the flux of calcium ions across different biological membranes as well as by the diffusional mobility of calcium and different calcium buffers in the cell. To arrive at a quantitative understanding of the determinants of these signals, one needs to dissociate the flux contribution from the redistribution and buffering of calcium. Since the cytosol can be heterogeneous with respect to its calcium buffering property, it is essential to assess this property in a spatially resolved manner. In this paper we report on two different methods to estimate the cellular calcium binding of bovine adrenal chromaffin cells. In the first method, we use voltage-dependent calcium channels as a source to generate calcium gradients in the cytosol. Using imaging techniques, we monitor the dissipation of these gradients to estimate local apparent calcium diffusion coefficients and, from these, local calcium binding ratios. This approach requires a very high signal-to-noise ratio of the calcium measurement and can be used when well-defined calcium gradients can be generated throughout the cell. In the second method, we overcome these problems by using calcium-loaded DM-nitrophen as a light-dependent calcium source to homogeneously and quantitatively release calcium in the cytosol. By measuring [Ca2+] directly before and after the photorelease process and knowing the total amount of calcium being released photolytically, we get an estimate of the fraction of calcium ions which does not appear as free calcium and hence must be bound to either the indicator dye or the endogenous calcium buffer. This finally results in a two-dimensional map of the distribution of the immobile endogenous calcium buffer. We did not observe significant variations of the cellular calcium binding at a spatial resolution of approximately 2 micron. Furthermore, the calcium binding is not reduced by increasing the resting [Ca2+] to levels as high as 1.1 microM. This is indicative of a low calcium affinity of the corresponding buffers and is in agreement with a recent report on the affinity of these buffers (Xu, T., M. Naraghi, H. Kang, and E. Neher. 1997. Biophys. J. 73:532-545). In contrast to the homogeneous distribution of the calcium buffers, the apparant calcium diffusion coefficient did show inhomogeneities, which can be attributed to restricted diffusion at the nuclear envelope and to rim effects at the cell membrane.

Acetates↗

Two dye two wavelength excitation calcium imaging: results from bovine adrenal chromaffin cells.

We tested a mixture of Calcium-Green-1 (CG-1) and Brilliantsulfaflavine (BS) for dual excitation ratiometric measurements of the intracellular free calcium concentration ([Ca2+]i) in bovine adrenal chromaffin cells. Dyes were coloaded (without being molecularly linked to each other) in the whole-cell configuration of the patch clamp technique. We compared the loading time-courses of CG-1 and BS, investigated their intracellular distribution patterns and studied the time course of photobleaching. We determined the apparent dissociation constant of CG-1, both optically and by potentiometric titration. Our findings indicate that: (i) with excitation at 420/488 nm, calibrated fluorescence signals could be derived using a Grynkiewicz-type equation; (ii) BS is an ideal reference dye that displayed no interaction with CG-1 or cellular constituents; and (iii) that calibration requires diffusional equilibration between pipette and the accessible volume of the cell. Spatially resolved recordings of fluorescence excitation spectra revealed elevated fluorescence of CG-1 in the nucleus such that reported [Ca2+]i levels seemed 25% higher compared to cytosolic values. Comparing fluorescence emission from in vitro dye solutions with in vivo values, we could estimate the accessible volume fraction and amount of Ca(2+)-insensitive dye.

Adrenal Glands↗

Rh phenotype prediction by DNA typing and its application to practice.

The complexity of the RHD and RHCE genes, which is the greatest of all blood group systems, confounds analysis at the molecular level. RH DNA typing was introduced in 1993 and has been applied to prenatal testing. PCR-SSP analysis covering multiple polymorphisms was recently introduced for the screening and initial characterization of partial D. Our objective is to summarize the accrued knowledge relevant to the approaches to Rh phenotype prediction by DNA typing, their possible applications beyond research laboratories and their limitations. The procedures, results and problems encountered are highly detailed. It is recommended that DNA typing comprises an analysis of more than one polymorphism. We discuss future directions and propose a piecemeal approach to improve reliability and cost-efficiency of blood group genotyping that may eventually replace the prevalent serology-based techniques even for many routine tasks. Transfusion medicine is in the unique position of being able to utilize the most extensive phenotype databases available to check and develop genotyping strategies.

Blood Transfusion↗

Profound and sustained inhibition of platelet aggregation by Fradafiban, a nonpeptide platelet glycoprotein IIb/IIIa antagonist, and its orally active prodrug, Lefradafiban, in men.

BACKGROUND: Clinical trials have demonstrated that platelet glycoprotein (GP) IIb/IIIa antagonists effectively prevent acute thrombotic events. Orally active GP IIb/IIIa antagonists are essential to evaluate the clinical benefit of long-term treatment. We therefore investigated platelet inhibition by the GP IIb/IIIa antagonist Fradafiban (BIBU 52; Fradafiban is the recommended INN of BIBU 52) and its orally administered prodrug, Lefradafiban (BIBU 104; Lefradafiban is the recommended INN of BIBU 104) in healthy subjects. METHODS AND RESULTS: The activity and plasma levels of Fradafiban and Lefradafiban were evaluated in double-blind, placebo-controlled studies in 130 healthy male subjects. One to 15 mg Fradafiban continuously infused over 30 minutes reversibly inhibited platelet aggregation in platelet-rich plasma ex vivo in response to 20 micromol/L ADP (5 mg, 100% inhibition at 27 minutes after administration) and to both 1.0 (5 mg, 100%) and 10 microg/mL (15 mg, 97+/-3%) collagen. Single oral doses of Lefradafiban inhibited ADP-induced aggregation by 59+/-14% (50 mg [mean+/-SD]; n=8), 90+/-12% (100 mg), and 99+/-2% (150 mg) 8 hours after administration. Correlations between activity and Fradafiban plasma levels were identical after Fradafiban and Lefradafiban treatment. After day 1, oral TID Lefradafiban treatment for 7 days inhibited aggregation by > or = 31+/-9.6% (25 mg TID; n=8), 53+/-12% (50 mg; n=7), and 88+/-6.6% (75 mg; n=8) just before the next dose. A similar correlation between the activity and Fradafiban plasma levels was observed at days 1, 2, and 7. CONCLUSIONS: Oral administration of Lefradafiban maintains the potent platelet GP IIb/IIIa antagonism of Fradafiban during treatment of healthy subjects for 1 week without signs of loss of the antiplatelet activity.

Administration, Oral↗

DTTX30, a combined thromboxane receptor antagonist and thromboxane synthetase inhibitor, prevents coronary thrombosis in anesthetized dogs.

BACKGROUND: Combined thromboxane A2 receptor blockade and thromboxane synthetase inhibition facilitates local prostacyclin production at the site of platelet activation thereby providing a potent antithrombotic effect. The efficacy of DTTX30, a combined thromboxane A2 receptor blocker-thromboxane synthetase inhibitor, in inhibiting recurrent coronary thrombosis was evaluated in vivo using a canine model of unstable angina pectoris. METHODS AND RESULTS: Pentobarbital-anesthetized dogs (total of 25) were used in which acute damage of the proximal left circumflex coronary artery, together with mechanical stenosis, produced an occlusive thrombosis. When the platelet plug was removed by rubbing the vessel, the occlusion returned reproducibly for at least 2 hours in control studies. To evaluate the antithrombotic efficacy of DTTX30, a reproducible pattern of occlusive coronary thrombi was first established over a period of one hour. Thereafter, DTTX30 (0.12 mg/kg i.v. bolus plus 0.29 mg/kg/hr), acetylsalicylic acid (ASA, 5 mg/kg, i.v. bolus), vapiprost (1.0 mg/kg i.v. bolus plus 1.0 mg/kg/ hr), or vehicle was administered and observations continued for one additional hour. At the end of the one hour observation period, epinephrine (0.3 microgram/kg/min i.v.) was infused (with continued DTTX30, vapiprost or vehicle infusion) and observations were continued for an additional 30 min. DTTX30 eliminated the recurrent arterial thrombus formation in all dogs without significant systemic or left ventricular hemodynamic effects. Infusion of epinephrine to further provoke thrombus formation produced a significant enhancement of left ventricular pressure development (LV dP/dt) and arterial diastolic and systolic pressures but failed to initiate thrombus formation. DTTX30 inhibited fully collagen-induced platelet aggregation ex vivo and produced an approximate 3-fold prolongation of the sublingual bleeding time. ASA eliminated thrombus formation in 4 of 5 dogs, but the additional prothrombotic stimulus of epinephrine infusion produced recurrent thrombus formation in all dogs. Collagen-induced platelet aggregation ex vivo was inhibited by acetylsalicylic acid, but sublingual bleeding time was unaffected. Vapiprost inhibited arterial thrombus formation in all dogs, but thrombus formation returned with the addition of epinephrine. There was a tendency for prolonged bleeding times with vapiprost administration and collagen-induced platelet aggregation ex vivo was effectively inhibited. CONCLUSION: These studied indicate that the combined inhibition of the thromboxane A2 receptor together with inhibition of thromboxane synthetase provides superior antithrombotic activity in vivo than does thromboxane A2 receptor blockade alone (vapiprost) or inhibition of cyclooxygenase (ASA). Thrombus formation even with the additional stimulation of epinephrine was inhibited by DTTX30 but neither vapiprost nor ASA was effective in this setting.

Animals↗

Manual and automated methods for the determination of leukocyte counts at extreme low levels: comparative evaluation of the Nageotte chamber and the Abbott Cell Dyn 3500 analyser.

Leukodepleted or leukocyte-poor blood products (fresh-frozen plasma, packed red cell and platelet concentrates in particular) are widely used in current clinical practice. However, because the monitoring of leukodepletion efficiency is generally carried out (if at all) using the labour-intensive and relatively inaccurate manual Nageotte chamber technique, it is clear that any increased demand for leukodepletion monitoring would be difficult, if not impossible, to meet. As the need to identify an automated alternative to the Nageotte technique is important, this study was undertaken to evaluate such a possibility. White blood cells were enumerated in a representative series of filtered and non-filtered human blood components by both microscopic counting in the Nageotte chamber, and with the Abbott CD3500 automated haematology analyser. For the Nageotte estimate, a single analysis was made in accordance with standard procedures, whereas the automated analysis was achieved by making six replicate counts and determining the mean of four replicates after excluding the highest and lowest estimates. To determine linearity limits of the manual and automated procedures, freshly isolated leukocytes were admixed with cell-free plasma-pheresis plasma. Reasonable reproducibility (mean CV 10% for cell counts exceeding 100 cells/microL) and good linearity (r > 0.9) were observed for CD3500 determinations in four separate experiments. The manual and automated measurements also correlated well (r > 0.9) with no obvious inter-method bias for cell counts up to 40 cells/microL although there was some suggestion of lower absolute CD3500 counts in the range 40-130 cells/microL. For the comparative studies with filtered and non-filtered blood products, no significant method bias was seen with 70 individual red cell concentrates, but systematically higher CD3500 white blood cell counts were observed in the series of 68 platelet concentrates (probably due to the presence of platelet clumps). This study concludes that automation of white cell counts in blood products with the CD3500 analyser is feasible for quality control in the preparation of fresh-frozen plasma and red cell concentrates but is limited for the analysis of filtered platelet concentrates.

Automation↗

Genotyping of the human platelet antigen-1 by ELISA detection of allele-specific amplicons.

BACKGROUND AND OBJECTIVES: The purpose of the study was to establish a valid and efficient method for genotyping of the human platelet alloantigen-1 (HPA-1) in large sample numbers. MATERIALS AND METHODS: Digoxigenin- and fluorescein-labelled allele-specific primers and a biotinylated common primer were included in the hot-start PCR. Amplicons were bound to avidin-coated plates to identify the products by ELISA. RESULTS: This approach reduced the number of PCR analyses for HPA-1 typing by half. PCR products were detected with high sensitivity and good reproducibility (interassay-CV: < 8%) in the ELISA. The typing of 100 blood donors with both PCR plus gel electrophoresis and ELISA-PCR showed identical results. CONCLUSION: This method offers efficient HPA-1 genotyping in large numbers of donors and patients.

Alleles↗

RHD/CE typing by polymerase chain reaction using sequence-specific primers.

BACKGROUND: Current DNA-based Rh system typing strategies may detect the two RH genes and their prevalent alleles, but they are known to fail sometimes, when rare RH alleles (e.g., D category phenotypes) are encountered. It is almost impossible to find a single DNA-based method that can accommodate the great heterogeneity within the human Rh system. STUDY DESIGN AND METHODS: An easy-to-perform DNA-based method for the detection of the two RH genes and their alleles, including variant RHD alleles, was developed. By the use of one RHD/C-, seven RHD-, and four RHCE-specific polymerase chain reactions, all triggered to work at identical thermocycling conditions, the DNA of 77 blood donors carrying weak D and that of 200 random donors with common D phenotype was investigated. In addition, 77 selected samples of ccDee and rare Rh system phenotypes were examined. RESULTS: Among 77 samples of weak D, one Rh33 and six DVI categories were detected, one of which showed new RHD-specific nucleotide patterns. In DFR and CCee samples, novel variant RHD alleles were found. RHD DNA types of 200 random donors were found to be concordant with their D phenotype. For RHE and RHe genotyping, a full correlation with serologic phenotypes was found. Our method for genotyping RHC and RHc failed in some cases, because of an already published RHc allelic variation, which we have called RHc(cyt48). An estimate of the frequency of this RHc(cyt48) allele in a white population was made. CONCLUSION: The presented exon-scanning RHD/CE polymerase chain reaction using sequence-specific primers complements current DNA-based Rh system typing strategies and is superior in the detection of variant RHD alleles.

Blood Donors↗