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Biomedical subjects

S Haas

Publications and source records attributed to S Haas.

At least 73 records · Page 4Linked to original sources

Heparin-induced thrombocytopenic potential of GAG and non-GAG-based antithrombotic agents.

We have undertaken these studies of the heparin-like, or glycosaminoglycan, and nonglycosaminoglycan-based antithrombotics in an effort to add to the understanding of the pathophysiologic mechanism of heparin-induced thrombocytopenia by investigations of how glycosaminoglycan-related agents interact with the heparin-induced thrombocytopenia antibodies. The low molecular weight heparins, originally thought to be useful alternatives to heparin because of their smaller size, show platelet activation and aggregation responses in platelet heparin-induced thrombocytopenia serum systems (P-selectin expression, microparticle formation, serotonin release, platelet aggregation). Although the molecular mass and sulfation of the heparinoid Lomoparan is similar to that of heparin and low molecular weight heparins, its chemical structure is different and probably is not recognized by the heparin-induced thrombocytopenia antibodies. The heparin-related pentasaccharide did not show a positive reaction in any system of platelet activation/aggregation. These studies have shown that the antibodies produced in patients with heparin-induced thrombocytopenia are reactive to highly sulfated glycosaminoglycans and nonglycosaminoglycan agents and less dependent on the molecular mass of these agents; whether the agent is a heparin or nonheparin compound was not critical. A combination of a moderate sulfation but low molecular mass in a heparin-like molecule was sufficient to prevent interaction with the heparin-induced thrombocytopenia antibodies. However, a chemical structure that is different from heparin (e.g., a heparinoid or a thrombin inhibitor) will also be nonreactive to platelet activation by heparin-induced thrombocytopenia antibodies.

Antibodies↗

[Hyperthyroidism and acute renal failure in partial bladder mole].

We report on a 31-year-old II gravida I para treated because of a hydatidiform mole, hyperthyroidism and acute renal failure in the 16th week of pregnancy. The pathomechanism of trophoblast-induced hyperthyroidism will be discussed. To our knowledge this is the first report on acute renal failure in association with trophoblast-induced hyperthyroidism.

Abortion, Eugenic↗

First workshop for detection of heparin-induced antibodies: validation of the heparin-induced platelet-activation test (HIPA) in comparison with a PF4/heparin ELISA.

BACKGROUND: No data exist regarding the inter-laboratory reproducibility of the heparin-induced-platelet-activation (HIPA) test, the most widely used functional assay in Germany for the detection of heparin-induced thrombocytopenia (HIT) antibodies. METHODS: Nine laboratories used an identical protocol to test eight different sera with the HIPA test. Five laboratories also tested the sera with a platelet factor 4 (PF4)/heparin-complex ELISA. Cross-reactivity with danaparoid-sodium was assessed using 0.2 aFXa units instead of heparin in the HIPA test. RESULTS: Two of nine laboratories had no discrepant HIPA test results. Four laboratories differed in one sample, one reported two discrepant results, and two laboratories reported more than two discrepant results. Cross-reactivity with danaparoid-sodium test results differed among laboratories. PF4/heparin ELISA results were identical in all five laboratories. CONCLUSION: The HIPA test requires strict quality control measures. Using both a sensitive functional assay (HIPA test) and a PF4/heparin ELISA will allow detection of antibodies directed to antigens other than PF4/heparin complexes as well as detection of IgM and IgA antibodies with PF4/heparin specificity.

Antibodies↗

Selectins in the HIT syndrome: pathophysiologic role and therapeutic modulation.

The pathophysiology of heparin-induced thrombocytopenia (HIT) is now known to be a complex process which involves platelets, vascular endothelium, and leukocytes. The activation products from these sites also contribute to the activation of coagulation and to the fibrinolytic deficit. While many of the markers of hemostatic activation processes have been found to be at increased levels during acute phases of the HIT syndromes, the circulating levels of soluble P-, E-, and L- selectins have not been reported. Since the pathophysiology of HIT involves the activation of platelets, endothelium, and leukocytes, it is expected that activation products related to these hemostatic systems, including soluble selectins, will also be increased in circulating blood. These alterations may provide an index of the pathophysiologic process. With the availability of highly sensitive ELISAs for soluble P-, E-, and L-selectins, it is now possible to measure these adhesion molecules in biological fluids. This study reports on the circulating levels of P-, E-, and L-selectins in HIT patients and their modulation after therapeutic intervention. With the availability of recombinant hirudin, it is now possible to provide alternate anticoagulants to HIT patients. However, the immunoactivation of platelets and other cells may require additional adjunct therapeutic approaches.

Anticoagulants↗

Heparin-induced thrombocytopenia: the role of platelet activation and therapeutic implications.

In the past, heparin has been the sole anticoagulant for interventional cardiovascular procedures. Today, several alternate approaches to anticoagulate patients with heparin-induced thrombocytopenia (HIT) are under consideration. Antiplatelet drugs, such as the ADP receptor antagonists and inhibitors of glycoprotein (GP) IIb/IIIa, are currently in development. We investigated the effect of two anti-platelet agents on platelet activation induced by HIT serum (n = 5 HIT positive sera, n = 5 HIT negative sera and n = 4 donor platelets) and heparin, using the traditional platelet aggregation assay, a Lumi-aggregation assay to also determine platelet release, and flow cytometry. By all methods, the GP IIb/IIIa inhibitor-GPI 562 (Novartis; Nürnberg, Germany)-produced a concentration dependent (6.25 to 125 ng/mL) decrease in platelet activation, as shown by platelet aggregation, platelet microparticle formation, P-selectin expression, and ATP release. Similar results were obtained with the thienopyridine ADP receptor antagonist ticlopidine (Sanofi Recherche; Toulouse, France) in vitro at high concentrations of 5.0 to 50 microg/mL and ex vivo in a patient dosed at 250 mg/day. These studies show that GP IIb/IIIa and ADP receptor inhibitors can block platelet activation induced by HIT serum/heparin, providing evidence that the mechanism of HIT may be multifactorial involving not only the generation of the heparin-PF4 or other antibodies but also involving platelet-specific processes and, potentially, the generation of proaggregatory substances. The new antiplatelet agents may be useful in the clinical management of HIT patients.

Adenosine Triphosphate↗

[Therapy of thromboses with low-molecular-weight heparins].

Low-molecular-weight heparins, nowadays already widely used for the prevention of thromboembolism, have now also become available for the treatment of deep-vein thrombosis. This article should serve to explain the rationale for this development and to demonstrate the clinically relevant advantages of the use of low-molecular-weight heparins. After briefly describing the characteristic properties of heparins the most relevant studies comparing the use of low-molecular-weight heparin versus unfractionated heparin for the treatment of thromboembolism are discussed. In conclusion, clinical trials suggest that low-molecular-weight heparins given subcutaneously can replace the hitherto standard intravenous application of unfractionated heparin in the initial treatment of deep-vein thrombosis, granting equal or even better efficacy and potentially lower rates of adverse side effects. Furthermore, the simplicity of this therapeutic regime allows for treatment of patients at home, thus offering patients' mobility and also reducing the cost of treatment.

Ambulatory Care↗

Comparison of 3,000 IU aXa of the low molecular weight heparin certoparin with 5,000 IU aXa in prevention of deep vein thrombosis after total hip replacement. German Thrombosis Study Group.

BACKGROUND: The aim of this randomized, double-blind and prospective clinical trial was to investigate whether an increase of the conventional daily dosage (3,000 IU aXa) of the low molecular weight heparin certoparin up to 5,000 IU aXa/day might lower the incidence of deep vein thrombosis (DVT) in patients undergoing elective hip surgery. METHODS: The main criterium of this trial was the incidence of DVT diagnosed by bilateral ascending venography, which was performed either if DVT was clinically suspected or in each remaining patient between the 12th and the 14th postoperative day. A total number of 172 patients were enrolled to receive the conventional dosage of 3,000 IU aXa (Mono-Embolex NM) and 169 patients to receive the high dosage form (5,000 IU aXa) once daily. The mean age (+/-SD) was 69.6+/-9.5 and 67+/-11.7 years. RESULTS: No relevant differences were found concerning predisposing risk factors. The duration of surgery was 93+/-25.2 and 88+/-21.4 min (mean+/-SD). Surgical type and approach were not different between the groups. Deep vein thrombosis was detected in 17 patients (9.9%) in the conventional dose group and in 16 patients (9.5%) in the high dose group (intent-to-treat analysis; n.s.). The rate of bleeding complications was not significantly different except the cell saver volumes (770+/-136 vs 475+/-186 ml; p<0.001). No significant difference was found in the serious adverse event reporting along the lines of EC-GCP (10 vs 8 events; p=0.65). CONCLUSIONS: This clinical trial confirmed that the conventional dosage (3,000 IU aXa/day) of certoparin ensures maximal antithrombotic activity.

Adult↗

Limitations of established antithrombotic strategies.

The incidence of venous thromboembolism has declined in recent years, probably due to the successful use of prophylactic strategies. However, pulmonary embolism remains the most common preventable cause of hospital death in industrialized countries. A number of clinical studies have shown that when used appropriately current antithrombotic therapies, such as unfractionated heparin, oral anticoagulants and low-molecular-weight heparins, are effective in preventing thromboembolic events in the majority of patients. However, surveillance data indicate that in certain high-risk clinical settings a significant proportion of patients still develop deep vein thrombosis despite use of the most effective prophylaxis methods currently available. Currently available antithrombotic therapies are also associated with a risk of treatment-specific adverse effects and various practical limitations which restrict their clinical benefit and influence cost-effectiveness. Risk of bleeding, heparin-induced thrombocytopenia, and drug interactions are the most important safety concerns. The need for inconvenient and costly dose adjustment and laboratory monitoring, intravenous or subcutaneous administration, and restrictions on methods of anaesthesia are key practical drawbacks. This paper reviews clinical and practical aspects of existing therapeutic options and develops a profile for the ideal thromboprophylactic agent. The direction of current research into the development of improved prophylactic modalities designed to overcome existing limitations is briefly discussed.

Anticoagulants↗

Low molecular weight heparins in the prevention of venous thromboembolism in nonsurgical patients.

Hospitalized nonsurgical patients are at risk of developing venous thromboembolic disease (VTED) but, in contrast to surgical patients, only a limited number of prevention trials have been performed. Guidelines for optimal prophylaxis, particularly with respect to low molecular weight heparins (LMWHs), are not definitive. The Fifth American College of Chest Physicians' (ACCP) Consensus on Antithrombotic Therapy makes limited recommendations on the use of LMWH in patients. Recommendations are made for ischemic stroke and general medical patients, but there are insufficient clinical trial data to produce firm recommendations on the use of LMWHs in acute myocardial infarction, pregnancy, and cancer patients. Patients with acute ischemic stroke are at high risk for VTED. The ACCP Consensus recommends employing either low-dose UFH or LMWH. A recent comparison between enoxaparin and UFH revealed an incidence of thromboembolic events in 20% of patients randomized to enoxaparin, compared with 35% in the UFH-treated group. Although the ACCP Consensus states that both low-dose unfractionated heparin (UFH) and LMWH provide effective prophylaxis in general medical patients, particularly those with congestive heart failure and/or pulmonary infections, no specific LMWH or dose is specified. The recently completed Thromboembolism Prevention in Cardiopulmonary Diseases with Enoxaparin (PRINCE) trial compared once-daily enoxaparin with three times daily UFH. Enoxaparin was at least as effective as UFH in reducing the risk of thromboembolic events by 19%. In high-risk pre-defined subgroups with heart failure, enoxaparin was significantly more effective. It is not possible to recommend a specific LMWH for prophylaxis in medical patients, but the recent position adopted by the United States Food and Drug Administration and the World Health Organization that LMWHs are noninterchangeable drugs suggests that thromboprophylaxis guidelines should be strengthened to reflect the level of evidence for each individual LMWH.

Breast Neoplasms↗

Past, present and future considerations on low molecular weight heparin differentiation: an epilogue.

This epilogue represents a final summary of the issues discussed and highlighted at the International Summit on Differentiation of Low Molecular Weight Heparins (LMWHs). International scientists and physicians presented and discussed the physicochemical differences between LMWHs, and concluded that different production processes result in the formation of distinct drugs with unique preclinical and clinical profiles. Important data was presented showing that different LMWHs continue to show marked differences in antithrombotic action, and pharmacokinetic and pharmacodynamic profiles measured in animal models. Human data also demonstrate that LMWHs are not bioequivalent. Moving to the clinical arena, it is clear that there are issues to be resolved regarding drug inequivalence. No apparent clinical efficacy differences have been observed in deep-vein thrombosis prophylaxis using a number of relatively low doses of LMWH. However, two studies have demonstrated clinical equivalence using different anti-Xa doses of LMWHs, strongly suggesting product inequivalence. This also suggests that anti-Xa doses are not reflective of the entire pharmacologic effects of LMWHs. It is unknown whether the higher dosages employed in the treatment of DVT will help provide evidence of clinical inequivalence. In the management of acute coronary syndromes, higher drug dosages than those used in prophylaxis have revealed an efficacy advantage; while two LMWHs have shown short-term improvement in acute coronary syndromes, only one provided a long-term treatment benefit, suggesting a drug-specific therapeutic advantage. This is in keeping with the position of the United States Food and Drug Administration and the World Health Organization, who regard each individual LMWH as a distinct drug requiring individual clinical trials for use in a specific clinical indication. In this epilogue, the chairpersons, Professors Jawed Fareed, Sylvia Haas and Arthur Sasahara, offer some final thoughts on this intriguing scientific and clinical issues of LMWH differentiation.

Animals↗

Bilateral vertebral artery dissection causing a cerebrovascular accident in pregnancy. A case report.

BACKGROUND: Vertebral artery dissection, occurring spontaneously or following a traumatic event, is a cause of posterior circulation stroke in young individuals, including pregnant women. CASE: A 20-year-old, primagravid woman acutely developed headache, right-sided hemiparesis and parasthesias, and blurred vision. Within days she complained of cervical neck pain. Magnetic resonance imaging findings were consistent with a posterior circulation cerebrovascular accident (CVA). An arteriogram, performed to exclude vasculitis, revealed bilateral vertebral artery dissection. No inciting event could be recalled. CONCLUSION: Vascular dissections occur rarely during pregnancy. Spontaneous extracranial vertebral artery dissection itself is very rare in general. Cerebral ischemia can follow vertebral artery dissection. In young patients with CVA, consideration of the diagnosis of vertebral artery dissection followed-by angiography and anticoagulation is an important component of the workup and care.

Adult↗

Transgenic systems in studies on genotoxicity of alkylating agents: critical lesions, thresholds and defense mechanisms.

Transgenic systems, both cell lines and mice with gain or loss of function, are being used in order to modulate the expression of DNA repair proteins, thus allowing to assess their contribution to the defense against genotoxic mutagens and carcinogens. In this review, questions have been addressed concerning the use of transgenic systems in elucidating critical primary DNA lesions, their conversion into genotoxic endpoints, low-dose effects, and the relative contribution of individual cellular functions in defense. It has been shown that the repair protein alkyltransferase (MGMT) is decisive for protection against methylating and chloroethylating compounds. Protection pertains also to tumor formation, as revealed by the response of MGMT transgenic and knockout mice. Overexpression of genes involved in base excision repair (N-methylpurine-DNA glycosylase, apurinic endonuclease, DNA polymerase beta) is in most cases not beneficial in increasing the protection level, whereas their down-modulation or inactivation increases cellular sensitivity. This indicates that non-repaired base N-alkylation lesions and/or repair intermediates possess genotoxic potential. Modulation of mismatch repair and poly(ADP)ribosyl transferase has also been shown to affect the cellular response to alkylating agents. Furthermore, the role of Fos, Jun and p53 in cellular defense against alkylating mutagens is discussed.

Alkylating Agents↗

Primer design for large scale sequencing.

We have developed PRIDE, a primer design program that automatically designs primers in single contigs or whole sequencing projects to extend the already known sequence and to double strand single-stranded regions. The program is fully integrated into the Staden package (GAP4) and accessible with a graphical user interface. PRIDE uses a fuzzy logic-based system to calculate primer qualities. The computational performance of PRIDE is enhanced by using suffix trees to store the huge amount of data being produced. A test set of 110 sequencing primers and 11 PCR primer pairs has been designed on genomic templates, cDNAs and sequences containing repetitive elements to analyze PRIDE's success rate. The high performance of PRIDE, combined with its minimal requirement of user interaction and its fast algorithm, make this program useful for the large scale design of primers, especially in large sequencing projects.

Algorithms↗

Regulation of MCSF receptors on microglia in the normal and injured mouse central nervous system: a quantitative immunofluorescence study using confocal laser microscopy.

The macrophage colony-stimulating factor (MCSF) is a 40-76-kD glycoprotein that plays an important role in the activation and proliferation of microglia both in vitro and in injured neural tissue. Here, we examined the regulation of MCSF receptor (MCSFR) and MCSF in the normal and injured mouse central nervous system (CNS) by using confocal laser microscopy, quantitative immunofluorescence, and reverse transcriptase-polymerase chain reaction (RT-PCR) techniques. Immunohistochemistry on fixed, floating tissue sections demonstrated low to moderate MCSFR immunoreactivity (MCSFR-IR) on microglia in the gray and white matter throughout the mouse CNS in the forebrain, brainstem, cerebellum, and spinal cord. High levels of MCSFR-IR were restricted to the superficial layer of the spinal cord dorsal horn, substantia nigra, and area postrema, a CNS region that lacks the blood-brain barrier. CNS injury led to a strong and specific increase in MCSFR-IR in the directly injured dorsal forebrain, in the cervical spinal cord (C2) after transection of the sensory, minor occipital nerve, and in the axotomized facial motor nucleus. Further investigation at the mRNA level in the facial nucleus model showed that this increase was accompanied by a rapid induction of the transcript for MCSFR, with a peak 1-2 days after injury, but only a constitutive expression of MCSF-mRNA. In summary, although normal levels of MCSF receptor in most microglia are low, microglial activation is accompanied by a rapid and massive increase. In view of the constitutive expression of MCSF, the early upregulation of the MCSF receptor may play a central role in preparing these macrophage-related cells to take part in the cellular response to CNS injury.

Animals↗