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Biomedical subjects

A H Sutor

Publications and source records attributed to A H Sutor.

At least 19 recordsLinked to original sources

Acute bilateral renal vein thrombosis complicating Netherton syndrome.

UNLABELLED: A 1-year old male infant suffering from Netherton syndrome with severe generalized erythroderma presented with acute renal failure due to bilateral renal vein thrombosis (RVT) after a short episode of enteritis. The imperceptible fluid loss through the skin and the additional enteric water loss had led to decompensation of the delicate fluid balance and had resulted in RVT as a sequel of haemoconcentration. Reperfusion of the left kidney could be achieved by treatment with urokinase and heparin. Prophylactic oral anticoagulation was instituted for several weeks. CONCLUSION: In severe Netherton disease meticulous surveillance of the fluid balance is important and aggressive treatment is indicated in case of additional fluid loss.

Diagnosis, Differential

Bilateral renal vein thrombosis and venous sinus thrombosis in a neonate with factor V mutation (FV Leiden).

Bilateral renal vein thrombosis and venous sinus thrombosis were diagnosed within 3 weeks of birth in a full-term neonate. Heterozygosity for a factor V mutation leading to resistance against the anticoagulatory properties of activated protein C was found. Heparin therapy led to resolution of the thrombotic manifestations. With long-term oral anticoagulation, no relapse or other thrombotic event occurred during infancy.

Anticoagulants

New families with von Willebrand disease type 2M (Vicenza).

The variant von Willebrand disease (vWd) variant type 2M (Vicenza) was identified in 13 patients of 7 unrelated families. 11 patients were from different parts of germany and 2 patients from Turkey. Hitherto this variant of vWd has been described only in two families originating from the province of Vicenza in Northern Italy. Characteristically this type of vWd shows the supranormal multimers of von Willebrand factor (vWf) in plasma similar to those seen in normal plasma after desmopressin infusion. Clinically, the patients present with bleeding symptoms. Other laboratory abnormalities include reduced values for vWf antigen (vWf: Ag), factor VIII coagulant activity (VII:C), ristocetin cofactor activity (RiCof) and collagen binding activity (vWf: CBA). The hereditary transmission of this variant is consistent with an autosomal dominant mode of inheritance. The patients with vWd type 2M (Vicenza) could be allocated into two subgroups: type "platelet normal" with normal vWf properties in platelets and type "platelet low" with reduced vWf: Ag levels in platelets.

Adult

Diagnosis of thromboembolic disease during infancy and childhood.

Thromboembolic disorders are frequent complications in pediatric patients and the incidence seems to rise. Adult guidelines for thromboembolism do not hold for children because there are many age-related features. Congenital prethrombotic disorders play a major role in the pediatric population and activated protein C (APC) resistance is also the most frequently encountered problem. Acquired risk factors in children are central venous line thrombosis with serious complications, cardiac diseases such as cardiomyopathies, prosthetic heart valves and aneurysms, renal vein thrombosis, and nephrotic syndrome. Renal vein thrombosis primarily affects newborns. Children with the antiphospholipid antibody syndrome also have thromboses although less frequent than adults, but systemic lupus erythematosus is associated with a high incidence. Acute lymphoblastic leukemia is frequently associated with thrombosis in children, especially when complicated by APC resistance. The greatest risk of thrombosis in children is during the neonatal period, and again congenital prethrombotic states and catheter placement play a major role. The clinical manifestations in children reflect the site of the thrombosis and extensive laboratory evaluations and advanced diagnostic procedures must be employed to diagnose the thrombotic events.

Adolescent

Hemolytic uremic syndromes in childhood.

The hemolytic uremic syndrome (HUS) comprises hemolytic anemia, acute renal failure, and thrombocytopenia. It is the most frequent cause of acute renal failure in childhood. Ninety percent of the patients have a diarrheal prodrome, and are referred to as having typical HUS. Approximately 10% exhibit the so-called atypical HUS. Typical HUS is caused by shigatoxin-producing Escherichia coli. The toxin, bound to the globotriosyl ceramide cell receptor and internalized, interferes with protein synthesis, predominantly of endothelial cells. The main target is the kidney, but nearly every organ system can be involved. The most common extrarenal involvement is damage to the central nervous system. The central event is probably an insult to the endothelial cell with consecutive loss of antithrombogenic properties. The von Willebrand factor, activation of platelets via platelet-activating factor, other growth factors (e.g., interleukins 1, 6, 8), nitric oxide, lipopolysaccharides, activated polymorphonucleated neutrophils, and the metabolites of the arachidonic acid cascade (e.g., prostaglandin I2) are believed to be involved in the pathogenic cascade. Controlled therapeutic trials with heparin, dipyridamole, aspirin, and urokinase have not been associated with improved outcome. Antibiotics have not yielded any benefit. Plasma infusions and plasma exchange appear to be efficacious, and are justified in cases of atypical HUS and thrombotic thrombocytopenic purpura. Binding of the toxin to the intestinal lumen, and thereby inhibition of enteral reabsorption, is under investigation.

Child

Heparin therapy in pediatric patients.

Advances in tertiary care pediatrics have resulted in heparin being one of the most frequently prescribed drugs in children's hospitals. Heparin is essential for cardiopulmonary bypass, extracorporeal membrane oxygenation, renal dialyses, maintenance of patency of venous and arterial catheters, and treatment of thromboembolic events. Currently, protocols validated in adults are used for children. However, optimal use of heparin in pediatric patients will likely differ from adults because of age-dependent physiologic and pathologic differences in hemostasis that influence the activities of heparin. The following review summarizes the influence of age on heparin anticoagulant activities, and pharmacokinetics. The indications, monitoring, therapeutic range, factors influencing dose-response relationships, and side effects of heparin therapy in pediatric patients are discussed. Finally the current and future indications for low-molecular-weight heparins in pediatric patients are summarized. Multi-centered, international clinical trials are urgently needed to assess and optimize the use of heparin in pediatric patients in a variety of clinical settings. Until these studies are completed, recommendations for adults provide guidelines for children.

Adult

Prevalence of factor V Leiden in children with thrombo-embolism.

UNLABELLED: Hereditary resistance to the anticoagulatory action of activated protein C (APC resistance, APCR) was identified as a possible new thrombophilic factor in a high percentage (17%-60%) of young adults with thrombotic events. A single missense mutation (R506Q) due to a G/A transition (G1691A) in exon 10 of the factor V gene is regarded as the causative molecular defect, resulting in factor V Leiden which is correlated with APCR. Identification of this mutation by polymerase chain reaction-based methods is easy to perform and prevents pre-analytical and analytical errors in the coagulometric assay for APCR. Since the impact of this mutation in children with thrombo-embolic disease has not been determined to date, we initiated a multi centre prevalence study in two paediatric populations, with and without thrombo-embolic events. We compared 125 paediatric patients with thrombosis, divided into three different age groups (0 to < 0.5 years; > 0.5 to < 10 years; > 10 to < 18 years) with a normal population of 159 children. Although the mutation G1691A was found with an unexpectedly high prevalence of 12% in our normal controls, the prevalence was significantly higher in the age groups; 0 to < 0.5 years (26%) and > 10 to < 18 years (30%). In patients between > 0.5 and < 10 years the overall prevalence was similar to that of the control group (13%). However, in patients of this age with spontaneous thrombosis, G1691A was also a significant risk factor (5/17 approximately equal to 29%). Homozygosity for G1691A was detected in three patients but not in the control group. Including deficiencies of protein C, protein S, antithrombin, and the presence of anti-phospholipid antibodies, thrombosis was correlated with endogenous thrombophilic factors in 38/125 patients (30.4%). CONCLUSION: Our results emphasize the impact of factor V Leiden on thrombogenesis in children. However, the significance is age-dependent and may reflect the different physiology of haemostasis in the three age groups. The diagnostic workup of children with thrombosis should include tests for factor V Leiden. The correlation of factor V Leiden with the clinical course of thrombo-embolism in children is essential to establish rational guidelines for therapy and prophylaxis of APCR-related thrombosis which are not yet available.

Adolescent

Identification of a candidate missense mutation in a family with von Willebrand disease type IIC.

A screening project to identify candidate molecular defects causing von Willebrand disease type IIC (VWD IIC) in a German family was carried out using polymerase chain reaction (PCR) amplification of all 52 exons of the von Willebrand factor (VWF) gene, subsequent electrophoresis of single and double stranded DNA and direct sequencing of PCR products with aberrant electrophoretic patterns. Only one candidate mutation, G550R, caused by a G-->A transition, was detected in exon 14 of the pro-VWF gene sequence. This mutation was not found on 200 chromosomes of normal individuals. The propositus was homozygous for the mutation and for an extended intragenic haplotype, composed of eight polymorphic markers. Further family members were heterozygous for the mutation and were phenotypically normal or only mildly affected, in accordance with the recessive pattern of inheritance for VWD type IIC. The mutation could influence one of the presumed active centers for the suspected multimerizing enzymatic activity of pro-VWF localized in the D1 and D2 domain, which corresponds to exon 5 and exon 14 of the VWF gene.

Amino Acid Sequence

Von Willebrand disease in childhood.

Von Willebrand disease (vWD), a disorder of primary hemostasis, represents the most frequently inherited bleeding diathesis, It is caused by a quantitative reduction or a qualitative abnormality, or both, of von Willebrand factor (vWF), a glycoprotein normally found in plasma, endothelial cells, subendothelial cell space, megakaryocytes and platelets. Patients with vWD represent a heterogeneous group with different phenotypes and with clinical symptoms that vary in severity. Many of the described types and subtypes of vWD are caused by mutations and aberrations of the vWF gene. The aim of this article is to highlight the impact of gene analysis on the current knowledge of the inheritance of vWD as well as on the structure-function relationship of vWF, and to focus on the available diagnostic laboratory tests and treatment options for patients with vWD, especially in childhood.

Child

Vitamin K deficiency bleeding in infants and children.

The historical term "hemorrhagic disease of the newborn," which is used as a synonym for vitamin K deficiency bleeding (VKDB) in infancy, preferably should be abandoned, since neonatal bleeding is often not due to vitamin K (VK) deficiency and VKDB may occur after the neonatal period. VKDB is a form of bleeding that is caused by reduced activity of VK-dependent coagulation factors (II, VII, IX, X), has normal or even increased activity of VK-independent coagulation factors, and responds to VK. Acarboxy proteins are present. In a bleeding infant a prolonged one-stage prothrombin time (a decreased Quick value, which means prothrombin time expressed as percent of normal) in association with a normal (or increased) fibrinogen level and platelet count is almost diagnostic of VKDB. The diagnosis is proven, if administration of VK is followed by a shortening of the prothrombin time (after only 30 minutes) or cessation of bleeding. Classification is by age of onset as early, classic, and late form of VKDB. Rare cases of VKDB occur also after week 15; therefore the upper age limit should be 6 months and not 3 months. In idiopathic VKDB the cause (ther than breast-feeding) is unknown. In secondary VKDB additional factors can be demonstrated, such as poor intake or absorption of VK and increased consumption of VK. Most often cholestasis is present. Postnatal VK provides effective protection from the classic and late form of VKDB. The classic form can be prevented equally well by a single oral dose of 1 mg VK after birth as by parenteral VK. Parenteral prophylaxis appears to be more effective in preventing the late form, especially in patients with hepatobiliary disease. The protection achieved by single oral prophylaxis can be improved by repeated oral administration. In addition to reducing the incidence of VKDB, VK prophylaxis also reduced the proportion of intracranial hemorrhages and increases the age at onset of bleeding, parenteral prophylaxis being more effective than single oral prophylaxis in this respect. Because of the potential risks (cancer?) associated with extremely high levels of VK (20,000-fold the normal value for healthy newborns) and the possibility of injection injury, parenteral VK has been questioned as the first choice of prophylaxis for normal neonates. These disadvantages do not apply to oral prophylaxis. The major disadvantage of oral prophylaxis, namely, its lesser reliability in terms of intake and absorption, could be largely overcome by repeated administration. Although VK prophylaxis seems to be necessary only for breast-fed infants, breast-feeding should be promoted. As VK is involved not only in coagulation but also in carboxylation with multiple effects, care should be taken to avoid any excessive deviation from the physiologic conditions, that prevail in the fully breast-fed healthy mature infant, with low VK levels in the postnatal period. Repeated (daily or weekly) oral doses of VK are closer to physiologic conditions than single parenteral bolus doses, which expose neonates to excessively high VK levels. The incidence of intracranial VKDB can be reduced if the grave significance of warning signs is recognized (icterus, failure to thrive, feeding problems, minor, bleeding, diseases with cholestasis) or if a simple test for acarboxy proteins (similar to the Guthrie test) would be applicable. Whether or not the more reliable absorption of the new mixed micellar preparation of VK could reduce the protective oral dose of VK prophylaxis has to be evaluated.

Child

Thrombocytosis in childhood.

Until recently, thrombocytoses in childhood were considered to be rare. The literature on this subject is scarce and contradictory. When thrombocytosis is defined as a platelet count of more than 500 x 10(9)/L (500 000/mm3 or 500 000/microL), the occurrence in routine examinations at pediatric hospitals can be estimated as 3 to 13%. These are almost exclusively secondary thrombocytoses, which are the result of infections (most frequently), trauma and surgery, hypoxemia, immunologic disturbances, premature birth, gastrointestinal disorders, medications, stress situations, or previous loss of platelets. The secondary thrombocytosis usually has less then 800 x 10(9)/L platelets, is temporary, and occurs predominantly in infants and young children. If only thrombocytosis is present, thrombotic complications are practically nonexistent. Antithrombotic prophylaxis is not necessary unless other risk factors for thrombosis are present, such as vessel damage, permanent iron deficiency, hyperviscosity, immobilization. Primary thrombocytoses due to a defect of stem cells are extremely infrequent in childhood.

Child

Hemostasis in childhood acute lymphoblastic leukemia: coagulopathy induced by disease and treatment.

Thromboembolic events (TE) are serious complications of treatment for childhood acute lymphoblastic leukemia (ALL) that result in significant morbidity and occasionally mortality. These events are strongly associated with the administration of L'asparaginase (ASP). There have been many studies reporting TE and assessing the coagulopathy associated with treatment. The intention of these studies was to determine a potential mechanism for thrombosis. This article reviews the current literature in this area. First, data on thrombotic complications in terms of incidence, location, diagnosis, and timing of events are summarized. The second section discusses the coagulopathy associated with the disease and treatment. To minimize the effects of confounding treatments, the data are divided into sections covering pretreatment, after ASP only, after combination chemotherapy without ASP, and after combination chemotherapy with ASP. In addition, the effects of glucocorticoid steroids on the hemostatic system are discussed. As thrombin regulation is critically important to hemostasis, the next section of the review discusses the regulation of thrombin in children with ALL, both in vitro and in vivo, and the link between impaired thrombin regulation and TE in this population. Finally current hypothesis on mechanisms for TE and proposed preventative strategies are examined.

Anticoagulants

von Willebrand factor-collagen binding activity is increased in newborns and infants.

von Willebrand factor (vWF) antigen (vWF:Ag) and vWF-collagen binding activity (vWF:CBA) were measured in plasma by parallel quantitative ELISAs in normal newborns and infants (n = 71). The medians for vWF:Ag (IU/ml) and vWF:CBA (U/ml), respectively, were 1.46 and 1.91 for 2-7 day-old (n = 43), 1.22 and 1.40 for 2-4 week-old (n = 14), 1.22 and 1.15 for 2-6-month-old (n = 14) infants and 0.98 and 1.08 (n = 36) in normal adults. Elevated levels of vWF:Ag, but particularly vWF:CBA were seen for up to 4 weeks of life reaching adult levels between 2 and 6 months of life. The elevated levels of the vWF parameters indicate that caution should be exercised when interpreting laboratory data and diagnosing von Willebrand disease in newborns and young infants and warrant the use of age-specific reference ranges. The efficient haemostasis observed during early neonatal life may in part be due to the increased ability of vWF to interact with collagen.

Collagen

[Hematoma in acute leukemia--suspected diagnosis of child abuse].

A 4-year-old child, suspected of being the victim of child abuse was sent for forensic examination. The examination established multiple, uncharacteristically shaped haematomata in various parts of the body. In addition, petechiae were also present. In view of the nature and localisation of the haematomata and the presence of petechial bleeding a differential diagnosis considered the possibility of a haematological disease and clinical paediatric tests were done to establish the cause, which showed an acute lymphatic leukaemia (ALL) with thrombo(cyto)penia. As haematomata are often the first indication of a leucosis, whenever child abuse is suspected, this possibility should also be considered.

Child Abuse

[Paradoxical bleeding as a complication of the treatment of hemophilia with factor VIII and factor IX preparations].

Paradoxical bleedings are complications occurring under replacement therapy in haemophiliacs by disturbancies of the primary haemostasis. They have been observed during treatment with factor-VIII- and prothrombin-complex concentrates of long duration and in high dosage. Clinical complications, for example delayed wound healing as well as spontaneous bleedings into the skin and from the mucous membranes, have been observed in one quarter of haemophiliacs under substitution therapy. In one third of these patients pathological parameters of primary haemostasis (prolonged bleeding time, reduced retention, retraction, ADP- and collagen-induced aggregation and the platelet factor 3 release) were found out. The following mechanisms or substances may be the cause for these disturbancies: 1. fibrinogen and factor-VIII split products 2. high content of proteins predominantly fibrinogen and factor-VIII-related antigen 3. antigen-antibody reactions 4. development of inhibitors against the Willebrand factor. For treatment of the paradoxical bleedings freshly prepared cryoprecipitate, prednison and Etamsylatum have been used.

Anticoagulants

Absence of anti-human immunodeficiency virus types 1 and 2 seroconversion after the treatment of hemophilia A or von Willebrand's disease with pasteurized factor VIII concentrate.

Patients with hemophilia A or von Willebrand's disease who are treated with concentrated preparations of human factor VIII made from unscreened pooled plasma are at substantial risk of contracting human immunodeficiency virus (HIV) infection. The purpose of this study was to investigate whether by treating such patients with a pasteurized factor VIII concentrate that had been heated in aqueous solution at 60 degrees C for 10 hours, HIV infection could be avoided. Eleven hemophilia centers in the Federal Republic of Germany and two in Austria identified 155 eligible patients who had been treated exclusively with pasteurized factor VIII concentrate and had not received any other blood products. Between February 1979 and December 1986 they received a total of 15,916,260 IU of pasteurized factor VIII. The United States was the source of 80 percent of the plasma from which the concentrate was made. By September 1988, these 155 patients had been screened for antibody to HIV type 1 (anti-HIV-1) with a total of 657 tests; all were negative. Sixty-seven patients were also tested once for antibody to HIV type 2 (anti-HIV-2); all these tests were negative as well. It appears that pasteurization effectively inactivates HIV, even in plasma that is likely to be highly contaminated with the virus.

Austria