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Missense mutations in the coagulation factor XII (Hageman factor) gene in hereditary angioedema with normal C1 inhibitor.

Hereditary angioedema is characterized by recurrent skin swelling, abdominal pain attacks, and potentially life-threatening upper airway obstruction. The two classic types are both caused by mutations within the complement C1 inhibitor gene. A recently described new type does not show a deficiency of C1 inhibitor and affects almost exclusively women. We screened twenty unrelated index patients with this new type of hereditary angioedema for mutations in the coagulation factor XII gene. Two different missense mutations were identified in exactly the same position within exon 9 of the F12 gene. 'Mutation 1' (1032C-->A), encountered in five patients, predicts a threonine-to-lysine substitution (Thr309Lys). 'Mutation 2' (1032C-->G), observed in one patient, results in a threonine-to-arginine substitution (Thr309Arg). The predicted structural and functional impact of the mutations, their absence in 145 healthy controls, and their co-segregation with the phenotype in five families provide strong support that they cause disease.

Angioedema↗

Anti-apoptotic role for C1 inhibitor in ischemia/reperfusion-induced myocardial cell injury.

Complement activation augments myocardial cell injury and apoptosis during ischemia/reperfusion (I/R), whereas complement system inhibition with C1 inhibitor (C1INH), a serine protease inhibitor, exerts markedly cardioprotective effects. Our recent data demonstrate that C1INH prevents vascular endothelial cell apoptosis and a "modified" form of the reactive center loop-cleaved, inactive C1INH (iC1INH) plays an anti-inflammatory role in endotoxin shock. The aim of this study was to determine whether C1INH protects against myocardial cell injury via an anti-apoptotic activity or anti-inflammatory effect. In a rat model of acute myocardial infarction (AMI) induced by I/R, administration of C1INH protected against cardiomyocytic apoptosis via normalization of ratio of the Bcl-2/Bax expression in the myocardial infarct area. C1INH improved parameters of cardiac function and hemodynamics and reduced myocardial infarct size (MIS). In addition, myocardial and blood myeloperoxidase (MPO) activity, a marker of neutrophil infiltration, was decreased by treatment of C1INH. In cultured H9c2 rat cardiomyocytic cells, C1INH blocked hypoxia/reoxygenation-induced apoptosis in the absence of sera associated with inhibition of cytochrome c translocation and suppression of caspase-3 activation. The proportion of Bcl-2/Bax expression induced by hypoxia/reoxygenation was reversed by C1INH. Importantly, iC1INH also revealed these similar effects, indicating that C1INH has a direct anti-apoptotic activity. Therefore, these studies support the hypothesis that C1INH, in addition to inhibition of activation of the complement and contact systems, improves outcome in I/R-mediated myocardial cell injury via an anti-apoptotic activity independent of serine protease inhibitory activity.

Animals↗

Acquired deficiency of the inhibitor of the first complement component: presentation, diagnosis, course, and conventional management.

Acquired deficiency of the inhibitor of the first complement component (C1-INH) is a rare, potentially life-threatening disease whose cause, course, and management are not completely defined. This article analyzes the etiopathogenetic mechanism, the clinical presentation, and the relationship between acquired C1-INH deficiency and lymphoproliferative disorders. Moreover, the authors give an overview of the outcome of the disease and the different therapies proposed to cure it.

Angioedema↗

Self-administration of C1-inhibitor concentrate in patients with hereditary or acquired angioedema caused by C1-inhibitor deficiency.

BACKGROUND: Administration of C1-inhibitor concentrate is effective for prophylaxis and treatment of severe angioedema attacks caused by C1-inhibitor deficiency. The concentrate should be administered intravenously and hence needs to be administered by health care professionals, which might cause considerable delay in treatment and inconvenience for patients. OBJECTIVE: The aim of this study was to investigate the feasibility, efficacy, and safety of on-demand and prophylactic self-administration of C1-inhibitor concentrate in patients with frequent attacks of angioedema. METHODS: Patients with hereditary or acquired C1-inhibitor deficiency who had very frequent angioedema attacks were trained to self-administer C1-inhibitor concentrate. The study consisted of 31 patients using on-demand treatment and 12 patients using prophylaxis with C1-inhibitor concentrate. Mean follow-up was 3.5 years. RESULTS: All patients were capable of self-administering the concentrate, with technical failure rates of self-injection being less than 2%. Times between the onset of the attack and the initiation of relief or complete resolution of symptoms in the on-demand group were significantly shortened (2.2 hours and 7.9 hours, respectively) compared with the situation before the start of self-administration. In the prophylaxis group self-administration of C1-inhibitor concentrate decreased the angioedema attack rate from 4.0 to 0.3 attacks per month. CONCLUSION: Intravenous self-administration of C1-inhibitor concentrate is a feasible and safe option and results in more rapid and more effective treatment or prevention of severe angioedema attacks in patients with C1-inhibitor deficiency. CLINICAL IMPLICATIONS: Self-administration of C1-inhibitor concentrate could be a valuable and convenient treatment modality to prevent or treat angioedema attacks in patients with C1-inhibitor deficiency.

Adult↗

First case of homozygous C1 inhibitor deficiency.

BACKGROUND: C1 Inhibitor (C1-Inh) deficiency causes angioedema and can be hereditary (HAE), caused by mutations in the C1-Inh gene (C1NH), or acquired (AAE). Patients with HAE show a complement profile different from that of patients with AAE with normal levels of C1 (C1q, C1r, and C1s). OBJECTIVE: We sought to characterize the complement profile of a patient with HAE and a mutation in homozygosis in the C1NH gene (c.1576T>G, Ile462Ser) and study his family. METHODS: Biochemical diagnosis of HAE was confirmed by analyzing the C1NH gene. Further studies on the levels and activation states of the C1q, C1r, C1s, and C1-Inh components of the classical pathway of complement activation were also performed. RESULTS: Another 7 members of the family were given diagnoses of HAE: 1 was homozygous and 6 were heterozygous for the C1NH mutation c.1576T>G. The homozygous patients showed undetectable C1q levels, reduced C1s levels, the circulating active form of C1r, and a C1-Inh mostly in its cleaved inactive form in plasma. CONCLUSION: This is the first report of patients homozygous for a mutation affecting the coding region of C1NH. These patients showed a unique activation and consumption profile of the classical complement activation pathway different from that commonly observed in patients with HAE but similar to that of patients with AAE. CLINICAL IMPLICATIONS: The most common HAE treatment is attenuated androgens, which increase the C1NH gene transcription levels. Because the homozygous patients lack a wild-type allele, long-term prophylactic treatment with attenuated androgens might not be advisable.

Adolescent↗

C1-inhibitor (C1-INH) autoantibodies in hereditary angioedema. Strong correlation with the severity of disease in C1-INH concentrate naïve patients.

The presence of autoantibodies to C1-inhibitor (C1-INH-Abs) is a hallmark of acquired C1-inhibitor deficiency. However, only scarce data are available on their prevalence in hereditary angioedema (HAE). In a prospective study performed between 2001 and 2004 in 95 patients with Type I or II HAE, serum samples were taken one to three times a year and clinical status of the patients was registered. Serum samples were tested for total activity of the classical pathway, C1q, C3, C4 and C1-inhibitor (C1-INH) concentration and activity levels, as well as the presence of IgG, IgA and IgM type anti-C1-inhibitor antibodies (C1-INH-Ab). Fifty-four healthy age and gender matched persons served as control. Significant differences between the patients and controls in the occurrence of elevated (2S.D. higher than mean of control) C1-INH-Abs titers was found only in the case of IgM type C1-INH-Abs. Elevated (>4.22AU/ml) IgM C1-INH-Abs levels were found in 31 and 4% of the patients and controls, respectively (p<0.001). Surprisingly, high titer IgM C1-INH-Abs were present with equal frequency in the 41 HAE patients ever treated with C1-INH concentrate and in the 54 C1-INH treatment naïve patients. In the latter group, strong positive correlation between the levels of the IgM C1-INH-Abs and the most severe disease (score 1) (p=0.0021) and the yearly attack rate (p=0.0173) were obtained. In addition, the levels of the IgM C1-INH-Abs exhibited strong negative correlation to the C1-inhibitor concentration and functional activity, total classical complement pathway activity, and a positive correlation to total IgM concentration. Taken together, these data indicate that IgM type C1-INH-Abs are present with highly elevated frequency in HAE patients irrespectively of the previous treatment with C1-INH concentrate. Most probable production of these autoantibodies is the consequence of the activation of complement and other plasma enzyme systems during HAE attacks. Determination of IgM C1-INH-Abs can be used as an activity marker in HAE.

Adolescent↗

Evaluation and management of angioedema of the head and neck.

PURPOSE OF REVIEW: Sudden occurrence of subcutaneous or submucosal swelling, the so-called angioedema, is an established and potentially life-threatening condition. Several forms of angioedema show a great variety of tissue localizations and different underlying mechanisms such as genetic mutations, allergic reactions and nonallergic reactions exist. Unfortunately, angioedema is often unrecognized and/or incorrectly treated. To change this situation, a better understanding of angioedema and possible therapeutic approaches appears necessary. RECENT FINDINGS: Recent investigations have shed new light on the pathomechanism of nonallergic drug-induced angioedema and new therapeutic options targeting the kallikrein-kinin system have become available for patients in clinical trials. Furthermore, extensive clinical evaluations of commonly used inhibitors of the renin-angiotensin system have provided reliable data on the incidence of angioedema induced by these drugs. Accordingly, several thousand patients worldwide experience severe fatal attacks although timely medical care would have saved their lives. SUMMARY: Current data suggest that the nonapetide bradykinin plays a crucial role in the pathogenesis of most forms of nonallergic angioedema, while histamine acts as the main biogenic mediator in allergic angioedema. Thus, correct diagnosis is crucial for effective treatment. Standard antiallergic drugs such as glucocorticoids and antihistamines are most probably ineffective in nonallergic angioedema forms.

Angioedema↗

Hereditary angio-oedema with normal C1 inhibitor in a family with affected women and men.

Recurrent angio-oedema is a sign of various acquired and inherited disease entities, including hereditary angio-oedema types I and II that result from a genetic deficiency of C1 inhibitor, and a recently described type of dominantly inherited angio-oedema, which does not show a deficiency of C1 inhibitor. Until now, this new type of hereditary angio-oedema, designated as hereditary angio-oedema type III, has been assumed to be a disorder specific to females. We now describe a four-generation family with dominantly inherited angio-oedema and normal C1 inhibitor in which, in contrast to all previous observations, not only five female but also three male family members were clinically affected. One male patient was mainly affected following the intake of angiotensin-converting enzyme inhibitors. Our current observation leads to new considerations about the classification of hereditary angio-oedema with normal C1 inhibitor. Either hereditary angio-oedema with normal C1 inhibitor can be an entity affecting females predominantly, but not exclusively; in that case, men appear to have a much reduced chance of clinical manifestations. Alternatively, our present observation of hereditary angio-oedema with normal C1 inhibitor affecting both sexes may represent a new disease entity, presumably with a different underlying defect.

Adult↗

C1-inhibitor concentrate home therapy for hereditary angioedema: a viable, effective treatment option.

Economic and political factors have led to the increased use of home therapy programmes for patients who have traditionally been treated in hospital. Many patients with hereditary angioedema (HAE) experience intermittent severe attacks that affect their quality of life and may be life-threatening. These attacks are treated with C1-inhibitor concentrate which, for most patients, is infused at the local hospital. Home therapy programmes for HAE are currently being established. This paper reviews the extent of use of these programmes and summarizes the advantages and potential disadvantages of the concept so far.

Acute Disease↗

Characterization of the StcE protease activity of Escherichia coli O157:H7.

The StcE zinc metalloprotease is secreted by enterohemorrhagic Escherichia coli (EHEC) O157:H7 and contributes to intimate adherence of this bacterium to host cells, a process essential for mammalian colonization. StcE has also been shown to localize the inflammatory regulator C1 esterase inhibitor (C1-INH) to cell membranes. We tried to more fully characterize StcE activity to better understand its role in EHEC pathogenesis. StcE was active at pH 6.1 to 9.0, in the presence of NaCl concentrations ranging from 0 to 600 mM, and at 4 degrees C to 55 degrees C. Interestingly, antisera against StcE or C1-INH did not eliminate StcE cleavage of C1-INH. Treatment of StcE with the proteases trypsin, chymotrypsin, human neutrophil elastase, and Pseudomonas aeruginosa elastase did not eliminate StcE activity against C1-INH. After StcE was kept at 23 degrees C for 65 days, it exhibited full proteolytic activity, and it retained 30% of its original activity after incubation for 8 days at 37 degrees C. Together, these results show the StcE protease is a stable enzyme that is probably active in the environment of the colon. Additionally, k(cat)/K(m) data showed that StcE proteolytic activity was 2.5-fold more efficient with the secreted mucin MUC7 than with the complement regulator C1-INH. This evidence supports a model which includes two roles for StcE during infection, in which StcE acts first as a mucinase and then as an anti-inflammatory agent by localizing C1-INH to cell membranes.

Antibodies, Bacterial↗

C1 inhibitor prevents Gram-negative bacterial lipopolysaccharide-induced vascular permeability.

Gram-negative bacterial endotoxemia may lead to the pathological increase of vascular permeability with systemic vascular collapse, a vascular leak syndrome, multiple organ failure (MOF), and/or shock. Previous studies demonstrated that C1 inhibitor (C1INH) protects mice from lipopolysaccharide (LPS)-induced lethal septic shock via a direct interaction with LPS. Here, we report that C1INH blocked the LPS-induced increase in transendothelial flux through an endothelial monolayer. In addition, LPS-mediated detachment of cultured endothelial cells was prevented with C1INH. C1INH also inhibited LPS-induced endothelial cell apoptosis as demonstrated by suppression of DNA fragmentation and annexin V expression. As illustrated by laser scanning confocal microscopy, C1INH completely blocked the binding of fluorescein isothiocyanate (FITC)-LPS to human umbilical vein endothelial cells (HUVECs). C1INH protected from localized LPS-induced increased plasma leakage in C57BL/6J mice and in C1INH-deficient mice. Local vascular permeability in response to LPS was increased to a greater extent in C1INH-deficient mice compared with wild-type littermate controls and was reversed by treatment with C1INH. Systemic administration of LPS to mice resulted in increased vascular permeability, which was reduced by C1INH. Therefore, these studies demonstrate that C1INH, in addition to its role in suppression of LPS-mediated macrophage activation, may play an important role in the prevention of LPS-mediated increased vascular permeability, endothelial cell injury, and multiple organ failure.

Animals↗

Heparin modulation of human plasma kallikrein on different substrates and inhibitors.

The interplay of different proteases and glycosaminoglycans is able to modulate the activity of the enzymes and to affect their structures. Human plasma kallikrein (huPK) is a proteolytic enzyme involved in intrinsic blood clotting, the kallikrein-kinin system and fibrinolysis. We investigated the effect of heparin on the action, inhibition and secondary structure of huPK. The catalytic efficiency for the hydrolysis of substrates by huPK was determined by Michaelis-Menten kinetic plots: 5.12x10(4) M-1 s-1 for acetyl-Phe-Arg-p-nitroanilide, 1.40x10(5) M-1 s-1 for H-D-Pro-Phe-Arg-p-nitroanilide, 2.25x10(4) M-1 s-1 for Abz-Gly-Phe-Ser-Pro-Phe-Arg-Ser-Ser-Arg-Gln-EDDnp, 4.24x10(2)M-1 s-1 for factor XII and 5.58x10(2) M-1 s-1 for plasminogen. Heparin reduced the hydrolysis of synthetic substrates (by 2.0-fold), but enhanced factor XII and plasminogen hydrolysis (7.7- and 1.4-fold, respectively). The second-order rate constants for inhibition of huPK by antithrombin and C1-inhibitor were 2.40x10(2) M-1 s-1 and 1.70x10(4) M-1 s-1, respectively. Heparin improved the inhibition of huPK by these inhibitors (3.4- and 1.4-fold). Despite the fact that huPK was able to bind to a heparin-Sepharose matrix, its secondary structure was not modified by heparin, as monitored by circular dichroism. These actions may have a function in the control or maintenance of some pathophysiological processes in which huPK participates.

Antithrombins↗

Genetic test indications and interpretations in patients with hereditary angioedema.

Patients with hereditary angioedema (HAE) present with recurrent, circumscribed, and self-limiting episodes of tissue or mucous membrane swelling caused by C1-inhibitor (CI-INH) deficiency. The estimated frequency of HAE is 1:50,000 persons. Distinguishing HAE from acquired angioedema (AAE) facilitates therapeutic interventions and family planning or testing. Patients with HAE benefit from treatment with attenuated androgen, antifibrinolytic agents, and C1-INH concentrate replacement during acute attacks. HAE is currently recognized as a genetic disorder with autosomal dominant transmission. Other forms of inherited angioedema that are not associated with genetic mutations have also been identified. Readily available tests are complement studies, including C4 and C1-esterase inhibitor, both antigenic and functional C1-INH. These are the most commonly used tests in the diagnosis of HAE. Analysis of C1q can help differentiate between HAE and AAE caused by C1-INH deficiency. Genetic tests would be particularly helpful in patients with no family history of angioedema, which occurs in about half of affected patients, and in patients whose C1q level is borderline and does not differentiate between HAE and AAE. Measuring autoantibodies against C1-INH also would be helpful, but the test is available in research laboratories only. Simple complement determinations are appropriate for screening and diagnosis of the disorder.

Angioedema↗

[A case of acquired angioedema].

We report the case of a 46 year-old woman presenting an acquired angioedema. Angioedema is an C1 inhibitor deficiency. Patients present recurrent non inflammatory swelling of the head and extremities and recurrent attacks of severe abdominal pain. This clinical presentation is non specific : investigation of complement is useful for diagnosis. Laboratory testing show low serum levels of C4 with normal levels of C3. Low C1 esterase inhibitor confirm the diagnosis. If acquired angioedema, a cause must be searched.

Angioedema↗