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Increased vascular permeability in C1 inhibitor-deficient mice mediated by the bradykinin type 2 receptor.

Heterozygosity for C1 inhibitor (C1INH) deficiency results in hereditary angioedema. Disruption of the C1INH gene by gene trapping enabled the generation of homozygous- and heterozygous-deficient mice. Mating of heterozygous-deficient mice resulted in the expected 1:2:1 ratio of wild-type, heterozygous, and homozygous-deficient offspring. C1INH-deficient mice showed no obvious phenotypic abnormality. However, following injection with Evans blue dye, both homozygous and heterozygous C1INH-deficient mice revealed increased vascular permeability in comparison with wild-type littermates. This increased vascular permeability was reversed by treatment with intravenous human C1INH, with a Kunitz domain plasma kallikrein inhibitor (DX88), and with a bradykinin type 2 receptor (Bk2R) antagonist (Hoe140). In addition, treatment of the C1INH-deficient mice with an angiotensin-converting enzyme inhibitor (captopril) increased the vascular permeability. Mice with deficiency of both C1INH and Bk2R demonstrated diminished vascular permeability in comparison with C1INH-deficient, Bk2R-sufficient mice. These data support the hypothesis that angioedema is mediated by bradykinin via Bk2R.

Angioedema↗

[Hereditary angioedema. A report of a case and literature review].

Hereditary angioedema is a congenital disorder with recurrent attacks of localized swelling of submucosal and subcutaneous tissue, or both caused by a deficiency of the plasma protein C1 inhibitor. It is caused by heterozygous defects in the C1 inhibitor gene located on chromosome 11q, and it has an autosomal dominant inheritance pattern. This disease afflicts 1 in 10,000 to 1 in 150,000 persons. Hereditary angioedema has been reported in all races, and no sex predominance has been found. Skin and visceral organs may be involved by the typically massive local edema. The most commonly involved viscera are the respiratory and gastrointestinal systems, and it can affect the upper airways resulting in severe life-threatening symptoms, including the risk of asphyxiation. There are three types of hereditary angioedema, which difference lies in the inheritance pattern and in the C1 esterase inhibitor and C4 concentrations. The treatment is complicated and it should be treated with intravenous purified C1 inhibitor concentrate; corticosteroids, antihistamines and epinephrine can be useful adjuncts but they are not effective. We report a patient with hereditary angioedema type 1 and make a review of the medical literature.

Adult↗

A quantitative protein S deficiency associated with a novel nonsense mutation and markedly reduced levels of mutated mRNA.

A 50-year-old Japanese man who had experienced recurrent episodes of venous thrombosis was found to have a hereditary protein S deficiency. The amount of total protein S antigen in plasma was reduced by approximately 50% in the patient and his two sons. DNA sequence analysis revealed a novel nonsense mutation, TAG for Gln 522 (CAG), in exon 14 of the protein S gene. Family studies performed by mutagenic PCR followed by restriction enzyme digestion showed that the proband and his two sons were heterozygous for this mutation. An mRNA-based analysis indicated that transcripts of the mutated allele were markedly reduced in the platelets of the affected individuals. Immunoblot analysis failed to detect the truncated mutant of protein S in the plasma or platelets of affected members. Our results demonstrated that this novel nonsense mutation was responsible for the quantitative deficiency of protein S.

Amino Acid Sequence↗

Two related cases of primary complement deficiency.

Primary complement deficiencies are rare and two related patients are reported here. The first patient is a 41-year-old man with eighteen episodes of pneumococcal meningitis and other purulent infections. The serum C3 level was checked at three separate times, showing that this was a primary C3 deficient case; other immunological tests were normal. This patient now takes prophylactic antibiotics and the meningitis had not recurred, but he does have glomerulonephritis. The second case is a 40-year-old woman with repeated episodes of orofacial and laryngeal edema and dyspnea. The serum C1INH levels were 4.3 to 7 which is very low compared with normal healthy subjects (C1INH was 40-50 mg/dl) and C4 was lower than normal but other immunological tests were normal. Other causes of angioedema such as lymphoproliferative disorders were excluded. She had hereditary angioedema without a family background. The condition may be due to genetic mutation. The angioedema was controlled with Danazol and Stanasol. As our patients are related, this may suggest a genetic relationship between these two disorders.

Adult↗

[Recombinant human C1-inhibitor is effective in the treatment of acute attacks of hereditary angioedema--case report].

Hereditary angioedema (HAE) is a rare condition, resting on attacks of edema in various localizations, potentially life-threatening if in facial, laryngeal, pharyngeal or gastrointestinal area. The disease is caused by deficiency or impaired activity of C1 inhibitor, therefore C1 inhibitor infusion is the the essential treatment and the only efficient method in an acute attack of HAE. Nowadays C1 inhibitor applied in our patients is obtained from human plasma, what restricts the availability of the drug and carries relevant risks. After many years of research it came to the synthesis of the recombinant protein with features of human C1 inhibitor. Its first usage in Poland took place-in two HAE patients with severe edema in 2004. The course and efficiency of this treatment is reported in the paper. Recombinant human C1 inhibitor occurred efficient and safe in presented case of severe angioedema.

Acute Disease↗

Molecular analysis of the third component of canine complement (C3) and identification of the mutation responsible for hereditary canine C3 deficiency.

Genetically determined deficiency of the third component of complement (C3) in the dog is characterized by a predisposition to recurrent bacterial infections and to type 1 membranoproliferative glomerulonephritis. The current studies were undertaken to characterize the cDNA for wild-type canine C3 and identify the molecular basis for hereditary canine C3 deficiency. Amplification, cloning, and sequence analysis indicated that canine C3 is highly conserved in comparison with human, mouse, and guinea pig C3. Southern blot analysis failed to show any gross deletions or rearrangements of DNA from C3-deficient animals. Northern blot analysis indicated that the livers of these animals contain markedly reduced quantities of a normal length C3 mRNA. The full-length 5.1-kb canine C3 cDNA was amplified in overlapping PCR fragments. Sequence analysis of these fragments has shown a deletion of a cytosine at position 2136 (codon 712), leading to a frameshift that generates a stop codon 11 amino acids downstream. The deletion has been confirmed in genomic DNA, and its inheritance has been demonstrated by allele-specific oligonucleotide hybridization.

Amino Acid Sequence↗

Hereditary deficiency of the sixth component of complement in man. II. Studies of hemostasis.

Prompted by previous observations of defective blood clotting in rabbits deficient in the sixth component of complement (C6), an evaluation was made of the hemostatic functions of the homozygous proband of a newly recognized human kindred with hereditary C6 deficiency. This human subject, who had no clinical evidence of a bleeding disorder, exhibited a total lack of C6 by functional and immunoprecipitin assays of serum or plasma. Standard tests of hemostatic function were normal; however, when the whole blood clotting time was measured at 25 degrees C in plastic tubes, it was at the upper range of our normal values. In confirmation of this observation, prothrombin consumption, when performed at 37 degrees C in plastic tubes, was at the lower range of normal. Inulin and endotoxin, in concentrations shown to cause activation of human complement, had little or no effect on clotting times or prothrombin consumption of normal or C6-deficient human blood. These observations indicate that absence of C6 does not have a significant effect on hemostatic function in man. In the light of other investigations, the observed differences in clotting function between C6-deficient human blood and C6-deficient rabbit blood could be due to species differences governing the susceptibility of platelets to complement activation.

Complement C6↗

Clinical management of hereditary angio-oedema in children.

Hereditary angio-oedema (HAE) results from the deficiency of C1-esterase inhibitor (C1-INH). The clinical picture of this autosomal dominant disorder is characterized by recurrent attacks of subcutaneous oedema and/or potentially life-threatening swelling of the submucosa. This review discusses the authors' decade-long experience obtained in the treatment and follow-up of pediatric patients with HAE. Twenty-six children with HAE were reviewed. Pedigree analysis was performed in all cases to identify afflicted relatives. C1-INH concentrate was reserved for the emergency treatment of acute oedematous attacks, whereas tranexamic acid and danazol were administered for short- or long-term prophylaxis. Follow-up care included laboratory tests and abdominal ultrasound, which was repeated at regular intervals. Twenty-one children had Type I HAE and five suffered from Type II HAE. Clinical manifestations of the disease first occured in children when 2.5-12 years of age. Oedema formation primarily afflicted subcutaneous tissues. Mechanical trauma was identified as a precipitating factor in 20 patients. Pedigree analysis revealed 24 patients with relatives who suffered from HAE. Long-term prophylaxis with tranexamic acid or danazol was initiated in 11 patients; two children required short-term prophylaxis. No drug-related adverse effects were observed, except for one case of delayed menarche. Therapy improved serum complement parameters significantly and substantially reduced the frequency and severity of clinical episodes. Adequate prophylaxis and follow-up care can spare pediatric patients from oedematous attacks caused by HAE. Undesirable adverse effects can be avoided and the patient's quality of life enhanced considerably by administering the lowest effective drug dose.

Adolescent↗

Restriction fragment length polymorphism analysis of the C1-inhibitor gene in hereditary C1-inhibitor deficiency.

Four out of 12 kindreds with Type I hereditary angio-oedema (HAE) were shown to have unique disease-related restriction fragment length polymorphism (RFLPs) in one allele of the C1-inhibitor gene. These RFLPs were used to localise the gene mutations responsible for them in each family. The four mutations affected exon 4, exon 6, exon 7 and exon 8, respectively. Mutations in exon 6 and exon 8 have not been described previously in Type I HAE. The other two mutations which comprised an exon 4 deletion and an exon 7 deletion have already been documented by other investigators. In each family the mutation was seen to cosegregate with the disease. Detection of a disease-related RFLP in 30% of the Type I HAE kindred tested is higher than other published studies, and reflects the larger number of restriction enzymes employed. These results suggest that Type I HAE is likely to be associated with a multiplicity of gene mutations as is seen in other genetic diseases. A new C1-inhibitor gene-related RFLP in the normal population was also characterised. This may be useful as an indirect marker of the mutant C1-inhibitor allele in certain families with Type I HAE.

Angioedema↗

Molecular defects of the C1-inhibitor gene in hereditary angioedema.

Family studies of hereditary angioedema are discussed with particular emphasis on the molecular basis of the more common form of the disease (type I), characterized by quantitative C1-Inhibitor deficiencies. Results obtained in several laboratories can be interpreted in the light of the restriction maps and of the exon-intron structure of the normal C1-Inhibitor gene that have been published recently. Several partial deletions of either exon 4 or exon 7 or of larger portions of the 5' end of the gene and a duplication of exon 4 have been described. These gene alterations are essentially family-specific and they account for at least fifteen-percent of the defects in type I hereditary angioedema. Detailed sequences analyses of cloned defective genes indicate that clusters of repetitive sequences of the Alu family, located within several introns, are responsible for the relatively high frequency of gross gene alterations observed at the C1-Inhibitor locus. In contrast, most of the defects that lead to production of dysfunctional proteins appear to be point mutations within the P1 residue of the reactive site, whose codon features a hypermutable CpG dinucleotide.

Angioedema↗

Effects of iron overload on the immune system.

Iron and its binding proteins have immunoregulatory properties, and shifting of immunoregulatory balances by iron excess or deficiency may produce severe, deleterious physiological effects. Effects of iron overload include decreased antibody-mediated and mitogen-stimulated phagocytosis by monocytes and macrophages, alterations in T-lymphocyte subsets, and modification of lymphocyte distribution in different compartments of the immune system. The importance of iron in regulating the expression of T-lymphocyte cell surface markers, influencing the expansion of different T-cell subsets, and affecting immune cell functions can be demonstrated in vitro and in vivo. The poor ability of lymphocytes to sequester excess iron in ferritin may help to explain the immune system abnormalities in iron-overloaded patients. Iron overload as seen in hereditary hemochromatosis patients enhances suppressor T-cell (CD8) numbers and activity, decreases the proliferative capacity, numbers, and activity of helper T cells (CD4) with increases in CD8/CD4 ratios, impairs the generation of cytotoxic T cells, and alters immunoglobulin secretion when compared to treated hereditary hemochromatosis patients or controls. A correlation has recently been found between low CD8+ lymphocyte numbers, liver damage associated with HCV positivity, and severity of iron overload in beta-thalassemia major patients. Iron overload, with its associated increases of serum iron levels and transferrin saturation, may cause a poor response to interferon therapy. Iron overload with hyperferremia is associated with suppressed functions of the complement system (classic or alternative types). High plasma ferritin content in patients with chronic, diffuse diseases of the liver (cirrhosis, chronic hepatitis), beta-thalassemia major, dyserythropoiesis, and hereditary hemochromatosis may induce the development of anti-ferritin antibodies with the production of circulating immune complexes. Increased body stores of iron in various clinical situations may tip the immunoregulatory balance unfavorably to allow increased growth rates of cancer cells and infectious organisms, and complicate the clinical management of preexisting acute and chronic diseases.

B-Lymphocytes↗

Clinical problems in the C1-inhibitor deficient patient.

The clinical course of C1-INH deficiency is presently well established. There is an inherited form (Hereditary Angioedema) characterized by recurrence of cutaneous and mucous swellings appearing early in life and usually accompanied by substantial family history, and an acquired form (Acquired Angioedema) where identical symptoms start after the fourth decade of life without family history. The acquired form can be associated with other diseases, mainly B cell disorders, and/or with autoantibodies to C1-INH. The biochemical characteristic is the functional deficiency of C1-INH and of C4 and C2. Moreover a marked deficiency of C1 is present in most acquired forms, but never in the inherited ones. C1-INH deficiency can be corrected by attenuated androgens that increase C1-INH levels in a few days and are effective in the prophylaxis of attacks, or by substitutive therapy with C1-INH plasma concentrate that is the life-saving drug in laryngeal edema. Patients with the inherited form have a uniformly good response to both these treatments which are otherwise effective only in a minority of patients with the acquired deficiency. In these subjects C1-INH concentrate needs to be given in higher doses and prevention of attacks is obtained with antifibrinolytic agents (Tranexamic acid).

Adolescent↗

[Respiratory manifestations in hereditary angioneurotic edema].

Hereditary angioneurotic oedema is an autosomal dominant state associated with a quantitative, and sometimes purely functional, deficiency of C1 esterase inhibitor (C1 INH). The clinical manifestations may begin during adulthood or childhood; they are periodical and of varying severity. Beside oedema of the skin and digestive disorders, respiratory disorders are bound to attract attention. They consist of laryngeal oedema, which may end in lethal asphyxia if tracheotomy is not performed, or, exceptionally, of pulmonary oedema requiring assisted ventilation, as in the case reported here. The diagnosis, suspected in the presence of a decrease in CH50 and C4, is confirmed by a quantitative assay of C1 INH, which is low, and/or by the Fong and Good's functional tests. The physiopathological mechanisms are complex. They involve complement activation through the classical route, and activation of the coagulation system contact phase. Patients with severe attacks now benefit from treatment with preparations of C1 INH in high concentrations. The best treatment, however, is prophylactic, using testosterone derivatives, danazol and stanozolol, which can be prescribed for long periods taking into account their usually moderate side-effects.

Acute Disease↗

Molecular analysis of the XP-D gene in Italian families with patients affected by trichothiodystrophy and xeroderma pigmentosum group D.

In several patients with the rare hereditary disorder trichothiodystrophy (TTD), a DNA repair defect has been shown to be in the same gene as in xeroderma pigmentosum complementation group D (XP-D). The ERCC-2 gene (excision repair cross-complementing rodent repair deficiency of group 2) has recently been identified as a strong candidate gene for XP-D, since it restores normal UV sensitivity to XP-D cells after transfection. Using Southern blotting, we have analysed the ERCC-2 gene in DNA samples from 28 members of nine Italian families with individuals affected by XP-D (three patients) or by TTD with photosensitivity due to the XP-D defect (eight patients). No major modifications of the ERCC-2 gene were detected with two cDNA probes in either XP-D or TTD patients indicating that the association between TTD and XP-D is not likely to result from a large deletion or rearrangement involving this gene. We found two RFLPs after digestion of the DNA samples with TaqI or MspI, but neither of them could be related to the molecular alteration determining the pathological phenotype. We also analysed a human homologue detected with the hamster sequence isolated by Arrand et al. (1989), which specifically, but partially, complements the DNA repair deficiency in XP-D cells. Our analysis demonstrated that this gene is not the primary gene defective in XP-D. In fact two RFLPs detected with a genomic probe do not co-segregate with the disease in an XP-D family.

DNA↗

Laryngeal edema and death from asphyxiation after tooth extraction in four patients with hereditary angioedema.

BACKGROUND: Recurrent angioedema is the hallmark of various inherited or acquired angioedema diseases. Hereditary angioedema, or HAE, due to C1 inhibitor, or C1NH, deficiency has considerable implications for dental health care providers because dental surgery may trigger distressing and even life-threatening episodes. CASE DESCRIPTION: The authors reviewed the literature, focusing on the pathogenesis, clinical signs and treatment of HAE. They also provided case reports of four patients who died from laryngeal edema induced by tooth extraction. In patients with HAE, dental surgery--including tooth extraction--may be followed by self-limiting edema episodes, including lip swelling, facial swelling, tongue edema and laryngeal edema with upper airway obstruction. Preoperative prophylaxis has been performed with attenuated androgens, fresh frozen plasma, C1NH concentrate and antifibrinolytics. The four patients described underwent tooth extraction, which, after a symptom-free latency of four to 30 hours, provoked laryngeal edema. Three of the patients died of asphyxiation the night after surgery, and the fourth died on the second night. In three of the patients, laryngeal edema had not occurred previously. CLINICAL IMPLICATIONS: Before undergoing dental surgery, patients with a history of recurrent angioedema should be evaluated for C1NH deficiency. If it is present, they are at risk of developing life-threatening laryngeal edema.

Adult↗

Survey of Turkish systemic lupus erythematosus patients for a particular mutation of C1Q deficiency.

OBJECTIVE: Hereditary C1q deficiency is a rare disease and up to now only 41 cases have been reported. Since all but 3 cases developed SLE or SLE-like disease, C1q deficiency represents the most powerful disease susceptibility gene identified for the development of SLE in humans. A molecular defect in homozygous C1q deficiency has been identified in 13 families. Four of these families are Turkish in origin and they all share the same mutation which is a CAG to TAG change at codon 186 in the A chain. This led us to investigate whether this mutation might be found in Turkish SLE patients and whether it could cause increased disease susceptibility when expressed in the heterozygous form. METHODS: We screened 65 Turkish lupus patients and 49 healthy Turkish individuals by carrying out an amplification of exon 2 of the A chain and restriction enzyme analysis for the C1qA mutation. RESULTS: We found no other example of this mutation in either the homozygous or heterozygous forms. CONCLUSION: C1q deficiency is one of the very strong disease susceptibility genes in lupus and may cause SLE via a critical role in the physiological clearance of apoptotic cells. However, C1q deficiency caused by a particular mutation in the A chain in a heterozygous form is not found in the Turkish SLE population.

Adolescent↗

Autoantibody facilitated cleavage of C1-inhibitor in autoimmune angioedema.

C1-inhibitor (C1-Inh) is an important inhibitor of the inflammatory response and deficiency of this inhibitor, which may be hereditary or acquired, is associated with recurrent episodes of edema. Recently, an autoimmune form of angioedema has been described that is associated with functional deficiency of C1-Inh and an autoantibody that impedes C1-Inh function. In this report we describe the isolation of C1-Inh from the monocytes and plasma of a patient with autoimmune angioedema and demonstrate that the patient's monocytes secrete structurally and functionally normal C1-Inh, but show that this protein circulates in the patient's plasma in an inactive, structurally altered form. Furthermore, using analytic gel electrophoresis techniques it is demonstrated that the patient's autoantibody facilitates cleavage of normal C1-Inh, by its target proteases, to the same species of C1-Inh that is found circulating in the patient's plasma. This autoantibody facilitated cleavage of normal C1-Inh is apparently a consequence of destabilization of protease/inhibitor complexes. These findings contribute to our understanding of protease/C1-Inh interactions and document important observations on pathogenic mechanisms in autoimmune disease.

Angioedema↗

Hereditary angioedema: new findings concerning symptoms, affected organs, and course.

PURPOSE: Hereditary angioedema (HAE) due to C1 inhibitor deficiency is clinically characterized by relapsing skin swellings, abdominal pain attacks, and life-threatening upper airway obstruction. Our aim was to examine a temporal and spatial pattern of the edema episodes by evaluating the long-term course of hereditary angioedema in order to establish a specific swelling pattern. SUBJECTS AND METHODS: Data were generated from 221 patients with C1 inhibitor deficiency by asking them about symptoms they experienced during their edema episodes. Documentation was accomplished through the use of standardized questionnaires. RESULTS: A total of 131110 edema episodes were observed. Clinical symptoms started at a mean age of 11.2 (SD 7.7) years. During the following cumulative 5736 years, only 370 (6.5%) symptom-free years occurred. Skin swellings, including extremity, facial, genital, and trunk swellings, and abdominal attacks occurred in 97.4% of all edema episodes of the disease. The other episodes were laryngeal edema (0.9%); edema of the soft palate (0.6%); tongue swellings (0.3%); headache episodes (0.7%); episodes affecting urinary bladder (0.3%), chest (0.2%), muscles (0.4%), joints (0.1%), kidneys (0.1%), and esophagus (0.05%), and were partly combined with other edema episodes. The per-patient analysis and the per-episode analysis revealed markedly discrepant results. On average, women had a more severe course of the disease than men. Patients with early onset of clinical symptoms were affected more severely than those with late onset. CONCLUSION: The described swelling pattern is specific for HAE and allows a tentative diagnosis based on clinical symptoms and the course of the disease.

Adolescent↗