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M Cicardi

Publications and source records attributed to M Cicardi.

At least 19 recordsLinked to original sources

Rapid detection by fluorescent multiplex PCR of exon deletions and duplications in the C1 inhibitor gene of hereditary angioedema patients.

Hereditary angioedema (HAE) is due to a variety of defects in the C1 inhibitor gene (C1NH gene), including approximately 20% of partial deletions/duplications whose boundaries are usually within Alu repeats. To ensure complete molecular characterization of C1 inhibitor deficiencies a fluorescent multiplex assay was constructed to amplify simultaneously five exons of C1NH and an exon of the BRCA1 gene. PCR protocols were optimized for these amplicons (size range between 300 and 700 bp). Forward and reverse chimeric primers that carry strand-specific 5' tags of 16 nucleotides were used to ensure similar levels of PCR products for each amplicon in the multiplex. Data were analyzed by superposing fluorescent profiles of test and control DNA and by visually comparing the normalized peak levels of corresponding amplicons, rather than by calculating the ratios of peak areas. Tests on a collection of known defects, including five different Alu-mediated deletions and a partial duplication have validated this approach. In a study of 19 sporadic cases of HAE, of which four had failed to reveal mutations upon screening all exons by fluorescent chemical cleavage, three de novo deletions were diagnosed by using this multiplex PCR approach: a deletion of exon 4, a deletion of exons 5 and 6, and an apparently complete gene deletion. Besides being suitable for the initial DNA screening of the C1NH gene in HAE patients prior to screening for point mutations, this method can be easily adapted to complex genes for the screening of rearrangements.

Angioedema↗

C1-inhibitor deficiency and angioedema.

C1-inhibitor deficiency can be inherited or acquired; both conditions lead to recurrent angioedema that can be life threatening when the larynx is involved (hereditary angioedema, HAE; acquired angioedema, AAE). The genetic defect is due to the heterozygous deficiency of C1-Inh that is transmitted as an autosomal dominant trait. Mutations causing HAE have been found distributed over all exons and splice sites of C1-Inh structural gene: only a few of them have been found more than once. Depending on DNA defect, C1-Inh is not transcribed, or not translated or not secreted. Finally, in 15% of HAE patients, an antigenically normal, but non-functional C1-Inh is present in serum (HAE type II). C1-Inh deficiency can be acquired, due to an accelerated consumption. Such an accelerated consumption can depend on circulating autoantibodies that bind C1-Inh causing its inactivation and catabolism; or to associated diseases, usually lymphoproliferative diseases, that consume C1-Inh with different mechanisms. Effective therapies can prevent or revert angioedema symptoms in C1-Inh deficiency, the main problem of this condition remaining misdiagnosis. The common knowledge that angioedema is an allergic symptom frequently prevents a correct diagnostic approach: C1-Inh deficiency goes unrecognized and the disease can still be lethal. Correct prophylactic treatment is based on attenuated androgens in HAE and on antifibrinolytic agents in AAE. Life threatening laryngeal attacks and severe abdominal attacks are effectively reverted, in both conditions, with C1-Inh plasma concentrate. A special remark to this treatment should be made for autoantibody-mediated AAE where very high doses can be needed depending on the rate of C1-Inh consumption.

Angioedema↗

Dental experience and self-perceived dental care needs of patients with angioedema.

The purpose of this study was to investigate the self-perceived dental care needs and dental experiences of patients with angioedema. At the 1998 annual meeting of the Voluntary Association for the Fight, Study and Treatment of Hereditary Angioedema ("Associazione volontaria per la lotta, lo studio e la terapia dell'angioedema ereditario"), a self-administered questionnaire was distributed to participants affected by hereditary or acquired angioedema. Fifty-seven persons completed the questionnaire (37 females, 20 males; mean age, 39 +/- 17 yrs; range, 5-76). The vast majority (91%) had the hereditary form of the disease. One-third of the respondents had some problems in obtaining oral treatment, with one person having been refused care. About half of the group had experienced an acute attack following dental treatment. Preventive measures needed improvement in about two-thirds of respondents. More than half (58%) of the group perceived a need for dental care. We conclude that persons with angioedema may experience difficulty in obtaining dental treatment, a common cause of acute attacks.

Acute Disease↗

Drug-induced angioedema without urticaria.

Angioedema without urticaria is a clinical syndrome characterised by self-limiting local swellings involving the deeper cutaneous and mucosa tissue layers. Most occurrences of angioedema respond to treatment with a histamine H1 receptor blocker (antihistamine) because they are an allergic or parallergic reaction. A small number of cases do not respond to antihistamine treatment. Such cases tend to occur in patients with deficiency or dysfunction of the inhibitor of the first component of the complement (C1-INH), but more rarely can occur in patients with other conditions and as an adverse drug reaction. Angioedema is well documented in patients taking ACE inhibitors. Considering that 35 to 40 million patients are treated worldwide with ACE inhibitors, this drug class could account for several hundred deaths per year from laryngeal oedema. ACE inhibitors certainly do not mediate angioedema through an allergic or idiosyncratic reaction. For this reason the relationship with this drug is often missed and consequently quite underestimated. Rare instances of angioedema have also been reported with angiotensin II receptor antagonists. This adverse effect seems to occur less frequently with angiotensin II receptor antagonists than with ACE inhibitors. However, we do not know whether this adverse effect has the same mechanism with the 2 classes of medications. Some cases of severe angioedema have been recently reported after treatment with fibrinolytic agents. Scattered reports suggest the possibility of angioedema associated with the use of estrogens, antihypertensive drugs other than ACE inhibitors, and psychotropic drugs. Angioedema can also occur with nonsteroidal anti-inflammatory drugs. Prevention of angioedema relies first on the patient history. Estrogen and ACE inhibitors should be avoided in a patient with congenital or acquired C1-INH deficiency. In the case of ACE inhibitors, the appearance of angioedema following long term treatment does not lessen the probability that such an agent could be the cause. The most important action to take in a patient with suspected drug-induced angioedema is to discontinue the pharmacological agent. Epinephrine (adrenaline), diphenydramine and intravenous methylprednisolone have been proposed for the medical management of airway obstruction, but so far no controlled studies have demonstrated their efficacy. If the acute airway obstruction leads to life-threatening respiratory compromise an emergency cricothyroidotomy must be performed.

Angioedema↗

Prevalence and risk factors for the presence of serum cryoglobulins in patients with chronic hepatitis C.

To assess the prevalence and risk factors for cryoglobulinaemia associated with hepatitis C virus (HCV) infection, we studied 360 consecutive patients with chronic hepatitis C (191 men, median age 57 years; 86 [24%] with cirrhosis). One-hundred and sixty-eight (47%) had circulating cryoglobulins (mean levels 208 +/- 256 mg l-1), predominantly of type III (80%; and 20% type II). Cryoglobulins were more common in women than in men (56% vs 39%, P=0.001) and in patients with cirrhosis than in those with chronic hepatitis (57% vs 43%, P=0.024). Cryoglobulinaemic patients more frequently had high levels of serum immunoglobulin M (IgM) (57% vs 30%, P=0.001), immunoglobulin G (IgG) (84% vs 70%, P=0.002) and rheumatoid factor (45% vs 16%, P=0.001); low levels of serum C3 (15% vs 4%, P=0.001) and C4 (51% vs 26%, P=0.001); and low numbers of platelets (21% vs 12%, P=0.018), than patients without cryoglobulins. The presence of cryoglobulins was not correlated with hepatitis duration (cryopositives, 12 +/- 7 years; cryonegatives, 11 +/- 8 years) or HCV genotype (HCV 1b, 48% vs 53%; HCV 2a, 35% vs 29%, cryopositive vs cryonegative patients respectively). By multivariate analysis, female gender (odds ratio [OR] 1.675; confidence interval [CI] 1. 055-2.661), elevated serum IgM (OR 2.296; CI 1.438-3.665), IgG (OR 1. 952; CI 1.114-3.422), rheumatoid factor (OR 3.213; CI 1.889-5.465) and low C4 (OR 1.859; CI 1.138-3.038) could reliably predict the presence of cryoglobulins. When the pathogenic variables IgG, rheumatoid factor and C4 were excluded from analyses, only levels of serum cholinesterase activity < 4500 U independently predicted (OR 3. 663, CI 1.258-10.184) the presence of cryoglobulins. Fifty per cent of the patients with chronic hepatitis C circulated cryoglobulins, with preference for those with a greater impairment of liver function, as revealed by serum cholinesterase activity.

Adult↗

Frequent de novo mutations and exon deletions in the C1inhibitor gene of patients with angioedema.

BACKGROUND: Cases of angioedema with no family history but with functionally low levels of C1 inhibitor and recurrent attacks are often observed. Clinical and biochemical data do not distinguish these cases from proven inherited forms of hereditary angioedema. OBJECTIVE: We sought to test the hypothesis of de novo mutations in patients affected by angioedema without a family history of the disease. METHODS: Among 137 independent kindreds followed for hereditary angioedema, 45 (32.8%) patients with early onset of the disease were registered as sporadic cases. Nineteen patients with unaffected parents were screened for point mutations and microdeletions-insertions by using fluorescence-assisted mismatch analysis. The biologic paternity of these patients was verified by determining their alleles at 4 microsatellite loci. Gross deletions were detected with Southern blot analysis. RESULTS: C1 inhibitor plasma levels measured in both parents of 24 sporadic patients were normal in all but 3 patients. Among the 19 patients studied at the DNA level, 9 de novo single nucleotide substitutions and 6 de novo microdeletions were found. De novo exon deletions were detected in 3 additional patients with Southern blot analysis. CONCLUSIONS: De novo C1inhibitor mutations and exon deletions account for at least 25% of all unrelated cases of angioedema. This finding has implications relevant to the genetic epidemiology and genetic counseling of this disease. The observation that 5 of the 9 de novo point mutations reproduce previously reported changes underlines the presence of multiple hot spots, two of which contain a CpG dinucleotide.

Angioedema↗

Angioedema due to angiotensin-converting enzyme inhibitors.

Angiotensin-converting enzyme (ACE) inhibitor associated angioedema was detected in 39 subjects (17%) of 231 consecutive patients examined in the last 5 years at our out-patient clinic for symptoms of angioedema without urticaria. In these patients, angioedema was most commonly localized to the face. The duration of ACE-inhibitor treatment at the onset of angioedema ranged from 1 day to 8 years with a median of 6 months. The time elapsed between onset of angioedema and withdrawal of ACE-inhibitor ranged from 1 day to 10 years with a median of 10 months. Delayed diagnosis is explained by the unusual characteristics of this adverse reaction: angioedema may start years after beginning the treatment and then it recurs irregularly. In fact, ACE-inhibitors seem to facilitate angioedema in predisposed subjects, rather than causing it with an allergic or idiosyncratic mechanism. Thus, while Cl-inhibitor levels are usually normal in subjects developing ACE-inhibitor-dependent angioedema, we found that ACE-inhibitors caused angioedema in Cl-inhibitor-deficient patients. Because the main inactivator of bradykinin is kininase II, which is identical with ACE, it is believed that bradykinin mediates ACE-inhibitor-dependent angioedema. We had the possibility to examine the plasma bradykinin levels in one ACE-inhibitor-treated patient during an angioedema attack and we found very high levels, but we did not find an increase of break-down products of high-molecular-weight-kininogen as observed during acute attacks in hereditary angioedema. Bradykinin fell to normal levels during remission after withdrawal of the drug. These observations indicate that in ACE-inhibitor-induced angioedema, contrary to hereditary angioedema, the reduction of bradykinin catabolic rate plays a predominant role.

Adolescent↗

Idiopathic nonhistaminergic angioedema.

PURPOSE: We sought to describe the characteristics of a group of patients with idiopathic nonhistaminergic angioedema and their response to prophylactic treatment with tranexamic acid. METHODS: We identified 25 patients (15 men and 10 women; age at diagnosis 16 to 77 years) who had idiopathic nonurticarial angioedema that was not prevented by histamine-1 (H1) blockers. Known causes of angioedema were excluded by clinical history, physical examination, and diagnostic tests. RESULTS: The median age at the onset of symptoms was 35 years (range 8 to 66). The frequency of attacks was > 12 per year for 16 patients, six to 11 per year for 6 patients, and one to five per year for 3 patients. All patients had cutaneous attacks, 13 (52%) reported swellings of the pharynx or larynx, and 5 (20%) had symptoms consistent with bowel angioedema. Because of the similarities between these patients and patients who are deficient in C1 inhibitor, the 15 patients with severe and frequent attacks were started on prophylactic treatment with the antifibrinolytic agent tranexamic acid, 1 g three times a day orally for 3 months, tapered according to its effectiveness. The symptoms of 11 patients decreased to less than one attack per year, and the remaining 4 patients had partial remissions (less than 4 attacks per year). Fourteen patients are still being treated with tranexamic acid. CONCLUSION: Patients with idiopathic nonhistaminergic angioedema appear to have similar clinical features and response to treatment with tranexamic acid as those who are deficient in C1 inhibitor. This suggests that those two forms of angioedema might have, at least in part, a similar pathogenesis.

Adolescent↗

Consumption of C4b-binding protein (C4BP) during in vivo activation of the classical complement pathway.

C4BP has a central role in regulating the classical complement (C') pathway, but it is still uncertain whether or not it is consumed during in vivo complement activation. Attempts to demonstrate changes in C4BP plasma levels in systemic lupus erythematosus and essential mixed cryoglobulinaemia have failed, probably due to up-regulation of this protein during the inflammatory reaction. We have studied one patient with severe post-transfusion complement-mediated anaphylaxis (CMA), and 67 patients with hereditary C1 inhibitor deficiency (hereditary angioedema (HAE)). The first of these two conditions is characterized by the absence of systemic inflammatory reaction and the second by acute and chronic activation of the C' classical pathway. C4BP, C4BP-C4b complex, and soluble terminal C' complex (sC5b-9) were measured in the patients' plasmas by ELISA techniques and C3a and C4a by radioimmunoassays. In CMA, 15 min after the transfusion, there was a massive C' activation, with increases in C4a, C3a, sC5b-9, C4BP-C4b complexes and decreases in C4, C3 and C4BP. All parameters reverted to preinfusion values within 24 h. Depletion of C4 was correlated with that of C4BP. In patients with HAE, the median value of C4BP (83% range 54-165) was significantly lower (P < 0.0001) than in normal controls (99% range 70-159), with no difference between patients in remission or during acute attacks. C4BP-C4b complexes could not be detected in HAE patients. The results of this study indicate that C4BP is consumed in vivo during acute, and possibly during chronic activation of the C' classical pathway, and that this protein, after interaction with C4b, not longer circulates in plasma.

Adult↗

Plasma bradykinin in angio-oedema.

BACKGROUND: Bradykinin is believed to be the main mediator of symptoms in hereditary (HA) and acquired (AA) angio-oedema due to C1 esterase inhibitor deficiency, as well as in angio-oedema that complicates treatment with inhibitors of angiotensin-converting enzyme (ACE). Difficulties in the measurement of kinin concentrations, however, have so far precluded the demonstration of an incontrovertible change in plasma bradykinin concentrations in these disorders. By developing a reliable assay we have been able to follow bradykinin concentrations during attacks and during remission in HA and in AA, and also in a patient treated with an ACE-inhibitor. METHODS: Liquid-phase extraction, high-performance liquid chromatography, and RIA were used for specific measurement of plasma bradykinin concentrations in 22 patients with HA and in 22 healthy volunteers of similar age and sex distribution. Four patients with AA and one hypertensive patient treated with the ACE inhibitor captopril were also studied. FINDINGS: Among the healthy volunteers plasma bradykinin concentration was inversely proportional to age. The geometric mean plasma bradykinin concentration in the healthy volunteers was 2.2 fmol/mL (SD 2.2), compared with 3.9 fmol/mL (3.7) among patients with HA during remission (p=0.095). Bradykinin was also high in the patients with AA (10.4 fmol/mL [1.6]). During acute attacks of oedema, in both HA and AA, plasma bradykinin rose to two to 12 times the upper limit of normal. Infusion of C1-esterase inhibitor (the deficient factor in both HA and AA) immediately lowered bradykinin concentrations. In the patient receiving the ACE-inhibitor captopril, bradykinin concentration was very high at 47 fmol/mL during an acute attack of angio-oedema, but normal at 3.2 fmol/mL in remission after withdrawal of the drug. INTERPRETATION: A sensitive method for measurement of plasma bradykinin provided the means to show that concentrations of this peptide decrease with age in healthy people. Although the differences between patients in remission and healthy controls did not reach statistical significance, there were substantial rises in bradykinin during acute attacks of hereditary, acquired, or captopril-induced angio-oedema.

Adult↗

Pathogenetic and clinical aspects of C1 inhibitor deficiency.

People deficient in C1-INH present recurrent angioedema localized to subcutaneous or mucous tissues. The defect can be caused by impaired synthesis, due to a genetic defect (hereditary angioedema), or by increased catabolism (acquired angioedema). In our experience the majority of patients with acquired angioedema (16 of 18) have autoantibodies to C1-INH in their serum. These autoantibodies bind to C1-INH with different and generally low affinity. The vasopermeability mediator responsible for attacks is still undefined: bradykinin (derived from cleavage of high molecular weight kininogen) and a kinin-like peptide (derived from the second component of complement) still remain the two primary candidates. We examined the systems controlled by C1-INH (complement, contact system, fibrinolysis and coagulation) and found that all of them are activated during angioedema attacks. Activation of the coagulation leads to generation of thrombin whose vasoactive effect can thus influence edema formation. Treatment of severe angioedema attacks is satisfactorily performed with C1-INH plasma concentrate although patients with an acquired defect frequently need very high doses. Attenuated androgens effectively prevent attacks in hereditary angioedema, but their safety, on the very long-term, needs to be further assessed. Acquired angioedema generally fail to respond to these drugs, but can be treated prophylactically with antifibrinolytic agents.

Abdomen, Acute↗

Transmission of hepatitis G virus in patients with angioedema treated with steam-heated plasma concentrates of C1 inhibitor.

BACKGROUND: Hepatitis G virus (HGV) is a blood-borne flavivirus that may cause acute and chronic transfusion-transmitted infections. Patients with complement component 1 (C1) inhibitor (C1-INH) deficiency may acquire blood-borne infections through infusion of plasma concentrates. STUDY DESIGN AND METHODS: Serum samples from 84 patients with C1-INH deficiency (19 who received unmodified C1-INH concentrates, 23 who received steam-heated concentrates, and 42 untreated patients) were tested for HGV RNA and hepatitis C virus (HCV) RNA by a nested polymerase chain reaction (PCR). The samples were also tested for antibodies to the E2 envelope protein of HGV (anti-HGV) and to HCV with enzyme-linked immunosorbent assays. RESULTS: Nine (11%) patients had serum HGV RNA; that is, 7 (17%) of 42 patients previously treated with C1-INH concentrates and 2 of 42 previously untreated patients. HGV RNA was as common in the 19 patients treated with unmodified concentrates as in the 23 given steam-heated concentrates (16 vs. 17%, p = 0.60). Anti-HGV was more common among the recipients of unmodified concentrates than among those given steam-heated concentrates (26 vs. 0%, p = 0.014). HCV RNA was more frequently detected in treated patients than in untreated patients (33 vs. 7%, p = 0.005) and in the 19 recipients of unmodified concentrates than in the 23 treated with steam-heated concentrates (58 vs. 16%, p = 0.003). Only one HGV RNA-seropositive patient had elevated serum aminotransferase activity, compared to 11 with HCV RNA. CONCLUSION: HGV was transmitted by both unmodified and steam-heated concentrates, but it caused persistent viremia in a minority of the cases and was rarely associated with liver disease.

Adult↗

Activation of the coagulation cascade in C1-inhibitor deficiencies.

Activation of the contact and complement systems in C1-inhibitor deficiencies is thought to contribute to the pathogenesis of angioedema attacks by releasing kinins. Trigger stimuli of attacks may also activate coagulation. This is particularly important because experimental data suggest that thrombin, the main enzyme of the coagulation cascade, increases vascular permeability and can thus influence edema formation. We have studied 19 patients with hereditary angioedema (HAE) during remission, 5 HAE patients during acute attacks, and 6 patients with acquired angioedema (AAE) during remission and during seven attacks. Thirty normal subjects, matched for sex and age, served as controls. Generation of thrombin was measured by enzyme-linked immunosorbent assay (ELISA) as plasma levels of the prothrombin fragment 1 + 2 (F1 + 2); the initiators of the tissue factor and contact coagulation pathways were investigated by measuring plasma levels of activated factor VII (FVIIa) coagulometrically and activated factor XII (FXIIa) by ELISA. Cleavage of high molecular weight kininogen (HK) was evaluated by immunoblotting analysis. F1 + 2 was slightly increased during remission and further significantly increased during attacks in both HAE (P = .0115) and AAE. FVIIa and FXIIa, normal during remission, increased strikingly during attacks in both HAE (P = .0022 and P = .0044) and AAE. During remission, cleaved HK was normal in HAE and high in AAE; during attacks it increased in HAE (P = .0008) and remained elevated in AAE. Our data indicate that in C1-inhibitor deficient patients there is increased generation of thrombin during attacks, with signs of activation of both the contact and tissue factor coagulation pathways. In conclusion, C1-inhibitor deficiency, whether hereditary or acquired, has demonstrable activation of the coagulation and kinin-forming cascades during attacks and that thrombin should be considered a possible contributing factor in the pathogenesis of edema in HAE and AAE.

Adult↗