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Biomedical subjects

M Cicardi

Publications and source records attributed to M Cicardi.

At least 19 recordsLinked to original sources

A dysfunctional C1 inhibitor protein with a new reactive center mutation (Arg-444-->Leu).

A P1 mutation (Arg-444-->Leu) was identified in a dysfunctional C1 inhibitor from a patient with type 2 hereditary angioneurotic edema. The mutation was defined at the level of the protein (by sequence analysis of the Pseudomonas aeruginosa elastase-derived reactive center peptide), and the mRNA (CGC-->CTC) (by sequence analysis of PCR-amplified DNA).

Amino Acid Sequence

Peripheral edema due to increased vascular permeability: a clinical appraisal.

The release of vasoactive substances produces reversible changes of endothelial permeability with consequent edematous syndromes. We present 899 patients referred to our clinic for "non-hydrostatic non-hyponcotic" recurrent edema problems. Personal and family histories were recorded and a complete physical examination was carried out for each patient. In chronic situations laboratory tests [blood cell count, cryoglobulins, thyroid hormones, complement components (C3, C4, C1 inhibitor), total IgE, skin testing] were performed. Four subgroups of angioedema are identified for relevant clinical and etiopathogenetic differences. Seventy-three percent of patients had an urticaria-angioedema syndrome responding to antihistamine and/or corticosteroid treatment (histamine-dependent angioedema). Twenty-three percent had an angioedema related to a deficiency in C1 esterase inhibitor (complement-dependent angioedema). In a minority of patients, angioedema was due to the pharmacological effect of a drug (pharmacological angioedema) or was of a totally unknown origin (idiopathic angioedema). A generalized increase in vascular permeability was reported in 3 patients (systemic capillary leak syndrome). A brief survey of the literature is given with the review of our patients.

Adolescent

Hereditary and acquired C1-inhibitor deficiency: biological and clinical characteristics in 235 patients.

Two hundred and twenty-six patients with inherited C1 inhibitor (C1-INH) deficiency, also known as hereditary angioedema (HAE), have been studied. They belonged to 80 unrelated families, and in 11 of them C1-INH was functionally deficient but antigenically normal (type II HAE). Genetic analysis of type 1 families demonstrated restriction fragment length polymorphisms in 11% and abnormal mRNAs in 25%. In type II families, the site of the mutation appeared to determine the rate of catabolism of the dysfunctional C1-INH and its antigenic plasma levels. Clinical symptoms (subcutaneous and mucous swellings) generally first appeared within the second decade of life. The frequency of symptoms was highly variable from patient to patient, but a few patients remained asymptomatic throughout their lives. Prophylactic treatment with attenuated androgens was administered to 59 patients and was totally effective in 57, without significant side effects. Sixty-seven laryngeal and 15 abdominal attacks were treated with C1-INH plasma concentrate, yielding initial regression of symptoms in 30 to 90 minutes. The acquired deficiency of C1-INH, also known as acquired angioedema, was diagnosed in 9 patients. Eight of them had an autoantibody against C1-INH; the only patient without the autoantibody had associated chronic lymphocytic leukemia. Prophylactic treatment with attenuated androgens was effective in this last patient, while those with the autoantibody against C1-INH benefited from prophylaxis with antifibrinolytic agents. Replacement therapy with C1-INH concentrate was necessary only for patients with autoantibodies and required doses 3 or 4 times higher than those used in HAE.

Adolescent

Complement deficiency and antibody profile in survivors of meningococcal meningitis due to common serogroups in Italy.

A collaborative survey was carried out in Italy on a group of 59 subjects with a past history of meningococcal meningitis. The aim was to evaluate the prevalence of complement deficiencies, the serogroup of meningococci responsible for the disease and other possible immune abnormalities associated with the infection. Complement analysis allowed the detection of 10 cases (17%) with deficiencies of the terminal components, and in particular six cases of C8 beta, three of C7 and one of C6 defect. Half of the subjects with complement deficiencies had recurrences of meningitis and developed the infection at an older age in comparison with the control group with normal complement activity. The meningococcal C strain was the most diffuse (68%) and infected all the complement-deficient subjects. Evaluation of the antibody response to meningococcal capsular polysaccharides (PS) showed that only 42.5% of the individuals with group C had antibodies as opposed to 83% and 100% of the patients with meningitis due to group A and B, respectively. In all 59 subjects serum Ig as well as IgG subclasses were present, at normal levels for the age. Vaccination of seven out of the 24 subjects without detectable anti-meningococcal PS antibodies with the sole PS A+C induced a normal response in six of them, including a subject with complement defect. In the subject who did not respond to the antigen, the antibodies against the ubiquitous pneumococcal PS type 14 were also lacking, whereas anti-tetanus toxoid (TT) antibodies were normally present. From these data we may conclude the following: (1) the high prevalence (17%) of late complement components defect among survivors of meningococcal meningitis is also confirmed in the Italian population; (2) the serogroup C, responsible for the infections in all the cases with late complement components defect, is highly recirculating in Italy and apparently less immunogenic; (3) specific vaccination with meningococcal PS is a valid prophylaxis in subjects with lack of specific antibodies as well as in subjects with complement defect.

Adolescent

Long-term treatment of hereditary angioedema with attenuated androgens: a survey of a 13-year experience.

Fifty-six patients affected with hereditary angioedema have been followed during long-term prophylaxis with attenuated androgens. The treatment was started in patients who had one or more severe attacks per month. In 24 patients, the therapy lasted for more than 5 years. The minimal effective dose usually did not exceed 2 mg/day of stanozolol or 200 mg/day of danazol. Only in two patients were these doses not sufficient to achieve the complete disappearance of symptoms. Irregular menstruation, but rarely amenorrhea, was the only significant side effect. One patient had to stop the therapy because of laboratory signs of hepatic cell necrosis. In one patient, danazol was administered during the last 8 weeks of pregnancy without side effects for the mother but with transient signs of virilization for the female baby. To find a biochemical marker for the minimal effective dose of androgen derivatives, we measured the plasma levels of C1 C1 INH complexes at different doses of stanozolol in four patients with hereditary angioedema. We found that these complexes, elevated before treatment, promptly reverted to normal values during androgen therapy and remained normal with any reduction of the dose of the drug as long as the patient remained symptom free. Therefore, the measurement of C1 C1 INH complexes appears to reflect the activity of the disease and not the amount of androgen that is administered.

Adolescent

Nonsense mutations affect C1 inhibitor messenger RNA levels in patients with type I hereditary angioneurotic edema.

Members of two unrelated families with type I hereditary angioneurotic edema (HANE) were found to have elevated levels of C1 inhibitor (C1INH) mRNA. DNA sequence analysis of PCR-amplified monocyte C1INH mRNA revealed normal and mutant transcripts, as expected in this disorder that occurs in heterozygous individuals. Single base mutations near the 3' end of the coding sequence were identified in affected members of each family. One mutation consisted of insertion of an adenosine at position 1304 which created a premature termination codon (TAA), whereas the second consisted of deletion of the thymidine at position 1298 which created a premature termination codon (TGA) 23 nucleotides downstream. These mutations are approximately 250 nucleotides upstream of the natural termination codon. Nuclear run-off experiments in one kindred revealed no difference in transcription rates of the C1INH gene between the patients and normals. C1INH mRNA half-life experiments were not technically feasible because of the prolonged half-life of the normal transcript. Dideoxynucleotide primer extension experiments allowed the differentiation of the normal and mutant transcripts. These studies showed that the mutant transcript was not decreased relative to the normal, and this therefore was at least partially responsible for the C1INH mRNA elevation. This elevation may be due to the decreased catabolism of the mutant transcript.

Angioedema

Identification of a new P1 residue mutation (444Arg----Ser) in a dysfunctional C1 inhibitor protein contained in a type II hereditary angioedema plasma.

A new reactive-centre P1 residue mutation (444Arg----Ser), has been identified in a dysfunctional C1 inhibitor protein, C1 inhibitor(Ba), contained in a type II hereditary angioedema plasma. This substitution is compatible with a point mutation of the 444Arg codon (CGC----AGC), and represents the first non-histidine, non-cysteine P1 residue mutant described for C1 inhibitor.

Amino Acid Sequence

Type II hereditary angioneurotic edema that may result from a single nucleotide change in the codon for alanine-436 in the C1 inhibitor gene.

Identical single-base changes in the C1 inhibitor gene that may result in dysfunctional inhibitor proteins are described in two different families with type II hereditary angioneurotic edema. Initially, a restriction fragment length polymorphism was defined that resulted from loss of a Pst I site within exon VIII, which encodes the region containing the reactive center. Exon VIII from the normal and abnormal allelles was amplified by the polymerase chain reaction. Amplified DNA product was cloned into plasmid pUC18; clones representing normal and mutant allelles were distinguished by the presence and absence, respectively, of the Pst I restriction site. DNA sequence analysis revealed a G----A mutation in the codon for alanine-436, which would result in replacement with a threonine residue. This position is nine amino acid residues amino-terminal to the reactive-center arginylthreonine peptide bond. In contrast, previously defined mutations in type II hereditary angioneurotic edema result in replacement of the reactive-center arginine.

Alanine

Plasma levels of C1- inhibitor complexes and cleaved C1- inhibitor in patients with hereditary angioneurotic edema.

C1- inhibitor (C1(-)-Inh) catabolism in plasma of patients with hereditary angioneurotic edema (HANE) was assessed by measuring the complexes formed by C1(-)-Inh with its target proteases (C1-s, Factor XIIa, and kallikrein) and a modified (cleaved) inactive form of C1(-)-Inh (iC1(-)-Inh). This study was performed in plasma from 18 healthy subjects and 30 patients with HANE in remission: 20 with low antigen concentration (type I) and 10 (from 5 different kindreds) with dysfunctional protein (type II). Both type-I and type-II patients had increased C1(-)-C1(-)-Inh complexes (P less than 0.0001), which in type I inversely correlated with the levels of C1(-)-Inh (P less than 0.001). iC1(-)-Inh was normal in all type-I patients and in type-II patients from three families with increased C1(-)-Inh antigen, whereas iC1(-)-Inh was higher than 20 times the normal values in patients from the remaining two families with C1(-)-Inh antigen in the normal range. None of the subjects had an increase of either Factor XIIa-C1(-)-Inh or kallikrein-C1(-)-Inh complexes. This study shows that the hypercatabolism of C1(-)-Inh in HANE patients at least in part occurs via the formation of complexes with C1- and that genetically determined differences in catabolism of dysfunctional C1(-)-Inh proteins are present in type-II patients.

Adolescent

Blood--artificial surface interactions during cardiopulmonary bypass. A comparative study of four oxygenators.

Evaluation of the biocompatibility of four different types of oxygenator (bubble, membrane, hollow fibre and 'hybrid') was performed on 26 patients undergoing cardiopulmonary bypass during elective coronary surgery. More platelet derangement and an increased degree of hemolysis, revealed by higher plasmatic concentration of beta-thromboglobulin, platelet factor 4 and plasmatic free hemoglobin (p less than 0.05), was seen when using the bubble oxygenator. Damage to blood cells was minimal with the membrane oxygenator while the 'hybrid' and the hollow fibre oxygenators proved to rank at an intermediate level. Complement activation at the beginning of the cardiopulmonary bypass occurred via the alternative pathway as demonstrated by C3ades arg increase (up to nine times) without a concomitant elevation of C4ades arg. Cardiopulmonary bypass complement activation was quantitatively similar with all the oxygenators. A further activation via the classical pathway occurred in all the patients after protamine injection. Consistent differences as far as clinical and biological effects exist among the various commercially available cardiopulmonary bypass apparatus; our study provides guidelines for the evaluation and selection of devices which might reduce postoperative sequelae.

Anaphylatoxins

Type I C1 inhibitor deficiency with a small messenger RNA resulting from deletion of one exon.

The molecular genetic basis of C1 inhibitor (C1 INH) deficiency in a patient with type I hereditary angioneurotic edema was studied. This patient was found to have an abnormally short C1 INH mRNA together with a normal message. Restriction fragment length polymorphism of the C1 INH gene was detected by Southern blot analysis of the patient's DNA after digestion with Pst I or Sac I, and hybridization with a full-length C1 INH cDNA. Hybridization of the same blot with three different fragments of the full-length cDNA suggested that exon VII and portions of both flanking introns were deleted in the C1 INH gene. Northern blot analysis of RNA from cultured monocytes, using a probe corresponding to exon VII, also indicated that the abnormal C1 INH mRNA had a deletion of these nucleotides. To confirm the hypothesis that the short C1 INH mRNA contained a deletion, the involved segment of the patient's C1 INH mRNA was amplified using the polymerase chain reaction (PCR). PCR amplification yielded two C1 INH DNA fragments of different lengths (380 and 160 bp). Southern blot and sequence analysis of both DNA fragments clearly revealed that the smaller 160-bp DNA was derived from the abnormal message and had a deletion of nucleotides corresponding to exon VII.

Angioedema

Haemostasis contact system and fibrinolysis in hereditary angioedema (C1-inhibitor deficiency).

Factors of the classical complement pathway, the contact system and fibrinolysis were evaluated both with functional and immunochemical methods, in patients with inherited deficiency of C1-inhibitor. Evaluations were performed under basal conditions, during acute attacks and during prophylaxis with low doses of anabolic steroids. Patients in the basal state showed no significant abnormalities of any of the parameters that we investigated. During acute attacks a slightly reduced prekallikrein concentration was registered. During treatment with low doses of danazol and stanozolol, protein C and plasminogen were found to be increased. Our data suggest that C1-inhibitor deficiency per se does not lead to a derangement of the fibrinolysis and coagulation contact system, and that the kinin system may be involved during acute attacks of angioedema.

Adolescent

Molecular basis for the deficiency of complement 1 inhibitor in type I hereditary angioneurotic edema.

Hereditary angioneurotic edema (HANE) results from deficiency of complement 1 inhibitor (C1 INH). In type I HANE, C1 INH is present in serum at levels 5-30% of normals. Using cultured monocytes and biosynthetic labeling of proteins, C1 INH was detected in supernatants of cells from HANE patients at levels 20% of those detected in normals. The intracellular reduction of C1 INH in patients' monocytes approached 50%. The study of C1 INH messenger RNA (mRNA) by Northern blot analysis indicated that in HANE patients' monocytes a message of normal size is present at about half the concentration of that from normal cells. One of the patients analyzed showed the presence of a genetically inherited abnormal mRNA (1.9 kb) in addition to the normal mRNA (2.1 kb). Southern blot analysis of DNA from peripheral blood leukocytes did not show any difference in quantity or in sizes of endonuclease restriction fragments between patients and normals. The defect(s), therefore, in type I HANE is pretranslational, but is not due to a deletion or to a major chromosomal rearrangement.

Angioedema