4 research outputs found

    Successful treatment of post-pericardiotomy syndrome via C1 inhibitor replacement therapy in a hereditary angioedema patient with Marfan syndrome

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    Background. Hereditary angioedema with C1 inhibitor deficiency (HAE-C1INH) is caused by dysfunctional C1-INH protein due to mutations in the SERPING1 gene encoding C1-INH. Marfan syndrome is a genetic connective tissue disease that affects the cardiovascular and ocular systems along with the skeletal system. In this case, we present the successful treatment of post-pericardiotomy syndrome unresponsive to classical therapy, which has not been described in the literature. The syndrome developed in a patient with hereditary angioedema (HAE) who underwent open heart surgery due to cardiac involvement in Marfan syndrome. Case. A nine-year-old male HAE-C1INH patient underwent open heart surgery secondary to cardiac involvement caused by Marfan syndrome. To prevent HAE attacks, 1000 units of C1 inhibitor concentrate therapy were given 2 hours before and 24 hours after the operation. Post-pericardiotomy syndrome was diagnosed on the postoperative second day and ibuprofen 15 mg/kg/day (3 weeks) was started. Since there was no response to classical treatment on the 21st postoperative day, C1 inhibitor concentrate treatment was planned as 1000 units/ dose for 2 days a week considering a prolonged hereditary angioedema attack. In the second week of treatment, complete recovery was achieved for pericardial effusion with a total of 4 doses. Conclusions. We emphasize that in patients with hereditary angioedema undergoing this treatment, care should be taken in terms of complications that may be associated with the disease even if short-term prophylaxis is given before operations and that longer-term use of C1 inhibitor concentrate has a place in treatment

    Could Age and Oral Challenge Outcomes Identify High-Risk Patients During Cow's Milk Oral Immunotherapy?

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    Objective: Severe immunglobuline E (IgE)-mediated reactions during oral immunotherapy (OIT) are major obstacles to treatment. The present study aimed to evaluate and identify clinical and laboratory biomarkers of adverse events during OIT among children with cow's milk (CM) allergy.Study Design: Eighty-six children older than 36 months who had undergone OIT with milk were enrolled. Clinical data, oral food challenge (OFC) test results, and laboratory data were recorded retrospectively.Results: The median duration of the build-up phase of OIT was 19 weeks (min 10-max 40) and the duration of the maintenance phase was 86.5 (min 1-max 132) months. A total of 11,767 CM doses were administered during the build-up phase and adverse reactions were seen in 62 (73.8%) patients with reactions registered for 157 doses among 11,767 (1/75 doses). The number of reactions during the maintenance phase was 41 (47.6%) in 24 (27.9%) patients. There was a significant reduction in the number of reactions (P = 0.000) between the build-up phase and maintenance phase. Adverse reactions and anaphylaxis were higher for patients who had cough during OFC (P = 0.003, P = 0.002, respectively) during the build-up phase and also during the maintenance phase too (P = 0.000). Evaluation for all reactions and anaphylaxis (during build-up and maintenance) with Kaplan-Meier and Cox regression analysis showed class IV-VI of CM-specific immunoglobulin E (sIgE), casein-sIgE and cough during OFC were significantly associated with increased probability of reaction and anaphylaxis. Younger age at onset of OIT was associated with risk reduction (0.017).Conclusion: Laboratory data and reactions during the OFC (especially cough) can help to identify high-risk patients during OIT

    Dual Diagnosis of Trichohepatoenteric Syndrome and Lipoid Proteinosis in a Turkish Child

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    Introduction: Trichohepatoenteric syndrome (THES) is caused by pathogenic mutations in TTC37 and SKIV2L genes and characterized by intractable diarrhea, facial dysmorphism, hair abnormality, immunodeficiency, and skin abnormalities. Lipoid proteinosis is caused by pathogenic mutations in ECM1 gene and characterized by deposition of hyaline-like material in various tissues resulting in heterogenous clinical findings. Case Presentation: Four years after the diagnosis and management of THES, due to new clinical findings, another reason for underlying features of the patient was considered. WES was performed and a homozygous c.507delT (p.Arg171GlyfsTer7) mutation in the ECM1 gene was detected. Conclusion: This case provides an example of co-existence of multiple genetic defects in a single patient born to consanguineous parents
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