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Quantitative Alterations in Complement Alternative Pathway and Related Genetic Analysis in Severe Phenotype
Layan Alrahmani1,2, Maria L Gonzalez Suarez3, Margot A Cousin4,5
1Division of Maternal Fetal Medicine, Department of Obstetrics and Gynecology, Mayo Clinic, Rochester, Minnesota.
Insights
Preeclampsia involves complement alternative pathway (CAP) activation, indicated by elevated proteins like Bb subunit and C5. Genetic variants in CAP genes were found in some patients, suggesting a role in pregnancy disorders.
Area of Science:
- Obstetrics and Gynecology
- Immunology
- Genetics
Background:
- Preeclampsia and HELLP syndrome share features with complement-mediated thrombotic microangiopathy.
- The study hypothesized shared complement alternative pathway (CAP) alterations in these pregnancy disorders.
Purpose of the Study:
- To investigate functional and genetic alterations in the complement alternative pathway (CAP) in severe preeclampsia, HELLP syndrome, and eclampsia.
- To compare CAP protein levels and gene variants between patients and normotensive controls.
Main Methods:
- Quantitative analysis of CAP proteins (Bb subunit, C5, sMAC) using ELISA and nephelometry.
- Sequencing of 14 genes encoding CAP components in patients and controls.
Main Results:
- Patients with severe preeclampsia showed elevated Bb subunit, C5, and sMAC concentrations compared to controls.
- Two-thirds of preeclampsia patients had nonsynonymous sequence variants in CAP genes.
- Higher BMI and earlier gestational age at delivery were noted in the study group.
Conclusions:
- Severe preeclampsia involves functional alterations in complement alternative pathway (CAP) activation.
- Genetic variants in CAP genes were identified, warranting further investigation in larger cohorts.
- Complement-targeted therapies and genetic screening may aid in risk stratification and treatment.
Background:
Preeclampsia and hemolysis, elevated liver enzymes, and low platelets (HELLP) syndrome share many clinical and biologic features with thrombotic microangiopathy syndromes caused by complement abnormalities. Our hypothesis was that similar functional and genetic alterations in the complement alternative pathway (CAP) are present in these disorders of pregnancy.
Methods:
We conducted quantitative analysis of proteins involved in CAP using ELISA and nephelometry on prospectively collected blood samples from patients with severe phenotype preeclampsia (defined as delivery ≤34 weeks due to preeclampsia), HELLP syndrome, or eclampsia, and matched normotensive controls (n=25 in each arm) between 2011 and 2016. Sequencing was performed to interrogate 14 genes encoding CAP components.
Results:
Both groups were similar in age, gravidity, parity, marital status, and race. The study group had a higher BMI (mean±SD, 32±8 versus 25±4 kg/m2; P=0.002) and earlier gestational age at delivery (32.5±3.6 versus 40.3±1 weeks; P<0.001). Serologic studies demonstrated elevated Bb subunit (median [range], 1.2 [0.5-4.3] versus 0.6 [0.5-1] μg/ml; P<0.001), complement C5 concentration (28 [18-33] versus 24 [15-34] mg/dl; P=0.03), and sMAC (371 [167-761] versus 184 [112-249] ng/ml; P<0.001) concentrations in patients with preeclampsia. Two thirds of patients with preeclampsia had at least one nonsynonymous sequence variant in CAP genes.
Conclusion:
Patients with severe phenotype preeclampsia manifest functional alterations in CAP activation. Genetic variants in the CAP genes were detected in several patients, but a larger population study is necessary to fully evaluate genetic risk. Genetic screening and complement-targeted treatment may be useful in risk stratification and novel therapeutic approaches.
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