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The 4-vessel Sampling Approach to Integrative Studies of Human Placental Physiology In Vivo
Published on: August 2, 2017
Expression of Properdin, the positive regulator of the Complement Alternative Pathway, at the fetal-maternal
Hadida Yasmin1, Tamali Roy1, Chiara Agostinis2
1Department of Zoology, Cooch Behar Panchanan Barma University, Cooch Behar, India.
Insights
Properdin, a key complement regulator, is elevated in preeclampsia (PE) placentas, suggesting it contributes to placental damage and pregnancy complications. This finding highlights properdin
Area of Science:
- Immunology
- Reproductive Biology
- Pathology
Background:
- Aberrant complement activation at the feto-maternal interface contributes to pregnancy complications like preeclampsia (PE).
- Properdin positively regulates the complement alternative pathway by stabilizing the C3bBb complex.
Purpose of the Study:
- To investigate the presence and role of properdin in preeclampsia pathogenesis.
- To examine properdin expression in placental tissue and extracellular vesicles in PE.
Main Methods:
- Quantitative reverse transcription PCR (RT-qPCR) and western blot for properdin, C3, and C5 transcript and protein levels.
- Immunohistochemistry, transmission electron microscopy (TEM), and immunofluorescence for properdin localization.
- Analysis of serum, placental syncytiotrophoblast microvesicles (STBMs), and circulating placental exosomes.
Main Results:
- Properdin, C3, and C5 were significantly upregulated at transcript and protein levels in PE placentae compared to healthy controls.
- Conversely, properdin levels were lower in serum, STBMs, and circulating placental exosomes from PE patients.
- Immunohistochemistry showed increased properdin in PE placentae, particularly at syncytial knots with apoptotic nuclei.
Conclusions:
- Properdin is upregulated in PE placentae and associated with apoptotic syncytial knots.
- Properdin may contribute to complement-mediated placental barrier damage, exacerbating preeclampsia development.
Introduction:
Aberrant complement activation can cause damage to newly formed fetal-derived structures and excessive inflammatory response at the feto-maternal interface, contributing to pregnancy-related complications, including preeclampsia (PE), which is one of the most severe pathologies in new-borns. Properdin is the only known positive regulator of the complement alternative pathway, as it stabilizes the inherently labile C3bBb complex and amplifies its activity. This study describes the presence of properdin in PE and investigates its role in the pathogenesis.
Methods:
We examined the distribution and expression of properdin at both the transcript and protein levels in term placental tissue, serum, placental syncytiotrophoblast microvesicles (STBMs), and circulating placental exosomes from PE women compared to healthy mothers, using RT-qPCR, western blot, immunohistochemistry, transmission electron microscopy (TEM), and immunofluorescence. To link properdin levels with alternative pathway complement factors, we also assessed the expression of C3 and C5.
Results:
PE placentae showed significantly higher properdin, C3 and C5 at transcript as well as protein levels compared to healthy placentae. Conversely, properdin levels in serum, STBMs, and circulating placental exosomes were lower in PE compared to healthy pregnancies. Immunohistochemical analysis revealed properdin distribution throughout the PE placentae, with higher concentrations at the syncytial knots containing pyknotic nuclei were observed via TEM, along with elevated levels of cleaved caspase 3.
Discussion:
Thus, properdin was significantly upregulated in the PE placentae, along with C3 and C5, and might be associated with the apoptotic nuclei inside syncytial knots. This evidence suggests that properdin may trigger complement-mediated damage to the placental barrier, exacerbating the development of PE placentae.
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