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A Murine Model of Fetal Exposure to Maternal Inflammation to Study the Effects of Acute Chorioamnionitis on Newborn Intestinal Development
Published on: June 24, 2020
Palmitate and group B Streptococcus synergistically and differentially induce IL-1β from human gestational membranes
Jennifer A Gaddy1,2, Rebecca E Moore1,3, Jonathan S Lochner4,5
1Department of Medicine, Vanderbilt University Medical Center, Nashville, TN, United States.
Insights
Obesity and saturated fatty acids like palmitate worsen Group B Streptococcus (GBS) infections in pregnancy. The amnion layer may protect against inflammation, while oleate can reduce it, offering insights into metabolic syndrome risks.
Area of Science:
- Reproductive immunology
- Metabolic disorders
- Microbial pathogenesis
Background:
- Chorioamnionitis (CAM), often caused by Group B Streptococcus (GBS), is a major pregnancy complication.
- Obesity is linked to increased GBS colonization and pregnancy complications.
- Gestational membranes have distinct layers: decidual stromal cells (DSCs), cytotrophoblasts (CTBs), mesenchymal cells, and amnion epithelial cells (AECs), with macrophages as key immune cells.
Purpose of the Study:
- To investigate the impact of palmitate, a common saturated fatty acid, on the inflammatory response of each gestational membrane layer to GBS infection.
- To understand how metabolic factors, like obesity-associated fatty acids, influence pregnancy complications related to GBS.
Main Methods:
- Utilized human cell lines and primary human tissue from gestational membranes.
- Exposed DSCs, CTBs, AECs, and macrophages to GBS and palmitate.
- Analyzed inflammatory protein and cytokine production.
- Investigated effects of co-culture and oleate (a monounsaturated fatty acid).
- Examined whole gestational membrane biopsies.
Main Results:
- Palmitate enhanced GBS proliferation and synergized with GBS to induce inflammatory proteins (e.g., IL-1β, MMP9) in DSCs, CTBs, and macrophages, but not AECs.
- Co-culture of macrophages with DSCs or CTBs amplified inflammatory responses under co-stimulation.
- The amnion layer in biopsies appeared to reduce inflammation in response to GBS and palmitate.
- Oleate mitigated the pro-inflammatory effects of palmitate.
Conclusions:
- Distinct gestational membrane layers exhibit varied immunological responses to GBS infection, modulated by saturated fatty acids.
- Palmitate's pro-inflammatory effects highlight a potential mechanism linking obesity and increased GBS-related pregnancy risks.
- The amnion layer's anti-inflammatory role and oleate's mitigating effect warrant further investigation.
Introduction:
Rupture of the gestational membranes often precedes major pregnancy complications, including preterm labor and preterm birth. One major cause of inflammation in the gestational membranes, chorioamnionitis (CAM) is often a result of bacterial infection. The commensal bacterium Streptococcus agalactiae, or Group B Streptococcus (GBS) is a leading infectious cause of CAM. Obesity is on the rise worldwide and roughly 1 in 4 pregnancy complications is related to obesity, and individuals with obesity are also more likely to be colonized by GBS. The gestational membranes are comprised of several distinct cell layers which are, from outermost to innermost: maternally-derived decidual stromal cells (DSCs), fetal cytotrophoblasts (CTBs), fetal mesenchymal cells, and fetal amnion epithelial cells (AECs). In addition, the gestational membranes have several immune cell populations; macrophages are the most common phagocyte. Here we characterize the effects of palmitate, the most common long-chain saturated fatty acid, on the inflammatory response of each layer of the gestational membranes when infected with GBS, using human cell lines and primary human tissue.
Results:
Palmitate itself slightly but significantly augments GBS proliferation. Palmitate and GBS co-stimulation synergized to induce many inflammatory proteins and cytokines, particularly IL-1β and matrix metalloproteinase 9 from DSCs, CTBs, and macrophages, but not from AECs. Many of these findings are recapitulated when treating cells with palmitate and a TLR2 or TLR4 agonist, suggesting broad applicability of palmitate-pathogen synergy. Co-culture of macrophages with DSCs or CTBs, upon co-stimulation with GBS and palmitate, resulted in increased inflammatory responses, contrary to previous work in the absence of palmitate. In whole gestational membrane biopsies, the amnion layer appeared to dampen immune responses from the DSC and CTB layers (the choriodecidua) to GBS and palmitate co-stimulation. Addition of the monounsaturated fatty acid oleate, the most abundant monounsaturated fatty acid in circulation, dampened the proinflammatory effect of palmitate.
Discussion:
These studies reveal a complex interplay between the immunological response of the distinct layers of the gestational membrane to GBS infection and that such responses can be altered by exposure to long-chain saturated fatty acids. These data provide insight into how metabolic syndromes such as obesity might contribute to an increased risk for GBS disease during pregnancy.
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