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Published on: September 2, 2014
Palmitate induces apoptotic cell death and inflammasome activation in human placental macrophages
Lisa M Rogers1, Carlos H Serezani2, Alison J Eastman1
1Division of Infectious Diseases, Department of Medicine, Vanderbilt University Medical Center, Nashville, TN, 37232, USA.
Insights
Saturated fat, not glucose or insulin, activates inflammatory pathways in placental macrophages. This finding highlights the impact of maternal metabolic stress on pregnancy and fetal development.
Area of Science:
- Immunology
- Reproductive Biology
- Metabolic Disease Research
Background:
- Non-communicable diseases, including obesity and gestational diabetes mellitus (GDM), are rising globally.
- These conditions during pregnancy can negatively impact pregnancy outcomes and offspring's long-term health.
- Metabolic stress in pregnancy is linked to placental inflammation, affecting fetal development.
Purpose of the Study:
- To investigate the in vitro effects of metabolic stress on placental macrophage biology.
- To understand how high glucose, insulin, and saturated lipids influence key immune cells in the placenta.
Main Methods:
- Human placental macrophages were isolated from term placentae via elective Cesarean sections.
- Macrophages were exposed to elevated glucose (30 mM), insulin (10 nM), and palmitic acid (0.4 mM) in vitro.
- The activation of the NLRP3 inflammasome and subsequent inflammatory markers were analyzed.
Main Results:
- Palmitic acid (saturated fat) alone triggered NLRP3 inflammasome activation in placental macrophages.
- This activation led to increased interleukin-1 beta release and elevated apoptotic cell death.
- Elevated glucose and insulin did not induce these effects or enhance palmitate's impact.
Conclusions:
- Maternal saturated fat intake directly impacts placental macrophage immune activation.
- These findings suggest a mechanism by which metabolic stress, specifically saturated fats, can influence pregnancy health.
- Further research is warranted to explore the in vivo relevance of these in vitro results.
Introduction:
There is an increasing prevalence of non-communicable diseases worldwide. Metabolic diseases such as obesity and gestational diabetes mellitus (GDM) increasingly affect women during pregnancy, which can harm pregnancy outcomes and the long-term health and wellbeing of exposed offspring. Both obesity and GDM have been associated with proinflammatory effects within the placenta, the critical organ governing fetal development.
Methods:
The purpose of these studies was to model, in vitro, the effects of metabolic stress (high levels of glucose, insulin and saturated lipids) on placental macrophage biology, since these cells are the primary innate immune phagocyte within the placenta with roles in governing maternofetal immune tolerance and antimicrobial host defense. Macrophages were isolated from the villous core of term, human placentae delivered through nonlaboring, elective Cesarean sections and exposed to combinations of elevated glucose (30 mM), insulin (10 nM) and the saturated lipid palmitic acid (palmitate, 0.4 mM).
Results:
We found that palmitate alone induced the activation of the nucleotide-binding oligomerization domain-like receptor (NLR) Family Pyrin Domain Containing 3 (NLRP3) inflammasome in placental macrophages, which was associated with increased interleukin 1 beta release and an increase in apoptotic cell death. Glucose and insulin neither provoked these effects nor augmented the impact of palmitate itself.
Discussion:
Our findings confirm an impact of saturated fat on placental macrophage immune activation and could be relevant to the impact of metabolic stress in vivo.
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