Differential effect of lead and cadmium on mitochondrial function and NLRP3 inflammasome activation in human trophoblast

Author:

Dai Yifeng123ORCID,Xu Xijin24,Huo Xia5,Schuitemaker Joost H. N.16,Faas Marijke M.17

Affiliation:

1. Department of Pathology and Medical Biology University Medical Center Groningen and University of Groningen Groningen The Netherlands

2. Laboratory of Environmental Medicine and Developmental Toxicology Shantou University Medical College Shantou Guangdong China

3. Department of Global Public Health and Bioethics, Julius Center for Health Sciences and Primary Care University Medical Centre Utrecht Utrecht The Netherlands

4. Department of Cell Biology and Genetics Shantou University Medical College Shantou Guangdong China

5. Laboratory of Environmental Medicine and Developmental Toxicology, Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment Jinan University Guangzhou Guangdong China

6. Research & Development, IQProducts Groningen The Netherlands

7. Department of Obstetrics and Gynecology University Medical Center Groningen and University of Groningen Groningen The Netherlands

Abstract

AbstractHeavy metals disrupt mitochondrial function and activate the NOD‐like receptor pyrin‐containing 3 (NLRP3) inflammasome. We investigated the effect of lead (Pb)/cadmium (Cd) on mitochondrial function and NLRP3 inflammasome activation in human trophoblast under normoxic, hypoxic and pro‐inflammatory conditions. JEG‐3, BeWo and HTR‐8/SVneo cells were exposed to Pb or Cd for 24 h in the absence or presence of hypoxia or pro‐inflammatory lipopolysaccharide (LPS) or poly(I:C). Then, we evaluated cell viability, apoptosis, mitochondrial DNA copy number (mtDNAcn), mitochondrial membrane potential (ΔΨ), NLRP3 inflammasome proteins and interleukin (IL)‐1β secretion. Although our data showed that Pb, Cd, hypoxia, poly(I:C) and LPS decreased mtDNAcn in the three cell lines, the effects of these treatments on other biomarkers were different in the different cell lines. We found that hypoxia decreased ΔΨ and promoted apoptosis in JEG‐3 cells, increased ΔΨ and prevented apoptosis in BeWo cells, and did not change ΔΨ and apoptosis in HTR‐8/SVneo cells. Moreover, Pb under hypoxic conditions reduced ΔΨ and promoted apoptosis of BeWo cells. Exposure of BeWo and HTR‐8/SVneo cells to hypoxia, Pb or Cd alone upregulated the expression of NLRP3 and pro‐caspase 1 but did not activate the NLRP3 inflammasome since cleaved‐caspase 1 and IL‐1β were not increased. To conclude, Pb and Cd affected trophoblast mitochondrial function and NLRP3 proteins in trophoblast cell lines, but in a cell line‐specific way. imageKey points The objective of this work was an understanding of the effect of lead (Pb) and cadmium (Cd) on mitochondrial function and NLRP3 inflammasome activation in human trophoblast cell lines under normoxic, hypoxic and pro‐inflammatory conditions. Apoptosis of JEG‐3 cells was increased by hypoxia, while in BeWo cells, apoptosis was decreased by hypoxia, and in HTR‐8/SVneo, apoptosis was not affected by hypoxic treatment. Exposure to either Pb or Cd decreased mtDNAcn in three human placental trophoblast cell lines. However, Pb under hypoxia induced a decrease of ΔΨ and promoted apoptosis of BeWo cells, but Cd did not induce a reduction in ΔΨ in the three trophoblast cell lines under any conditions. Exposure to hypoxia, Pb or Cd increased NLRP3 and pro‐caspase 1 in BeWo and HTR‐8/SVneo cells. Our findings highlight that Pb and Cd affected trophoblast mitochondrial function and NLRP3 proteins in trophoblast cell lines but in a cell line‐specific way.

Publisher

Wiley

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