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Ligand binding and activation of PPARγ by Firemaster® 550: effects on adipogenesis and osteogenesis in vitro.

Publication ,  Journal Article
Pillai, HK; Fang, M; Beglov, D; Kozakov, D; Vajda, S; Stapleton, HM; Webster, TF; Schlezinger, JJ
Published in: Environmental health perspectives
November 2014

The use of alternative flame retardants has increased since the phase out of pentabromodiphenyl ethers (pentaBDEs). One alternative, Firemaster® 550 (FM550), induces obesity in rats. Triphenyl phosphate (TPP), a component of FM550, has a structure similar to that of organotins, which are obesogenic in rodents.We tested the hypothesis that components of FM550 are biologically active peroxisome proliferator-activated receptor γ (PPARγ) ligands and estimated indoor exposure to TPP.FM550 and its components were assessed for ligand binding to and activation of human PPARγ. Solvent mapping was used to model TPP in the PPARγ binding site. Adipocyte and osteoblast differentiation were assessed in bone marrow multipotent mesenchymal stromal cell models. We estimated exposure of children to TPP using a screening-level indoor exposure model and house dust concentrations determined previously.FM550 bound human PPARγ, and binding appeared to be driven primarily by TPP. Solvent mapping revealed that TPP interacted with binding hot spots within the PPARγ ligand binding domain. FM550 and its organophosphate components increased human PPARγ1 transcriptional activity in a Cos7 reporter assay and induced lipid accumulation and perilipin protein expression in BMS2 cells. FM550 and TPP diverted osteogenic differentiation toward adipogenesis in primary mouse bone marrow cultures. Our estimates suggest that dust ingestion is the major route of exposure of children to TPP.Our findings suggest that FM550 components bind and activate PPARγ. In addition, in vitro exposure initiated adipocyte differentiation and antagonized osteogenesis. TPP likely is a major contributor to these biological actions. Given that TPP is ubiquitous in house dust, further studies are warranted to investigate the health effects of FM550.

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Published In

Environmental health perspectives

DOI

EISSN

1552-9924

ISSN

0091-6765

Publication Date

November 2014

Volume

122

Issue

11

Start / End Page

1225 / 1232

Related Subject Headings

  • Toxicology
  • Stromal Cells
  • PPAR gamma
  • Osteogenesis
  • Mice
  • Humans
  • Flame Retardants
  • Environmental Exposure
  • Dust
  • Child
 

Citation

APA
Chicago
ICMJE
MLA
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Pillai, H. K., Fang, M., Beglov, D., Kozakov, D., Vajda, S., Stapleton, H. M., … Schlezinger, J. J. (2014). Ligand binding and activation of PPARγ by Firemaster® 550: effects on adipogenesis and osteogenesis in vitro. Environmental Health Perspectives, 122(11), 1225–1232. https://doi.org/10.1289/ehp.1408111
Pillai, Hari K., Mingliang Fang, Dmitri Beglov, Dima Kozakov, Sandor Vajda, Heather M. Stapleton, Thomas F. Webster, and Jennifer J. Schlezinger. “Ligand binding and activation of PPARγ by Firemaster® 550: effects on adipogenesis and osteogenesis in vitro.Environmental Health Perspectives 122, no. 11 (November 2014): 1225–32. https://doi.org/10.1289/ehp.1408111.
Pillai HK, Fang M, Beglov D, Kozakov D, Vajda S, Stapleton HM, et al. Ligand binding and activation of PPARγ by Firemaster® 550: effects on adipogenesis and osteogenesis in vitro. Environmental health perspectives. 2014 Nov;122(11):1225–32.
Pillai, Hari K., et al. “Ligand binding and activation of PPARγ by Firemaster® 550: effects on adipogenesis and osteogenesis in vitro.Environmental Health Perspectives, vol. 122, no. 11, Nov. 2014, pp. 1225–32. Epmc, doi:10.1289/ehp.1408111.
Pillai HK, Fang M, Beglov D, Kozakov D, Vajda S, Stapleton HM, Webster TF, Schlezinger JJ. Ligand binding and activation of PPARγ by Firemaster® 550: effects on adipogenesis and osteogenesis in vitro. Environmental health perspectives. 2014 Nov;122(11):1225–1232.

Published In

Environmental health perspectives

DOI

EISSN

1552-9924

ISSN

0091-6765

Publication Date

November 2014

Volume

122

Issue

11

Start / End Page

1225 / 1232

Related Subject Headings

  • Toxicology
  • Stromal Cells
  • PPAR gamma
  • Osteogenesis
  • Mice
  • Humans
  • Flame Retardants
  • Environmental Exposure
  • Dust
  • Child