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Dibutyltin Compounds Effects on PPARγ/RXRα Activity, Adipogenesis, and Inflammation in Mammalians Cells
Flora A Milton1,2, Mariella G Lacerda1, Simone B P Sinoti1
1Laboratory of Molecular Pharmacology, Faculty of Health Science, University of BrasiliaBrasilia, Brazil.
Abstract:
Organotins are a group of chemical compounds that have a tin atom covalently bound to one or more organic groups. The best-studied organotin is tributyltin chloride, which is an environmental pollutant and an endocrine disruptor. Tributyltin chloride has been shown to bind to PPARγ/RXRα and induces adipogenesis in different mammalian cells. However, there are few studies with other organotin compounds, such as dibutyltins. The aim of this study was to investigate the effect of dibutyltins diacetate, dichloride, dilaurate, and maleate on the transcriptional activity of the nuclear PPARγ and RXRα receptors, and on adipogenesis and inflammation. Analogous to tributyltin chloride, in reporter gene assay using HeLa cells, we observed that dibutyltins diacetate, dichloride, dilaurate, and maleate are partial agonists of PPARγ. Unlike tributyltin chloride, which is a full agonist of RXRα, dibutyltins dichloride and dilaurate are partial RXRα agonists. Additionally, the introduction of the C285S mutation, which disrupts tributyltin chloride binding to PPARγ, abrogated the dibutyltin agonistic activity. In 3T3-L1 preadipocytes, all dibutyltin induced adipogenesis, although the effect was less pronounced than that of rosiglitazone and tributyltin chloride. This adipogenic effect was confirmed by the expression of adipogenic markers Fabp4, Adipoq, and Glut4. Exposure of 3T3-L1 cells with dibutyltin in the presence of T0070907, a specific PPARγ antagonist, reduced fat accumulation, suggesting that adipogenic effect occurs through PPARγ. Furthermore, dibutyltins dichloride, dilaurate, and maleate inhibited the expression of proinflammatory genes in 3T3-L1 cells, such as Vcam1, Dcn, Fn1, S100a8, and Lgals9. Additionally, in RAW 264.7 macrophages, tributyltin chloride and dibutyltin dilaurate reduced LPS-stimulated TNFα expression. Our findings indicate that dibutyltins diacetate, dichloride, dilaurate, and maleate are PPARγ partial agonists and that dibutyltins dichloride and dilaurate are also partial RXRα agonists. Furthermore, dibutyltins induce adipogenesis in a PPARγ-dependent manner and repress inflammatory genes in 3T3-L1 and RAW 264.7 cells. Although dibutyltins display some partial PPARγ/RXRα agonistic effects, the translation of cell-based results assays into in vivo effects on inflammation and insulin resistance is not entirely known. Nevertheless, further studies are necessary to address their effects in different periods of life and to elucidate the actions of organostanic compounds in whole-body context.
Insights
Dibutyltins act as partial agonists for PPARγ and RXRα receptors, promoting adipogenesis and reducing inflammation in cell models. Further research is needed to understand their in vivo effects on metabolic health.
Area of Science:
- Endocrinology and Metabolism
- Environmental Toxicology
- Molecular Biology
Background:
- Organotins are tin compounds with diverse biological activities.
- Tributyltin chloride, a well-studied organotin, is an endocrine disruptor that affects adipogenesis via PPARγ/RXRα.
- Limited research exists on the effects of other organotins, such as dibutyltins, on nuclear receptor activity and cellular processes.
Purpose of the Study:
- To investigate the effects of four dibutyltin compounds (diacetate, dichloride, dilaurate, maleate) on PPARγ and RXRα transcriptional activity.
- To determine the impact of these dibutyltins on adipogenesis and inflammation in mammalian cell models.
- To elucidate the mechanisms underlying dibutyltin-induced cellular responses, particularly concerning nuclear receptor activation.
Main Methods:
- Reporter gene assays in HeLa cells to assess PPARγ and RXRα agonistic activity.
- 3T3-L1 preadipocyte differentiation assays to evaluate adipogenesis, including analysis of adipogenic marker gene expression (Fabp4, Adipoq, Glut4).
- Experiments using a PPARγ antagonist (T0070907) to confirm the role of PPARγ in dibutyltin-induced adipogenesis.
- Analysis of inflammatory gene expression in 3T3-L1 cells and lipopolysaccharide (LPS)-stimulated RAW 264.7 macrophages to assess anti-inflammatory effects.
Main Results:
- Dibutyltins (diacetate, dichloride, dilaurate, maleate) demonstrated partial agonistic activity on PPARγ.
- Dibutyltin dichloride and dilaurate exhibited partial agonistic effects on RXRα, unlike tributyltin chloride.
- All tested dibutyltins induced adipogenesis in 3T3-L1 cells, a process dependent on PPARγ activation.
- Dibutyltins dichloride, dilaurate, and maleate inhibited the expression of key pro-inflammatory genes in 3T3-L1 cells.
- Tributyltin chloride and dibutyltin dilaurate reduced TNFα expression in LPS-stimulated macrophages.
Conclusions:
- Dibutyltins function as partial agonists for PPARγ and, in some cases, RXRα, influencing adipogenesis and inflammation.
- The adipogenic effects of dibutyltins are mediated through PPARγ activation.
- Dibutyltins exhibit anti-inflammatory properties in both preadipocytes and macrophages.
- While in vitro studies show significant effects, the in vivo implications of dibutyltins on inflammation and insulin resistance require further investigation.
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