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Updated: Aug 23, 2025

Generation of a Mouse Spontaneous Autoimmune Thyroiditis Model
Published on: March 17, 2023
TSH-SPP1/TRβ-TSH positive feedback loop mediates fat deposition of hepatocyte: Crosstalk between thyroid and liver
Bin Huang1, Wenjie Wen1,2, Shandong Ye1
1Department of Endocrinology, The First Affiliated Hospital of University of Science and Technology of China (USTC), Division of Life Science and Medicine, University of Science and Technology of China, Hefei, China.
Aims:
We conducted this study with two aims: (1) whether TRβ could be damaged by NAFLD, thereby represent thyroid hormone resistance-like manifestation and (2) to analyze the potential role of SPP1 in TH signaling pathway on the process of NAFLD. This study is expected to provide a new perspective on the therapeutic mechanism in the pathological course of NAFLD.
Methods:
A total of 166 patients diagnosed with type 2 diabetes mellitus (T2DM) were enrolled in this study. All patients had a BMI above 24 kg/m2 and were stratified into two groups: NAFLD and Non-NAFLD groups. Ages, gender, BMI, duration of diabetes and biochemical markers were obtained from participants' records. We downloaded the dataset GSE48452 from GEO. The Pathview library was used to make the thyroid hormone signaling pathway visualization. The CIBERSORT algorithm was applied to calculate the infiltrated immune cells in obese NAFLD patients. C57BL/6 mice were randomly selected to constitute the normal control (NC) group and were fed a normal chow diet; the rest of the mice were fed a high-fat diet (HFD). After 12 weeks HFD feeding, the mice were sacrificed by cervical dislocation, and blood samples were collected. Mouse livers were also collected; one part of each liver was fixed in 10% formalin for histological analysis, and the other part was snap-frozen for subsequent molecular analyses. To explore the relationship between SPP1, TRβ and lipid deposition in hepatocytes, HepG2 cells were treated with 50 μ M concentration of PA and/or 20 ng/ml concentration of rh-SPP1 for 48h. In addition, the PC3.1-TRβ plasmid was constructed for further validation in HepG2 cells. We used THP-1 cells to construct an M1 macrophage model in vitro. We then analyzed THP-1 cells treated with various concentrations of PA or TSH.
Results:
(1) After adjusting for all factors that appeared P value less than 0.1 in the univariate analysis, BMI, TSH, and FT3 were significant independent risk factors of NAFLD (ORs were 1.218, 1.694, and 2.259, respectively); (2) A further analysis with BMI stratification indiacted that both FT3 and TSH had a significant change between individuals with NAFLD and Non-NAFLD in obesity subgroup; however, there was no statistic difference in over-weight group; (3) Bioinformatics analysis of GSE48452 had shown that several key molecular (including TRβ) of thyroid hormone pathway affected by NAFLD induced transcriptomic changes and the expression levels of SPP1, FABP4 and RPS4Y1 were significantly higher, while the expression levels of PZP and VIL1 were significantly decreased in NAFLD patients(adjusted p < 0.05, |logFC| > 1.0). The CIBERSORT algorithm showed increased M0 and M1, decreased M2 macrophage infiltration in NAFLD with comparison to healthy obese group; (4) After 12 weeks of HFD-feeding, the obesity mice had significantly higher serum TSH and In IHC-stained liver sections of obesity group, the intensity of SPP1 had a significantly increased, while TRβ reduced; (5) In vitro studies have shown SPP1 aggravated lipid deposition in hepatic cells dependent on down-regulating the expression of TRβ and TSH acts to promote secretion of SPP1 in M1 macrophage cells.
Conclusions:
SPP1 secretion induced by M1 macrophage polarization, which may down-regulates TRβ in hepatocytes via paracrine manner, on the one hand, the lipid deposition aggravating in liver, on the other hand, a compensatory increase of TSH in serum. The increased TSH can further lead to the following SPP1 secretion of M1 macrophage. The positive feedback crosstalk between thyroid and liver, may be plays an important role in maintaining and amplifying pathological process of NAFLD.
Insights
Thyroid hormone resistance-like manifestation in non-alcoholic fatty liver disease (NAFLD) involves SPP1, which is secreted by M1 macrophages and down-regulates TRβ, worsening liver lipid deposition.
Area of Science:
- Endocrinology
- Hepatology
- Immunology
Background:
- Non-alcoholic fatty liver disease (NAFLD) is a growing health concern, often associated with metabolic dysfunction.
- Thyroid hormones play a crucial role in regulating metabolism, and their signaling pathway may be implicated in NAFLD pathogenesis.
Purpose of the Study:
- To investigate if thyroid hormone receptor beta (TRβ) is affected in NAFLD, mimicking thyroid hormone resistance.
- To analyze the role of secreted phosphoprotein 1 (SPP1) in the thyroid hormone (TH) signaling pathway during NAFLD progression.
Main Methods:
- Analysis of patient data (T2DM, NAFLD vs. Non-NAFLD), including BMI, TSH, and FT3 levels.
- Bioinformatic analysis of transcriptomic data (GSE48452) and immune cell infiltration (CIBERSORT).
- In vivo studies using high-fat diet (HFD)-induced NAFLD mouse models and in vitro experiments with HepG2 and THP-1 cells.
Main Results:
- BMI, TSH, and FT3 were identified as independent risk factors for NAFLD, particularly in obese individuals.
- NAFLD patients showed altered expression of key thyroid hormone pathway molecules, including decreased TRβ and increased SPP1.
- SPP1 aggravated lipid deposition in hepatocytes by down-regulating TRβ, while TSH promoted SPP1 secretion from M1 macrophages.
Conclusions:
- M1 macrophage-derived SPP1 down-regulates hepatic TRβ, exacerbating liver lipid deposition in NAFLD.
- A positive feedback loop exists between thyroid hormones and liver pathology, involving SPP1 and TSH, which amplifies NAFLD progression.
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