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April 18, 2026Cancers0 citationsOpen Access

TIMP1 and DPP4 Promote Tumor Progression by Regulating Lactate Metabolism in Papillary Thyroid Carcinoma

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SMShiji MuXJXue JinFXFada Xia

Key Points

  • This research investigates how TIMP1 and DPP4 influence lactate metabolism in papillary thyroid carcinoma (PTC).
  • Selected key genes related to lactate metabolism via bioinformatics analysis.
  • Conducted qRT-PCR to assess gene expression in PTC and normal cells.
  • Used siRNA to inhibit TIMP1 and DPP4 and evaluate effects on cell invasion and proliferation.
  • Analyzed lactate production and LDHA levels in PTC cells.
  • TIMP1 and DPP4 levels were significantly higher in PTC cells compared to normal cells.
  • Inhibiting TIMP1 and DPP4 reduced PTC cell invasion and proliferation.
  • Lactic acid and LDHA levels were elevated in PTC compared to normal thyroid cells.
  • Knocking down TIMP1 and DPP4 decreased lactate production in PTC cells.

Abstract

Objectives: The mechanism of action of genes related to lactate metabolism in papillary thyroid carcinoma (PTC) is still unclear. In this study, key genes that play a role in PTC were selected from the known genes related to lactate metabolism, and their roles in promoting lactate metabolism in PTC cells were investigated. Methods: Through bioinformatics analysis and cell experiments, the roles of the relevant genes in lactate metabolism and their roles in the occurrence and development of PTC were verified. Results: Through bioinformatics analysis, 12 candidate genes were obtained. Through qRT-PCR experiments, it was confirmed that the expressions of TIMP1 and DPP4 were higher in thyroid papillary carcinoma than in normal PTC cells. By inhibiting the expression of TIMP1 and DPP4 using siRNA, the invasion and proliferation abilities of PTC could be reduced. Compared with normal thyroid cells, the contents of lactic acid and LDHA in PTC cells were higher. Knocking down the expression of TIMP1 and DPP4 would reduce the lactate production ability of PTC cells, and TIMP1 and DPP4 promoted the accumulation of lactate in PTC cells.Conclusions: In this study, by screening the differentially expressed lactate metabolism genes in PTC, different prognostic subtypes were constructed based on the molecular expression patterns. Multi-group student’s t-tests were conducted on the differential signaling pathways and tumor immune regulation of the prognostic subtypes, and a PTC prognosis prediction model was constructed. It was further confirmed that the lactate metabolism genes TIMP1 and DPP4 are highly expressed in PTC and can regulate the proliferation, invasion, metastasis and lactate metabolism of PTC cells.

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Cite This Study

Mu et al. (2026) studied this question.

synapsesocial.com/papers/69e31f9e40886becb653ed16https://doi.org/10.3390/cancers18081264
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1DPP4 Promotes Papillary Thyroid Cancer Progression by Regulating the Infiltration and Exhaustion of CD8+ T cells2024
  2. 2Lactic acid promotes metastasis of papillary thyroid carcinoma by enhancing CPT1A lactylation2026
  3. 3Integrated Cytokine, Metabolic, and Proliferative Profiling Reveals Divergent Metabolic and Proliferative Responses in Papillary Thyroid Cancer Cells2026
  4. 4Integrated bioinformatics and molecular docking identify novel key genes, pathways, and potential candidate drugs in papillary thyroid carcinoma2026
  5. 5Hypoxia upregulate TPM4 expression to strengthen epithelial-mesenchymal transition that promotes lymph node metastasis of papillary thyroid cancer2025