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April 20, 2022Nutrition and Diabetes69 citationsOpen Access

Obesity-induced elevated palmitic acid promotes inflammation and glucose metabolism disorders through GPRs/NF-κB/KLF7 pathway

TQTongtong QiuXYXin YangJWJingzhou Wang

Key Result

Obesity-induced elevated palmitic acid promotes inflammation and glucose metabolism disorders through the GPRs/NF-κB/KLF7 signaling pathway.

Structured PICO

P
Population
Preclinical study using male C57BL/6 mice and cell lines to investigate the mechanism of palmitic acid-induced inflammation and glucose metabolism disorders.
I
Intervention
GPR40 or GPR120 blockers, or pharmacological inhibition of p-p65
C
Comparator
Control/vehicle (implied)
O
Outcome
KLF7 expression, inflammatory cytokines, and glucose metabolism (glucose consumption, tolerance, insulin sensitivity)surrogate

Obesity-induced elevated palmitic acid promotes inflammation and glucose metabolism disorders via the GPRs/NF-κB/KLF7 pathway, which can be attenuated by blocking GPR40/120 or p-p65.

Main Result

p-value: p=<0.05

Limitations

  • No power analysis was performed to determine the sample size
  • The blind rule was not used in this study

Abstract

OBJECTIVE: Our previous results have shown that obesity-induced excessive palmitic acid (PA) can promote the expression of KLF7, which plays a vital role in regulation of inflammation, glucose metabolism. But the exact mechanism of PA up-regulating the expression of KLF7 is not clear yet. This study is intend to explore whether PA promoting KLF7 expression through GPRs/NF-κB signaling pathway, causing inflammation and glucose metabolism disorders. METHODS: Cells were blocked GPRs/NF-κB under PA stimulation in vitro to demonstrate the molecular mechanism of PA up-regulates KLF7 expression. The regulatory effect of p65 on KLF7 was detected by luciferase reporter gene assay. Blocking GPRs/NF-κB in diet-induced obesity mice to detect the expression of KLF7, inflammatory cytokines and glucose metabolism related factors, clarifying the effects of GPRs/NF-κB on KLF7 in vivo. RESULTS: In 3T3-L1 adipocytes and HepG2 cells, PA could up-regulate the expression of KLF7 by promoting the GPR40/120-NF-κB signaling pathway, leading to inflammation and reduced glucose consumption (p < 0.05 for both). Luciferase reporter gene assay and ChIP assay showed that p65 could transcriptionally up-regulates the expression of KLF7. In high-fat diet (HFD) mice, after intraperitoneal injection of GPR40 or GPR120 blocker, the levels of p-p65 and KLF7 in epididymal white adipose tissue and liver were significantly decreased (p < 0.05 for both). Pharmacological inhibition of p-p65 significantly attenuated KLF7 expression and improved glucose tolerant and insulin sensitive (p < 0.05 for both). CONCLUSIONS: Our results indicate that obesity-induced elevated palmitic acid promotes inflammation and glucose metabolism disorders through GPRs/NF-κB/KLF7 signaling pathway.

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Cite This Study

Qiu et al. (2022) studied Obesity-induced inflammation and glucose metabolism disorders. GPR40/120 and NF-κB blockers (GW1100, AH7614, Bay 11-7082) vs. High-fat diet (DMSO control) was evaluated on Expression of KLF7, inflammatory cytokines, and glucose metabolism (p=<0.05). Obesity-induced elevated palmitic acid promotes inflammation and glucose metabolism disorders through the GPRs/NF-κB/KLF7 signaling pathway.

synapsesocial.com/papers/6aa0d5537664acf805f7a377https://doi.org/10.1038/s41387-022-00202-6
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