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An Adipocyte Cell Culture Model to Study the Impact of Protein and Micro-RNA Modulation on Adipocyte Function
Published on: May 4, 2021
NLRP3 inflammasome blockade reduces adipose tissue inflammation and extracellular matrix remodeling
Xabier Unamuno1,2, Javier Gómez-Ambrosi1,2,3, Beatriz Ramírez1,2,3
1Metabolic Research Laboratory, Clínica Universidad de Navarra, Pamplona, Spain.
Abstract:
The NLRP3-IL-1β pathway plays an important role in adipose tissue (AT)-induced inflammation and the development of obesity-associated comorbidities. We aimed to determine the impact of NLRP3 on obesity and its associated metabolic alterations as well as its role in adipocyte inflammation and extracellular matrix (ECM) remodeling. Samples obtained from 98 subjects were used in a case-control study. The expression of different components of the inflammasome as well as their main effectors and inflammation- and ECM remodeling-related genes were analyzed. The impact of blocking NLRP3 using siRNA in lipopolysaccharide (LPS)-mediated inflammation and ECM remodeling signaling pathways was evaluated. We demonstrated that obesity (P < 0.01), obesity-associated T2D (P < 0.01) and NAFLD (P < 0.05) increased the expression of different components of the inflammasome as well as the expression and release of IL-1β and IL-18 in AT. We also found that obese patients with T2D exhibited increased (P < 0.05) hepatic gene expression levels of NLRP3, IL1B and IL18. We showed that NLRP3, but not NLRP1, is regulated by inflammation and hypoxia in visceral adipocytes. We revealed that the inhibition of NLRP3 in human visceral adipocytes significantly blocked (P < 0.01) LPS-induced inflammation by downregulating the mRNA levels of CCL2, IL1B, IL6, IL8, S100A8, S100A9, TLR4 and TNF as well as inhibiting (P < 0.01) the secretion of IL1-β into the culture medium. Furthermore, blocking NLRP3 attenuated (P < 0.01) the LPS-induced expression of important molecules involved in AT fibrosis (COL1A1, COL4A3, COL6A3 and MMP2). These novel findings provide evidence that blocking the expression of NLRP3 reduces AT inflammation with significant fibrosis attenuation.
Insights
The NLRP3 inflammasome drives obesity-associated inflammation and fibrosis in adipose tissue. Blocking NLRP3 reduces inflammation and extracellular matrix remodeling, offering a potential therapeutic target for metabolic diseases.
Area of Science:
- Metabolic disease research
- Inflammation and immunology
- Adipose tissue biology
Background:
- The NLRP3-IL-1β pathway is implicated in adipose tissue inflammation and obesity comorbidities.
- Obesity is linked to metabolic alterations, inflammation, and extracellular matrix (ECM) remodeling.
Purpose of the Study:
- To investigate the role of NLRP3 in obesity, metabolic alterations, adipocyte inflammation, and ECM remodeling.
- To evaluate the therapeutic potential of blocking NLRP3 in adipose tissue.
Main Methods:
- Case-control study analyzing inflammasome components, effectors, and inflammation/ECM genes in 98 subjects.
- In vitro study using siRNA to block NLRP3 in lipopolysaccharide (LPS)-stimulated human visceral adipocytes.
- Analysis of gene expression and cytokine secretion.
Main Results:
- Obesity, T2D, and NAFLD correlate with increased inflammasome components and IL-1β/IL-18 in adipose tissue.
- NLRP3 expression is upregulated in obese patients with T2D and regulated by inflammation/hypoxia in adipocytes.
- NLRP3 inhibition significantly reduced LPS-induced inflammation and attenuated ECM fibrosis markers in adipocytes.
Conclusions:
- NLRP3 activation contributes to adipose tissue inflammation and fibrosis in obesity.
- Blocking NLRP3 effectively reduces inflammation and mitigates fibrosis in adipose tissue.
- Targeting NLRP3 presents a promising strategy for managing obesity-associated metabolic disorders.

