» Articles » PMID: 22067319

Role of IGFBP-3 in the Regulation of β-cell Mass During Obesity: Adipose Tissue/β-cell Cross Talk

Overview
Journal Endocrinology
Specialty Endocrinology
Date 2011 Nov 10
PMID 22067319
Citations 11
Authors
Affiliations
Soon will be listed here.
Abstract

In obesity an increase in β-cell mass occurs to cope with the rise in insulin demand. This β-cell plasticity is essential to avoid the onset of hyperglycemia, although the molecular mechanisms that regulate this process remain unclear. This study analyzed the role of adipose tissue in the control of β-cell replication. Using a diet-induced model of obesity, we obtained conditioned media from three different white adipose tissue depots. Only in the adipose tissue depot surrounding the pancreas did the diet induce changes that led to an increase in INS1E cells and the islet replication rate. To identify the factors responsible for this proliferative effect, adipose tissue gene expression analysis was conducted by microarrays and quantitative RT-PCR. Of all the differentially expressed proteins, only the secreted ones were studied. IGF binding protein 3 (Igfbp3) was identified as the candidate for this effect. Furthermore, in the conditioned media, although the blockage of IGFBP3 led to an increase in the proliferation rate, the blockage of IGF-I receptor decreased it. Taken together, these data show that obesity induces specific changes in the expression profile of the adipose tissue depot surrounding the pancreas, leading to a decrease in IGFBP3 secretion. This decrease acts in a paracrine manner, stimulating the β-cell proliferation rate, probably through an IGF-I-dependent mechanism. This cross talk between the visceral-pancreatic adipose tissue and β-cells is a novel mechanism that participates in the control of β-cell plasticity.

Citing Articles

Cafeteria Diet-Induced Obesity Worsens Experimental CKD.

Laget J, Cortijo I, Boukhaled J, Muyor K, Duranton F, Jover B Nutrients. 2023; 15(15).

PMID: 37571269 PMC: 10421241. DOI: 10.3390/nu15153331.


Verapamil Prevents Decline of IGF-I in Subjects With Type 1 Diabetes and Promotes β-Cell IGF-I Signaling.

Xu G, Chen J, Lu B, Sethupathy P, Qian W, Shalev A Diabetes. 2023; 72(10):1460-1469.

PMID: 37494660 PMC: 10545554. DOI: 10.2337/db23-0256.


Keeping It Local in Metabolic Disease: Adipose Tissue Paracrine Signaling and Insulin Resistance.

Kahn D, Bergman B Diabetes. 2022; 71(4):599-609.

PMID: 35316835 PMC: 8965661. DOI: 10.2337/dbi21-0020.


The Roles of the IGF Axis in the Regulation of the Metabolism: Interaction and Difference between Insulin Receptor Signaling and IGF-I Receptor Signaling.

Okuyama T, Kyohara M, Terauchi Y, Shirakawa J Int J Mol Sci. 2021; 22(13).

PMID: 34202916 PMC: 8268872. DOI: 10.3390/ijms22136817.


Peripancreatic Adipose Tissue Remodeling and Inflammation during High Fat Intake of Palm Oils or Lard in Rats.

Laget J, Djohan Y, Jeanson L, Muyor K, Badia E, Cristol J Nutrients. 2021; 13(4).

PMID: 33808251 PMC: 8065769. DOI: 10.3390/nu13041134.