Javascript must be enabled to continue!
A Differential Pattern of Batokine Expression in Perivascular Adipose Tissue Depots From Mice
View through CrossRef
Depending on its anatomical placement, perivascular adipose tissue (PVAT) has been found to possess features more (e.g., aortic thoracic) or less (e.g., aortic abdominal) similar to brown/beige adipose tissue in mice, whereas PVAT surrounding the mesenteric arteries and the caudal part of abdominal aorta is similar to white fat. PVAT is thought to influence vascular function through the effects of adipose-secreted molecules on vessels. Brown adipose tissue was recently shown to play differential secretory role via secretion of the so-called batokines but the involvement of differential batokine production in PVAT brown/beige plasticity was unclear. The current study characterizes for the first time the expression of batokines at aortic thoracic PVAT (tPVAT) and aortic abdominal PVAT (aPVAT) in comparison with typical brown and white adipose depots, in basal and thermogenically activated conditions. We found that both PVAT depots increased their expression of genes encoding the batokines bone morphogenetic protein-8b (BMP8B), fibroblast growth factor-21 (FGF21), and kininogen-2 (KNG2) in response to cold, indicating that, under cold-induced thermogenic activation, both thoracic aorta and abdominal aorta would experience intense local exposure to these PVAT-secreted batokines. In contrast, the gene expression levels of growth/differentiation factor-15 and vascular endothelial growth factor-A were induced only in tPVAT. Under short-term high-fat diet-induced thermogenic activation, the thoracic aorta would be specifically exposed to a local increase in PVAT-originating BMP8B, FGF21, and KNG2. Our data support the notion that acquisition of a brown/beige phenotype in PVAT is associated with upregulation of batokines, mainly BMP8B, FGF21, and KNG2, that can differentially target the vascular system.
Title: A Differential Pattern of Batokine Expression in Perivascular Adipose Tissue Depots From Mice
Description:
Depending on its anatomical placement, perivascular adipose tissue (PVAT) has been found to possess features more (e.
g.
, aortic thoracic) or less (e.
g.
, aortic abdominal) similar to brown/beige adipose tissue in mice, whereas PVAT surrounding the mesenteric arteries and the caudal part of abdominal aorta is similar to white fat.
PVAT is thought to influence vascular function through the effects of adipose-secreted molecules on vessels.
Brown adipose tissue was recently shown to play differential secretory role via secretion of the so-called batokines but the involvement of differential batokine production in PVAT brown/beige plasticity was unclear.
The current study characterizes for the first time the expression of batokines at aortic thoracic PVAT (tPVAT) and aortic abdominal PVAT (aPVAT) in comparison with typical brown and white adipose depots, in basal and thermogenically activated conditions.
We found that both PVAT depots increased their expression of genes encoding the batokines bone morphogenetic protein-8b (BMP8B), fibroblast growth factor-21 (FGF21), and kininogen-2 (KNG2) in response to cold, indicating that, under cold-induced thermogenic activation, both thoracic aorta and abdominal aorta would experience intense local exposure to these PVAT-secreted batokines.
In contrast, the gene expression levels of growth/differentiation factor-15 and vascular endothelial growth factor-A were induced only in tPVAT.
Under short-term high-fat diet-induced thermogenic activation, the thoracic aorta would be specifically exposed to a local increase in PVAT-originating BMP8B, FGF21, and KNG2.
Our data support the notion that acquisition of a brown/beige phenotype in PVAT is associated with upregulation of batokines, mainly BMP8B, FGF21, and KNG2, that can differentially target the vascular system.
Related Results
Single-nucleus RNA sequencing reveals heterogeneity among multiple white adipose tissue depots
Single-nucleus RNA sequencing reveals heterogeneity among multiple white adipose tissue depots
Abstract
Regardless of its anatomical site, adipose tissue shares a common energy-storage role but exhibits distinctive properties. Exploring the cellular and molecu...
Supplementary Data from Targeted BiTE Expression by an Oncolytic Vector Augments Therapeutic Efficacy Against Solid Tumors
Supplementary Data from Targeted BiTE Expression by an Oncolytic Vector Augments Therapeutic Efficacy Against Solid Tumors
<p>Supplementary Methods, Supplementary Figures S1-S15 Fig. S1. Purification and binding specificity of MV-encoded BiTEs. (A) Purification of MV-expressed BiTEs. Vero cells w...
PDGFRα marks distinct perivascular populations with different osteogenic potential within adipose tissue
PDGFRα marks distinct perivascular populations with different osteogenic potential within adipose tissue
Abstract
The perivascular niche within adipose tissue is known to house multipotent cells, including osteoblast precursors. However, the identity of perivascular sub...
A Novel Clinical-Grade Cryopreservation Solution for Adipose Tissue Based on Metformin
A Novel Clinical-Grade Cryopreservation Solution for Adipose Tissue Based on Metformin
Abstract
Background
Autologous fat grafting often needs multiple sessions due to low volume retention. Young adipose tissue demonstrates a more pronounced therapeutic effe...
Association of Region‐Specific Cardiac Adiposity With Dysglycemia and New‐Onset Diabetes
Association of Region‐Specific Cardiac Adiposity With Dysglycemia and New‐Onset Diabetes
Background
Visceral adipose tissue is assumed to be an important indicator for insulin resistance and diabetes beyond overweight/obesity. We hypothesized that region‐sp...
Morphological features of the innervation of the rat adrenal gland adipose tissue
Morphological features of the innervation of the rat adrenal gland adipose tissue
BACKGROUND: The relevance of studying adipose tissue is due to a lack of understanding of the etiology and pathogenesis of obesity and a lack of research into the endocrine functio...
Role of adipose tissue in cardiovascular health and diseases
Role of adipose tissue in cardiovascular health and diseases
Abstract
Adipose tissue is a complex endocrine organ that critically regulates cardiovascular health and disease. Different adipose depots vary in location and ...
6-OR: PAR2 Downregulates Adipose LPL through MIF—A Novel Adipose Mechanism Contributing to the Development of Hypertriglyceridemia
6-OR: PAR2 Downregulates Adipose LPL through MIF—A Novel Adipose Mechanism Contributing to the Development of Hypertriglyceridemia
Lipoprotein lipase (LPL) is a key enzyme that hydrolyzes circulating triglycerides to release fatty acid (FA). In adipose tissue, LPL is required for lipid storage. However, it is ...

