Key result
PVAT-derived adiponectin suppresses carotid atherosclerosis by promoting macrophage autophagy.
Why the study?
Adiponectin secreted from perivascular adipose tissue is an important anti-inflammatory adipokine that inhibits atherosclerosis development, but its underlying mechanism is unclear.
p-value: p=<0.05
Hypothesis-generating in animal models; does not support clinical adoption of adiponectin modulation for atherosclerosis.
OBJECTIVES: Adiponectin (APN) secreted from perivascular adipose tissue (PVAT) is one of the important anti-inflammatory adipokines to inhibit the development of atherosclerosis, but the underlying mechanism has not been clarified. In this study, we aimed to elucidate how APN regulates plaque formation in atherosclerosis. METHODS AND RESULTS: To assess the role of APN secreted by PVAT in atherosclerosis progression, we performed PVAT transplantation experiments on carotid artery atherosclerosis model: ApoE knockout (ApoE-/-) mice with a perivascular collar placement around the left carotid artery in combination with a high-fat diet feeding. Our results show that the ApoE-/- mice with PVAT derived from APN knockout (APN-/-) mice exhibited accelerated plaque volume formation compared to ApoE-/- mice transplanted with wild-type littermate tissue. Conversely, autophagy in macrophages was significantly attenuated in ApoE-/- mice transplanted with APN-/- mouse-derived PVAT compared to controls. Furthermore, in vitro studies indicate that APN treatment increased autophagy in primary macrophages, as evidenced by increased LC3-I processing and Beclin1 expression, which was accompanied by down-regulation of p62. Moreover, our results demonstrate that APN promotes macrophage autophagy via suppressing the Akt/FOXO3a signaling pathway. CONCLUSIONS: Our results indicate that PVAT-secreted APN suppresses plaque formation by inducing macrophage autophagy.
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Li et al. (2015) studied Atherosclerosis. PVAT-derived Adiponectin (APN) vs. Wild-type PVAT was evaluated on Intimal surface area and plaque volume formation (p=<0.05). PVAT-derived adiponectin suppresses collar-induced carotid atherosclerosis and plaque formation by promoting macrophage autophagy via deactivation of the Akt/FOXO3a signaling pathway.
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