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February 12, 2016Scientific Reports128 citationsOpen Access

LPS causes pericyte loss and microvascular dysfunction via disruption of Sirt3/angiopoietins/Tie-2 and HIF-2α/Notch3 pathways

HZHeng ZengXHXiaochen HeQTQinhui Tuo

Structured PICO

P
Population
Mice exposed to lipopolysaccharide (LPS) to induce sepsis
I
Intervention
Sirt3 knockout, Sirt3 overexpression, or specific knockout of prolyl hydroxylase-2 (PHD2)
C
Comparator
Control mice exposed to LPS
O
Outcome
Pericyte/endothelial (EC) coverage, vascular permeability, and mortality ratesurrogate

SIRT3 plays a crucial role in preserving vascular integrity by targeting pericytes in LPS-induced sepsis, suggesting a potential therapeutic target for sepsis-associated microvascular dysfunction.

Abstract

Recent studies reveal a crucial role of pericyte loss in sepsis-associated microvascular dysfunction. Sirtuin 3 (SIRT3) mediates histone protein post-translational modification related to aging and ischemic disease. This study investigated the involvement of SIRT3 in LPS-induced pericyte loss and microvascular dysfunction. Mice were exposed to LPS, expression of Sirt3, HIF-2α, Notch3 and angiopoietins/Tie-2, pericyte/endothelial (EC) coverage and vascular permeability were assessed. Mice treated with LPS significantly reduced the expression of SIRT3, HIF-2α and Notch3 in the lung. Furthermore, exposure to LPS increased Ang-2 while inhibited Ang-1/Tie-2 expression with a reduced pericyte/EC coverage. Intriguingly, knockout of Sirt3 upregulated Ang-2, but downregulated Tie-2 and HIF-2α/Notch3 expression which resulted in a dramatic reduction of pericyte/EC coverage and exacerbation of LPS-induced vascular leakage. Conversely, overexpression of Sirt3 reduced Ang-2 expression and increased Ang-1/Tie-2 and HIF-2α/Notch3 expression in the LPS treated mice. Overexpression of Sirt3 further prevented LPS-induced pericyte loss and vascular leakage. This was accompanied by a significant reduction of the mortality rate. Specific knockout of prolyl hydroxylase-2 (PHD2) increased HIF-2α/Notch3 expression, improved pericyte/EC coverage and reduced the mortality rate in the LPS-treated mice. Our study demonstrates the importance of SIRT3 in preserving vascular integrity by targeting pericytes in the setting of LPS-induced sepsis.

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Cite This Study

Zeng et al. (2016) studied this question.

synapsesocial.com/papers/6a72dcf8d8e6791e25543bf5https://doi.org/10.1038/srep20931
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