Key result
Absence of PCSK9 improved collecting lymphatic vessel function, and treatment with a selective VEGFR-3 agonist rescued early atherosclerosis-related lymphatic transport impairment in mice.
Why the study?
Does LDLR modulation via PCSK9 knockout or VEGFR-3 agonism improve lymphatic function in atherosclerosis mouse models?
Does LDLR modulation via PCSK9 knockout or VEGFR-3 agonism improve lymphatic function in atherosclerosis mouse models?
LDLR modulation via PCSK9 knockout or VEGFR-3 agonism improves lymphatic function, unveiling a pleiotropic role for PCSK9 and potential new therapeutic targets for atherosclerosis.
Findings in atherosclerotic mice suggest lymphatic benefits from PCSK9 absence or VEGFR-3 agonism; hypothesis-generating and should not yet change practice.
Atherosclerosis is driven by the accumulation of immune cells and cholesterol in the arterial wall. Although recent studies have shown that lymphatic vessels play an important role in macrophage reverse cholesterol transport, the specific underlying mechanisms of this physiological feature remain unknown. In the current report, we sought to better characterize the lymphatic dysfunction that is associated with atherosclerosis by studying the physiological and temporal origins of this impairment. First, we assessed that athero-protected Pcsk9(-/-) mice exhibited improved collecting lymphatic vessel function throughout age when compared to WT mice for up to six months, while displaying enhanced expression of LDLR on lymphatic endothelial cells. Lymphatic dysfunction was present before the atherosclerotic lesion formation in a mouse model that is predisposed to develop atherosclerosis (Ldlr(-/-); hApoB100(+/+)). This dysfunction was presumably associated with a defect in the collecting lymphatic vessels in a non-specific cholesterol- but LDLR-dependent manner. Treatment with a selective VEGFR-3 agonist rescued this impairment observed early in the onset of this arterial disease. We suggest that LDLR modulation is associated with early atherosclerosis-related lymphatic dysfunction, and bring forth a pleiotropic role for PCSK9 in lymphatic function. Our study unveils new potential therapeutic targets for the prevention and treatment of atherosclerosis.
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Milasan et al. (2016) studied Atherosclerosis. PCSK9 knockout and VEGFR-3 agonist (VEGF-C 152s) vs. Wild-type mice and PBS control was evaluated on Lymphatic vessel function (dendritic cell migration and Evans blue dye transport). Absence of PCSK9 improved collecting lymphatic vessel function, and treatment with a selective VEGFR-3 agonist rescued early atherosclerosis-related lymphatic transport impairment in mice.
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