6533b871fe1ef96bd12d268b

RESEARCH PRODUCT

Development of Abdominal Aortic Aneurysm Is Decreased in Mice with Plasma Phospholipid Transfer Protein Deficiency

Stéphanie Lemaire-ewingThomas GautierNaig Le GuernCatherine DesrumauxDavid MassonJérôme LabbéNicolas AbelloGuillaume MaquartAhmed HabboutBenjamin KretzKawtar RaghayEric SteinmetzLaurent LagrostValérie Deckert

subject

CD4-Positive T-LymphocytesMalemedicine.medical_specialty[SDV]Life Sciences [q-bio]Inflammation030204 cardiovascular system & hematologyBiologyPathology and Forensic MedicineMice03 medical and health sciencesAortic aneurysmApolipoproteins E0302 clinical medicinemedicine.arteryPhospholipid transfer proteinInternal medicinemedicineAnimalsPhospholipid Transfer ProteinsPancreatic elastaseAorta030304 developmental biologyInflammationMice Knockout0303 health sciencesAortaPancreatic ElastaseAngiotensin IIMacrophagesElastasemedicine.diseaseAngiotensin IIElastinMice Inbred C57BL[SDV] Life Sciences [q-bio]EndocrinologyLiverImmunologybiology.proteincardiovascular systemCytokinesmedicine.symptomElastinAortic Aneurysm Abdominal

description

International audience; Plasma phospholipid transfer protein (PLTP) increases the circulating levels of proatherogenic lipoproteins, accelerates blood coagulation, and modulates inflammation. The role of PLTP in the development of abdominal aortic aneurysm (AAA) was investigated by using either a combination of mechanical and elastase injury at one site of mouse aorta (elastase model) or continuous infusion of angiotensin II in hyperlipidemic ApoE-knockout mice (Ang II model). With the elastase model, complete PLTP deficiency was associated with a significantly lower incidence and a lesser degree of AAA expansion. With the Ang II model, findings were consistent with those in the elastase model, with a lower severity grade in PLTP-deficient mice, an intermediate phenotype in PLTP-deficient heterozygotes, and a blunted effect of the PLTP-deficient trait when restricted to bone marrow-derived immune cells. The protective effect of whole-body PLTP deficiency in AAA was illustrated further by a lesser degree of adventitia expansion, reduced elastin degradation, fewer recruited macrophages, and less smooth muscle cell depletion in PLTP-deficient than in wild-type mice, as evident from comparative microscopic analysis of aorta sections. Finally, cumulative evidence supports the association of PLTP deficiency with reduced expression and activity levels of matrix metalloproteinases, known to degrade elastin and collagen. We conclude that PLTP can play a significant role in the pathophysiology of AAA.

10.1016/j.ajpath.2013.05.018https://www.hal.inserm.fr/inserm-02462900