Gestational cholestyramine treatment protects adult offspring of ApoE-deficient mice against maternal-hypercholesterolemia-induced atherosclerosis

被引:0
作者
Habib, Marina [1 ]
Croyal, Mikael [2 ,3 ,4 ]
Kaeffer, Bertrand [1 ]
Grit, Isabelle [1 ]
Castellano, Blandine [1 ]
Gourdel, Mathilde [3 ]
Le May, Cedric [4 ]
Thorin, Chantal [5 ]
Nazih, Hassan [6 ]
Ouguerram, Khadija [1 ,7 ]
机构
[1] Nantes Univ, INRAE, UMR1280, Pathophysiol Nutr Adaptat, Nantes, France
[2] CRNH Ouest, Mass Spectrometry Core Facil, Nantes, France
[3] Nantes Univ, Inst Thorax, CNRS, INSERM, Nantes, France
[4] Nantes Univ, CNRS, Inserm, UMS 3556,UMS 016, Nantes, France
[5] Ecole Natl Vet Agroalimentaire & Alimentat, PAnTher, UMR0703, Nantes, France
[6] Nantes Univ, UR2160, ISOMer, Nantes, France
[7] Nantes Univ, CHU Hotel Dieu, UMR 1280, PHAN, Pl Alexis Ricordeau, F-44093 Nantes, France
关键词
atherosclerosis; cholestyramine; hypercholesterolemia; perinatal; TRIMETHYLAMINE-N-OXIDE; BILE-ACID METABOLISM; ENDOTHELIAL DYSFUNCTION; PREGNANCY INFLUENCE; FETAL ORIGINS; CHOLESTEROL; SUSCEPTIBILITY; ATHEROGENESIS; PROGRESSION; RECEPTOR;
D O I
10.1111/apha.14133
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Aim: Perinatal hypercholesterolemia exacerbates the development of atherosclerotic plaques in adult offspring. Here, we aimed to study the effect of maternal treatment with cholestyramine, a lipid-lowering drug, on atherosclerosis development in adult offspring of hypercholesterolemic ApoE-deficient (ApoE(-/-)) mice. Methods: ApoE(-/-) mice were treated with 3% cholestyramine (CTY) during gestation (G). After weaning, offspring (CTY-G) were fed control diet until sacrificed at 25weeks of age. Atherosclerosis development in the aortic root of offspring was assessed after oil-red-o staining, along with some of predefined atherosclerosis regulators such as LDL and HDL by high-performance liquid chromatography (HPLC), and bile acids (BA) and trimethylamine N-oxide (TMAO) by liquid chromatography-mass spectrometry (LC-MS/MS). Results: In pregnant dams, cholestyramine treatment resulted in significantly lower plasma total- and LDL-cholesterol as well as gallbladder total BA levels. In offspring, both males and females born to treated dams displayed reduced atherosclerotic plaques areas along with less lipid deposition in the aortic root. No significant change in plasma total cholesterol or triglycerides was measured in offspring, but CTY-G males had increased HDL-cholesterol and decreased apolipoproteins B100 to A-I ratio. This latter group also showed reduced gallbladder total and specifically tauro-conjugated bile acid pools, whereas for CTY-G females, hydrophilic plasma tauro-conjugated BA pool was significantly higher. They also benefited from lower plasma TMAO. Conclusion: Prenatal cholestyramine treatment reduces atherosclerosis development in adult offspring of ApoE(-/-) mice along with modulating the plaques' composition as well as some related biomarkers such as HDL-C, bile acids and TMAO.
引用
收藏
页数:11
相关论文
共 46 条
  • [1] Intrauterine exposure to maternal atherosclerotic risk factors increases the susceptibility to atherosclerosis in adult life
    Alkemade, Fanneke E.
    Gittenberger-de Groot, Adriana C.
    Schiel, Anja E.
    VanMunsteren, J. Conny
    Hogers, Bianca
    van Vliet, Leontien S. J.
    Poelmann, Robert E.
    Havekes, Louis M.
    van Dijk, Ko Willems
    DeRuiter, Marco C.
    [J]. ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2007, 27 (10) : 2228 - 2235
  • [2] FETAL ORIGINS OF CORONARY HEART-DISEASE
    BARKER, DJP
    [J]. BRITISH MEDICAL JOURNAL, 1995, 311 (6998) : 171 - 174
  • [3] A high-throughput mass spectrometry-based assay for large-scale profiling of circulating human apolipoproteins[S]
    Blanchard, Valentin
    Garcon, Damien
    Jaunet, Catherine
    Chemello, Kevin
    Billon-Crossouard, Stephanie
    Aguesse, Audrey
    Garfa, Aya
    Famchon, Gilles
    Torres, Amada
    Le May, Cedric
    Pichelin, Matthieu
    Bigot-Corbel, Edith
    Lambert, Gilles
    Cariou, Bertrand
    Hadjadj, Samy
    Krempf, Michel
    Bach-Ngohou, Kalyane
    Croyal, Mikael
    [J]. JOURNAL OF LIPID RESEARCH, 2020, 61 (07) : 1128 - 1139
  • [4] Maternal and early life exposures and their potential to influence development of the microbiome
    Bolte, Erin E.
    Moorshead, David
    Aagaard, Kjersti M.
    [J]. GENOME MEDICINE, 2022, 14 (01)
  • [5] Chiang J.Y.L., 2020, Cardiol. Plus, V5, P159, DOI DOI 10.4103/2470-7511.305419
  • [6] Circulating bile acids concentration is predictive of coronary artery disease in human
    Chong Nguyen, Caroline
    Duboc, Denis
    Rainteau, Dominique
    Sokol, Harry
    Humbert, Lydie
    Seksik, Philippe
    Bellino, Adele
    Abdoul, Hendy
    Bouazza, Naim
    Treluyer, Jean-Marc
    Saadi, Malika
    Wahbi, Karim
    Soliman, Heithem
    Coffin, Benoit
    Bado, Andre
    Le Gall, Maude
    Varenne, Olivier
    Duboc, Henri
    [J]. SCIENTIFIC REPORTS, 2021, 11 (01)
  • [7] Torres DDC, 2012, INT J CLIN EXP MED, V5, P56
  • [8] CORRELATION BETWEEN FETAL AND MATERNAL SERUM BILE-ACID CONCENTRATIONS
    COLOMBO, C
    RODA, A
    RODA, E
    BUSCAGLIA, M
    DELLAGNOLA, CA
    FILIPPETTI, P
    RONCHI, M
    SERENI, F
    [J]. PEDIATRIC RESEARCH, 1985, 19 (02) : 227 - 231
  • [9] Perinatal Administration of C-Phycocyanin Protects Against Atherosclerosis in apoE-Deficient Mice by Modulating Cholesterol and Trimethylamine-N-Oxide Metabolisms
    Coue, Marine
    Croyal, Mikael
    Habib, Marina
    Castellano, Blandine
    Aguesse, Audrey
    Grit, Isabelle
    Gourdel, Mathilde
    Billard, Helene
    Lepine, Olivier
    Michel, Catherine
    Ouguerram, Khadija
    [J]. ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2021, 41 (12) : E512 - E523
  • [10] Plasma Trimethylamine N-Oxide and Risk of Cardiovascular Events in Patients With Type 2 Diabetes
    Croyal, Mikael
    Saulnier, Pierre-Jean
    Aguesse, Audrey
    Gand, Elise
    Ragot, Stephanie
    Roussel, Ronan
    Halimi, Jean-Michel
    Ducrocq, Gregory
    Cariou, Bertrand
    Montaigne, David
    Wargny, Matthieu
    Krempf, Michel
    Hadjadj, Samy
    [J]. JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2020, 105 (07) : 2371 - 2380