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Imbalance of APOB Lipoproteins and Large HDL in Type 1 Diabetes Drives Atherosclerosis
Kothari, Vishal; Ho, Tse W W; Cabodevilla, Ainara G; He, Yi; Kramer, Farah; Shimizu-Albergine, Masami; Kanter, Jenny E; Snell-Bergeon, Janet; Fisher, Edward A; Shao, Baohai; Heinecke, Jay W; Wobbrock, Jacob O; Lee, Warren L; Goldberg, Ira J; Vaisar, Tomas; Bornfeldt, Karin E
BACKGROUND/UNASSIGNED:Individuals with type 1 diabetes (T1D) generally have normal or even higher HDL (high-density lipoprotein)-cholesterol levels than people without diabetes yet are at increased risk for atherosclerotic cardiovascular disease (CVD). Human HDL is a complex mixture of particles that can vary in cholesterol content by >2-fold. To investigate if specific HDL subspecies contribute to the increased atherosclerosis associated with T1D, we created mouse models of T1D that exhibit human-like HDL subspecies. We also measured HDL subspecies and their association with incident CVD in a cohort of people with T1D. METHODS/UNASSIGNED: RESULTS/UNASSIGNED: CONCLUSIONS/UNASSIGNED:Our results suggest that the balance between APOB lipoproteins and the larger HDL subspecies contributes to atherosclerosis progression and incident CVD in the setting of T1D and that larger HDLs exert atheroprotective effects on endothelial cells rather than by promoting macrophage cholesterol efflux.
PMID: 38828596
ISSN: 1524-4571
CID: 5664892
Clonal Expansion in Cardiovascular Pathology
Lin, Alexander; Brittan, Mairi; Baker, Andrew H; Dimmeler, Stefanie; Fisher, Edward A; Sluimer, Judith C; Misra, Ashish
Clonal expansion refers to the proliferation and selection of advantageous "clones" that are better suited for survival in a Darwinian manner. In recent years, we have greatly enhanced our understanding of cell clonality in the cardiovascular context. However, our knowledge of the underlying mechanisms behind this clonal selection is still severely limited. There is a transpiring pattern of clonal expansion of smooth muscle cells and endothelial cells-and, in some cases, macrophages-in numerous cardiovascular diseases irrespective of their differing microenvironments. These findings indirectly suggest the possible existence of stem-like vascular cells which are primed to respond during disease. Subsequent clones may undergo further phenotypic changes to adopt either protective or detrimental roles. By investigating these clone-forming vascular cells, we may be able to harness this inherent clonal nature for future therapeutic intervention. This review comprehensively discusses what is currently known about clonal expansion across the cardiovascular field. Comparisons of the clonal nature of vascular cells in atherosclerosis (including clonal hematopoiesis of indeterminate potential), pulmonary hypertension, aneurysm, blood vessel injury, ischemia- and tumor-induced angiogenesis, and cerebral cavernous malformations are evaluated. Finally, we discuss the potential clinical implications of these findings and propose that proper understanding and specific targeting of these clonal cells may provide unique therapeutic options for the treatment of these cardiovascular conditions.
PMCID:10864919
PMID: 38362345
ISSN: 2452-302x
CID: 5635972
β-Carotene accelerates the resolution of atherosclerosis in mice
Pinos, Ivan; Coronel, Johana; Albakri, Asma'a; Blanco, Amparo; McQueen, Patrick; Molina, Donald; Sim, JaeYoung; Fisher, Edward A; Amengual, Jaume
β-Carotene oxygenase 1 (BCO1) catalyzes the cleavage of β-carotene to form vitamin A. Besides its role in vision, vitamin A regulates the expression of genes involved in lipid metabolism and immune cell differentiation. BCO1 activity is associated with the reduction of plasma cholesterol in humans and mice, while dietary β-carotene reduces hepatic lipid secretion and delays atherosclerosis progression in various experimental models. Here we show that β-carotene also accelerates atherosclerosis resolution in two independent murine models, independently of changes in body weight gain or plasma lipid profile. Experiments in Bco1-/-
PMID: 38319073
ISSN: 2050-084x
CID: 5632492
Resolving sepsis-induced immunoparalysis via trained immunity by targeting interleukin-4 to myeloid cells
Schrijver, David P; Röring, Rutger J; Deckers, Jeroen; de Dreu, Anne; Toner, Yohana C; Prevot, Geoffrey; Priem, Bram; Munitz, Jazz; Nugraha, Eveline G; van Elsas, Yuri; Azzun, Anthony; Anbergen, Tom; Groh, Laszlo A; Becker, Anouk M D; Pérez-Medina, Carlos; Oosterwijk, Roderick S; Novakovic, Boris; Moorlag, Simone J C F M; Jansen, Aron; Pickkers, Peter; Kox, Matthijs; Beldman, Thijs J; Kluza, Ewelina; van Leent, Mandy M T; Teunissen, Abraham J P; van der Meel, Roy; Fayad, Zahi A; Joosten, Leo A B; Fisher, Edward A; Merkx, Maarten; Netea, Mihai G; Mulder, Willem J M
Immunoparalysis is a compensatory and persistent anti-inflammatory response to trauma, sepsis or another serious insult, which increases the risk of opportunistic infections, morbidity and mortality. Here, we show that in cultured primary human monocytes, interleukin-4 (IL4) inhibits acute inflammation, while simultaneously inducing a long-lasting innate immune memory named trained immunity. To take advantage of this paradoxical IL4 feature in vivo, we developed a fusion protein of apolipoprotein A1 (apoA1) and IL4, which integrates into a lipid nanoparticle. In mice and non-human primates, an intravenously injected apoA1-IL4-embedding nanoparticle targets myeloid-cell-rich haematopoietic organs, in particular, the spleen and bone marrow. We subsequently demonstrate that IL4 nanotherapy resolved immunoparalysis in mice with lipopolysaccharide-induced hyperinflammation, as well as in ex vivo human sepsis models and in experimental endotoxemia. Our findings support the translational development of nanoparticle formulations of apoA1-IL4 for the treatment of patients with sepsis at risk of immunoparalysis-induced complications.
PMCID:10504080
PMID: 37291433
ISSN: 2157-846x
CID: 5735122
Abstract 441: Relationship Between Diabetes, Glucose Control, And Vascular Health: Findings From The American Heart Association Cardiometabolic Health Strategically Focused Research Network [Meeting Abstract]
Garshick, Michael; Barrett, Tessa A; Jindal, Manila; Newman, Jonathan D; Fadzan, Maja; Bredefeld, Cindy; Levy, Natalie; Akinlonu, Adedoyin; Heguy, Adriana; Drenkova, Schlamp, Florencia; Giannarelli, Chiara; Fisher, Edward A; Goldberg, Ira J; Berger, Jeffrey
ORIGINAL:0017100
ISSN: 1524-4636
CID: 5578852
Macrophage-to-endothelial cell crosstalk by the cholesterol metabolite 27HC promotes atherosclerosis in male mice
Yu, Liming; Xu, Lin; Chu, Haiyan; Peng, Jun; Sacharidou, Anastasia; Hsieh, Hsi-Hsien; Weinstock, Ada; Khan, Sohaib; Ma, Liqian; Durán, José Gabriel Barcia; McDonald, Jeffrey; Nelson, Erik R; Park, Sunghee; McDonnell, Donald P; Moore, Kathryn J; Huang, Lily Jun-Shen; Fisher, Edward A; Mineo, Chieko; Huang, Linzhang; Shaul, Philip W
Hypercholesterolemia and vascular inflammation are key interconnected contributors to the pathogenesis of atherosclerosis. How hypercholesterolemia initiates vascular inflammation is poorly understood. Here we show in male mice that hypercholesterolemia-driven endothelial activation, monocyte recruitment and atherosclerotic lesion formation are promoted by a crosstalk between macrophages and endothelial cells mediated by the cholesterol metabolite 27-hydroxycholesterol (27HC). The pro-atherogenic actions of macrophage-derived 27HC require endothelial estrogen receptor alpha (ERα) and disassociation of the cytoplasmic scaffolding protein septin 11 from ERα, leading to extranuclear ERα- and septin 11-dependent activation of NF-κB. Furthermore, pharmacologic inhibition of cyp27a1, which generates 27HC, affords atheroprotection by reducing endothelial activation and monocyte recruitment. These findings demonstrate cell-to-cell communication by 27HC, and identify a major causal linkage between the hypercholesterolemia and vascular inflammation that partner to promote atherosclerosis. Interventions interrupting this linkage may provide the means to blunt vascular inflammation without impairing host defense to combat the risk of atherosclerotic cardiovascular disease that remains despite lipid-lowering therapies.
PMCID:10368733
PMID: 37491347
ISSN: 2041-1723
CID: 5592122
β-carotene accelerates resolution of atherosclerosis by promoting regulatory T cell expansion in the atherosclerotic lesion
Pinos, Ivan; Coronel, Johana; Albakri, Asma"™A; Blanco, Amparo; McQueen, Patrick; Molina, Donald; Sim, Jaeyoung; Fisher, Edward A.; Amengual, Jaume
β-carotene oxygenase 1 (BCO1) catalyzes the cleavage of β-carotene to form vitamin A. Besides its role in vision, vitamin A regulates the expression of genes involved in lipid metabolism and immune cell differentiation. BCO1 activity is associated with the reduction of plasma cholesterol in humans and mice, while dietary β-carotene reduces hepatic lipid secretion and delays atherosclerosis progression in various experimental models. Here we show that β-carotene also accelerates atherosclerosis resolution in two independent murine models, independently of changes in body weight gain or plasma lipid profile. Experiments in Bco1-/- mice implicate vitamin A production in the effects of β-carotene on atherosclerosis resolution. To explore the direct implication of dietary β-carotene on regulatory T cells (Tregs) differentiation, we utilized anti-CD25 monoclonal antibody infusions. Our data show that β-carotene favors Treg expansion in the plaque, and that the partial inhibition of Tregs mitigates the effect of β-carotene on atherosclerosis resolution. Our data highlight the potential of β-carotene and BCO1 activity in the resolution of atherosclerotic cardiovascular disease.
SCOPUS:85165487128
ISSN: 2050-084x
CID: 5548742
Endothelial PHACTR1 Promotes Endothelial Activation and Atherosclerosis by Repressing PPARγ Activity Under Disturbed Flow in Mice
Jiang, Dongyang; Liu, Hao; Zhu, Guofu; Li, Xiankai; Fan, Linlin; Zhao, Faxue; Xu, Chong; Wang, Shumin; Rose, Yara; Rhen, Jordan; Yu, Ze; Yin, Yiheng; Gu, Yuling; Xu, Xiangbin; Fisher, Edward A; Ge, Junbo; Xu, Yawei; Pang, Jinjiang
BACKGROUND:(phosphatase and actin regulator 1) locus strongly correlate with coronary artery disease. However, the biological function of PHACTR1 remains poorly understood. Here, we identified the proatherosclerotic effect of endothelial PHACTR1, contrary to macrophage PHACTR1. METHODS: RESULTS:KO on EC activation and atherosclerosis in vivo. CONCLUSIONS:Our results identified endothelial PHACTR1 as a novel PPARγ corepressor to promote atherosclerosis in disturbed flow regions. Endothelial PHACTR1 is a potential therapeutic target for atherosclerosis treatment.
PMID: 37199156
ISSN: 1524-4636
CID: 5508052
DIAPH1 mediates progression of atherosclerosis and regulates hepatic lipid metabolism in mice
Senatus, Laura; Egaña-Gorroño, Lander; López-Díez, Raquel; Bergaya, Sonia; Aranda, Juan Francisco; Amengual, Jaume; Arivazhagan, Lakshmi; Manigrasso, Michaele B; Yepuri, Gautham; Nimma, Ramesh; Mangar, Kaamashri N; Bernadin, Rollanda; Zhou, Boyan; Gugger, Paul F; Li, Huilin; Friedman, Richard A; Theise, Neil D; Shekhtman, Alexander; Fisher, Edward A; Ramasamy, Ravichandran; Schmidt, Ann Marie
Atherosclerosis evolves through dysregulated lipid metabolism interwoven with exaggerated inflammation. Previous work implicating the receptor for advanced glycation end products (RAGE) in atherosclerosis prompted us to explore if Diaphanous 1 (DIAPH1), which binds to the RAGE cytoplasmic domain and is important for RAGE signaling, contributes to these processes. We intercrossed atherosclerosis-prone Ldlr-/- mice with mice devoid of Diaph1 and fed them Western diet for 16 weeks. Compared to male Ldlr-/- mice, male Ldlr-/- Diaph1-/- mice displayed significantly less atherosclerosis, in parallel with lower plasma concentrations of cholesterol and triglycerides. Female Ldlr-/- Diaph1-/- mice displayed significantly less atherosclerosis compared to Ldlr-/- mice and demonstrated lower plasma concentrations of cholesterol, but not plasma triglycerides. Deletion of Diaph1 attenuated expression of genes regulating hepatic lipid metabolism, Acaca, Acacb, Gpat2, Lpin1, Lpin2 and Fasn, without effect on mRNA expression of upstream transcription factors Srebf1, Srebf2 or Mxlipl in male mice. We traced DIAPH1-dependent mechanisms to nuclear translocation of SREBP1 in a manner independent of carbohydrate- or insulin-regulated cues but, at least in part, through the actin cytoskeleton. This work unveils new regulators of atherosclerosis and lipid metabolism through DIAPH1.
PMCID:10023694
PMID: 36932214
ISSN: 2399-3642
CID: 5449062
Bariatric surgery normalizes diabetes risk index by one month post-operation
Sinatra, Vincent J; Lin, BingXue; Parikh, Manish; Berger, Jeffrey S; Fisher, Edward A; Heffron, Sean P
AIM/OBJECTIVE:The Diabetes risk index (DRI) is a composite of NMR-measured lipoproteins and branched chain amino acids predictive of diabetes mellitus development. Bariatric surgery is indicated in patients with severe obesity, many of whom are at high-risk for developing diabetes. Substantial weight loss occurs following bariatric surgery and sustained weight loss likely contributes to reductions in the development of diabetes and cardiovascular disease. However, some evidence suggests that bariatric surgical procedures themselves may contribute to reducing risk of these conditions independent of weight loss. We aimed to investigate DRI and its association with reductions in body weight and adiposity over one year following bariatric surgery. METHODS:; n = 15). RESULTS:, but DRI decreased so that it no longer differed from that of normal BMI controls (1.9 [1, 17] vs control 12 [1, 20]; p = 0.35). Subjects continued to lose weight, whereas DRI remained similar, throughout follow-up with DRI 1.0 [1, 7] at 12 months. Changes in DRI did not correlate with changes in BMI, body weight or waist circumference at any time during follow-up. There was no difference in change in DRI between surgical procedures or pre-operative metabolic syndrome status. CONCLUSIONS:Our analysis of DRI scores supports the capacity of bariatric surgery to reduce risk of developing diabetes in severely obese individuals. Our findings suggest that bariatric surgical techniques may have inherent effects that improve cardiometabolic risk independent of reductions in body weight or adiposity.
PMID: 36350383
ISSN: 1432-5233
CID: 5357342