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Lysosomes, cholesterol and atherosclerosis

Pages 853-865 | Published online: 18 Jan 2017

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Youshi Meng, Chunli Zhang, Lucong Liang, Lei Wei, Hao Wang, Fengkun Zhou, Rongjie Li, Donghua Zou, Xiaohua Huang & Jie Liu. (2021) Identification of Potential Key Genes Involved in the Carotid Atherosclerosis. Clinical Interventions in Aging 16, pages 1071-1084.
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Yong-Xin Ru, Hong-Cai Shang, Shu-Xu Dong, Shi-Xuan Zhao, Hao-Yue Liang & Chao-Jun Zhu. (2020) Foam cell origination from degenerated vascular smooth muscle cells in atherosclerosis: An ultrastructural study on hyperlipidemic rabbits. Ultrastructural Pathology 44:1, pages 103-115.
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Articles from other publishers (29)

Eun Pyo Hong, Dong Hyuk Youn, Bong Jun Kim, Jun Hyong Ahn, Jeong Jin Park, Jong Kook Rhim, Heung Cheol Kim, Gyojun Hwang, Hong Jun Jeon & Jin Pyeong Jeon. (2022) Fine-mapping of intracranial aneurysm susceptibility based on a genome-wide association study. Scientific Reports 12:1.
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Yi-Chou Chiu, Pei-Wen Chu, Hua-Ching Lin & Shau-Kwaun Chen. (2021) Accumulation of cholesterol suppresses oxidative phosphorylation and altered responses to inflammatory stimuli of macrophages. Biochemistry and Biophysics Reports 28, pages 101166.
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Peter McGranaghan, Jennifer A. Kirwan, Mariel A. Garcia-Rivera, Burkert Pieske, Frank Edelmann, Florian Blaschke, Sandeep Appunni, Anshul Saxena, Muni Rubens, Emir Veledar & Tobias Daniel Trippel. (2021) Lipid Metabolite Biomarkers in Cardiovascular Disease: Discovery and Biomechanism Translation from Human Studies. Metabolites 11:9, pages 621.
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Jun Li, Qinghai Meng, Yu Fu, Xichao Yu, Tingting Ji, Ying Chao, Qi Chen, Yu Li & Huimin Bian. (2021) Novel insights: Dynamic foam cells derived from the macrophage in atherosclerosis. Journal of Cellular Physiology 236:9, pages 6154-6167.
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Purvi C. Trivedi, Jordan J. Bartlett & Thomas Pulinilkunnil. (2020) Lysosomal Biology and Function: Modern View of Cellular Debris Bin. Cells 9:5, pages 1131.
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Lingling Ding, Yvonne Oligschlaeger, Ronit Shiri-Sverdlov & Tom Houben. 2022. Prevention and Treatment of Atherosclerosis. Prevention and Treatment of Atherosclerosis 233 269 .
Ligong Chen, Xiao-Wei Chen, Xun Huang, Bao-Liang Song, Yan Wang & Yiguo Wang. (2019) Regulation of glucose and lipid metabolism in health and disease. Science China Life Sciences 62:11, pages 1420-1458.
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Ying Jin & Jian Fu. (2019) Novel Insights Into the NLRP3 Inflammasome in Atherosclerosis. Journal of the American Heart Association 8:12.
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Feroz Ahmad & David S. Leake. (2019) Lysosomal oxidation of LDL alters lysosomal pH, induces senescence, and increases secretion of pro-inflammatory cytokines in human macrophages. Journal of Lipid Research 60:1, pages 98-110.
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Oluwatosin O. Ojo & David S. Leake. (2018) Low density lipoprotein oxidation by ferritin at lysosomal pH. Chemistry and Physics of Lipids 217, pages 51-57.
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Kyoung Joo Cho & Gyung Whan Kim. 2018. Atherosclerosis - Yesterday, Today and Tomorrow. Atherosclerosis - Yesterday, Today and Tomorrow.
Alanna Sedgwick, M. Olivia Balmert & Crislyn D’Souza-Schorey. (2018) The formation of giant plasma membrane vesicles enable new insights into the regulation of cholesterol efflux. Experimental Cell Research 365:2, pages 194-207.
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Javad Sargolzaei, Elham Chamani, Tooba Kazemi, Soudabeh Fallah & Hosna Soori. (2018) The role of adiponectin and adipolin as anti-inflammatory adipokines in the formation of macrophage foam cells and their association with cardiovascular diseases. Clinical Biochemistry 54, pages 1-10.
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Yujun Cai, Xue-Lin Wang, Alyssa M. Flores, Tonghui Lin & Raul J. Guzman. (2018) Inhibition of endo-lysosomal function exacerbates vascular calcification. Scientific Reports 8:1.
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Menizibeya Osain WelcomeMenizibeya Osain Welcome. 2018. Gastrointestinal Physiology. Gastrointestinal Physiology 107 199 .
Prakrit V. Jena, Daniel Roxbury, Thomas V. Galassi, Leila Akkari, Christopher P. Horoszko, David B. Iaea, Januka Budhathoki-Uprety, Nina Pipalia, Abigail S. Haka, Jackson D. Harvey, Jeetain Mittal, Frederick R. Maxfield, Johanna A. Joyce & Daniel A. Heller. (2017) A Carbon Nanotube Optical Reporter Maps Endolysosomal Lipid Flux. ACS Nano 11:11, pages 10689-10703.
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Alan Daugherty, Alan R. Tall, Mat J.A.P. Daemen, Erling Falk, Edward A. Fisher, Guillermo García-Cardeña, Aldons J. Lusis, A. Phillip OwensIIIIII, Michael E. Rosenfeld & Renu Virmani. (2017) Recommendation on Design, Execution, and Reporting of Animal Atherosclerosis Studies: A Scientific Statement From the American Heart Association. Circulation Research 121:6.
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Alan Daugherty, Alan R. Tall, Mat J.A.P. Daemen, Erling Falk, Edward A. Fisher, Guillermo García-Cardeña, Aldons J. Lusis, A. Phillip OwensIIIIII, Michael E. Rosenfeld & Renu Virmani. (2017) Recommendation on Design, Execution, and Reporting of Animal Atherosclerosis Studies: A Scientific Statement From the American Heart Association. Arteriosclerosis, Thrombosis, and Vascular Biology 37:9.
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Neuza Domingues, Luís M.B.B. Estronca, João Silva, Marisa R. Encarnação, Rita Mateus, Diogo Silva, Inês B. Santarino, Margarida Saraiva, Maria I.L. Soares, Teresa M.V.D. Pinho e Melo, António Jacinto, Winchil L.C. Vaz & Otília V. Vieira. (2017) Cholesteryl hemiesters alter lysosome structure and function and induce proinflammatory cytokine production in macrophages. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1862:2, pages 210-220.
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Xiaoyang Xu, Xinxu Yuan, Ningjun Li, William L. Dewey, Pin‐Lan Li & Fan Zhang. (2016) Lysosomal cholesterol accumulation in macrophages leading to coronary atherosclerosis in CD 38 −/− mice . Journal of Cellular and Molecular Medicine 20:6, pages 1001-1013.
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Kumiko Torisu, Krishna K. Singh, Takehiro Torisu, Fina Lovren, Jie Liu, Yi Pan, Adrian Quan, Azza Ramadan, Mohammed Al‐Omran, Natalie Pankova, Shelley R. Boyd, Subodh Verma & Toren Finkel. (2015) Intact endothelial autophagy is required to maintain vascular lipid homeostasis. Aging Cell 15:1, pages 187-191.
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Ismail SerginSomashubhra BhattacharyaRoy EmanuelEmel EsenCarl J. StokesTrent D. EvansBatool ArifJohn A. CurciBabak Razani. (2016) Inclusion bodies enriched for p62 and polyubiquitinated proteins in macrophages protect against atherosclerosis. Science Signaling 9:409.
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Ismail Sergin, Trent D. Evans & Babak Razani. (2015) Degradation and beyond. Current Opinion in Lipidology 26:5, pages 394-404.
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MIHO SUZUKI, AKARI MINAMI, ATSUKO NAKANISHI, KEIKO KOBAYASHI, SATORU MATSUDA, YASUNORI OGURA & YASUKO KITAGISHI. (2014) Atherosclerosis and tumor suppressor molecules (Review). International Journal of Molecular Medicine 34:4, pages 934-940.
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Ravi Birla. 2014. Introduction to Tissue Engineering. Introduction to Tissue Engineering 40 83 .
Ismail Sergin & Babak Razani. (2014) Self-eating in the plaque: what macrophage autophagy reveals about atherosclerosis. Trends in Endocrinology & Metabolism 25:5, pages 225-234.
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Tim van Zutphen, Virginia Todde, Rinse de Boer, Martin Kreim, Harald F. Hofbauer, Heimo Wolinski, Marten Veenhuis, Ida J. van der Klei & Sepp D. Kohlwein. (2014) Lipid droplet autophagy in the yeast Saccharomyces cerevisiae . Molecular Biology of the Cell 25:2, pages 290-301.
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Yuri V. Bobryshev, Tatyana A. Shchelkunova, Ivan A. Morozov, Petr M. Rubtsov, Igor A. Sobenin, Alexander N. Orekhov & Alexander N. Smirnov. (2013) Changes of lysosomes in the earliest stages of the development of atherosclerosis. Journal of Cellular and Molecular Medicine 17:5, pages 626-635.
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Jean-Pierre Baudoin, W. Gray Jerome, Christian Kübel & Niels de Jonge. (2013) Whole-Cell Analysis of Low-Density Lipoprotein Uptake by Macrophages Using STEM Tomography. PLoS ONE 8:1, pages e55022.
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