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Slava Epelman

Showing results (61-70 of 81) with videos related to

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Immunity|March 1, 2025
A heart-brain-spleen axis controls cardiac remodeling to hypertensive stressSara Perrotta, Lorenzo Carnevale, Marialuisa Perrotta, et al.
Circulation Research|June 23, 2023
Loss of Macrophage mTORC2 Drives Atherosclerosis via FoxO1 and IL-1β SignalingXiangyu Zhang, Trent D Evans, Sunny Chen, et al.
Cell Stem Cell|June 22, 2024
Primitive macrophages enable long-term vascularization of human heart-on-a-chip platformsShira Landau, Yimu Zhao, Homaira Hamidzada, et al.
Nature Metabolism|March 5, 2020
High-protein diets increase cardiovascular risk by activating macrophage mTOR to suppress mitophagyXiangyu Zhang, Ismail Sergin, Trent D Evans, et al.
Nature Metabolism|September 10, 2020
Author Correction: High-protein diets increase cardiovascular risk by activating macrophage mTOR to suppress mitophagyXiangyu Zhang, Ismail Sergin, Trent D Evans, et al.
Nature Immunology|May 3, 2016
Origin, fate and dynamics of macrophages at central nervous system interfacesTobias Goldmann, Peter Wieghofer, Marta Joana Costa Jordão, et al.
Nature Immunology|September 8, 2020
Limited proliferation capacity of aortic intima resident macrophages requires monocyte recruitment for atherosclerotic plaque progressionJesse W Williams, Konstantin Zaitsev, Ki-Wook Kim, et al.
Nature Immunology|December 13, 2018
Self-renewing resident cardiac macrophages limit adverse remodeling following myocardial infarctionSarah A Dick, Jillian A Macklin, Sara Nejat, et al.
Nature Immunology|March 14, 2019
Publisher Correction: Self-renewing resident cardiac macrophages limit adverse remodeling following myocardial infarctionSarah A Dick, Jillian A Macklin, Sara Nejat, et al.
Nature Communications|June 8, 2017
Exploiting macrophage autophagy-lysosomal biogenesis as a therapy for atherosclerosisIsmail Sergin, Trent D Evans, Xiangyu Zhang, et al.
Pageof 9

Showing results (61-70 of 81) with videos related to

Sort By:
Pageof 9
Immunity|March 1, 2025
A heart-brain-spleen axis controls cardiac remodeling to hypertensive stressSara Perrotta, Lorenzo Carnevale, Marialuisa Perrotta, et al.
Circulation Research|June 23, 2023
Loss of Macrophage mTORC2 Drives Atherosclerosis via FoxO1 and IL-1β SignalingXiangyu Zhang, Trent D Evans, Sunny Chen, et al.
Cell Stem Cell|June 22, 2024
Primitive macrophages enable long-term vascularization of human heart-on-a-chip platformsShira Landau, Yimu Zhao, Homaira Hamidzada, et al.
Nature Metabolism|March 5, 2020
High-protein diets increase cardiovascular risk by activating macrophage mTOR to suppress mitophagyXiangyu Zhang, Ismail Sergin, Trent D Evans, et al.
Nature Metabolism|September 10, 2020
Author Correction: High-protein diets increase cardiovascular risk by activating macrophage mTOR to suppress mitophagyXiangyu Zhang, Ismail Sergin, Trent D Evans, et al.
Nature Immunology|May 3, 2016
Origin, fate and dynamics of macrophages at central nervous system interfacesTobias Goldmann, Peter Wieghofer, Marta Joana Costa Jordão, et al.
Nature Immunology|September 8, 2020
Limited proliferation capacity of aortic intima resident macrophages requires monocyte recruitment for atherosclerotic plaque progressionJesse W Williams, Konstantin Zaitsev, Ki-Wook Kim, et al.
Nature Immunology|December 13, 2018
Self-renewing resident cardiac macrophages limit adverse remodeling following myocardial infarctionSarah A Dick, Jillian A Macklin, Sara Nejat, et al.
Nature Immunology|March 14, 2019
Publisher Correction: Self-renewing resident cardiac macrophages limit adverse remodeling following myocardial infarctionSarah A Dick, Jillian A Macklin, Sara Nejat, et al.
Nature Communications|June 8, 2017
Exploiting macrophage autophagy-lysosomal biogenesis as a therapy for atherosclerosisIsmail Sergin, Trent D Evans, Xiangyu Zhang, et al.
Pageof 9