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Title:

Pro-efferocytic nanotherapies reduce vascular inflammation without inducing anemia in a large animal model of atherosclerosis.

Document type:
Journal Article
Author(s):
Bamezai, Sharika; Zhang, Yapei; Kumari, Manisha; Lotfi, Mozhgan; Alsaigh, Tom; Luo, Lingfeng; Kumar, Gayatri Suresh; Wang, Fudi; Ye, Jianqin; Puri, Madhu; Manchanda, Romila; Paluri, Sesha; Adkar, Shaunak S; Kojima, Yoko; Ingelsson, Alice; Bell, Caitlin F; Lopez, Nicolas G; Fu, Changhao; Choi, Ryan B; Miller, Zach; Barrios, Leo; Walsh, Susan; Ahmad, Ferhaan; Maegdefessel, Lars; Smith, Bryan Ronain; Leeper, Nicholas J
Abstract:
Atherosclerosis is an inflammatory disorder responsible for cardiovascular disease. Reactivation of efferocytosis, the phagocytic removal of cells by macrophages, has emerged as a translational target for atherosclerosis. Systemic blockade of the key 'don't-eat-me' molecule, CD47, triggers the engulfment of apoptotic vascular tissue and potently reduces plaque burden. However, it also induces red blood cell clearance, leading to anemia. To overcome this, we previously developed a macrophage-spec...     »
Journal title abbreviation:
Nat Commun
Year:
2024
Journal volume:
15
Journal issue:
1
Fulltext / DOI:
doi:10.1038/s41467-024-52005-1
Pubmed ID:
http://view.ncbi.nlm.nih.gov/pubmed/39271657
Print-ISSN:
2041-1723
TUM Institution:
Professur für Vaskuläre Biologie (Prof. Maegdefessel)
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