Bioactive components to inhibit foam cell formation in atherosclerosis

S Singh, S Changkija, R Mudgal, V Ravichandiran - Molecular Biology Reports - Springer
Background The production of lipid-laden cells in macrophages after significant ingestion of
oxidized low-density lipoprotein is considered the most critical phase in the creation of …

Bioactive components to inhibit foam cell formation in atherosclerosis.

S Singh, S Changkija, R Mudgal… - Molecular Biology …, 2022 - search.ebscohost.com
Background: The production of lipid-laden cells in macrophages after significant ingestion of
oxidized low-density lipoprotein is considered the most critical phase in the creation of …

Bioactive components to inhibit foam cell formation in atherosclerosis

S Singh, S Changkija, R Mudgal… - Molecular biology …, 2022 - pubmed.ncbi.nlm.nih.gov
Background The production of lipid-laden cells in macrophages after significant ingestion of
oxidized low-density lipoprotein is considered the most critical phase in the creation of …

Bioactive components to inhibit foam cell formation in atherosclerosis.

S Singh, S Changkija, R Mudgal… - Molecular Biology …, 2022 - europepmc.org
Background The production of lipid-laden cells in macrophages after significant ingestion of
oxidized low-density lipoprotein is considered the most critical phase in the creation of …

Bioactive components to inhibit foam cell formation in atherosclerosis

S Singh, C Senti, M Rajat… - Molecular Biology …, 2022 - search.proquest.com
Background The production of lipid-laden cells in macrophages after significant ingestion of
oxidized low-density lipoprotein is considered the most critical phase in the creation of …

[引用][C] Bioactive components to inhibit foam cell formation in atherosclerosis

S Singh, S Changkija, R Mudgal, V Ravichandiran - 2022