Lipid cell membrane composed of various distinct lipids and proteins act as a platform to assemble various signaling complexes regulating innumerous cellular processes which are strongly downregulated or altered in cancer cells emphasizing the still-underestimated critical function of lipid biomolecules in cancer initiation and progression. In this review, we outline the current understanding of how membrane lipids act as signaling hot spots by generating distinct membrane microdomains called rafts to initiate various cellular processes and their modulation in cancer phenotypes. We elucidate tangible drug targets and pathways all amenable to small-molecule perturbation. Ranging from targeting membrane rafts organization/reorganization to re...
Cancer shares common risk factors with cardiovascular diseases such as dyslipidemia, obesity and inf...
Lipid rafts are organized plasma membrane microdomains, which provide a distinct level of regulation...
Background. Lipids are best known for their fundamental role in forming biological membranes and as ...
Cancer is a leading cause of death in developed countries, and is on the rise in developing countri...
Cell signaling does not apparently occur randomly over the cell surface, but it seems to be integrat...
Lipid rafts are cholesterol-enriched microdomains of the cell membrane and possess a highly dynamic ...
Lipid rafts are critical cell membrane lipid platforms enriched in sphingolipid and cholesterol cont...
textabstractCancer is a complex disease involving numerous biological processes, which can exist in ...
Nowadays we understand cell membranes not as a simple double lipid layer but as a collection of comp...
Dysregulated lipid metabolism represents an important metabolic alteration in cancer. Fatty acids, c...
International audienceMany human diseases, including metabolic, immune and central nervous system di...
Lipid rafts are dynamic membrane microdomains that orchestrate molecular interactions and are implic...
Lipid metabolism is regulated by multiple signaling pathways, and generates a variety of bioactive ...
Lipid rafts are dynamic membrane microdomains that orchestrate molecular interactions and are implic...
Our view of biological membranes has evolved dramatically over the last few decades. In the bilayer ...
Cancer shares common risk factors with cardiovascular diseases such as dyslipidemia, obesity and inf...
Lipid rafts are organized plasma membrane microdomains, which provide a distinct level of regulation...
Background. Lipids are best known for their fundamental role in forming biological membranes and as ...
Cancer is a leading cause of death in developed countries, and is on the rise in developing countri...
Cell signaling does not apparently occur randomly over the cell surface, but it seems to be integrat...
Lipid rafts are cholesterol-enriched microdomains of the cell membrane and possess a highly dynamic ...
Lipid rafts are critical cell membrane lipid platforms enriched in sphingolipid and cholesterol cont...
textabstractCancer is a complex disease involving numerous biological processes, which can exist in ...
Nowadays we understand cell membranes not as a simple double lipid layer but as a collection of comp...
Dysregulated lipid metabolism represents an important metabolic alteration in cancer. Fatty acids, c...
International audienceMany human diseases, including metabolic, immune and central nervous system di...
Lipid rafts are dynamic membrane microdomains that orchestrate molecular interactions and are implic...
Lipid metabolism is regulated by multiple signaling pathways, and generates a variety of bioactive ...
Lipid rafts are dynamic membrane microdomains that orchestrate molecular interactions and are implic...
Our view of biological membranes has evolved dramatically over the last few decades. In the bilayer ...
Cancer shares common risk factors with cardiovascular diseases such as dyslipidemia, obesity and inf...
Lipid rafts are organized plasma membrane microdomains, which provide a distinct level of regulation...
Background. Lipids are best known for their fundamental role in forming biological membranes and as ...