Multiple sclerosis (MS) is a chronic inflammatory disorder of the central nervous system (CNS) characterized by the presence of focal demyelinated plaques. Sufficient clearance of myelin and cellular debris is one of the requirements for proper tissue repair and remyelination. The mechanisms underlying the clearance of such debris by phagocytes are not fully understood, but recent findings suggest a prominent role for lipoprotein-lipase (LPL) in this process. Here, we demonstrate that angiopoietin-like 4 (ANGPTL4), a potent inhibitor of LPL, is abundantly expressed in astrocytes in control white matter tissue and its expression is markedly reduced in active MS lesions. We provide evidence that ANGPTL4 inhibits the uptake of myelin-derived l...
The repair of inflamed, demyelinated lesions as in multiple sclerosis (MS) necessitates the clearanc...
International audienceThe role exerted by Aquaporin 4 (AQP4) as a regulator of astrocyte immune func...
Neuron-derived molecules are potent regulators of oligodendrocyte differentiation and myelination du...
Multiple sclerosis (MS) is a chronic inflammatory disorder of the central nervous system (CNS) chara...
Severe demyelinating disorders of the central nervous system (CNS) such as multiple sclerosis (MS), ...
Objective—Macrophage foam cells play a crucial role in several pathologies including multiple sclero...
Objective: Macrophage foam cells play a crucial role in several pathologies including multiple scler...
Foamy macrophages, containing myelin degradation products, are abundantly found in active multiple s...
Jean-Martin Charcot has first described multiple sclerosis (MS) as a disease of the central nervous ...
The chronic neuro-inflammatory character of multiple sclerosis (MS) suggests that the natural proces...
Chronic inflammation is a key pathological hallmark of multiple sclerosis and suggests that resoluti...
The chronic neuro-inflammatory character of multiple sclerosis (MS) suggests that the natural proces...
The chronic neuro-inflammatory character of multiple sclerosis (MS) suggests that the natural proces...
Multiple sclerosis (MS) is the commonest chronic inflammatory disorder of the central nervous system...
Chronic inflammation is a key pathological hallmark of multiple sclerosis and suggests that resoluti...
The repair of inflamed, demyelinated lesions as in multiple sclerosis (MS) necessitates the clearanc...
International audienceThe role exerted by Aquaporin 4 (AQP4) as a regulator of astrocyte immune func...
Neuron-derived molecules are potent regulators of oligodendrocyte differentiation and myelination du...
Multiple sclerosis (MS) is a chronic inflammatory disorder of the central nervous system (CNS) chara...
Severe demyelinating disorders of the central nervous system (CNS) such as multiple sclerosis (MS), ...
Objective—Macrophage foam cells play a crucial role in several pathologies including multiple sclero...
Objective: Macrophage foam cells play a crucial role in several pathologies including multiple scler...
Foamy macrophages, containing myelin degradation products, are abundantly found in active multiple s...
Jean-Martin Charcot has first described multiple sclerosis (MS) as a disease of the central nervous ...
The chronic neuro-inflammatory character of multiple sclerosis (MS) suggests that the natural proces...
Chronic inflammation is a key pathological hallmark of multiple sclerosis and suggests that resoluti...
The chronic neuro-inflammatory character of multiple sclerosis (MS) suggests that the natural proces...
The chronic neuro-inflammatory character of multiple sclerosis (MS) suggests that the natural proces...
Multiple sclerosis (MS) is the commonest chronic inflammatory disorder of the central nervous system...
Chronic inflammation is a key pathological hallmark of multiple sclerosis and suggests that resoluti...
The repair of inflamed, demyelinated lesions as in multiple sclerosis (MS) necessitates the clearanc...
International audienceThe role exerted by Aquaporin 4 (AQP4) as a regulator of astrocyte immune func...
Neuron-derived molecules are potent regulators of oligodendrocyte differentiation and myelination du...