The mechanisms underlying the pathogenesis of multiple sclerosis induce the changes that underpin relapse-associated and progressive disability. Disease mechanisms can be investigated in preclinical models and patients with multiple sclerosis by molecular and metabolic imaging techniques. Many insights have been gained from such imaging studies: persisting inflammation in the absence of a damaged blood-brain barrier, activated microglia within and beyond lesions, increased mitochondrial activity after acute lesions, raised sodium concentrations in the brain, increased glutamate in acute lesions and normal-appearing white matter, different degrees of demyelination in different patients and lesions, early neuronal damage in grey matter, and early astrocytic proliferation and activation in lesions and white matter. Clinical translation of molecular and metabolic imaging and extension of these techniques will enable the assessment of novel drugs targeted at these disease mechanisms, and have the potential to improve health outcomes through the stratification of patients for treatments. © 2014 Elsevier Ltd.

Ciccarelli, O., Barkhof, F., Bodini, B., DE STEFANO, N., Golay, X., Nicolay, K., et al. (2014). Pathogenesis of multiple sclerosis: Insights from molecular and metabolic imaging. LANCET NEUROLOGY, 13(8), 807-822 [10.1016/S1474-4422(14)70101-2].

Pathogenesis of multiple sclerosis: Insights from molecular and metabolic imaging

DE STEFANO, NICOLA;
2014-01-01

Abstract

The mechanisms underlying the pathogenesis of multiple sclerosis induce the changes that underpin relapse-associated and progressive disability. Disease mechanisms can be investigated in preclinical models and patients with multiple sclerosis by molecular and metabolic imaging techniques. Many insights have been gained from such imaging studies: persisting inflammation in the absence of a damaged blood-brain barrier, activated microglia within and beyond lesions, increased mitochondrial activity after acute lesions, raised sodium concentrations in the brain, increased glutamate in acute lesions and normal-appearing white matter, different degrees of demyelination in different patients and lesions, early neuronal damage in grey matter, and early astrocytic proliferation and activation in lesions and white matter. Clinical translation of molecular and metabolic imaging and extension of these techniques will enable the assessment of novel drugs targeted at these disease mechanisms, and have the potential to improve health outcomes through the stratification of patients for treatments. © 2014 Elsevier Ltd.
2014
Ciccarelli, O., Barkhof, F., Bodini, B., DE STEFANO, N., Golay, X., Nicolay, K., et al. (2014). Pathogenesis of multiple sclerosis: Insights from molecular and metabolic imaging. LANCET NEUROLOGY, 13(8), 807-822 [10.1016/S1474-4422(14)70101-2].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/1003824
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