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Updated: Oct 2, 2026

Functional Neuroimaging Using Ultrasonic Blood-brain Barrier Disruption and Manganese-enhanced MRI
Published on: July 12, 2012
Restoring brain functions in the Mo-blo mouse model of Menkes disease with copper nanoclusters
Audrey Malardé1, Jean-Marc Alberto1, Benjamin Creusot2,3
1Université de Lorraine, Inserm, NGERE, F-54000 Nancy, France.
Abstract:
Menkes disease, caused by ATP7A mutations, leads to severe copper deficiency and fatal neurodegeneration. Current copper-histidine therapy fails to restore brain function. Copper nanoclusters (CuNCs) were designed for their ultrasmall size to cross physiological barriers and deliver copper directly to the whole organism, including the brain. In Mo-blo mice (ATP7A deficient), daily subcutaneous CuNCs markedly improved survival, normalized cuproprotein activities, and restored cognitive and motor functions. Unlike other treatments, CuNCs effectively penetrate the blood-brain barrier, deliver copper to cuproproteins, offering unprecedented neurological rescue. This breakthrough could transform Menkes disease treatment, providing a first-ever therapy for brain copper deficiency. Further clinical development may unlock lifesaving solutions for this rare, fatal disorder.

