Deep brain stimulation: potential for neuroprotection

  • Ann Clin Transl Neurol. 2018 Nov 8;6(1):174-185. doi: 10.1002/acn3.682.
Chris McKinnon  1 ,  Priti Gros  2 ,  Darrin J Lee  1  3 ,  Clement Hamani  4 ,  Andres M Lozano  1  3 ,  Lorraine V Kalia  1  2  5 ,  Suneil K Kalia  1  3
Affiliations
  • 1. Krembil Research Institute University Health Network Toronto Western Hospital Toronto Ontario Canada.
  • 2. Division of Neurology Toronto Western Hospital University of Toronto Toronto Ontario Canada.
  • 3. Division of Neurosurgery Toronto Western Hospital University of Toronto Toronto Ontario Canada.
  • 4. Harquail Centre for Neuromodulation Division of Neurosurgery Sunnybrook Health Sciences Centre University of Toronto Toronto Ontario Canada.
  • 5. Tanz Centre for Research in Neurodegenerative Diseases University of Toronto Toronto Ontario Canada.
Abstract

Over the last two decades there has been an exponential rise in the number of patients receiving deep brain stimulation (DBS) to manage debilitating neurological symptoms in conditions such as Parkinson's Disease, essential tremor, and dystonia. Novel applications of DBS continue to emerge including treatment of various psychiatric conditions (e.g. obsessive-compulsive disorder, major Depression) and cognitive disorders such as Alzheimer's Disease. Despite widening therapeutic applications, our understanding of the mechanisms underlying DBS remains limited. In addition to modulation of local and network-wide neuronal activity, growing evidence suggests that DBS may also have important neuroprotective effects in the brain by limiting synaptic dysfunction and neuronal loss in neurodegenerative disorders. In this review, we consider evidence from preclinical and clinical studies of DBS in Parkinson's Disease, Alzheimer's Disease, and Epilepsy that suggest chronic stimulation has the potential to mitigate neuronal loss and disease progression.