| Literature DB >> 27614225 |
Peter Toth1,2,3, Nikolett Szarka4,5, Eszter Farkas6, Erzsebet Ezer4, Endre Czeiter4,2,7, Krisztina Amrein4,2,7, Zoltan Ungvari3, Jed A Hartings8, Andras Buki4,2,7, Akos Koller4,2,9,10.
Abstract
Traumatic brain injury (TBI) is a major health problem worldwide. In addition to its high mortality (35-40%), survivors are left with cognitive, behavioral, and communicative disabilities. While little can be done to reverse initial primary brain damage caused by trauma, the secondary injury of cerebral tissue due to cerebromicrovascular alterations and dysregulation of cerebral blood flow (CBF) is potentially preventable. This review focuses on functional, cellular, and molecular changes of autoregulatory function of CBF (with special focus on cerebrovascular myogenic response) that occur in cerebral circulation after TBI and explores the links between autoregulatory dysfunction, impaired myogenic response, microvascular impairment, and the development of secondary brain damage. We further provide a synthesized translational view of molecular and cellular mechanisms involved in cortical spreading depolarization-related neurovascular dysfunction, which could be targeted for the prevention or amelioration of TBI-induced secondary brain damage.Entities:
Keywords: autoregulation; brain damage; cerebral blood flow; myogenic; neurovascular coupling
Mesh:
Year: 2016 PMID: 27614225 PMCID: PMC5504422 DOI: 10.1152/ajpheart.00267.2016
Source DB: PubMed Journal: Am J Physiol Heart Circ Physiol ISSN: 0363-6135 Impact factor: 4.733