TY - CHAP
T1 - Epsilon Aminocaproic Acid Pretreatment Provides Neuroprotection Following Surgically Induced Brain Injury in a Rat Model
AU - Komanapalli, Esther S.
AU - Sherchan, Prativa
AU - Rolland, William
AU - Khatibi, Nikan
AU - Martin, Robert D.
AU - Applegate, Richard L.
AU - Tang, Jiping
AU - Zhang, John H.
N1 - Funding Information:
This study is partially supported by National Institutes of Health grant NS084921.
PY - 2016/1/1
Y1 - 2016/1/1
N2 - Neurosurgical procedures can damage viable brain tissue unintentionally by a wide range of mechanisms. This surgically induced brain injury (SBI) can be a result of direct incision, electrocauterization, or tissue retraction. Plasmin, a serine protease that dissolves fibrin blood clots, has been shown to enhance cerebral edema and hemorrhage accumulation in the brain through disruption of the blood brain barrier. Epsilon aminocaproic acid (EAA), a recognized antifibrinolytic lysine analogue, can reduce the levels of active plasmin and, in doing so, potentially can preserve the neurovascular unit of the brain. We investigated the role of EAA as a pretreatment neuroprotective modality in a SBI rat model, hypothesizing that EAA therapy would protect brain tissue integrity, translating into preserved neurobehavioral function. Male Sprague-Dawley rats were randomly assigned to one of four groups: sham (n = 7), SBI (n = 7), SBI with low-dose EAA, 150 mg/kg (n = 7), and SBI with high-dose EAA, 450 mg/kg (n = 7). SBI was induced by partial right frontal lobe resection through a frontal craniotomy. Postoperative assessment at 24 h included neurobehavioral testing and measurement of brain water content. Results at 24 h showed both low- and high-dose EAA reduced brain water content and improved neurobehavioral function compared with the SBI groups. This suggests that EAA may be a useful pretherapeutic modality for SBI. Further studies are needed to clarify optimal therapeutic dosing and to identify mechanisms of neuroprotection in rat SBI models.
AB - Neurosurgical procedures can damage viable brain tissue unintentionally by a wide range of mechanisms. This surgically induced brain injury (SBI) can be a result of direct incision, electrocauterization, or tissue retraction. Plasmin, a serine protease that dissolves fibrin blood clots, has been shown to enhance cerebral edema and hemorrhage accumulation in the brain through disruption of the blood brain barrier. Epsilon aminocaproic acid (EAA), a recognized antifibrinolytic lysine analogue, can reduce the levels of active plasmin and, in doing so, potentially can preserve the neurovascular unit of the brain. We investigated the role of EAA as a pretreatment neuroprotective modality in a SBI rat model, hypothesizing that EAA therapy would protect brain tissue integrity, translating into preserved neurobehavioral function. Male Sprague-Dawley rats were randomly assigned to one of four groups: sham (n = 7), SBI (n = 7), SBI with low-dose EAA, 150 mg/kg (n = 7), and SBI with high-dose EAA, 450 mg/kg (n = 7). SBI was induced by partial right frontal lobe resection through a frontal craniotomy. Postoperative assessment at 24 h included neurobehavioral testing and measurement of brain water content. Results at 24 h showed both low- and high-dose EAA reduced brain water content and improved neurobehavioral function compared with the SBI groups. This suggests that EAA may be a useful pretherapeutic modality for SBI. Further studies are needed to clarify optimal therapeutic dosing and to identify mechanisms of neuroprotection in rat SBI models.
KW - Brain Injuries/metabolism
KW - Rats
KW - Frontal Lobe/surgery
KW - Neuroprotective Agents/pharmacology
KW - Rats, Sprague-Dawley
KW - Brain Edema/metabolism
KW - Antifibrinolytic Agents/pharmacology
KW - Brain/drug effects
KW - Neurosurgical Procedures
KW - Animals
KW - Intraoperative Complications
KW - Behavior, Animal/drug effects
KW - Aminocaproic Acid/pharmacology
KW - Disease Models, Animal
UR - https://link.springer.com/content/pdf/10.1007%2F978-3-319-18497-5_54.pdf
UR - https://www.mendeley.com/catalogue/4a9a8bf2-0a16-3d97-ae7b-072b72787d84/
U2 - 10.1007/978-3-319-18497-5_54
DO - 10.1007/978-3-319-18497-5_54
M3 - Chapter
C2 - 26463967
SN - 978-3-319-18496-8
SN - 978-3-319-36532-9
T3 - Acta Neurochirurgica, Supplementum
SP - 311
EP - 315
BT - Brain Edema XVI
PB - Springer Cham
ER -