Resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated PEGylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shock
Abstract Background Polynitroxylated PEGylated hemoglobin (PNPH, aka SanFlow) possesses superoxide dismutase/catalase mimetic activities that may directly protect the brain from oxidative stress. Stabilization of PNPH with bound carbon monoxide prevents methemoglobin formation during storage and per...
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doaj-8737e067513c446e870ab1247fb918a12020-11-25T02:15:09ZengBMCBMC Neuroscience1471-22022020-05-0121111210.1186/s12868-020-00571-7Resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated PEGylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shockSoichiro Seno0Jun Wang1Suyi Cao2Manda Saraswati3Sharon Park4Jan Simoni5Li Ma6Bohdan Soltys7Carleton J. C. Hsia8Raymond C. Koehler9Courtney L. Robertson10Department of Anesthesiology and Critical Care Medicine, Johns Hopkins UniversityDepartment of Anesthesiology and Critical Care Medicine, Johns Hopkins UniversityDepartment of Anesthesiology and Critical Care Medicine, Johns Hopkins UniversityDepartment of Anesthesiology and Critical Care Medicine, Johns Hopkins UniversityDepartment of Anesthesiology and Critical Care Medicine, Johns Hopkins UniversityAntiRadical TherapeuticsDepartment of Physics, Georgia Southern UniversityAntiRadical TherapeuticsAntiRadical TherapeuticsDepartment of Anesthesiology and Critical Care Medicine, Johns Hopkins UniversityDepartment of Anesthesiology and Critical Care Medicine, Johns Hopkins UniversityAbstract Background Polynitroxylated PEGylated hemoglobin (PNPH, aka SanFlow) possesses superoxide dismutase/catalase mimetic activities that may directly protect the brain from oxidative stress. Stabilization of PNPH with bound carbon monoxide prevents methemoglobin formation during storage and permits it to serve as a carbon monoxide donor. We determined whether small volume transfusion of hyperoncotic PNPH is neuroprotective in a polytrauma model of traumatic brain injury (TBI) plus hemorrhagic shock. Guinea pigs were used because, like humans, they do not synthesize their own ascorbic acid, which is important in reducing methemoglobin. Results TBI was produced by controlled cortical impact and was followed by 20 mL/kg hemorrhage to a mean arterial pressure (MAP) of 40 mmHg. At 90 min, animals were resuscitated with 20 mL/kg lactated Ringer’s solution or 10 mL/kg PNPH. Resuscitation with PNPH significantly augmented the early recovery of MAP after hemorrhagic shock by 10–18 mmHg; whole blood methemoglobin was only 1% higher and carboxyhemoglobin was 2% higher. At 9 days of recovery, unbiased stereology analysis revealed that, compared to animals resuscitated with lactated Ringer’s solution, those treated with PNPH had significantly more viable neurons in the hippocampus CA1 + 2 region (59 ± 10% versus 87 ± 18% of sham and naïve mean value) and in the dentate gyrus (70 ± 21% versus 96 ± 24%; n = 12 per group). Conclusion PNPH may serve as a small-volume resuscitation fluid for polytrauma involving TBI and hemorrhagic shock. The neuroprotection afforded by PNPH seen in other species was sustained in a species without endogenous ascorbic acid synthesis, thereby supporting potential translatability for human use.http://link.springer.com/article/10.1186/s12868-020-00571-7Carbon monoxideControlled cortical impactGuinea pigHemoglobin-based oxygen carrierHippocampusNeuroprotection |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Soichiro Seno Jun Wang Suyi Cao Manda Saraswati Sharon Park Jan Simoni Li Ma Bohdan Soltys Carleton J. C. Hsia Raymond C. Koehler Courtney L. Robertson |
spellingShingle |
Soichiro Seno Jun Wang Suyi Cao Manda Saraswati Sharon Park Jan Simoni Li Ma Bohdan Soltys Carleton J. C. Hsia Raymond C. Koehler Courtney L. Robertson Resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated PEGylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shock BMC Neuroscience Carbon monoxide Controlled cortical impact Guinea pig Hemoglobin-based oxygen carrier Hippocampus Neuroprotection |
author_facet |
Soichiro Seno Jun Wang Suyi Cao Manda Saraswati Sharon Park Jan Simoni Li Ma Bohdan Soltys Carleton J. C. Hsia Raymond C. Koehler Courtney L. Robertson |
author_sort |
Soichiro Seno |
title |
Resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated PEGylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shock |
title_short |
Resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated PEGylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shock |
title_full |
Resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated PEGylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shock |
title_fullStr |
Resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated PEGylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shock |
title_full_unstemmed |
Resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated PEGylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shock |
title_sort |
resuscitation with macromolecular superoxide dismutase/catalase mimetic polynitroxylated pegylated hemoglobin offers neuroprotection in guinea pigs after traumatic brain injury combined with hemorrhage shock |
publisher |
BMC |
series |
BMC Neuroscience |
issn |
1471-2202 |
publishDate |
2020-05-01 |
description |
Abstract Background Polynitroxylated PEGylated hemoglobin (PNPH, aka SanFlow) possesses superoxide dismutase/catalase mimetic activities that may directly protect the brain from oxidative stress. Stabilization of PNPH with bound carbon monoxide prevents methemoglobin formation during storage and permits it to serve as a carbon monoxide donor. We determined whether small volume transfusion of hyperoncotic PNPH is neuroprotective in a polytrauma model of traumatic brain injury (TBI) plus hemorrhagic shock. Guinea pigs were used because, like humans, they do not synthesize their own ascorbic acid, which is important in reducing methemoglobin. Results TBI was produced by controlled cortical impact and was followed by 20 mL/kg hemorrhage to a mean arterial pressure (MAP) of 40 mmHg. At 90 min, animals were resuscitated with 20 mL/kg lactated Ringer’s solution or 10 mL/kg PNPH. Resuscitation with PNPH significantly augmented the early recovery of MAP after hemorrhagic shock by 10–18 mmHg; whole blood methemoglobin was only 1% higher and carboxyhemoglobin was 2% higher. At 9 days of recovery, unbiased stereology analysis revealed that, compared to animals resuscitated with lactated Ringer’s solution, those treated with PNPH had significantly more viable neurons in the hippocampus CA1 + 2 region (59 ± 10% versus 87 ± 18% of sham and naïve mean value) and in the dentate gyrus (70 ± 21% versus 96 ± 24%; n = 12 per group). Conclusion PNPH may serve as a small-volume resuscitation fluid for polytrauma involving TBI and hemorrhagic shock. The neuroprotection afforded by PNPH seen in other species was sustained in a species without endogenous ascorbic acid synthesis, thereby supporting potential translatability for human use. |
topic |
Carbon monoxide Controlled cortical impact Guinea pig Hemoglobin-based oxygen carrier Hippocampus Neuroprotection |
url |
http://link.springer.com/article/10.1186/s12868-020-00571-7 |
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