Neuroprotection after cerebral ischemia.
This conference abstract examined Neuroprotection after cerebral ischemia. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreLactulose: an effective preventive and therapeutic option for ischemic stroke by production of hydrogen.
This study examined Lactulose: an effective preventive and therapeutic option for ischemic stroke by production of hydrogen. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreHydrogen-rich saline alleviates early brain injury through regulating of ER stress and autophagy after experimental subarachnoid hemorrhage
H2HUBB PLAIN-LANGUAGE TAKEAWAY The study adds to the molecular-hydrogen evidence base, but the available record does not support a firm conclusion about therapeutic benefit. Hydrogen-rich saline stroke study: what the findings mean This H2HUBB page translates the technical study record into consumer-friendly language while preserving the scientific details. The publication “SciELO – Brazil – Hydrogen-rich […]
Read MoreNeuroprotection in stroke: past, present, and future.
Stroke is a devastating medical condition, killing millions of people each year and causing serious injury to many more. Despite advances in treatment, there is still little that can be done to prevent stroke-related brain damage. The concept of neuroprotection is a source of considerable interest in the search for novel therapies that have the potential to preserve brain tissue and improve overall outcome.
Read MoreThe Role of Mast Cells in Stroke.
Mast cells (MCs) are densely granulated perivascular resident cells of hematopoietic origin. Through the release of preformed mediators stored in their granules and newly synthesized molecules, they are able to initiate, modulate, and prolong the immune response upon activation. Their presence in the central nervous system (CNS) has been documented for more than a century.
Read MoreHydrogen‑rich saline promotes neuronal recovery in mice with cerebral ischemia through the AMPK/mTOR signal‑mediated autophagy pathway.
This animal study examined Hydrogen‑rich saline promotes neuronal recovery in mice with cerebral ischemia through the AMPK/mTOR signal‑mediated autophagy pathway. The abstract describes Mouse model; hydrogen delivered as hydrogen-rich saline. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreHydrogen-rich saline alleviates early brain injury via reducing oxidative stress and brain edema following experimental subarachnoid hemorrhage in rabbits.
This animal study examined Hydrogen-rich saline alleviates early brain injury via reducing oxidative stress and brain edema following experimental subarachnoid hemorrhage in rabbits. The abstract describes Rabbit model; hydrogen delivered as hydrogen-rich saline. The abstract reports: The results suggest that treatment with hydrogen in experimental SAH rabbits could alleviate brain injury via decreasing the oxidative stress injury and brain edema.…. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreNeuroprotective Effect of Hydrogen-Rich Saline in Global Cerebral Ischemia/Reperfusion Rats: Up-Regulated Tregs and Down-Regulated miR-21, miR-210 and NF-κB Expression.
This animal study examined Neuroprotective Effect of Hydrogen-Rich Saline in Global Cerebral Ischemia/Reperfusion Rats: Up-Regulated Tregs and Down-Regulated miR-21, miR-210 and NF-κB Expression. The abstract describes Rat model; hydrogen delivered as hydrogen-rich saline. The abstract reports: Recently, it has been suggested that molecular hydrogen (H) can selectively reduce the levels of hydroxyl radicals (.OH), and ameliorate oxidative and inflammatory injuries…. This is an automated editorial draft based on the abstract and requires source review before publication.
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