Neural stem cell therapy for subacute and chronic ischemic stroke

Терапия нейрональными стволовыми клетками при субактивном и хроническом ишемическом инсульте
Milton H. Hamblin, Austin C. Boese, Quan-Son Eric Le, Dylan L. Pham, Jean‐Pyo Lee
2018-06-13

STAIR recommendationsangiogenesisblood-brain barrier (BBB) damageischemia-reperfusion (IR)ischemic strokeneural stem cells (NSCs)neurogenesisneurorestorative mechanismssubacute and chronic stroketissue plasminogen activator (tPA)
Neural stem cells (NSCs) play vital roles in brain homeostasis and exhibit a broad repertoire of potentially therapeutic actions following neurovascular injury. One such injury is stroke, a worldwide leading cause of death and disability. Clinically, extensive injury from ischemic stroke results from ischemia-reperfusion (IR), which is accompanied by inflammation, blood-brain barrier (BBB) damage, neural cell death, and extensive tissue loss. Tissue plasminogen activator (tPA) is still the only US Food and Drug Administration-approved clot-lysing agent. Whereas the thrombolytic role of tPA within the vasculature is beneficial, the effects of tPA (in a non-thrombolytic role) within the brain parenchyma have been reported as harmful. Thus, new therapies are needed to reduce the deleterious side effects of tPA and quickly facilitate vascular repair following stroke. The Stroke Treatment Academic Industry Roundtable (STAIR) recommends that stroke therapies "focus on drugs/devices/treatments with multiple mechanisms of action and that target multiple pathways". Thus, based on multifactorial ischemic cascades in various stroke stages, effective stroke therapies need to focus on targeting and ameliorating early IR injury as well as facilitating angiogenesis, neurogenesis, and neurorestorative mechanisms following stroke. This review will discuss the preclinical perspectives of NSC transplantation as a promising treatment for neurovascular injury and will emphasize both the subacute and chronic phase of ischemic stroke.
1
Effective stroke therapies should have multiple mechanisms of action, targeting early IR injury and promoting angiogenesis, neurogenesis, and neurorestorative processes.
2
Ischemia-reperfusion (IR) injury from ischemic stroke involves inflammation, blood-brain barrier damage, neural cell death, and extensive tissue loss that therapies must address.
3
Neural stem cell (NSC) transplantation is a promising preclinical treatment for neurovascular injury after ischemic stroke.
4
The review emphasizes potential NSC benefits in both subacute and chronic phases of ischemic stroke.
5
tPA provides beneficial thrombolytic effects but may have harmful non-thrombolytic effects in the brain parenchyma, motivating alternative or adjunct therapies.

Neural stem cell (NSC) transplantation for ischemic stroke

Therapeutic effects and mechanisms of NSC therapy in subacute and chronic ischemic stroke, including neurovascular repair, mitigation of ischemia–reperfusion injury, promotion of angiogenesis, neurogenesis, and neurorestoration, and interactions with tPA-related pathology

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2018-06-13
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Milton H. Hamblin
Austin C. Boese
Quan-Son Eric Le
Dylan L. Pham
Jean‐Pyo Lee
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