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Regenerative Therapies in Ischemic Stroke Recovery [E-Book]

Contributor(s): Publisher: Singapore : Springer Nature Singapore : Imprint: Springer, 2022Edition: 1st ed. 2022Description: XIII, 353 p. 1 illus. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9789811685620
Subject(s): Online resources:
Contents:
1 Regenerative Therapies in Ischemic Stroke Recovery -- 2 Application of Nanotechnology In Stroke Recovery -- 3 Nanotechnology: A daydream for advanced Imaging, Diagnosis and Therapeutic Approach for Cerebral Ischemia -- 4 Cell-Mediated Neurorestorative Mechanisms Underpinning Beneficial Effects in Ischemic Stroke -- 5 Induced Pluripotent Stem Cells for the Treatment of Neurodegenerative Disease: Current and Future Prospects -- 6 Imaging of Stem Cell Therapy for Stroke and Beyond -- 7 Nano-Medicine Mediated Stem Cell Therapeutics In Stroke -- 8 The Influence of Preconditioning on the Homing Behaviour of Stem Cells -- 9 Role of microRNAs in stroke pathology and recovery -- 10 Exosomes as a diagnostic tool and stem cells exosomes as a promising cell-based cell-free therapeutic tool for ischemic stroke 11 Role of nanomedicine in treating ischemic stroke -- 12 Insights into therapeutic targets in stroke -- 13 Signalling Pathways of Interest for Recovery from Ischemic Stroke.
Summary: This book illustrates the importance and significance of regenerative medicine in stroke recovery. It discusses stem-cell-based treatment strategies and offers mechanistic insights into their role in neurological recovery. It also examines the challenges and advances in using adult stem cells for enhanced therapeutic efficacy. Further, it presents the strategies as well as the strengths and weaknesses of various delivery methods to administer stem cells in ischemic stroke. It examines the role of non-coding RNA in our understanding the stroke pathogenesis, their regulatory role in ischemic stroke and potential as biomarkers and therapeutic targets. Lastly, it explores exosomes in the treatment of stroke, and the underlying mechanism of their action as therapeutic vectors for stroke. Given its scope, it is an excellent resource for neurologists, neuroscientists and researchers involved in regenerative therapy for stroke.
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Electronic book Hillingdon Hospitals Library Services (Hillingdon Hospitals NHS Foundation) Online Link to resource Available

1 Regenerative Therapies in Ischemic Stroke Recovery -- 2 Application of Nanotechnology In Stroke Recovery -- 3 Nanotechnology: A daydream for advanced Imaging, Diagnosis and Therapeutic Approach for Cerebral Ischemia -- 4 Cell-Mediated Neurorestorative Mechanisms Underpinning Beneficial Effects in Ischemic Stroke -- 5 Induced Pluripotent Stem Cells for the Treatment of Neurodegenerative Disease: Current and Future Prospects -- 6 Imaging of Stem Cell Therapy for Stroke and Beyond -- 7 Nano-Medicine Mediated Stem Cell Therapeutics In Stroke -- 8 The Influence of Preconditioning on the Homing Behaviour of Stem Cells -- 9 Role of microRNAs in stroke pathology and recovery -- 10 Exosomes as a diagnostic tool and stem cells exosomes as a promising cell-based cell-free therapeutic tool for ischemic stroke 11 Role of nanomedicine in treating ischemic stroke -- 12 Insights into therapeutic targets in stroke -- 13 Signalling Pathways of Interest for Recovery from Ischemic Stroke.

This book illustrates the importance and significance of regenerative medicine in stroke recovery. It discusses stem-cell-based treatment strategies and offers mechanistic insights into their role in neurological recovery. It also examines the challenges and advances in using adult stem cells for enhanced therapeutic efficacy. Further, it presents the strategies as well as the strengths and weaknesses of various delivery methods to administer stem cells in ischemic stroke. It examines the role of non-coding RNA in our understanding the stroke pathogenesis, their regulatory role in ischemic stroke and potential as biomarkers and therapeutic targets. Lastly, it explores exosomes in the treatment of stroke, and the underlying mechanism of their action as therapeutic vectors for stroke. Given its scope, it is an excellent resource for neurologists, neuroscientists and researchers involved in regenerative therapy for stroke.

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