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Pluripotent stem cells: the last 10 years | Regenerative Medicine
Pluripotent stem cells: the last 10 years | Regenerative Medicine

Cell therapy for spinal cord injury by using human iPSC-derived  region-specific neural progenitor cells | Molecular Brain | Full Text
Cell therapy for spinal cord injury by using human iPSC-derived region-specific neural progenitor cells | Molecular Brain | Full Text

Regenerative therapy for spinal cord injury using iPSC technology |  Inflammation and Regeneration | Full Text
Regenerative therapy for spinal cord injury using iPSC technology | Inflammation and Regeneration | Full Text

Human pluripotent stem cells as a promising tool in the therapy of... |  Download Scientific Diagram
Human pluripotent stem cells as a promising tool in the therapy of... | Download Scientific Diagram

Cells | Free Full-Text | Pluripotent Stem Cells for Spinal Cord Injury  Repair
Cells | Free Full-Text | Pluripotent Stem Cells for Spinal Cord Injury Repair

IJMS | Free Full-Text | Recent Progress in the Regeneration of Spinal Cord  Injuries by Induced Pluripotent Stem Cells
IJMS | Free Full-Text | Recent Progress in the Regeneration of Spinal Cord Injuries by Induced Pluripotent Stem Cells

Frontiers | Induced Pluripotent Stem Cells for Traumatic Spinal Cord Injury
Frontiers | Induced Pluripotent Stem Cells for Traumatic Spinal Cord Injury

LOTUS overexpression via ex vivo gene transduction further promotes  recovery of motor function following human iPSC-NS/PC transplantation for  contusive spinal cord injury - ScienceDirect
LOTUS overexpression via ex vivo gene transduction further promotes recovery of motor function following human iPSC-NS/PC transplantation for contusive spinal cord injury - ScienceDirect

Concise Review: Laying the Groundwork for a First‐In‐Human Study of an  Induced Pluripotent Stem Cell‐Based Intervention for Spinal Cord Injury -  Tsuji - 2019 - STEM CELLS - Wiley Online Library
Concise Review: Laying the Groundwork for a First‐In‐Human Study of an Induced Pluripotent Stem Cell‐Based Intervention for Spinal Cord Injury - Tsuji - 2019 - STEM CELLS - Wiley Online Library

Frontiers | Restoring Motor Neurons in Spinal Cord Injury With Induced  Pluripotent Stem Cells
Frontiers | Restoring Motor Neurons in Spinal Cord Injury With Induced Pluripotent Stem Cells

Review of the Current Trends in Clinical Trials Involving Induced  Pluripotent Stem Cells | SpringerLink
Review of the Current Trends in Clinical Trials Involving Induced Pluripotent Stem Cells | SpringerLink

Human Deep Cortical Neurons Promote Regeneration and Recovery After Cervical  Spinal Cord Injury | bioRxiv
Human Deep Cortical Neurons Promote Regeneration and Recovery After Cervical Spinal Cord Injury | bioRxiv

Frontiers | Induced Pluripotent Stem Cells for Traumatic Spinal Cord Injury
Frontiers | Induced Pluripotent Stem Cells for Traumatic Spinal Cord Injury

Treatment with a Gamma-Secretase Inhibitor Promotes Functional Recovery in  Human iPSC- Derived Transplants for Chronic Spinal Cord Injury -  ScienceDirect
Treatment with a Gamma-Secretase Inhibitor Promotes Functional Recovery in Human iPSC- Derived Transplants for Chronic Spinal Cord Injury - ScienceDirect

Laying the groundwork for a first-in-human study of an iPSC-based  intervention for spinal cord injury
Laying the groundwork for a first-in-human study of an iPSC-based intervention for spinal cord injury

Effects of the Post-Spinal Cord Injury Microenvironment on the  Differentiation Capacity of Human Neural Stem Cells Derived from Induced  Pluripotent Stem Cells - Clara López-Serrano, Abel Torres-Espín, Joaquim  Hernández, Ana B. Alvarez-Palomo,
Effects of the Post-Spinal Cord Injury Microenvironment on the Differentiation Capacity of Human Neural Stem Cells Derived from Induced Pluripotent Stem Cells - Clara López-Serrano, Abel Torres-Espín, Joaquim Hernández, Ana B. Alvarez-Palomo,

Regenerating the Injured Spinal Cord at the Chronic Phase by Engineered  iPSCs‐Derived 3D Neuronal Networks - Wertheim - 2022 - Advanced Science -  Wiley Online Library
Regenerating the Injured Spinal Cord at the Chronic Phase by Engineered iPSCs‐Derived 3D Neuronal Networks - Wertheim - 2022 - Advanced Science - Wiley Online Library

Survival of syngeneic and allogeneic iPSC–derived neural precursors after  spinal grafting in minipigs | Science Translational Medicine
Survival of syngeneic and allogeneic iPSC–derived neural precursors after spinal grafting in minipigs | Science Translational Medicine

Cell transplantation therapies for spinal cord injury focusing on induced  pluripotent stem cells | Cell Research
Cell transplantation therapies for spinal cord injury focusing on induced pluripotent stem cells | Cell Research

Concise Review: Laying the Groundwork for a First‐In‐Human Study of an  Induced Pluripotent Stem Cell‐Based Intervention for Spinal Cord Injury -  Tsuji - 2019 - STEM CELLS - Wiley Online Library
Concise Review: Laying the Groundwork for a First‐In‐Human Study of an Induced Pluripotent Stem Cell‐Based Intervention for Spinal Cord Injury - Tsuji - 2019 - STEM CELLS - Wiley Online Library

Grafted human induced pluripotent stem cells improve the outcome of spinal  cord injury: modulation of the lesion microenvironment | Scientific Reports
Grafted human induced pluripotent stem cells improve the outcome of spinal cord injury: modulation of the lesion microenvironment | Scientific Reports