Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Inha Baek's research focuses on developing therapeutic strategies for spinal cord injuries, particularly investigating the potential of hydrogels and stem cell delivery. Baek has explored the neuro-regenerative properties of composite matrix hydrogels embedded with adipose-derived stem cells. Additionally, Baek has worked on creating in vitro models of fibrotic scarring following spinal cord injury to study astrocyte activation and neurite outgrowth. This work involves examining the role of the extracellular matrix and collagen in scar formation and neuronal regeneration. Baek collaborates with researchers at the University of Arkansas at Fayetteville and the University of Arkansas for Medical Sciences on these and related projects.
Metrics
- h-index: 3
- Publications: 4
- Citations: 12
Selected Publications
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Abstract B026: Pancreatic tumor extracellular vesicles induce perineural invasion in vitro via IL- 8/CCL2 (2024)
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Investigation of neuro-regenerative therapeutic potential of nerve composite matrix hydrogels embedded with adipose-derived stem cells (2024)
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Development of Tissue-Engineered Model of Fibrotic Scarring after Spinal Cord Injury to Study Astrocyte Activation and Neurite Outgrowth In Vitro (2024)
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Development of Combinatorial Therapeutics for Spinal Cord Injury using Stem Cell Delivery (2024)
Collaboration Network
Top Collaborators
- Development of Combinatorial Therapeutics for Spinal Cord Injury using Stem Cell Delivery
- Abstract B026: Pancreatic tumor extracellular vesicles induce perineural invasion in vitro via IL- 8/CCL2
- Investigation of neuro-regenerative therapeutic potential of nerve composite matrix hydrogels embedded with adipose-derived stem cells
- Development of Tissue-Engineered Model of Fibrotic Scarring after Spinal Cord Injury to Study Astrocyte Activation and Neurite Outgrowth In Vitro
- Development of Tissue-Engineered Model of Fibrotic Scarring after Spinal Cord Injury to Study Astrocyte Activation and Neurite Outgrowth In Vitro
- Abstract B026: Pancreatic tumor extracellular vesicles induce perineural invasion in vitro via IL- 8/CCL2
- Abstract B026: Pancreatic tumor extracellular vesicles induce perineural invasion in vitro via IL- 8/CCL2
- Abstract B026: Pancreatic tumor extracellular vesicles induce perineural invasion in vitro via IL- 8/CCL2
- Abstract B026: Pancreatic tumor extracellular vesicles induce perineural invasion in vitro via IL- 8/CCL2
- Abstract B026: Pancreatic tumor extracellular vesicles induce perineural invasion in vitro via IL- 8/CCL2
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