ReviewJournal of tissue engineering and regenerative medicine2024
Challenges and Advances in Peripheral Nerve Tissue Engineering Critical Factors Affecting Nerve Regeneration.
Review in Journal of tissue engineering and regenerative medicine, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- Hypoxia-Induced Lactylation of NSUN3 Promotes m5C Methylation of SETD2 to Regulate Peripheral Nerve Injury Repair.Journal of the peripheral nervous system : JPNS · 2026Article
- Biohybrid cochlear implants: neural interfaces, regenerative pathways, and translational benchmarks.Journal of neuroengineering and rehabilitation · 2026Review
- Hypoxia preconditioned serum (HPS) and platelet-rich plasma (PRP) promote proliferation, neurite network formation, and neurite elaboration in N2a cells.Frontiers in bioengineering and biotechnology · 2026Article
- Low-intensity pulsed ultrasound for peripheral nerve regeneration: mechanobiological mechanisms and translational potential.Journal of translational medicine · 2025Review
- Peripheral Nerve Regeneration Reimagined: Cutting-Edge Biomaterials and Biotechnological Innovations.Bioengineering (Basel, Switzerland) · 2025Review
- Influence of Scaffold Structure and Biomimetic Properties on Adipose Stem Cell Homing in Personalized Reconstructive Medicine.Biomimetics (Basel, Switzerland) · 2025Review
- Branched Polymer Architecture for Modulating Interactions in Material-Bio Interface.Tissue engineering and regenerative medicine · 2025Review
- Peripheral Nerve Protection Strategies: Recent Advances and Potential Clinical Applications.Journal of functional biomaterials · 2025Review
- Article
- Combined use of olfactory mucosal mesenchymal stem cells conditioned medium and neural guide conduits promotes nerve regeneration in an ovine model.Frontiers in cell and developmental biology · 2025Article
Corrections and comments
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Authors and funding
4 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Peripheral neuropathy is painful and can cause a considerable decline in quality of life. Surgery and autograft are the current approaches and clinical standards for restoring function after nerve damage. However, they usually result in unacceptable clinical results, so we need modern peripheral nerve defect treatment approaches. Tissue engineering techniques have been developed as a promising approach, but there are some considerations for translational application. Clinical application of novel tissue engineering methods is related to combining the appropriate cell and scaffold type to introduce safe and efficient bioscaffolds. Efficient nerve regeneration occurs by mimicking the extracellular matrix and combining topographical, biochemical, mechanical, and conductive signs via different cells, biomolecules, and polymers. In brief, ideal engineered biomaterial scaffolds will have to cover all characteristics of nerve tissue, such as nerve number, myelin, and axon thickness. Nerve regeneration has a highly sensitive response to its surrounding microenvironment. For designing a suitable construct, matching the regenerative potential of the autograft as the golden standard is essential. This review article examines the newest advancements in peripheral nerve tissue engineering. Specifically, the discussion will focus on incorporating innovative cues, biological modification, biomaterials, techniques, and concepts in this area of research.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.