4.6 Review

Material and mechanical factors: new strategy in cellular neurogenesis

Journal

NEURAL REGENERATION RESEARCH
Volume 9, Issue 20, Pages 1810-1813

Publisher

WOLTERS KLUWER MEDKNOW PUBLICATIONS
DOI: 10.4103/1673-5374.143426

Keywords

neural regenerative medicine; cellular neurogenesis; material cue; mechanical factor; soluble signal

Funding

  1. NE EPSCoR Trans-disciplinary Neuroscience Research Seed Grant
  2. NSF CAREER [1351570]
  3. AHA Scientist Development [12SDG12030109]
  4. Osteology Foundation [12-006]
  5. Nebraska Research Initiative
  6. Directorate For Engineering
  7. Div Of Chem, Bioeng, Env, & Transp Sys [1351570] Funding Source: National Science Foundation

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Since damaged neural circuits are not generally self-recovered, developing methods to stimulate neurogenesis is critically required. Most studies have examined the effects of soluble pharmacological factors on the cellular neurogenesis. On the other hand, it is now recognized that the other extracellular factors, including material and mechanical cues, also have a strong potential to induce cellular neurogenesis. This article will review recent data on the material (chemical patterning, micro/nano-topography, carbon nanotube, graphene) and mechanical (static cue from substrate stiffness, dynamic cue from stretch and flow shear) stimulations of cellular neurogenesis. These approaches may provide new neural regenerative medicine protocols. Scaffolding material templates capable of triggering cellular neurogenesis can be explored in the presence of neurogenesis-stimulatory mechanical environments, and also with conventional soluble factors, to enhance axonal growth and neural network formation in neural tissue engineering.

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