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A fusion of minicircle DNA and nanoparticle delivery technologies facilitates therapeutic genetic engineering of autologous canine olfactory mucosal cells

Delaney, A M; Adams, C F; Fernandes, A R; Al-Shakli, A F; Sen, J; Carwardine, D R; Granger, N; Chari, D M

Authors

A M Delaney

C F Adams

A R Fernandes

A F Al-Shakli

J Sen

D R Carwardine

N Granger

D M Chari



Abstract

Olfactory ensheathing cells (OECs) promote axonal regeneration and improve locomotor function when transplanted into the injured spinal cord. A recent clinical trial demonstrated improved motor function in domestic dogs with spinal injury following autologous OEC transplantation. Their utility in canines offers promise for human translation, as dogs are comparable to humans in terms of clinical management and genetic/environmental variation. Moreover, the autologous, minimally invasive derivation of OECs makes them viable for human spinal injury investigation. Genetic engineering of transplant populations may augment their therapeutic potential, but relies heavily on viral methods which have several drawbacks for clinical translation. We present here the first proof that magnetic particles deployed with applied magnetic fields and advanced DNA minicircle vectors can safely bioengineer OECs to secrete a key neurotrophic factor, with an efficiency approaching that of viral vectors. We suggest that our alternative approach offers high translational potential for the delivery of augmented clinical cell therapies.

Citation

Delaney, A. M., Adams, C. F., Fernandes, A. R., Al-Shakli, A. F., Sen, J., Carwardine, D. R., …Chari, D. M. (2017). A fusion of minicircle DNA and nanoparticle delivery technologies facilitates therapeutic genetic engineering of autologous canine olfactory mucosal cells. Nanoscale, 9(25), 8560-8566. https://doi.org/10.1039/c7nr00811b

Journal Article Type Article
Acceptance Date Jun 2, 2017
Publication Date Jun 2, 2017
Deposit Date Jul 22, 2017
Publicly Available Date Aug 19, 2019
Journal Nanoscale
Print ISSN 2040-3364
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
Volume 9
Issue 25
Pages 8560-8566
DOI https://doi.org/10.1039/c7nr00811b
Public URL https://rvc-repository.worktribe.com/output/1391648

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