Your browser doesn't support javascript.
loading
Transplantation of encapsulated autologous olfactory ensheathing cell populations expressing chondroitinase for spinal cord injury: A safety and feasibility study in companion dogs.
Prager, Jon; Fenn, Joe; Plested, Mark; Escauriaza, Leticia; Merwe, Tracy van der; King, Barbora; Chari, Divya; Wong, Liang-Fong; Granger, Nicolas.
Affiliation
  • Prager J; Clinical Science and Services, The Royal Veterinary College, London, UK.
  • Fenn J; Bristol Veterinary School, University of Bristol, Bristol, UK.
  • Plested M; Clinical Science and Services, The Royal Veterinary College, London, UK.
  • Escauriaza L; Clinical Science and Services, The Royal Veterinary College, London, UK.
  • Merwe TV; Highcroft Veterinary Referrals, CVS, Bristol, UK.
  • King B; Clinical Investigation Centre, The Royal Veterinary College, London, UK.
  • Chari D; Clinical Investigation Centre, The Royal Veterinary College, London, UK.
  • Wong LF; Neural Tissue Engineering Group, Keele School of Medicine, Keele University, Keele, UK.
  • Granger N; Bristol Medical School, University of Bristol, Bristo, UK.
J Tissue Eng Regen Med ; 16(9): 788-798, 2022 09.
Article in En | MEDLINE | ID: mdl-35686704
ABSTRACT
Spinal cord injury (SCI) can cause irreversible paralysis, with no regenerative treatment clinically available. Dogs with natural SCI present an established model and can facilitate translation of experimental findings in rodents to people. We conducted a prospective, single arm clinical safety study in companion dogs with chronic SCI to characterize the feasibility of intraspinal transplantation of hydrogel-encapsulated autologous mucosal olfactory ensheathing cell (mOEC) populations expressing chondroitinase ABC (chABC). mOECs and chABC are both promising therapies for SCI, and mOECs expressing chABC drive greater voluntary motor recovery than mOECs alone after SCI in rats. Canine mOECs encapsulated in collagen hydrogel can be matched in stiffness to canine SCI. Four dogs with complete and chronic loss of function caudal to a thoraco-lumbar lesion were recruited. After baseline measures, olfactory mucosal biopsy was performed and autologous mOECs cultured and transduced to express chABC, then hydrogel-encapsulated and percutaneously injected into the spinal cord. Dogs were monitored for 6 months with repeat clinical examinations, spinal MRI, kinematic gait and von Frey assessment. No adverse effects or significant changes on neurological examination were detected. MRI revealed large and variable lesions, with no spinal cord compression or ischemia visible after hydrogel transplantation. Owners reported increased pelvic-limb reflexes with one dog able to take 2-3 unsupported steps, but gait-scoring and kinematic analysis showed no significant improvements. This novel combination approach to regeneration after SCI is therefore feasible and safe in paraplegic dogs in a clinical setting. A randomised-controlled trial in this translational model is proposed to test efficacy.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Spinal Cord Injuries / Pets Type of study: Clinical_trials / Observational_studies / Prognostic_studies Limits: Animals / Humans Language: En Journal: J Tissue Eng Regen Med Journal subject: BIOTECNOLOGIA / HISTOLOGIA Year: 2022 Document type: Article Affiliation country: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Spinal Cord Injuries / Pets Type of study: Clinical_trials / Observational_studies / Prognostic_studies Limits: Animals / Humans Language: En Journal: J Tissue Eng Regen Med Journal subject: BIOTECNOLOGIA / HISTOLOGIA Year: 2022 Document type: Article Affiliation country: United kingdom
...