The purpose of this study is to assess the safety of autologous human Schwann cell (ahSC) transplantation in participants with chronic SCI. This trial design is phase I, open label, unblinded, non-randomized, and non-placebo controlled multiple injury cohorts.
For humans with chronic SCI, we hypothesize that axons might show improved function if myelin repair is induced with the implantation of ahSC. In addition spinal cord cavitation may be reduced, and neural sprouting and plasticity may be enhanced via neurotrophic effects. In this trial, subjects will receive fitness conditioning and rehabilitation prior to transplantation in order to validate the stability of their neurological baseline and enhance their ability to undergo surgery with few complications. They will also receive fitness conditioning and rehabilitation post-transplantation to maintain health and promote neuronal activity and potential neuroplasticity. Trial enrollment will target 2 cohorts. The first cohort will be thoracic (T) level 2-12 ASIA Impairment Scale (AIS) grade A, B, or C (n = up to 4), the second cohort will be cervical (C) level 5 through T1 AIS A, B, or C (n = up to 6). Two (2) participants with AIS grade A will be enrolled prior to enrolling a participant with AIS B or C, applicable to both cohorts. Participants will be monitored throughout a 6 month post-transplantation evaluation period for occurrence of AEs (acute, delayed, and/or cumulative), as well as for changes in clinical status and neurological status. Safety and efficacy assessments will be performed at weeks 1 and 2 post-transplantation and months 2 and 6 post-transplantation.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
8
Schwann cells harvested from the sural nerve of the participant will be autologously transplanted into the epicenter of the participant's spinal cord injury.
University of Miami
Miami, Florida, United States
International Standards of Neurological Classification of Spinal Cord Injury
Time frame: Change from Baseline at 6 months
Magnetic Resonance Imaging of spinal cord
Time frame: Change from Baseline at 6 months
Neuropathic Pain Symptoms Inventory
Time frame: Change from Baseline at 6 months
ISCI Basic Pain dataset version2
Time frame: Change from Baseline at 6 months
Pain Diagram
Time frame: Change from Baseline at 6 months
Quantitative Sensory Testing
Time frame: Change from Baseline at 6 months
Spinal Cord Independence Measure III
Time frame: Change from Baseline at 6 months
SCI-Functional Index Computer Adaptive Testing
Time frame: Change from Baseline at 6 months
10-Meter Walk Test
Time frame: Change from Baseline at 6 months
2-Minute Walk Test
Time frame: Change from Baseline at 6 months
Timed Up and Go
Time frame: Change from Baseline at 6 months
Timed Stair Climb
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Time frame: Change from Baseline at 6 months
Capabilities of Upper Extremity Questionnaire
Time frame: Change from Baseline at 6 months
ISCI Upper Extremity Basic dataset
Time frame: Change from Baseline at 6 months
ISCI Basic Bowel dataset
Time frame: Change from Baseline at 6 months
ISCI Basic Lower Urinary Tract dataset
Time frame: Change from Baseline at 6 months
ISCI Basic Male and Female Sexual Function datasets
Time frame: Change from Baseline at 6 months
ISCI Quality of Life dataset
Time frame: Change from Baseline at 6 months
Motor Evoked Potentials
Time frame: Change from Baseline at 6 months
Somatosensory Evoked Potentials
Time frame: Change from Baseline at 6 months
Sympathetic Skin Response
Time frame: Change from Baseline at 6 months
Graded Strength Test
Time frame: Change from Baseline at 6 months
1-Repetition Maximum
Time frame: Change from Baseline at 6 months
Head-up Tilt
Time frame: Change from Baseline at 6 months
Guy Farrar Subject Global Impression of Change
Time frame: Change from Baseline at 6 months
Modified Ashworth Scale
Time frame: Change from Baseline at 6 months
Pendulum Test
Time frame: Change from Baseline at 6 months
Spinal Cord Assessment Tool for Spastic reflexes
Time frame: Change from Baseline at 6 months