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Placebo-controlled Study to Evaluate Rexlemestrocel-L Alone or Combined With Hyaluronic Acid in Participants With Chronic Low Back Pain

A Prospective, Multicenter, Randomized, Double-blind, Placebo-controlled Study to Evaluate the Efficacy and Safety of a Single Injection of Rexlemestrocel-L Alone or Combined With Hyaluronic Acid (HA) in Subjects With Chronic Low Back Pain

Status
Completed
Phases
Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02412735
Acronym
MSB-DR003
Enrollment
404
Registered
2015-04-09
Start date
2015-03-06
Completion date
2021-06-15
Last updated
2022-10-19

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Degenerative Disc Disease

Keywords

Chronic Lumbar Back Pain, Low back pain, Back pain, Degenerative Disc Disease, Injection of Degenerated Lumbar Disc, Intervertebral Disc Degeneration, Bone Diseases, Musculoskeletal Diseases, Nervous System Diseases, Neurologic Manifestations, Pain, Spinal Diseases, Stem Cells, Adult Stem Cells, Allogeneic Mesenchymal Precursor cells (MPCs), Mesoblast, Hyaluronic Acid, Pharmaceutical Solutions, Adjuvants, Immunologic, Immunologic Factors, Pharmacologic Actions, Protective Agents, rexlemestrocel-L, Viscosupplements

Brief summary

This is a prospective, multicenter, randomized, double-blind, placebo-controlled Phase 3 study designed to evaluate the safety and efficacy of Mesoblast's rexlemestrocel-L alone or combined with hyaluronic acid (HA) in participants with chronic low back pain (\> 6 months) associated with moderate radiographic degenerative changes of a disc.

Interventions

Rexlemestrocel-L injection

Rexlemestrocel-L was combined in 1:1 by-volume ratio with HA solution and the resulting mixture was injected

DRUGPlacebo

Saline control solution

Sponsors

Quintiles, Inc.
CollaboratorINDUSTRY
Mesoblast, Ltd.
Lead SponsorINDUSTRY

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Male and female participants 18 years of age and older * If female of childbearing potential, participant is non-pregnant, non-nursing, and agrees to use highly effective methods of contraception for a minimum of 24 months post-treatment * Signed informed consent and country-appropriate privacy forms indicating participant is willing to undergo treatment and willing to be available for each examination scheduled over the study duration * Have documented diagnosis of moderate radiographic degeneration of an intervertebral disc from L1 to S1, with a disc suspected of causing chronic low back pain (CLBP) associated with moderate radiographic degeneration at a lumbar disc is defined as the following (participant must meet all of the listed conditions): 1. Chronic low back pain for at least 6 months 2. Have failed 6 months of conservative back pain care. (Conservative treatment regimens may include any or all of the following: initial rest, medications \[e.g., anti-inflammatory, analgesics, narcotics/opioids, muscle relaxants\], massage, acupuncture, chiropractic manipulations, activity modification, home-directed lumbar exercise program, and non-invasive pain control treatments or procedures) 3. Have at a minimum undergone supervised physical therapy, such as daily walking routines, therapeutic exercises, and back education programs specifically for the treatment of low back pain and taken a pain medication for back pain (e.g. non-steroidal anti-inflammatory drug (NSAID) and/or opioid medication). 4. Change from normal disc morphology of the index disc as defined by radiographic evaluation by the core imaging evaluation provider. Radiographs must show all of the following: * A modified Pfirrmann score of 3, 4, 5 or 6 on magnetic resonance imaging (MRI) at the index disc * Modic Grade II changes or less on MRI at the index disc * With or without contained disc protrusion at the index disc on MRI e. Low back pain of at least 40mm and not more than 90mm of 100mm on low back pain visual analogue scale (VAS) (average pain over 24 hours) f. Leg pain ≤20mm in both legs on a 100mm VAS scale g. Oswestry disability index (ODI) score of at least 30 and no more than 90 on a 100 point scale.

Exclusion criteria

* Female participants who are pregnant or nursing, or women planning to become pregnant in the first 24 months post-treatment * Extreme obesity, as defined by National Institutes of Health (NIH) Clinical Guidelines Body Mass Index (BMI \> 40) * Have undergone a surgical procedure (e.g. discectomy, intradiscal electrothermal therapy, intradiscal radiofrequency, artificial disc replacement, interbody fusion) on the disc at the index or adjacent level * Osteoporosis, as defined by dual-energy X-ray absorptiometry (DEXA) scan. A DEXA T-score of ≤ -2.5 will exclude the participant. * Any lumbar intradiscal injection, including steroids, into the index or adjacent discs prior to treatment injection, with the exception of the following injections performed at least 2 weeks prior to study treatment: 1. Contrast medium (discography or other diagnostic injection) 2. NSAIDs 3. Nerve-blocking anesthetics (e.g., lidocaine, bupivacaine) 4. Antibiotics 5. Saline * Have undergone a procedure affecting the structure/biomechanics of the index disc level (e.g., posterolateral fusion) * Active malignancy or tumor as source of symptoms or history of malignancy within the 5 years prior to enrolment on study * Have been a recipient of prior allogeneic stem cell/progenitor cell therapy for any indication or autologous stem cell/progenitor cell therapy or other biological intervention to repair the index intervertebral disc * An average baseline morphine equivalent dose (MED) of \>75mg/day as determined by e-diary entries during the screening period * Taking systemic immunosuppressants * A medical condition, serious intercurrent illness, or extenuating circumstance that would preclude participation in the study or potentially decrease survival or interfere with ambulation or rehabilitation. * Participants involved in spinal litigation, including workman's compensation, unless litigation is complete * Are transient or has a severe alcohol or substance abuse problem * Clinically significant nerve pain (e.g., chronic radiculopathy or neuropathy) * Clinically significant sacroiliac joint pain * Compressive pathology due to stenosis or disc protrusion on MRI with associated clinical symptoms defined as leg pain VAS\>20mm out of 100mm or neurologic deficit on neurologic exam * Disc extrusion with a maximum dimension greater or equal to twice the posterior height of the disc, or disc sequestration in the lumbar spine on MRI as determined by radiographic core lab * Modified Pfirrmann score of 7 or 8 at any lumbar level (L1-S1) on MRI evaluation as determined by radiographic core lab * Symptomatic involvement of more than one lumbar disc * Symptomatic central vertebral canal stenosis as defined by neurogenic claudication * Spondylolisthesis or retrolisthesis Grade 2 and above or Spondylolysis at the index or adjacent level(s) * Lumbar spondylitis or other undifferentiated spondyloarthropathy affecting the index disc * Spinal deformity defined as lumbar scoliosis with a Cobb angle of the lumbar spine greater than 15 degrees * Any fracture of the spine at the index or adjacent levels that has not healed, or clinically compromised vertebral bodies at the index level due to current or past trauma * Facet pain at the index level or adjacent segments as determined by a diagnostic medial branch block (a facet block injection is not acceptable for making this determination) to rule out facet joint involvement. * Full thickness annular tears in the index level as determined by free flowing contrast media through the annulus fibrosis.

Design outcomes

Primary

MeasureTime frameDescription
Overall Treatment Success: Bayesian Estimated Response RateUp to 24 monthsOverall treatment success was determined based on number of responders who had composite response at both months 12 and 24 evaluated per specified criteria. A treatment responder with treatment success was defined as a participant who met the 3 criteria of a composite responder analysis as: 50% or greater reduction in the lower-back pain visual analogue scale (VAS) score; 15-point or greater reduction in the Oswestry Disability Index (ODI) score; and lack of post-treatment interventions at the treated level as of the study visit (Visits 6 \[12 months post-treatment\] and 8 \[24 months post-treatment\]). The average response rate (proportion of participants with response presented as Bayesian estimate\[BE\]) was based upon the average of multiple Bayesian simulations.

Secondary

MeasureTime frameDescription
Effectiveness Based on Pain Responders: Bayesian Estimated Response RateUp to 24 monthsA participant was defined as a pain responder for a given study visit if they achieved at least a 50% reduction from Baseline in the lower-back pain VAS score (average pain over 24 hours), as reported during in-clinic assessment. The participant should be qualified as a pain responder at both 12 and 24 months post-treatment, and must not have received a post-treatment intervention through 24 months' follow-up. Any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.
Effectiveness Based on Functional Responders: Bayesian Estimated Response RateUp to 24 monthsA participant was defined as a functional responder for a given study visit if they achieved at least a 15-point reduction from Baseline in ODI score, as reported during in-clinic assessment. The participant should be qualified as a functional responder at both 12 and 24 months post-treatment, and must not have received a post-treatment intervention through 24 months' follow-up; any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.
Effectiveness Based on Treatment Success at 24 Months: Bayesian Estimated Response RateMonth 24A treatment responder with treatment success was defined as a participant who met the 3 conditions of a composite responder analysis as: 50% or greater reduction in the lower-back pain VAS score; 15-point or greater reduction in ODI score; and lack of post-treatment interventions at the treated level as of the study visit. The participants qualified as responders if they satisfied the above conditions at the 24-month follow-up visit alone. Any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.
Effectiveness Based on Minimal Pain Responders at 24 Months: Bayesian Estimated Response RateMonth 24A minimal pain responder was defined as a participant who achieved a lower-back pain VAS score (average pain over 24 hours) of 20 mm or less at the given study visit. The participants qualified as responders if they satisfied the above condition at 24 months post-treatment, and did not receive a post-treatment intervention through 24 months' follow-up. Any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.
Effectiveness Based on Time to First Intervention Over 24 MonthsUp to Month 24The effectiveness of the study drug was evaluated based on its ability in increasing the time to additional interventions at the treated level over 24 months post-treatment. Kaplan-Meier estimates for the probability (expressed as a percentage) of participants to receive an intervention are presented.
Effectiveness Based on Minimal Disability Responders at 24 Months: Bayesian Estimated Response RateMonth 24A minimal disability responder was defined as a participant who achieved an ODI score of 20% or less at the given study visit. The participants qualified as responders if they satisfied the above condition at 24 months post-treatment, and did not receive a post-treatment intervention through 24 months' follow-up. Any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.

Other

MeasureTime frameDescription
Mean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsMonths 1, 3, 6, 12, 18, 24, and 36Pain intensity was recorded on a horizontal 100 mm VAS and measured as the distance in millimeters from the left origin of the horizontal VAS line and the point indicated by the participant as representing their level of pain. A horizontal 100 mm VAS anchored on the left with the words No Pain and on the right with the words Worst Possible Pain, was used to measure low back pain intensity. Scores were obtained by measuring the distance in millimeters from the left origin of the line (0) to the point indicated with a slash placed by the participant to indicate the participant's level of pain. VAS ranges from 0 to 100, with higher scores indicating worst possible pain. A negative change from baseline indicates improvement.

Countries

Australia, United States

Participant flow

Recruitment details

Starting on March 6, 2015, a total of 404 participants were enrolled at investigative sites in Australia and the United States.

Participants by arm

ArmCount
Rexlemestrocel-L
Participants received rexlemestrocel-L 2.0 mL injection of approximately 6 million rexlemestrocel-L cells in freeze media mixed in a 1:1 by-volume ratio with saline on Day 0 (Visit 2).
143
Rexlemestrocel-L + HA
Participants received rexlemestrocel-L 2.0 mL injection of approximately 6 million rexlemestrocel-L cells in freeze media mixed in a 1:1 by-volume ratio with HA solution on Day 0 (Visit 2).
129
Placebo
Participants received saline solution as matching-placebo on Day 0 (Visit 2).
132
Total404

Withdrawals & dropouts

PeriodReasonFG000FG001FG002
Overall StudyAdverse Event012
Overall StudyInvestigator Decision332
Overall StudyLost to Follow-up171118
Overall StudyReason not Specified322
Overall StudyWithdrawal by Subject232722

Baseline characteristics

CharacteristicTotalRexlemestrocel-LRexlemestrocel-L + HAPlacebo
Age, Continuous42.8 years
STANDARD_DEVIATION 10.96
42.1 years
STANDARD_DEVIATION 10.81
42.9 years
STANDARD_DEVIATION 11.66
43.3 years
STANDARD_DEVIATION 10.45
Ethnicity (NIH/OMB)
Hispanic or Latino
24 Participants9 Participants4 Participants11 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
373 Participants133 Participants121 Participants119 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
7 Participants1 Participants4 Participants2 Participants
Race (NIH/OMB)
American Indian or Alaska Native
1 Participants0 Participants0 Participants1 Participants
Race (NIH/OMB)
Asian
7 Participants0 Participants4 Participants3 Participants
Race (NIH/OMB)
Black or African American
18 Participants6 Participants6 Participants6 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
9 Participants4 Participants1 Participants4 Participants
Race (NIH/OMB)
White
369 Participants133 Participants118 Participants118 Participants
Sex: Female, Male
Female
175 Participants60 Participants54 Participants61 Participants
Sex: Female, Male
Male
229 Participants83 Participants75 Participants71 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
deaths
Total, all-cause mortality
0 / 1430 / 1290 / 132
other
Total, other adverse events
111 / 140100 / 12898 / 130
serious
Total, serious adverse events
17 / 14015 / 12810 / 130

Outcome results

Primary

Overall Treatment Success: Bayesian Estimated Response Rate

Overall treatment success was determined based on number of responders who had composite response at both months 12 and 24 evaluated per specified criteria. A treatment responder with treatment success was defined as a participant who met the 3 criteria of a composite responder analysis as: 50% or greater reduction in the lower-back pain visual analogue scale (VAS) score; 15-point or greater reduction in the Oswestry Disability Index (ODI) score; and lack of post-treatment interventions at the treated level as of the study visit (Visits 6 \[12 months post-treatment\] and 8 \[24 months post-treatment\]). The average response rate (proportion of participants with response presented as Bayesian estimate\[BE\]) was based upon the average of multiple Bayesian simulations.

Time frame: Up to 24 months

Population: The ITT Analysis Set included all participants who were randomized, regardless of whether or not the participant was treated, or post-treatment measures were performed.

ArmMeasureValue (MEAN)Dispersion
Rexlemestrocel-LOverall Treatment Success: Bayesian Estimated Response Rate0.267 BE proportion of participantsStandard Deviation 0.038
Rexlemestrocel-L + HAOverall Treatment Success: Bayesian Estimated Response Rate0.335 BE proportion of participantsStandard Deviation 0.043
PlaceboOverall Treatment Success: Bayesian Estimated Response Rate0.313 BE proportion of participantsStandard Deviation 0.041
Secondary

Effectiveness Based on Functional Responders: Bayesian Estimated Response Rate

A participant was defined as a functional responder for a given study visit if they achieved at least a 15-point reduction from Baseline in ODI score, as reported during in-clinic assessment. The participant should be qualified as a functional responder at both 12 and 24 months post-treatment, and must not have received a post-treatment intervention through 24 months' follow-up; any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.

Time frame: Up to 24 months

Population: The ITT Analysis Set included all participants who were randomized, regardless of whether or not the participant was treated, or post-treatment measures were performed.

ArmMeasureValue (MEAN)Dispersion
Rexlemestrocel-LEffectiveness Based on Functional Responders: Bayesian Estimated Response Rate0.378 BE proportion of participantsStandard Deviation 0.042
Rexlemestrocel-L + HAEffectiveness Based on Functional Responders: Bayesian Estimated Response Rate0.409 BE proportion of participantsStandard Deviation 0.045
PlaceboEffectiveness Based on Functional Responders: Bayesian Estimated Response Rate0.413 BE proportion of participantsStandard Deviation 0.044
Secondary

Effectiveness Based on Minimal Disability Responders at 24 Months: Bayesian Estimated Response Rate

A minimal disability responder was defined as a participant who achieved an ODI score of 20% or less at the given study visit. The participants qualified as responders if they satisfied the above condition at 24 months post-treatment, and did not receive a post-treatment intervention through 24 months' follow-up. Any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.

Time frame: Month 24

Population: The ITT Analysis Set included all participants who were randomized, regardless of whether or not the participant was treated, or post-treatment measures were performed.

ArmMeasureValue (MEAN)Dispersion
Rexlemestrocel-LEffectiveness Based on Minimal Disability Responders at 24 Months: Bayesian Estimated Response Rate0.394 BE proportion of participantsStandard Deviation 0.043
Rexlemestrocel-L + HAEffectiveness Based on Minimal Disability Responders at 24 Months: Bayesian Estimated Response Rate0.367 BE proportion of participantsStandard Deviation 0.045
PlaceboEffectiveness Based on Minimal Disability Responders at 24 Months: Bayesian Estimated Response Rate0.440 BE proportion of participantsStandard Deviation 0.045
Secondary

Effectiveness Based on Minimal Pain Responders at 24 Months: Bayesian Estimated Response Rate

A minimal pain responder was defined as a participant who achieved a lower-back pain VAS score (average pain over 24 hours) of 20 mm or less at the given study visit. The participants qualified as responders if they satisfied the above condition at 24 months post-treatment, and did not receive a post-treatment intervention through 24 months' follow-up. Any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.

Time frame: Month 24

Population: The ITT Analysis Set included all participants who were randomized, regardless of whether or not the participant was treated, or post-treatment measures were performed.

ArmMeasureValue (MEAN)Dispersion
Rexlemestrocel-LEffectiveness Based on Minimal Pain Responders at 24 Months: Bayesian Estimated Response Rate0.384 BE proportion of participantsStandard Deviation 0.043
Rexlemestrocel-L + HAEffectiveness Based on Minimal Pain Responders at 24 Months: Bayesian Estimated Response Rate0.495 BE proportion of participantsStandard Deviation 0.047
PlaceboEffectiveness Based on Minimal Pain Responders at 24 Months: Bayesian Estimated Response Rate0.438 BE proportion of participantsStandard Deviation 0.046
Secondary

Effectiveness Based on Pain Responders: Bayesian Estimated Response Rate

A participant was defined as a pain responder for a given study visit if they achieved at least a 50% reduction from Baseline in the lower-back pain VAS score (average pain over 24 hours), as reported during in-clinic assessment. The participant should be qualified as a pain responder at both 12 and 24 months post-treatment, and must not have received a post-treatment intervention through 24 months' follow-up. Any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.

Time frame: Up to 24 months

Population: The ITT Analysis Set included all participants who were randomized, regardless of whether or not the participant was treated, or post-treatment measures were performed.

ArmMeasureValue (MEAN)Dispersion
Rexlemestrocel-LEffectiveness Based on Pain Responders: Bayesian Estimated Response Rate0.352 BE proportion of participantsStandard Deviation 0.041
Rexlemestrocel-L + HAEffectiveness Based on Pain Responders: Bayesian Estimated Response Rate0.472 BE proportion of participantsStandard Deviation 0.045
PlaceboEffectiveness Based on Pain Responders: Bayesian Estimated Response Rate0.388 BE proportion of participantsStandard Deviation 0.044
Secondary

Effectiveness Based on Time to First Intervention Over 24 Months

The effectiveness of the study drug was evaluated based on its ability in increasing the time to additional interventions at the treated level over 24 months post-treatment. Kaplan-Meier estimates for the probability (expressed as a percentage) of participants to receive an intervention are presented.

Time frame: Up to Month 24

Population: The ITT Analysis Set included all participants who were randomized, regardless of whether or not the participant was treated, or post-treatment measures were performed.

ArmMeasureValue (NUMBER)
Rexlemestrocel-LEffectiveness Based on Time to First Intervention Over 24 Months0.1099 percentage probability
Rexlemestrocel-L + HAEffectiveness Based on Time to First Intervention Over 24 Months0.1003 percentage probability
PlaceboEffectiveness Based on Time to First Intervention Over 24 Months0.0913 percentage probability
p-value: 0.784295% CI: [0.5, 2.46]Regression, Cox
p-value: 0.875495% CI: [0.41, 2.14]Regression, Cox
Secondary

Effectiveness Based on Treatment Success at 24 Months: Bayesian Estimated Response Rate

A treatment responder with treatment success was defined as a participant who met the 3 conditions of a composite responder analysis as: 50% or greater reduction in the lower-back pain VAS score; 15-point or greater reduction in ODI score; and lack of post-treatment interventions at the treated level as of the study visit. The participants qualified as responders if they satisfied the above conditions at the 24-month follow-up visit alone. Any participant that did not have a minimum of a visit at 3 months (Study Visit 4) was considered a non-responder for this outcome measure. The average response rate (proportion of participants with response presented as BE) was based upon the average of multiple Bayesian simulations.

Time frame: Month 24

Population: The ITT Analysis Set included all participants who were randomized, regardless of whether or not the participant was treated, or post-treatment measures were performed.

ArmMeasureValue (MEAN)Dispersion
Rexlemestrocel-LEffectiveness Based on Treatment Success at 24 Months: Bayesian Estimated Response Rate0.353 BE proportion of participantsStandard Deviation 0.042
Rexlemestrocel-L + HAEffectiveness Based on Treatment Success at 24 Months: Bayesian Estimated Response Rate0.425 BE proportion of participantsStandard Deviation 0.045
PlaceboEffectiveness Based on Treatment Success at 24 Months: Bayesian Estimated Response Rate0.391 BE proportion of participantsStandard Deviation 0.045
Other Pre-specified

Mean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 Months

Pain intensity was recorded on a horizontal 100 mm VAS and measured as the distance in millimeters from the left origin of the horizontal VAS line and the point indicated by the participant as representing their level of pain. A horizontal 100 mm VAS anchored on the left with the words No Pain and on the right with the words Worst Possible Pain, was used to measure low back pain intensity. Scores were obtained by measuring the distance in millimeters from the left origin of the line (0) to the point indicated with a slash placed by the participant to indicate the participant's level of pain. VAS ranges from 0 to 100, with higher scores indicating worst possible pain. A negative change from baseline indicates improvement.

Time frame: Months 1, 3, 6, 12, 18, 24, and 36

Population: The ITT Analysis Set included all participants who were randomized, regardless of whether or not the participant was treated, or post-treatment measures were performed. Number analyzed is the number of participants with data available for analysis at the given time point.

ArmMeasureGroupValue (LEAST_SQUARES_MEAN)Dispersion
Rexlemestrocel-LMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 3-19.1 score on a scaleStandard Error 2.26
Rexlemestrocel-LMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 18-23.7 score on a scaleStandard Error 2.56
Rexlemestrocel-LMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 12-23.3 score on a scaleStandard Error 2.38
Rexlemestrocel-LMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 1-13.6 score on a scaleStandard Error 2.14
Rexlemestrocel-LMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 36-22.9 score on a scaleStandard Error 2.62
Rexlemestrocel-LMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 24-20.8 score on a scaleStandard Error 2.55
Rexlemestrocel-LMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 6-22.4 score on a scaleStandard Error 2.34
Rexlemestrocel-L + HAMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 12-27.4 score on a scaleStandard Error 2.55
Rexlemestrocel-L + HAMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 1-17.3 score on a scaleStandard Error 2.3
Rexlemestrocel-L + HAMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 3-22.5 score on a scaleStandard Error 2.41
Rexlemestrocel-L + HAMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 6-24.9 score on a scaleStandard Error 2.51
Rexlemestrocel-L + HAMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 18-25.1 score on a scaleStandard Error 2.74
Rexlemestrocel-L + HAMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 24-25.9 score on a scaleStandard Error 2.74
Rexlemestrocel-L + HAMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 36-25.1 score on a scaleStandard Error 2.81
PlaceboMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 18-19.2 score on a scaleStandard Error 2.7
PlaceboMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 3-17.6 score on a scaleStandard Error 2.4
PlaceboMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 36-19.0 score on a scaleStandard Error 2.77
PlaceboMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 24-18.3 score on a scaleStandard Error 2.7
PlaceboMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 12-19.0 score on a scaleStandard Error 2.51
PlaceboMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 6-18.6 score on a scaleStandard Error 2.48
PlaceboMean Change From Baseline in Low Back Pain Visual Analog Scale (VAS) Score at 1, 3, 6, 12, 18, 24, and 36 MonthsChange from Baseline at Month 1-13.9 score on a scaleStandard Error 2.32
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 1p-value: 0.907295% CI: [-5.71, 6.43]Mixed Model for Repeated Measures (MMRM)
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 1p-value: 0.288395% CI: [-9.51, 2.83]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 3p-value: 0.631495% CI: [-7.9, 4.8]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 3p-value: 0.136695% CI: [-11.37, 1.56]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 6p-value: 0.249795% CI: [-10.43, 2.72]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 6p-value: 0.066695% CI: [-13, 0.43]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 12p-value: 0.214795% CI: [-10.91, 2.46]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 12p-value: 0.016295% CI: [-15.19, -1.55]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 18p-value: 0.22395% CI: [-11.69, 2.74]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 18p-value: 0.115295% CI: [-13.27, 1.45]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 24p-value: 0.488495% CI: [-9.75, 4.67]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 24p-value: 0.042695% CI: [-14.98, -0.25]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 36p-value: 0.305695% CI: [-11.27, 3.54]MMRM
Comparison: Mean Change from Baseline in Low Back Pain VAS Score at Month 36p-value: 0.118495% CI: [-13.59, 1.54]MMRM

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026