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Human Amniotic Membrane and Mesenchymal Stem Cells Composite

Clinical Outcomes of Human Amniotic Membrane and Allogeneic Mesenchymal Stem Cells Composite Augmentation for Nerve Transfer Procedure in Brachial Plexus Injury Patients

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04654286
Acronym
BPI+MSC
Enrollment
24
Registered
2020-12-04
Start date
2016-11-17
Completion date
2022-07-30
Last updated
2020-12-07

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

Conditions

Brachial Plexus Neuropathies

Keywords

Brachial Plexus Injury, Amniotic Membrane, Mesenchymal Stem Cells, Nerve Transfer

Brief summary

The purpose of this clinical trial is to investigate the utility of composite wrapping comprising human amniotic membrane and allogeneic adipose-derived mesenchymal stem cells (HAM-AdMSC) for augmentation of nerve transfer procedure in upper TBPI patients

Detailed description

Nerve transfer procedure is recognized as the current gold standard for treating traumatic brachial plexus injury (TBPI). However, despite the current major progress in diagnosis and microsurgical repair, the prognosis in TBPI remains unfavorable due to limited donor nerve and compromised regenerative capability of the nervous system arising from prolonged denervation. Therefore, there is a major need to devise new treatment strategies; and one possible approach is to develop cellular therapies to bioengineer new nerve tissue and/or modulate the endogenous regenerative mechanisms within the injured nerve. Our previous studies have shown that the peripheral nerve tissue engineering approach using human amniotic membrane seeded with allogeneic adipose-derived MSCs to augment axonal regeneration in nerve transfer of TBPI patient revealed promising functional recovery of the shoulder range of motion (ROM). The investigators plan a non-randomized clinical trial in a single center to investigate the use of a hybrid (composite) between human amniotic membrane (HAM) and allogeneic adipose-derived mesenchymal stem cells (AdMSC) as wrapping in the nerve transfer procedure of upper TBPI patients, with a focus on the augmentation of axonal regeneration

Interventions

PROCEDURENerve transfer procedure

1. Identification of potential donor nerves: phrenic nerve, accessory nerve, intercostal nerve, motor branch nerve innervating long head of triceps muscle, motor branch of ulnar nerve innervating flexor carpi ulnaris (FCU) muscle, and motor branch of median nerve innervating flexor carpi radialis (FCR) muscle. 2. Donor nerve is checked for its viability with an electric stimulator during surgery 3. Viable donor nerve is dissected, transferred to the recipient area, and sutured with end-to-end anastomosis.

PROCEDURENerve transfer with HAM-AdMSC composite wrapping

When the nerve transfer procedure is finished, the end-to-end anastomosis is wrapped by a composite consisted of human amniotic membrane and allogeneic adipose-derived mesenchymal stem cells (HAM-AdMSC)

Sponsors

Dr. Soetomo General Hospital
Lead SponsorOTHER_GOV

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SUPPORTIVE_CARE
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
15 Years to 55 Years
Healthy volunteers
Yes

Inclusion criteria

* Suffering from upper BPI (C5-C6 and/or C5-C7) for a duration of fewer than 12 months * Have no systemic disease (Diabetes Mellitus, Lupus erythematosus, rheumatoid arthritis) * Without prior medicamentous treatment history such as corticosteroids * Agree to contribute in the study

Exclusion criteria

* Complete BPI (C5-Th1), lower BPI (C8-Th1) * Traumatic BPI associated with delayed/non-union fracture of the upper extremity affected side. * Polytrauma conditions which are not fully recovered

Design outcomes

Primary

MeasureTime frameDescription
Active range of motion (AROM) pre-surgeryPre-surgeryShoulder: flexion, extension, abduction, adduction, external rotation, internal rotation. Elbow: flexion and extension. Forearm: pronation and supination. The tests are performed by two blinded assessor, and expressed in degrees.
Active range of motion (AROM) at 12 months follow-up12 monthsShoulder: flexion, extension, abduction, adduction, external rotation, internal rotation. Elbow: flexion and extension. Forearm: pronation and supination. The tests are performed by two blinded assessor, and expressed in degrees.
Functional motor power outcome pre-surgeryPre-surgeryMeasured by Medical Research Council (MRC) scale. The MRC scale consists of 6 values of motor power evaluation, ranging from 0 to 5 (0=No contraction, 1=Flicker or trace contraction, 2=Active movement but eliminated with gravity, 3=Active movement against gravity, 4=Active movement against gravity and resistance, 5=Normal power). The tests are performed by two blinded assessor. A higher score indicates better functional motor power outcome.
Functional motor power outcome at 12 months follow-up12 monthsMeasured by Medical Research Council (MRC) scale. The MRC scale consists of 6 values of motor power evaluation, ranging from 0 to 5 (0=No contraction, 1=Flicker or trace contraction, 2=Active movement but eliminated with gravity, 3=Active movement against gravity, 4=Active movement against gravity and resistance, 5=Normal power). The tests are performed by two blinded assessor. A higher score indicates better functional motor power outcome.

Secondary

MeasureTime frameDescription
Disabilities of the Arm, Shoulder, and Hand (DASH) score pre-surgerypre-surgeryDASH score is a self-assessment of symptoms and function of the entire upper extremity comprising 30 items. Each item consists of five levels of answers (1=no difficulty/symptoms, 2=mild difficulty/symptoms, 3=moderate difficulty/symptoms, 4=severe difficulty/symptoms, and 5=extreme difficulty (unable to do)/symptoms). The scores are then used to calculate a scale score ranging from 0 (no disability) to 100 (most severe disability). Greater DASH scores reflect greater disability (worse outcome).
Disabilities of the Arm, Shoulder, and Hand (DASH) score at 12 months follow-up12 monthsDASH score is a self-assessment of symptoms and function of the entire upper extremity comprising 30 items. Each item consists of five levels of answers (1=no difficulty/symptoms, 2=mild difficulty/symptoms, 3=moderate difficulty/symptoms, 4=severe difficulty/symptoms, and 5=extreme difficulty (unable to do)/symptoms). The scores are then used to calculate a scale score ranging from 0 (no disability) to 100 (most severe disability). Greater DASH scores reflect greater disability (worse outcome).
Initial elbow flexion MRC grade 1 (in months)throughout the study duration (12 months), recorded as the first time reported by the patientsMeasurement of the length of time (in months) for the patients to show initial contraction (achieve MRC grade 1) of elbow flexion. Previous study by Estrella (2011) showed that the average time for brachial plexus injury patients to achieve an elbow flexion grade M3 after nerve transfer procedure was 7.6 months (range, 5-12 months). As the elbow flexion is the most important movement to restore in treating BPI, the investigators aim to compare the length of time (in months) for the patients to achieve initial contraction (MRC grade 1). The sooner the patients achieve initial elbow flexion MRC grade 1, the better the outcome is.
Short Form-36 (SF-36) score at 12 months follow-up12 monthsA generic, multipurpose, short-form health survey comparing the relative burden of diseases consisting of 36 questions which cover eight domains of health namely physical functioning, role physical, bodily pain, general health, vitality, social functioning, role emotional, and mental health. Each domain is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. A higher score indicating a more favourable health state/quality of life (better outcome).
Short Form-36 (SF-36) score pre-surgerypre-surgeryA generic, multipurpose, short-form health survey comparing the relative burden of diseases consisting of 36 questions which cover eight domains of health namely physical functioning, role physical, bodily pain, general health, vitality, social functioning, role emotional, and mental health. Each domain is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. A higher score indicating a more favourable health state/quality of life (better outcome).
Initial elbow flexion MRC grade 3 (in months)throughout the study duration (12 months), recorded as the first time reported by the patientsMeasurement of the length of time (in months) for the patients to achieve MRC grade 3 (active movement against gravity) of elbow flexion. Previous study by Estrella (2011) showed that the average time for brachial plexus injury patients to achieve an elbow flexion grade M3 after nerve transfer procedure was 7.6 months (range, 5-12 months). As the elbow flexion is the most important movement to restore in treating BPI, the investigators aim to compare the length of time (in months) for the patients to achieve MRC grade 3. The sooner the patients achieve initial elbow flexion MRC grade 3, the better the outcome is.
Pain outcome pre-surgeryPre-surgeryMeasured by visual analogue scales (VAS). Patients are asked to described their level of pain from the scale 0 to 10 (0 indicating no pain, 1-3 indicating mild pain, 4-6 indicating moderate pain, 7-9 indicating severe pain, and 10 indicating worst, unbearable pain). The lower scores mean a better pain outcome.
Pain outcome at 12 months follow-up12 monthsMeasured by visual analogue scales (VAS). Patients are asked to described their level of pain from the scale 0 to 10 (0 indicating no pain, 1-3 indicating mild pain, 4-6 indicating moderate pain, 7-9 indicating severe pain, and 10 indicating the worst, unbearable pain). The lower scores mean a better pain outcome.

Countries

Indonesia

Contacts

Primary ContactHeri Suroto, MD,PhD
hsuroto2000@yahoo.com
Backup ContactHeri Suroto, MD,PhD
heri-suroto@fk.unair.ac.id

Outcome results

None listed

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