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Mesenchymal Stem Cells and Amniotic Membrane Composite for Supraspinatus Tendon Repair Augmentation

The Efficacy of Using Allogeneic Adipose-derived Mesenchymal Stem Cells and Human Amniotic Membrane (AAdMSC-HAM) Composite for Supraspinatus Tendon Repair Augmentation

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04670302
Enrollment
24
Registered
2020-12-17
Start date
2019-10-17
Completion date
2022-12-31
Last updated
2020-12-17

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

Conditions

Supraspinatus Tear

Keywords

Supraspinatus rupture, Supraspinatus tear, Tendon repair, Tendon tissue engineering, Amniotic membrane, Mesenchymal stem cells

Brief summary

This is a non-randomized clinical trial conducted in a single tertiary hospital which investigates the efficacy of allogeneic adipose-derived mesenchymal stem cells and human amniotic membrane (AAdMSC-HAM) composite for supraspinatus tendon repair augmentation

Detailed description

Supraspinatus tendon tear is the most common factor causing shoulder pain, mainly resulting in discomfort and functional deficit in individuals over the age of 35. Supraspinatus tendon repair surgery represents one of the most widely performed types of orthopedic operation. Nevertheless, concerns persist regarding tendon-to-bone healing during the postoperative period. Despite advancements in surgical technique, re-tear of a previously repaired supraspinatus tendon is a fairly common complication, especially in a larger size tear. Such repair technique employing suture anchor devices alone has not yet produced functional results demonstrating both anatomical and biomechanical properties. Therefore, tendon tissue engineering using a combination of scaffolds, cells, and growth factors stimulation offers a potential solution as a biological augmentation in tendon repair. Human amniotic membrane (HAM) has been widely used as a natural scaffold in tissue engineering due to many of its unique properties such as providing growth factors, cytokines and tissue inhibitors of metalloproteinases, adequate mechanical strength, and biocompatibility. Whereas, mesenchymal stem cells (MSCs) constitute one of the adult stem cells that promote replacement and repair of damaged tissue along with normal tissue turnover. These MSCs are seeded to the HAM scaffolds to biologically augment tendon repair, with MSCs acting as cytokines/growth factors to stimulate tissue repair. This approach serves as the foundation to conduct the present study. The investigators aim to investigate the efficacy of using allogeneic adipose-derived MSCs and human amniotic membrane (AAdMSC-HAM) composite for supraspinatus tendon repair augmentation.

Interventions

PROCEDURETendon repair procedure

Tendon repair procedure: 1. Single senior surgeon (HS) will perform mini-open surgery to decompress the acromioplasty and repair the supraspinatus tendon. 2. Splicing is achieved by installing screw-type anchors on the insertional footprint of the humeral head greater tuberosity. 3. Then, double suturing of the supraspinatus tendon is performed.

PROCEDURETendon repair augmented with AAdMSC-HAM composite

After double suturing of the supraspinatus tendon, the composite comprising freeze-dried HAM (2 cm x 2 cm x 0.002 cm) and AAdMSC (20 million cells) is placed on the upper surface of the splice and fixed with stitches at all four corners.

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
35 Years to 75 Years
Healthy volunteers
Yes

Inclusion criteria

* Suffering from complete/total tear of supraspinatus tendon for a duration of fewer than 12 months * Diagnosis is established based on clinical condition and ultrasonography or MRI examination

Exclusion criteria

* Patients with comorbid diseases: Diabetes Mellitus, Rheumatoid Arthritis, and other inflammatory diseases. * Patients presenting with other related injuries, such as fractures or dislocation around the shoulder joint.

Design outcomes

Primary

MeasureTime frameDescription
Active range of motion (AROM) pre-surgeryPre-surgeryShoulder: flexion, extension, abduction, adduction, external rotation, internal rotation. 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. The tests are performed by two blinded assessor, and expressed in degrees.

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 follow-up 12 months12 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).
Pain pre-surgeryPre-surgery OutcomeMeasured 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
Constant-Murley Score (CS) at follow-up 12 months12 monthsThe scoring system records individual parameters and provides an overall clinical functional assessment. It consists of 4 domains: pain, activities of daily living (ADL), mobility, and power/strength. Pain and ADL are self-assessed, while all other items are assessed by the blinded examiner. A higher score shows a better function (100 as the best), while a lower score shows a worse function (0 as the worst).
Tear recurrence (re-tear)Throughout the study duration (12 months), recorded as the first time complained by the patients (i.e. after n months).A systematic review (D'Ambrosi et al., 2019) showed that re-tear rates after rotator cuff repair with scaffolds were 17.97%. We hypothesize that the augmentation using HAM (as scaffold) seeded with AAdMSC would further lower the re-tear rates. We plan to record the recurrence of supraspinatus tendon tear (if any) based on radiographic evaluation with ultrasonography, which will then be confirmed with MRI. Ultrasonography provides an excellent anatomical evaluation of soft tissue which is able to assess any alterations during active locomotion. However, due to its user-dependent nature, we will also confirm the findings with MRI examination. Any grade of re-tear (grade I-III as evaluated by ultrasonography and confirmed with MRI) will be counted in and classified as re-tear. When the patients do not complain about any symptoms of re-tear, we will record them as no re-tear.
Constant-Murley Score (CS) pre-surgeryPre-surgeryThe scoring system records individual parameters and provides an overall clinical functional assessment. It consists of 4 domains: pain, activities of daily living (ADL), mobility, and power/strength. Pain and ADL are self-assessed, while all other items are assessed by the blinded examiner. A higher score shows a better function (100 as the best), while a lower score shows a worse function (0 as the worst).
Pain at follow-up 12 months12 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.com62 31 5038335
Backup ContactHeri Suroto, MD, PhD
heri-suroto@fk.unair.ac.id62 31 5020251

Outcome results

None listed

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