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Freeze-dried Bovine Hydroxyapatite/Secretome Composite for Bone Defects

Clinical Trial of Freeze-dried Bovine Hydroxyapatite/Secretome Composite Application for the Management of Long Bone Defects in the Lower Extremities

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04980261
Enrollment
32
Registered
2021-07-28
Start date
2020-07-01
Completion date
2022-12-31
Last updated
2021-07-28

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

Conditions

Bone Loss

Keywords

Bone Defects, Bone Substitutes, Hydroxyapatites, Mesenchymal Stem Cells, Secretome

Brief summary

This clinical trial aims to investigate the efficacy of freeze-dried bovine hydroxyapatite/secretome composite application for the management of long bone defects and other bone healing disorders in the lower extremities.

Detailed description

The gold standard for treating bone defect conditions is autologous bone graft (autograft). Autograft promotes bone healing due to its osteoconductive (serving as a foundation that facilitates bone growth), osteoinductive (stimulates progenitor cells), and osteogenesis (acting as a precursor of osteoblasts and osteoclasts) properties. However, donor site morbidity and persisting pain following harvest remains a major problem. Hence, we attempt to investigate the efficacy of other bone substitutes, i.e., bovine hydroxyapatite/secretome composite, to treat long bone defects and other bone healing disorders in the lower extremities. Bovine hydroxyapatite (BHA) is a xenograft (animal-derived graft) with osteoconductive properties. Simultaneously, the secretome of the mesenchymal stem cells contains cytokines, chemokines, and growth factors, which possess osteoinductive properties. Thus, we hypothesize that the combination (composite) of BHA/secretome (in the form of freeze-dried (FD) BHA/secretome composite) will promote bone healing ability that is equal to autografts while eliminating donor-site morbidity in the patient.

Interventions

PROCEDUREORIF + autograft

Patients will undergo a standard open reduction internal fixation (ORIF) procedure with autograft implantation (from the iliac crest).

PROCEDUREORIF + FD BHA/Secretome

Patients will undergo an ORIF procedure and subsequently receive freeze-dried bovine hydroxyapatite/secretome composite implantation.

Sponsors

Dr. Ramelan Naval Hospital
CollaboratorUNKNOWN
Airlangga University Hospital
CollaboratorUNKNOWN
Sidoarjo General Hospital
CollaboratorUNKNOWN
Cell & Tissue Bank, Dr. Soetomo General Hospital
CollaboratorUNKNOWN
Dr. Soetomo General Hospital
Lead SponsorOTHER_GOV

Study design

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

Eligibility

Sex/Gender
ALL
Age
18 Years to 50 Years
Healthy volunteers
No

Inclusion criteria

* Patients presenting with bone defects (less than 5 cm) in the diaphysis of the long bones of the lower extremities due to trauma and other bone healing disorders * No history of comorbid diseases * Willing to be involved in the clinical trial

Exclusion criteria

* Patients with bone defects or impaired bone healing caused by tumors, infections, and metabolic diseases * Suffered from multiple fractures and multitrauma patients * Loss to follow-up

Design outcomes

Primary

MeasureTime frameDescription
Ultrasonography evaluation at 16 weeks16 weeksA blinded outcome assessor will perform ultrasonography (USG) evaluation to assess the four stages of the bone healing process using a scoring system named Sonographic Union Score developed by our institution. We will evaluate the following parameters: (1) hematoma organization, (2) neovascularization, (3) bone fracture tip echogenicity, (4) bone fracture border, (5) bridging callus echogenicity, (6) bone to bone graft junction gap, (7) callus formation mineralization, (8) bone surface continuity.
Ultrasonography evaluation at 4 weeks4 weeksA blinded outcome assessor will perform ultrasonography (USG) evaluation to assess the four stages of the bone healing process using a scoring system named Sonographic Union Score developed by our institution. We will evaluate the following parameters: (1) hematoma organization, (2) neovascularization, (3) bone fracture tip echogenicity, (4) bone fracture border, (5) bridging callus echogenicity, (6) bone to bone graft junction gap, (7) callus formation mineralization, (8) bone surface continuity.
Ultrasonography evaluation at 8 weeks8 weeksA blinded outcome assessor will perform ultrasonography (USG) evaluation to assess the four stages of the bone healing process using a scoring system named Sonographic Union Score developed by our institution. We will evaluate the following parameters: (1) hematoma organization, (2) neovascularization, (3) bone fracture tip echogenicity, (4) bone fracture border, (5) bridging callus echogenicity, (6) bone to bone graft junction gap, (7) callus formation mineralization, (8) bone surface continuity.
Ultrasonography evaluation at 12 weeks12 weeksA blinded outcome assessor will perform ultrasonography (USG) evaluation to assess the four stages of the bone healing process using a scoring system named Sonographic Union Score developed by our institution. We will evaluate the following parameters: (1) hematoma organization, (2) neovascularization, (3) bone fracture tip echogenicity, (4) bone fracture border, (5) bridging callus echogenicity, (6) bone to bone graft junction gap, (7) callus formation mineralization, (8) bone surface continuity.
X-ray evaluation immediately following surgery.Day-0A two-view (anterior-posterior/AP and lateral) radiograph will be taken immediately following surgery. The x-ray evaluation will be carried out by a blinded outcome assessor using a scoring system named Radiographic Union Score (Whelan et al., 2010) to assess bone union based on fracture line, callus, and graft resorption on plain radiograph after fracture. This score ranges from 4 to 12, with a higher score indicating a more favorable outcome (better bone healing).
X-ray evaluation at 4 weeks following surgery4 weeksA two-view (anterior-posterior/AP and lateral) radiograph will be taken immediately following surgery. The x-ray evaluation will be carried out by a blinded outcome assessor using a scoring system named Radiographic Union Score (Whelan et al., 2010) to assess bone union based on fracture line, callus, and graft resorption on plain radiograph after fracture. This score ranges from 4 to 12, with a higher score indicating a more favorable outcome (better bone healing).
X-ray evaluation at 8 weeks following surgery.8 weeksA two-view (anterior-posterior/AP and lateral) radiograph will be taken immediately following surgery. The x-ray evaluation will be carried out by a blinded outcome assessor using a scoring system named Radiographic Union Score (Whelan et al., 2010) to assess bone union based on fracture line, callus, and graft resorption on plain radiograph after fracture. This score ranges from 4 to 12, with a higher score indicating a more favorable outcome (better bone healing).
X-ray evaluation at 12 weeks following surgery.12 weeksA two-view (anterior-posterior/AP and lateral) radiograph will be taken immediately following surgery. The x-ray evaluation will be carried out by a blinded outcome assessor using a scoring system named Radiographic Union Score (Whelan et al., 2010) to assess bone union based on fracture line, callus, and graft resorption on plain radiograph after fracture. This score ranges from 4 to 12, with a higher score indicating a more favorable outcome (better bone healing).
X-ray evaluation at 16 weeks following surgery.16 weeksA two-view (anterior-posterior/AP and lateral) radiograph will be taken immediately following surgery. The x-ray evaluation will be carried out by a blinded outcome assessor using a scoring system named Radiographic Union Score (Whelan et al., 2010) to assess bone union based on fracture line, callus, and graft resorption on plain radiograph after fracture. This score ranges from 4 to 12, with a higher score indicating a more favorable outcome (better bone healing).
Ultrasonography evaluation at 2 weeks2 weeksA blinded outcome assessor will perform ultrasonography (USG) evaluation to assess the four stages of the bone healing process using a scoring system named Sonographic Union Score developed by our institution. We will evaluate the following parameters: (1) hematoma organization, (2) neovascularization, (3) bone fracture tip echogenicity, (4) bone fracture border, (5) bridging callus echogenicity, (6) bone to bone graft junction gap, (7) callus formation mineralization, (8) bone surface continuity.

Secondary

MeasureTime frameDescription
Functional evaluation at 12 weeks following surgery.12 weeksThe functional evaluation will be assessed by using a scoring system named LEFS (Lower Extremity Functional Scale). LEFS is a widely known and validated patient-reported outcome measures (PROM) comprising 20 questions that is used to assess lower extremity functions. The patients will be asked to rate the activity listed from 0 to 4 (0 refers to an extreme difficulty/unable to perform activity, while 4 refers to having no difficulty at all). A higher score (maximum 80 points) indicates a very high function (i.e., a more favorable outcome).
Functional evaluation at 16 weeks following surgery.16 weeksThe functional evaluation will be assessed by using a scoring system named LEFS (Lower Extremity Functional Scale). LEFS is a widely known and validated patient-reported outcome measures (PROM) comprising 20 questions that is used to assess lower extremity functions. The patients will be asked to rate the activity listed from 0 to 4 (0 refers to an extreme difficulty/unable to perform activity, while 4 refers to having no difficulty at all). A higher score (maximum 80 points) indicates a very high function (i.e., a more favorable outcome).
Functional evaluation at 8 weeks following surgery.8 weeksThe functional evaluation will be assessed by using a scoring system named LEFS (Lower Extremity Functional Scale). LEFS is a widely known and validated patient-reported outcome measures (PROM) comprising 20 questions that is used to assess lower extremity functions. The patients will be asked to rate the activity listed from 0 to 4 (0 refers to an extreme difficulty/unable to perform activity, while 4 refers to having no difficulty at all). A higher score (maximum 80 points) indicates a very high function (i.e., a more favorable outcome).

Countries

Indonesia

Contacts

Primary ContactFerdiansyah Mahyudin, MD, Ph.D
ferdyortho@yahoo.com+62811320635

Outcome results

None listed

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