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Biological Skin Graft With Keratinocyte-stem Cell Co-cultre for Burn Patients

Substitute Graft for Burns Using Biological Graft Seeded With Autologous Keratinocyte Co-cultured With Stem Cells

Status
UNKNOWN
Phases
Early Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05652816
Enrollment
20
Registered
2022-12-15
Start date
2022-09-06
Completion date
2024-12-31
Last updated
2022-12-15

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

Conditions

Burn Degree Second, Burn Degree Third

Keywords

artificial skin graft, keratinocyte, amnion epithelial stem cells, burn

Brief summary

The goal of this clinical trial is to test whether artificial skin graft can substitute autologous skin graft in current burn treatment. The main question it aims to answer is: • Can artificial skin graft result in better wound healing compared to the current burn treatment; autologous skin graft? You will: * Undergo debridement surgery * Receive artificial skin graft as an alternative to autologous skin graft * Undergo biopsy procedure of burn area If there is a comparison group: Researchers will compare autologous skin graft group to see the wound healing process

Detailed description

Burn caused by working accidents occurs mostly in the male population of productive age (68.68%). Up to this date, the only treatment for grade 2B-3 burns patients in Indonesia is skin transplantation taken from their own body (autologous skin graft). This treatment has several drawbacks in which repeated surgery is sometimes necessary, the source of skin in patients with wide area of burn is limited, and patients that are in the elder age and have comorbidities have high mortality risk. In order to find an alternative for autologous skin graft therapy, a combination of tissue engineering and stem cell therapy is used to invent an artificial skin graft. The present study attempts to evaluate the efficacy of artificial skin graft seeded with autologous keratinocyte and stem cells towards wound healing in burn patients. The artificial graft used in this study is amnion bilayer; a graft that was decellularized to remove donor's cells and then layered to form into 3-D. To evaluate the efficacy, biopsies are taken from the burn area of patients to evaluate the histoarchitecture of patients' tissue by histological staining (H&E and Movat's pentachrome, IHC collagen I, collagen III, vWF, and alpha-SMA) and measure the relative gene expression by qPCR. For clinical data, burn area calculation using Rule of 9 method and thermography measurement using FLIRONE. Furthermore, systemic evaluation of patients are done by monitoring the procalcitonin, lactate, mean arterial pressure, gradation of wound, and sensory of burn area. The evaluation and measurement mentioned above are then compared to patients treated with the current available therapy; autologous skin graft. The artificial skin graft is hoped to result in equal, if not better, wound healing in burn patients compared to autologous skin graft. The investigators hope that artificial skin graft can be an option, other than autologous skin graft, in treating burn patients in the future.

Interventions

PROCEDURESplit-thickness skin graft

Transplantation of autologous skin to burn area

BIOLOGICALArtificial skin graft

Decellularized amnion membrane formed into 3-D matrix

BIOLOGICALArtificial skin graft co-culture

Decellularized amnion membrane formed into 3-D matrix seeded with autologous keratinocyte co-cultured with amnion epithelial stem cells

Sponsors

Indonesia University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 55 Years
Healthy volunteers
No

Inclusion criteria

* Aged 18 - 55 * Area of burn \<50% * Acute phase burn (\<120 hrs) * Have not undergo any surgery for burn treatment

Exclusion criteria

* Immunocompromised * Have comorbidities

Design outcomes

Primary

MeasureTime frameDescription
Burn thermographyDay of surgeryThermography evaluation using FLIRONE
Burn thicknessDay of surgeryThickness of burn evaluation using Rule of 9
Systemic clinical evaluationDay of surgeryMean arterial pressure measurement
Histoarchitecture evaluationDay of surgeryHaematoxylin & Eosin staining
ImmunohistochemistryDay of surgerycollagen-1 labelling
Wound healing relative gene expressionDay of surgeryTGFB1

Countries

Indonesia

Outcome results

None listed

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