Related Experiment Video
Updated: Jan 19, 2026

Isolation, Culture, and Characterization of Primary Dermal Fibroblasts from Human Keloid Tissue
Published on: July 28, 2023
Triamcinolone Acetonide Suppresses Keloid Formation Through Enhancing Apoptosis in a Nude Mouse Model
Austin D Chen1, Rong-Fu Chen1, Yun-Ting Li1
1From the Division of Plastic and Reconstructive Surgery, Department of Surgery, Kaohsiung Medical University Hospital.
Background:
Current understanding of steroid treatments for keloids is in regards to modulation of inflammation, proliferation, and apoptosis, with no in vivo study on the latter. Using a nude mouse model, we investigated whether triamcinolone acetonide (TA) injections induce keloids regression through enhancing apoptosis.
Materials And Methods:
Thirty-six keloid specimens (1 × 1 cm) were harvested from 6 patients and separated into sets of 2 from the same patient: no treatment and intralesional TA injection (0.4 mg/mL/kg) at 8 weeks of postimplantation. One set was implanted in each of 18 randomly selected nude mice, which were separated into 3 groups based on time of keloid harvesting after treatment: group A, 2 weeks; group B, 8 weeks; and group C, 14 weeks. Each group had 1 set of specimen from each patient. Histological staining was performed with hematoxylin and eosin stain. Immunohistochemistry staining was performed for human-prolyl 4-hydroxylase (hPH4) and caspase 3 protein, along with terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) assay.
Results:
All keloid specimens survived, with no noted overgrowth. Hematoxylin and eosin staining revealed dense extracellular matrix and viable fibroblasts, and hPH4 immunohistochemistry revealed strong expression, demonstrating keloid viability. Caspase 3 protein and TUNEL expressions were significantly increased in the treatment versus control groups, demonstrating that TA injections induced apoptosis.
Conclusions:
Triamcinolone acetonide intralesional injections significantly increased apoptosis in keloids, represented by increased caspase 3 protein and TUNEL expressions, supporting that steroids suppress keloids in part owing to enhancement of apoptosis.
Insights
Triamcinolone acetonide (TA) injections significantly increase apoptosis in keloids. This study demonstrates that steroid treatment for keloids works partly by enhancing programmed cell death, aiding keloid regression.
Area of Science:
- Dermatology
- Cell Biology
- Wound Healing
Background:
- Current steroid treatments for keloids focus on inflammation and proliferation, with limited in vivo evidence for apoptosis modulation.
- No prior in vivo studies have investigated steroid-induced apoptosis in keloids.
Purpose of the Study:
- To investigate if triamcinolone acetonide (TA) injections induce keloid regression by enhancing apoptosis in an in vivo model.
- To provide in vivo evidence for the mechanism of steroid action in keloid treatment.
Main Methods:
- A nude mouse model was used, implanting 36 keloid specimens from 6 patients.
- Specimens were treated with intralesional triamcinolone acetonide (TA) or left untreated, harvested at 2, 8, and 14 weeks.
- Histological analysis included H&E staining, and immunohistochemistry for hPH4, caspase 3, and TUNEL assay.
Main Results:
- Keloid specimens remained viable with no overgrowth.
- Increased expression of caspase 3 protein and positive TUNEL staining were observed in TA-treated keloids compared to controls.
- These findings indicate significantly enhanced apoptosis in keloids following TA injections.
Conclusions:
- Intralesional triamcinolone acetonide injections significantly increase apoptosis in keloids.
- Steroid suppression of keloids is partly mediated through the enhancement of apoptosis.
- This study provides in vivo evidence supporting apoptosis as a key mechanism in steroid therapy for keloids.
Related Concept Videos
04:41Isolation, Culture, and Characterization of Primary Dermal Fibroblasts from Human Keloid Tissue
08:27Use of a Caspase Multiplexing Assay to Determine Apoptosis in a Hypothalamic Cell Model
07:42Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
09:17Adult Mouse Digit Amputation and Regeneration: A Simple Model to Investigate Mammalian Blastema Formation and Intramembranous Ossification
Apoptosis
Restoring Memory Formation in a Memory-Deficient Mouse Model through Allosteric Modulation

