2015•Archives of Aesthetic Plastic SurgeryOpen access

Differences in Hypertrophic Scar Fibroblasts according to Scar Severity: Expression of Transforming Growth Factor β1 at the mRNA and Protein Levels

Se Young Kim, Seung Min Nam, Eun Soo Park, Yong Bae Kim

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Abstract

Background Hypertrophic scars result from excessive collagen deposition and increased transforming growth factor beta-1 (TGF-β1) levels.We hypothesized that the expression of TGF-β1 mRNA and protein would increase with the clinical severity of hypertrophic scars.Methods Primary dermal fibroblasts were isolated from cultures of normal skin and hypertrophic scars.The hypertrophic scars were classified by grade based on the Vancouver Scar Scale.After 96 hours of serum starvation, TGF-β1 levels in the supernatant were determined using solid-phase, enzyme-linked immunosorbent assay (ELISA).Quantitative reverse transcription-polymerase chain reaction was performed to quantify TGF-β1 mRNA expression.Results TGF-β1 protein levels of hypertrophic scars tended to increase with increasing severity of the scars, according to the Vancouver Scar Scale.The differences between the normal dermal tissue (NS), hypertrophic scar grade (HS) 1, and HS4 groups were statistically significant (P <0.01).The TGF-β1 mRNA levels of hypertrophic scars also tended to increase according to scar severity.The differences between the NS, HS1, HS2, HS3, and HS4 groups were statistically significant (P<0.01). ConclusionsThe classification of hypertrophic scars according to the Vancouver Scar Scale usually matches the severity of the microenvironment of the hypertrophic scar.

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Background Hypertrophic scars result from excessive collagen deposition and increased transforming growth factor beta-1 (TGF-β1) levels.We hypothesized that the expression of TGF-β1 mRNA and protein would increase with the clinical severity of hypertrophic scars.Methods Primary dermal fibroblasts were isolated from cultures of normal skin and hypertrophic scars.The hypertrophic scars were classified by grade based on the Vancouver Scar Scale.After 96 hours of serum starvation, TGF-β1 levels in the supernatant were determined using solid-phase, enzyme-linked immunosorbent assay (ELISA).Quantitative reverse transcription-polymerase chain reaction was performed to quantify TGF-β1 mRNA expression.Results TGF-β1 protein levels of hypertrophic scars tended to increase with increasing severity of the scars, according to the Vancouver Scar Scale.The differences between the normal dermal tissue (NS), hypertrophic scar grade (HS) 1, and HS4 groups were statistically significant (P <0.01).The TGF-β1 mRNA levels of hypertrophic scars also tended to increase according to scar severity.The differences between the NS, HS1, HS2, HS3, and HS4 groups were statistically significant (P<0.01). ConclusionsThe classification of hypertrophic scars according to the Vancouver Scar Scale usually matches the severity of the microenvironment of the hypertrophic scar.

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Available abstract

Background Hypertrophic scars result from excessive collagen deposition and increased transforming growth factor beta-1 (TGF-β1) levels.We hypothesized that the expression of TGF-β1 mRNA and protein would increase with the clinical severity of hypertrophic scars.Methods Primary dermal fibroblasts were isolated from cultures of normal skin and hypertrophic scars.The hypertrophic scars were classified by grade based on the Vancouver Scar Scale.After 96 hours of serum starvation, TGF-β1 levels in the supernatant were determined using solid-phase, enzyme-linked immunosorbent assay (ELISA).Quantitative reverse transcription-polymerase chain reaction was performed to quantify TGF-β1 mRNA expression.Results TGF-β1 protein levels of hypertrophic scars tended to increase with increasing severity of the scars, according to the Vancouver Scar Scale.The differences between the normal dermal tissue (NS), hypertrophic scar grade (HS) 1, and HS4 groups were statistically significant (P <0.01).The TGF-β1 mRNA levels of hypertrophic scars also tended to increase according to scar severity.The differences between the NS, HS1, HS2, HS3, and HS4 groups were statistically significant (P<0.01). ConclusionsThe classification of hypertrophic scars according to the Vancouver Scar Scale usually matches the severity of the microenvironment of the hypertrophic scar.

Key concepts: Hypertrophic scar, Scars, Medicine, Hypertrophic scars, Transforming growth factor, Messenger RNA, Transforming growth factor beta, Reverse transcription polymerase chain reaction

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