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Transforming growth factor-β1 phage model peptides isolated from a phage display 7-mer peptide library can inhibit the activity of keloid fibroblasts 被引量:8

Transforming growth factor-β1 phage model peptides isolated from a phage display 7-mer peptide library can inhibit the activity of keloid fibroblasts
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摘要 Background Transforming growth factor-β1 (TGF-β1) is known to have a role in keloid formation through the activation of fibroblasts and the acceleration of collagen deposition. The objective of this current study was to isolate TGF-β1 phage model peptides from a phage display 7-mer peptide library to evaluate their therapeutic effect on inhibiting the activity of keloid fibroblasts.Methods A phage display 7-mer peptide library was screened using monoclonal anti-human TGF-β1 as the target to obtain specific phages containing ectogenous model peptides similar to TGF-β1. Enzyme-linked immunosorbent assay (ELISA) was performed to select monoclonal phages with good binding activity, which underwent DNA sequencing. MTT assay and apoptosis assessment were used to evaluate the biological effects of the phage model peptides on keloid fibroblasts. Immunofluorescence assay was employed to show the binding affinity of the model peptides on phages causing keloid fibroblasts. Quantitative real-time PCR analysis was carried out to detect the expressions of nuclear factor κB (NF-κB) mRNA, connective tissue growth factor (CTGF) mRNA and TGF-β receptor Ⅱ (TβRII) mRNA in keloid fibroblasts.Results Specific phages with good results of ELISA were beneficiated. Four phage model peptides were obtained. The data of MTT showed that TGF-β1 and one phage model peptide (No. 4) could promote keloid fibroblasts proliferation,however, three phage model peptides (No. 1-3) could inhibit keloid fibroblasts proliferation. The results of apoptosis assessment showed that the three phage model peptides could slightly induce the apoptosis in keloid fibroblasts. The data of immunofluorescence assay revealed that the model peptides on phages rather than phages could bind to keloid fibroblasts. The findings of quantitative real-time PCR analysis suggested that the expressions of NF-κB mRNA and CTGF mRNA in the three phage model peptide groups decreased, while the expression of TβRII mRNA slightly increased.Conclusions Three phage model peptides isolated from a phage display 7-mer peptide library can inhibit keloid fibroblasts proliferation and induce the apoptosis in keloid fibroblasts. They can inhibit the activity of keloid fibroblasts by blocking TGF-β1 binding to its receptor and then regulating the expressions of NF-κB, CTGF and TβRII. Background Transforming growth factor-β1 (TGF-β1) is known to have a role in keloid formation through the activation of fibroblasts and the acceleration of collagen deposition. The objective of this current study was to isolate TGF-β1 phage model peptides from a phage display 7-mer peptide library to evaluate their therapeutic effect on inhibiting the activity of keloid fibroblasts.Methods A phage display 7-mer peptide library was screened using monoclonal anti-human TGF-β1 as the target to obtain specific phages containing ectogenous model peptides similar to TGF-β1. Enzyme-linked immunosorbent assay (ELISA) was performed to select monoclonal phages with good binding activity, which underwent DNA sequencing. MTT assay and apoptosis assessment were used to evaluate the biological effects of the phage model peptides on keloid fibroblasts. Immunofluorescence assay was employed to show the binding affinity of the model peptides on phages causing keloid fibroblasts. Quantitative real-time PCR analysis was carried out to detect the expressions of nuclear factor κB (NF-κB) mRNA, connective tissue growth factor (CTGF) mRNA and TGF-β receptor Ⅱ (TβRII) mRNA in keloid fibroblasts.Results Specific phages with good results of ELISA were beneficiated. Four phage model peptides were obtained. The data of MTT showed that TGF-β1 and one phage model peptide (No. 4) could promote keloid fibroblasts proliferation,however, three phage model peptides (No. 1-3) could inhibit keloid fibroblasts proliferation. The results of apoptosis assessment showed that the three phage model peptides could slightly induce the apoptosis in keloid fibroblasts. The data of immunofluorescence assay revealed that the model peptides on phages rather than phages could bind to keloid fibroblasts. The findings of quantitative real-time PCR analysis suggested that the expressions of NF-κB mRNA and CTGF mRNA in the three phage model peptide groups decreased, while the expression of TβRII mRNA slightly increased.Conclusions Three phage model peptides isolated from a phage display 7-mer peptide library can inhibit keloid fibroblasts proliferation and induce the apoptosis in keloid fibroblasts. They can inhibit the activity of keloid fibroblasts by blocking TGF-β1 binding to its receptor and then regulating the expressions of NF-κB, CTGF and TβRII.
出处 《Chinese Medical Journal》 SCIE CAS CSCD 2011年第3期429-435,共7页 中华医学杂志(英文版)
基金 This study was supported by grants from the Nationa1 Natura1 Science Foundation of China (No. 30670571, 30772258 and 81071560), Science and Technology Research Program of Shandong Province (No. 2009GG10002078), Scientific Research Development Plan of the Department of Education of Shandong Province (No. J07WD03) and National Basic Research Program of China (973 Program) (No. 2005CB522603).
关键词 KELOID transforming growth factor-β1 phage display peptide library fibroblast proliferation inhibitor apoptosis keloid transforming growth factor-β1 phage display peptide library fibroblast proliferation inhibitor apoptosis
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  • 1Bader RA,Kao WJ.Modulation of the keratinocyte-fibroblast paracrine relationship with gelatin-based semi-interpenetrating networks containing bioactive factors for wound repair.J Biomater Sci Polym Ed 2009; 20:1005-1030.
  • 2Ceccarelli S,Cardinali G,Aspite N,Picardo M,Marchese C,Torrisi MR,et al.Cortactin involvement in the keratinocyte growth factor and fibroblast growth factor 10 promotion of migration and cortical actin assembly in human keratinocytes.Exp Cell Res 2007; 313:1758-1777.
  • 3Kwon DS,Gao X,Liu YB,Dulchavsky DS,Danyluk AL,Bansal M,et al.Treatment with bone marrow-derived stromal cells accelerates wound healing in diabetic rats.Int Wound J 2008; 5:453-463.
  • 4Marti GP,Mohebi P,Liu L,Wang J,Miyashita T,Harmon JW.KGF-1 for wound healing in animal models.Methods Mol Biol 2008; 423:383-391.
  • 5Escainez MJ,Carretero M,Garcia M,Martinez-Santamarfa L,Mirones I,Duarte B,et al.Assessment of optimal virus-mediated growth factor gene delivery for human cutaneous wound healing enhancement.J Invest Dermatol 2008; 128:1565-1575.
  • 6Narita K,Fujii T,Ishiwata T,Yamamoto T,Kawamoto Y,Kawahara K,et al.Keratinocyte growth factor induces vascular endothelial growth factor-A expression in colorectal cancer cells.Int J Oncol 2009; 34:355-360.
  • 7Hackett J,Xiao Z,Zang XP,Lerner ML,Brackett DJ,Brueggemeier RW,et al.Development of keratinocyte growth factor receptor tyrosine kinase inhibitors for the treatment of cancer.Anticancer Res 2007; 27:3801-3806.
  • 8Zang XP,Lerner M,Brackett D,Pento JT.Influence of KGFon the progression of pancreatic cancer.Anticancer Res 2009; 29:3417-3420.
  • 9Ishikawa A,Kudo M,Nakazawa N,Onda M,Ishiwata T,Takeshita T,et al.Expression of keratinocyte growth factor and its receptor in human endometrial cancer in cooperation with steroid hormones.Int J Oncol 2008; 32:565-574.
  • 10Liu N,Wu G,Li H,Li L,Xing H,Zhang C,et al.A novel peptide isolated from phage display peptides library recognized by an antibody against connective tissue growth factor (CTGF).Int Immunopharmacol 2009; 9:291-297.

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