Dextrin-rhEGF conjugates as bioresponsive nanomedicines for wound repair

被引:94
作者
Hardwicke, Joseph [1 ,2 ]
Ferguson, Elaine L. [2 ]
Moseley, Ryan [1 ]
Stephens, Phil [1 ]
Thomas, David W. [1 ]
Duncan, Ruth [2 ]
机构
[1] Cardiff Univ, Wound Biol Grp, Cardiff Inst Tissue Engn & Repair Tissue Engn & R, Sch Dent, Cardiff CF14 4XY, Wales
[2] Welsh Sch Pharm, Ctr Polymer Therapeut, Cardiff CF10 3XF, Wales
基金
英国工程与自然科学研究理事会;
关键词
Dextrin-rhEGF conjugate; Wound repair; PUMPT; Polymer therapeutics; Nanomedicine;
D O I
10.1016/j.jconrel.2008.07.023
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Growth factors are known to act in concert to promote wound repair, but their topical application rarely leads to a significant clinical improvement of chronic wounds due to premature inactivation in wound environment. The aim of this study was to synthesise a polymer-growth factor conjugate and investigate whether the novel concept called Polymer-masking-UnMasking-Protein Therapy (PUMPT) might be used to generate bioresponsive polymer therapeutics as nanomedicines able to promote tissue repair. Succinoylated dextrin (similar to 85,000 g/mol; similar to 19 mol% succinoylation), and rhEGF were chosen as a first model combination. The conjugate synthesised contained similar to 16%wt rhEGF and <1% free protein. It exhibited increased stability towards proteolytic degradation by trypsin and the clinically relevant enzyme neutrophil elastase. The dextrin component was degraded on addition of alpha-amylase leading to sustained release of free rhEGF over time (52.7% release after 168 h). When biological activity was assessed ( +/-alpha-amylase) in proliferation assays using epidermoid carcinoma (HEp2) cells and HaCaT keratinocytes, as anticipated, polymer conjugation reduced rhEGF bioactivity (p=0.0035). However, exposure to physiological concentrations of alpha-amylase triggered dextrin degradation and this led to protein unmasking with restoration of bioactivity to the level seen for unmodified rhEGE Indeed, prolongation of HEp2 proliferation was observed over 8 days. The inability of dextrin, succinoylated dextrin or alpha-amylase alone to induce proliferative effects, and the ability of alpha-amylase-exposed dextrin-rhEGF to induce phosphorylation of the epidermal growth factor receptor (EGFR) in HEp2 cells confirmed a mechanism of action by stimulation of classical signal transduction pathways. These observations suggest that this dextrin-rhEGF, and other dextrin-growth factor conjugates have potential for further development as bioresponsive nanomedicines for tissue repair. (C) 2008 Elsevier B.V. All rights reserved.
引用
收藏
页码:275 / 283
页数:9
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