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Target-seeking antifibrotic compound enhances wound healing and suppresses scar formation in mice

机译:寻靶抗纤维化化合物可促进伤口愈合并抑制小鼠疤痕形成

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摘要

Permanent scars form upon healing of tissue injuries such as those caused by ischemia (myocardial infarction, stroke), trauma, surgery, and inflammation. Current options in reducing scar formation are limited to local intervention. We have designed a systemically administered, target-seeking biotherapeutic for scar prevention. It consists of a vascular targeting peptide that specifically recognizes angiogenic blood vessels and extravasates into sites of injury, fused with a therapeutic molecule, decorin. Decorin prevents tissue fibrosis and promotes tissue regeneration by inhibiting TGF-β activity and by other regulatory activities. The decorin-targeting peptide fusion protein had substantially increased neutralizing activity against TGF-β1 in vitro compared with untargeted decorin. In vivo, the fusion protein selectively accumulated in wounds, and promoted wound healing and suppressed scar formation at doses where nontargeted decorin was inactive. These results show that selective targeting yields a tissue-healing and scar-reducing compound with enhanced specificity and potency. This approach may help make reducing scar formation by systemic drug delivery a feasible option for surgery and for the treatment of pathological processes in which scar formation is a problem.
机译:永久性疤痕在组织损伤愈合时形成,例如由缺血(心肌梗塞,中风),外伤,手术和发炎引起的损伤。目前减少疤痕形成的选择仅限于局部干预。我们设计了系统化的靶向治疗生物疗法来预防疤痕。它由一种血管靶向肽组成,可特异性识别血管生成血管并渗入损伤部位,并与一种治疗分子decorin融合。 Decorin通过抑制TGF-β活性和其他调节活性来预防组织纤维化并促进组织再生。与未靶向decorin相比,靶向decorin的肽融合蛋白在体外具有显着提高的针对TGF-β1的中和活性。在体内,融合蛋白选择性地在伤口中蓄积,并在非靶向的decorin失活的剂量下促进伤口愈合并抑制疤痕形成。这些结果表明选择性靶向产生具有增强的特异性和效力的组织愈合和减少疤痕的化合物。这种方法可能有助于使通过全身给药减少瘢痕形成成为外科手术和治疗瘢痕形成问题的病理过程的可行选择。

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