首页> 外文期刊>ACS applied materials & interfaces >Silk Sponges Ornamented with a Placenta-Derived Extracellular Matrix Augment Full-Thickness Cutaneous Wound Healing by Stimulating Neovascularization and Cellular Migration
【24h】

Silk Sponges Ornamented with a Placenta-Derived Extracellular Matrix Augment Full-Thickness Cutaneous Wound Healing by Stimulating Neovascularization and Cellular Migration

机译:通过刺激新生血管形成和细胞迁移,丝海绵用胎盘衍生的细胞外基质增强全厚皮肤伤口愈合

获取原文
获取原文并翻译 | 示例
           

摘要

Regeneration of full-thickness wounds without scar formation is a multifaceted process, which depends on in situ dynamic interactions between the tissue-engineered skin substitutes and a newly formed reparative tissue. However, the majority of the tissue engineered skin substitutes used so far in full-thickness wound healing cannot mimic the natural extracellular matrix (ECM) complexity and thus are incapable of providing a suitable niche for endogenous tissue repair. Herein, we demonstrated a simple approach to fabricate porous hybrid ECM sponges (HEMS) using a placental ECM and silk fibroin for full-thickness wound healing. HEMS with retained cytokines/growth factors provided a noncytotoxic environment in vitro for human foreskin fibroblasts (HFFs), human epidermal keratinocytes (HEKs), and human amniotic membrane-derived stem cells to adhere, infiltrate, and proliferate. Interestingly, HEMS-conditioned media accelerated the migration of HFFs and HEKs owing to the presence of cytokines/growth factors. Also, the ex vivo chick chorioallantoic membrane assay of HEMS demonstrated its excellent vascularization potential by inducing and supporting blood vessels. Additionally, HEMS when subcutaneously implanted demonstrated no severe immune response to the host. Furthermore, HEMS implanted in full-thickness wounds in a rat model showed augmented healing progression with well-organized epidermal dermal junctions via pronounced angiogenesis, accelerated migration of HFFs/HEKs, enhanced granulation tissue formation, and early re-epithelialization. Taken together, these findings show that porous HEMS ornamented with cytokines/growth factors having superior physicomechanical properties may be an appropriate skin substitute for full-thickness cutaneous wounds.
机译:没有瘢痕形成的全厚伤再生是多方面的方法,这取决于组织工程皮肤替代品之间的原位动态相互作用和新形成的重新组织。然而,到目前为止在全厚的伤口愈合中使用的大多数组织工程皮肤替代物不能模拟天然细胞外基质(ECM)复杂性,因此不能为内源组织修复提供合适的乳蛋白。在此,我们证明了一种简单的方法,用于使用胎盘ECM和丝素蛋白来制造多孔杂交ECM海绵(HEMS)以进行全厚伤口愈合。具有保留的细胞因子/生长因子的HEMS提供了人类包皮成纤维细胞(HFFS),人表皮角蛋白细胞(HEAKS)和人羊膜膜衍生的干细胞的非胞素毒性环境,以粘附,渗透和增殖。有趣的是,由于细胞因子/生长因子,下摆条件媒体加速了HFFS和HEKS的迁移。此外,通过诱导和支持血管,SEM的前体内小鸡绒毛膜膜测定结果证明了其优异的血管化电位。另外,皮下植入时的下摆表明对宿主没有严重的免疫反应。此外,在大鼠模型中植入全厚伤口中的下摆显示通过明显的血管生成,加速造成血管生成,加速造粒组织形成和早期重新上皮细胞化和早期重新上皮细胞造成的愈合进展。这些发现表明,随着细胞因子/生长因子的多孔裂缝,具有优异的物理机械性能的可能性,可以是适当的皮肤替代全厚皮肤伤口。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号