Wake Forest Institute for Regenerative Medicine, Wake Forest School of Medicine, Medical Center Boulevard, Winston-Salem, North Carolina, USA.
Virginia Tech-Wake Forest School of Biomedical Engineering and Sciences, Wake Forest School of Medicine, Medical Center Boulevard, Winston-Salem, North Carolina, USA.
Stem Cells Transl Med. 2017 Nov;6(11):2020-2032. doi: 10.1002/sctm.17-0053. Epub 2017 Sep 23.
The early and effective treatment of wounds is vital to ensure proper wound closure and healing with appropriate functional and cosmetic outcomes. The use of human amnion membranes for wound care has been shown to be safe and effective. However, the difficulty in handling and placing thin sheets of membrane, and the high costs associated with the use of living cellularized tissue has limited the clinical application of amniotic membrane wound healing products. Here, we describe a novel amnion membrane-derived product, processed to result in a cell-free solution, while maintaining high concentrations of cell-derived cytokines and growth factors. The solubilized amnion membrane (SAM) combined with the carrier hyaluronic acid (HA) hydrogel (HA-SAM) is easy to produce, store, and apply to wounds. We demonstrated the efficacy of HA-SAM as a wound treatment using a full-thickness murine wound model. HA-SAM significantly accelerated wound closure through re-epithelialization and prevented wound contraction. HA-SAM-treated wounds had thicker regenerated skin, increased total number of blood vessels, and greater numbers of proliferating keratinocytes within the epidermis. Overall, this study confirms the efficacy of the amnion membrane as a wound treatment/dressing, and overcomes many of the limitations associated with using fresh, cryopreserved, or dehydrated tissue by providing a hydrogel delivery system for SAM. Stem Cells Translational Medicine 2017;6:2020-2032.
早期、有效的伤口处理对于确保伤口适当闭合和愈合,并获得适当的功能和美容效果至关重要。使用人羊膜膜进行伤口护理已被证明是安全有效的。然而,由于薄片状膜的处理和放置困难,以及使用活细胞化组织相关的高成本,限制了羊膜膜伤口愈合产品的临床应用。在这里,我们描述了一种新型的羊膜膜衍生产品,经过处理后可产生无细胞溶液,同时保持高浓度的细胞衍生细胞因子和生长因子。这种溶解的羊膜膜(SAM)与载体透明质酸(HA)水凝胶(HA-SAM)结合,易于生产、储存和应用于伤口。我们使用全层小鼠伤口模型证明了 HA-SAM 作为伤口处理的功效。HA-SAM 通过再上皮化显著加速了伤口闭合,并防止了伤口收缩。HA-SAM 处理的伤口再生皮肤更厚,表皮内的血管总数和增殖角蛋白细胞数量增加。总的来说,这项研究证实了羊膜膜作为伤口处理/敷料的功效,并克服了使用新鲜、冷冻或脱水组织所带来的许多限制,为 SAM 提供了水凝胶输送系统。干细胞转化医学 2017;6:2020-2032。