J Biomed Nanotechnol. 2020 Dec 1;16(12):1740-1754. doi: 10.1166/jbn.2020.3003.
During the process of wound healing, avoiding the formation of aligned collagen fibrils and subsequent scarring has become the focus of numerous research efforts. However, the goal of regeneration of native or scar-free skin remains a challenge. The complex and equivocal connection between inflammation and regeneration within the process of healing contributes to unsatisfactory treatment outcomes. Inspired by the scarless repair observed in fetal wound healing, we create a two-stage treatment combining the hydrocolloid dressing to attenuate the immune response in the initial three days, and the biomimetic cell-laden hydrogel to improve skin regeneration, which meet the specific needs of each stage in the healing process. To further accelerate the skin regeneration, the patterned cell-laden hydrogels were fabricated by photo-mask based photolithography technique. The efficacy and possible mechanisms of skin regeneration using this patterned cell-laden hydrogel therapy was investigated. Results show that these two-stage patterned cell-laden treatments were able to promote vascular network formation, accelerate wound closure, decrease scar formation, increase tissue regeneration and restore structure and mechanical properties of the skin in a full-thickness murine wound model. These data suggest that our patterned cell-based two-stage treatments can be used as a promising therapeutic option for wound healing by accelerating skin tissue regeneration.
在伤口愈合的过程中,避免形成定向排列的胶原纤维束和随后的瘢痕形成已成为众多研究的焦点。然而,再生原生或无瘢痕皮肤的目标仍然是一个挑战。愈合过程中炎症和再生之间复杂而不确定的联系导致治疗结果不理想。受胎儿伤口愈合中无瘢痕修复的启发,我们创建了一种两阶段治疗方法,结合水胶体敷料在最初三天内减轻免疫反应,以及仿生细胞负载水凝胶以改善皮肤再生,满足愈合过程中每个阶段的特定需求。为了进一步加速皮肤再生,我们使用基于光掩模的光刻技术制造了图案化细胞负载水凝胶。研究了使用这种图案化细胞负载水凝胶治疗的皮肤再生的功效和可能机制。结果表明,这两种两阶段的图案化细胞负载治疗能够促进血管网络形成,加速伤口闭合,减少瘢痕形成,增加组织再生,并恢复全层小鼠伤口模型中皮肤的结构和机械性能。这些数据表明,我们的基于细胞的两阶段治疗方案可以通过加速皮肤组织再生,作为一种有前途的伤口愈合治疗选择。