Xiao E, Wang Peng, Zheng Kaikai, Zhong Huanyu, Zhou Hui, Liu Qiushi, Liu Xiaojing, Fan Pengju, Yao Jincheng, Wei Qiang
Xiangya Stomatological Hospital and Xiangya School of Stomatology, Academician Workstation for Oral-Maxilofacial and Regenerative Medicine, Central South University, Changsha, 410008, China.
Hunan Maybio Bio-Pharmaceutical Co., Ltd, Changsha, 410000, China.
Adv Healthc Mater. 2025 Jun;14(15):e2500953. doi: 10.1002/adhm.202500953. Epub 2025 Apr 8.
Skin aging, trauma, and congenital diseases lead to tissue defects and functional loss. Effective regeneration remains challenging due to limited material bioactivity and inadequate consideration of mechanical cues. This study develops a hydrogel integrating human extracellular matrix-like collagen (hCol) derived from induced human adipose mesenchymal stem cells (hASCs) with hyaluronic acid (HA) and polyethylene glycol diamine (PEGDA), engineered to achieve a modulus (≈1 kPa) representative of subcutaneous soft tissue. The hCol, produced at scale, provides essential biochemical signals, which, in conjunction with the hydrogel mechanical properties, synergistically modulate immune responses, cellular differentiation, and anti-aging processes. Both animal experiments and clinical trials validate the regenerative efficacy of the hydrogels. Clinical regeneration therapy for mandibular retrognathia shows rapid and sustained improvements, with repair efficacy rates of 95.2% at 3 months and 76.2% at 6 months. These findings underscore the hydrogel's ability to reshape the soft tissue microenvironment, supporting immediate tissue repair and sustained regeneration, while offering a promising platform for future biomaterial development in soft tissue engineering.
皮肤老化、创伤和先天性疾病会导致组织缺损和功能丧失。由于材料生物活性有限以及对机械线索的考虑不足,有效的组织再生仍然具有挑战性。本研究开发了一种水凝胶,它将源自诱导人脂肪间充质干细胞(hASC)的人细胞外基质样胶原蛋白(hCol)与透明质酸(HA)和聚乙二醇二胺(PEGDA)整合在一起,设计使其具有代表皮下软组织的模量(约1kPa)。规模化生产的hCol提供了重要的生化信号,这些信号与水凝胶的机械性能协同调节免疫反应、细胞分化和抗老化过程。动物实验和临床试验均验证了水凝胶的再生功效。下颌后缩的临床再生治疗显示出快速且持续的改善,3个月时修复有效率为95.2%,6个月时为76.2%。这些发现强调了水凝胶重塑软组织微环境的能力,支持即时组织修复和持续再生,同时为未来软组织工程中的生物材料开发提供了一个有前景的平台。