School of Biomedical Engineering, Shenzhen Campus of Sun Yat-Sen University, No. 66, Gongchang Road, Guangming District, Shenzhen, Guangdong, 518107, People's Republic of China.
School of Biomedical Engineering, Shenzhen Campus of Sun Yat-Sen University, No. 66, Gongchang Road, Guangming District, Shenzhen, Guangdong, 518107, People's Republic of China.
Biomaterials. 2025 Mar;314:122880. doi: 10.1016/j.biomaterials.2024.122880. Epub 2024 Oct 5.
Pressure ulcers are a common issue in elderly and medically compromised individuals, posing significant challenges in healthcare. Human umbilical cord mesenchymal stem cells (HUMSCs) offer therapeutic benefits like inflammation modulation and tissue regeneration, yet challenges in cell survival, retention, and implantation rates limit their clinical application. Hydrogels in three-dimensional (3D) stem cell culture mimic the microenvironment, improving cell survival and therapeutic efficacy. A thermosensitive injectable hydrogel (adEHG) combining gallic acid-modified hydroxybutyl chitosan (HBC-GA) with soluble extracellular matrix (adECM) has been developed to address these challenges. The hybrid hydrogel, with favorable physical and chemical properties, shields stem cells from oxidative stress and boosts their therapeutic potential by clearing ROS. The adEHG hydrogel promotes angiogenesis, cell proliferation, and collagen deposition, further enhancing inflammation modulation and wound healing through the sustained release of therapeutic factors and cells. Additionally, the adEHG@HUMSC composite induces macrophage polarization towards an M2 phenotype, which is crucial for wound inflammation inhibition and successful healing. Our research significantly propels the field of stem cell-based therapies for pressure ulcer treatment and underscores the potential of the adEHG hydrogel as a valuable tool in advancing regenerative medicine.
压疮是老年和医学上易受影响的个体中常见的问题,在医疗保健中带来了重大挑战。人脐带间充质干细胞(HUMSCs)具有调节炎症和组织再生等治疗益处,但细胞存活率、保留率和植入率方面的挑战限制了其临床应用。三维(3D)干细胞培养中的水凝胶模拟了微环境,提高了细胞存活率和治疗效果。一种结合了没食子酸修饰的羟丁基壳聚糖(HBC-GA)和可溶细胞外基质(adECM)的温敏型可注射水凝胶(adEHG)已经被开发出来,以解决这些挑战。这种具有良好物理化学性质的混合水凝胶可以屏蔽干细胞免受氧化应激的影响,并通过清除 ROS 来提高其治疗潜力。adEHG 水凝胶促进血管生成、细胞增殖和胶原蛋白沉积,通过持续释放治疗因子和细胞进一步增强炎症调节和伤口愈合。此外,adEHG@HUMSC 复合材料诱导巨噬细胞向 M2 表型极化,这对于抑制伤口炎症和成功愈合至关重要。我们的研究极大地推动了基于干细胞的压疮治疗的治疗领域,并强调了 adEHG 水凝胶作为推进再生医学的有价值工具的潜力。