Loureiro Jorge, Miguel Sónia P, Galván-Chacón Victor, Patrocinio David, Pagador José Blas, Sánchez-Margallo Francisco M, Ribeiro Maximiano P, Coutinho Paula
CPIRN-IPG-Center of Potential and Innovation of Natural Resources, Polytechnic Institute of Guarda, 6300-559 Guarda, Portugal.
CICS-UBI-Health Sciences Research Center, University of Beira Interior, 6201-001 Covilhã, Portugal.
Polymers (Basel). 2023 Jun 26;15(13):2824. doi: 10.3390/polym15132824.
Myocardial infarction is one of the more common cardiovascular diseases, and remains the leading cause of death, globally. Hydrogels (namely, those using natural polymers) provide a reliable tool for regenerative medicine and have become a promising option for cardiac tissue regeneration due to their hydrophilic character and their structural similarity to the extracellular matrix. Herein, a functional ink based on the natural polysaccharides Gellan gum and Konjac glucomannan has, for the first time, been applied in the production of a 3D printed hydrogel with therapeutic potential, with the goal of being locally implanted in the infarcted area of the heart. Overall, results revealed the excellent printability of the bioink for the development of a stable, porous, biocompatible, and bioactive 3D hydrogel, combining the specific advantages of Gellan gum and Konjac glucomannan with proper mechanical properties, which supports the simplification of the implantation process. In addition, the structure have positive effects on endothelial cells' proliferation and migration that can promote the repair of injured cardiac tissue. The results presented will pave the way for simple, low-cost, and efficient cardiac tissue regeneration using a 3D printed hydrogel cardiac patch with potential for clinical application for myocardial infarction treatment in the near future.
心肌梗死是较为常见的心血管疾病之一,在全球范围内仍是主要的死亡原因。水凝胶(即使用天然聚合物的水凝胶)为再生医学提供了一种可靠的工具,由于其亲水性以及与细胞外基质的结构相似性,已成为心脏组织再生的一个有前景的选择。在此,一种基于天然多糖结冷胶和魔芋葡甘聚糖的功能性墨水首次被应用于制备具有治疗潜力的3D打印水凝胶,目的是局部植入心脏梗死区域。总体而言,结果显示该生物墨水在开发稳定、多孔、生物相容且具有生物活性的3D水凝胶方面具有出色的可打印性,它将结冷胶和魔芋葡甘聚糖的特定优势与适当的机械性能相结合,这有助于简化植入过程。此外,该结构对内皮细胞的增殖和迁移有积极影响,可促进受损心脏组织的修复。所呈现的结果将为使用具有临床应用潜力的3D打印水凝胶心脏贴片进行简单、低成本且高效的心脏组织再生铺平道路,有望在不久的将来用于心肌梗死的治疗。