Joshi Akshay, Kaur Tejinder, Joshi Akshat, Gugulothu Sriram Bharath, Choudhury Saswat, Singh Neetu
Centre for Biomedical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi110016, India.
Centre for Biosystems Science and Engineering, Indian Institute of Science, Bangalore560012, India.
ACS Appl Mater Interfaces. 2023 Jan 11;15(1):327-337. doi: 10.1021/acsami.2c16418. Epub 2022 Dec 23.
Medical dressings play an important role in the field of tissue engineering owing to their ability to accelerate the process of wound healing. Great efforts have been made to fabricate wound dressings with distinctive features for promoting wound healing. However, most of the current synthesis methods either generate dressings of uniform size or involve complex fabrication techniques, thus limiting their commercialization for the personalized dressings. We report here a dressing, which presents a paradigm shift in the design of the dressing from uniform films to a micro-patterned film. The hypothesis driving the design is the ability of the 3D patterns to provide an efficient transient matrix filling the depth of the wound rather than just providing a barrier and slight re-epithelialization. We demonstrate the use of the digital light processing 3D printing technique to generate micro-pyramid-decorated wound healing dressings with individualized design and with bio-compatible gelatin methacryloyl to contact the wounded areas. In addition to providing better adhesion to the migratory cells, the micro-pyramids also enable covalent conjugation of heparin, providing capability to sequester endogenous growth factors (GFs). Based on these advantages, the developed dressing not only adheres strongly to the wound bed but also promotes the treatment of a rat wound model by utilizing the power of endogenous GFs for tissue regeneration. Thus, it is believed that the developed dressing can break through the limitation of traditional wound treatment and be an ideal candidate for wound healing.
医用敷料因其能够加速伤口愈合过程而在组织工程领域发挥着重要作用。人们已付出巨大努力来制造具有独特特性以促进伤口愈合的伤口敷料。然而,当前大多数合成方法要么生成尺寸均匀的敷料,要么涉及复杂的制造技术,从而限制了它们在个性化敷料方面的商业化应用。我们在此报道一种敷料,它在敷料设计上实现了从均匀薄膜到微图案化薄膜的范式转变。驱动该设计的假设是,三维图案能够提供一个有效的临时基质来填充伤口深度,而不仅仅是提供一个屏障并轻微促进上皮再形成。我们展示了使用数字光处理3D打印技术来生成具有个性化设计且带有生物相容性甲基丙烯酰化明胶以接触伤口区域的微金字塔装饰的伤口愈合敷料。除了对迁移细胞具有更好的粘附性外,微金字塔还能实现肝素的共价结合,具备螯合内源性生长因子(GFs)的能力。基于这些优势,所开发的敷料不仅能牢固地粘附在伤口床上,还能通过利用内源性GFs促进组织再生的能力来促进大鼠伤口模型的治疗。因此,人们认为所开发的敷料能够突破传统伤口治疗的局限,成为伤口愈合的理想候选者。