Department of Tissue Engineering, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Stem Cell Res Ther. 2023 Apr 7;14(1):68. doi: 10.1186/s13287-023-03309-4.
Bone defects are among the most common damages in human medicine. Due to limitations and challenges in the area of bone healing, the research field has turned into a hot topic discipline with direct clinical outcomes. Among several available modalities, scaffold-free cell sheet technology has opened novel avenues to yield efficient osteogenesis. It is suggested that the intact matrix secreted from cells can provide a unique microenvironment for the acceleration of osteoangiogenesis. To the best of our knowledge, cell sheet technology (CST) has been investigated in terms of several skeletal defects with promising outcomes. Here, we highlighted some recent advances associated with the application of CST for the recovery of craniomaxillofacial (CMF) in various preclinical settings. The regenerative properties of both single-layer and multilayer CST were assessed regarding fabrication methods and applications. It has been indicated that different forms of cell sheets are available for CMF engineering like those used for other hard tissues. By tackling current challenges, CST is touted as an effective and alternative therapeutic option for CMF bone regeneration.
骨缺损是人类医学中最常见的损伤之一。由于骨愈合领域的限制和挑战,该研究领域已成为具有直接临床效果的热门学科。在几种可用的方式中,无支架细胞片技术为有效成骨开辟了新途径。有人认为,细胞完整分泌的基质可以为加速血管生成提供独特的微环境。据我们所知,细胞片技术(CST)已经在几种骨骼缺陷方面进行了研究,取得了有希望的结果。在这里,我们重点介绍了 CST 在各种临床前环境中用于恢复颅面(CMF)的一些最新进展。评估了单层和多层 CST 的再生特性,包括制造方法和应用。已经表明,不同形式的细胞片可用于 CMF 工程,就像用于其他硬组织一样。通过解决当前的挑战,CST 被吹捧为 CMF 骨再生的有效和替代治疗选择。