ARC Centre of Excellence for Electromaterials Science, Intelligent Polymer Research Institute, AIIM Facility, Innovation Campus, University of Wollongong, Squires Way, Fairy Meadow, New South Wales 2519, Australia.
Biomed Mater. 2018 Mar 6;13(3):032002. doi: 10.1088/1748-605X/aa92d2.
Corneal transplantation is an important surgical treatment for many common corneal diseases. However, a worldwide shortage of tissue from suitable corneal donors has meant that many people are not able to receive sight-restoring operations. In addition, rejection is a major cause of corneal transplant failure. Bioengineering corneal tissue has recently gained widespread attention. In order to facilitate corneal regeneration, a range of materials is currently being investigated. The ideal substrate requires sufficient tectonic durability, biocompatibility with cultured cellular elements, transparency, and perhaps biodegradability and clinical compliance. This review considers the anatomy and function of the native cornea as a precursor to evaluating a variety of biomaterials for corneal regeneration including key characteristics for optimal material form and function. The integration of appropriate cells with the most appropriate biomaterials is also discussed. Taken together, the information provided offers insight into the requirements for fabricating synthetic and semisynthetic corneas for in vitro modeling of tissue development and disease, pharmaceutical screening, and in vivo application for regenerative medicine.
角膜移植是治疗许多常见角膜疾病的重要手术方法。然而,全球合适的角膜供体组织短缺,意味着许多人无法接受恢复视力的手术。此外,排斥反应是角膜移植失败的主要原因。生物工程角膜组织最近受到广泛关注。为了促进角膜再生,目前正在研究一系列材料。理想的基质需要足够的结构耐久性、与培养细胞成分的生物相容性、透明度,以及可能的生物降解性和临床顺应性。本综述考虑了天然角膜的解剖结构和功能,作为评估各种用于角膜再生的生物材料的基础,包括最佳材料形式和功能的关键特性。还讨论了将合适的细胞与最合适的生物材料结合。总之,提供的信息深入了解了制造用于组织发育和疾病的体外模型、药物筛选以及再生医学体内应用的合成和半合成角膜的要求。