Da Silva Kate, Kumar Pradeep, Choonara Yahya E, du Toit Lisa C, Pillay Viness
Wits Advanced Drug Delivery Platform Research Unit, Department of Pharmacy and Pharmacology, School of Therapeutic Sciences, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, 7 York Road, Parktown, 2193, South Africa.
J Biomed Mater Res A. 2020 Dec;108(12):2324-2350. doi: 10.1002/jbm.a.36981. Epub 2020 Aug 6.
The loss of tissues and organs through injury and disease has stimulated the development of therapeutics that have the potential to regenerate and replace the affected tissue. Such therapeutics have the benefit of reducing the reliance and demand for life-saving organ transplants. Of the several regenerative strategies, 3D printing has emerged as the forerunner in regenerative attempts due to the fact that biologically and anatomically correct 3D structures can be fabricated according to the specified need. Despite the progress in this field, improvement is still limited by the difficulty in fabricating scaffolds that adequately mimic the native cellular microenvironment. In response, despite the complexities of the native extracellular matrix (ECM), the inclusion of ECM components into bioinks has emerged as a cutting-edge research area in terms of providing possible ECM-mimicking abilities of the 3D printed constructs. Furthermore, the development of ECM-mimicking scaffolds can potentially assist in improving personalized patient treatments. This review provides a critical analysis of selected naturally occurring ECM components as well as synthetic self-assembling peptides in their ability to provide the required ECM microenvironment for tissue regeneration. The success and possible short comings of each material, as well as the specific characteristics of each bioink, are evaluated.
因损伤和疾病导致的组织和器官缺失,推动了具有再生和替换受影响组织潜力的治疗方法的发展。这类治疗方法有助于减少对挽救生命的器官移植的依赖和需求。在多种再生策略中,3D打印已成为再生尝试的先驱,因为它能够根据特定需求制造出生物学和解剖学上正确的3D结构。尽管该领域取得了进展,但由于难以制造出能充分模拟天然细胞微环境的支架,改进仍然有限。作为回应,尽管天然细胞外基质(ECM)很复杂,但将ECM成分纳入生物墨水已成为一个前沿研究领域,有望使3D打印构建体具备模拟ECM的能力。此外,模拟ECM的支架的开发可能有助于改善个性化的患者治疗。本综述对选定的天然ECM成分以及合成自组装肽为组织再生提供所需ECM微环境的能力进行了批判性分析。评估了每种材料的成功之处和可能存在的不足,以及每种生物墨水的具体特性。