Mir Tanveer Ahmed, Alzhrani Alaa, Nakamura Makoto, Iwanaga Shintaroh, Wani Shadil Ibrahim, Altuhami Abdullah, Kazmi Shadab, Arai Kenchi, Shamma Talal, Obeid Dalia A, Assiri Abdullah M, Broering Dieter C
Laboratory of Tissue/Organ Bioengineering & BioMEMS, Organ Transplant Centre of Excellence, King Faisal Specialist Hospital and Research Centre, Riyadh 11211, Saudi Arabia.
Department of Medical Laboratory Technology, Faculty of Applied Medical Sciences, King Abdulaziz University, Jeddah 21423, Saudi Arabia.
Bioengineering (Basel). 2023 Sep 25;10(10):1126. doi: 10.3390/bioengineering10101126.
Biomaterial templates play a critical role in establishing and bioinstructing three-dimensional cellular growth, proliferation and spatial morphogenetic processes that culminate in the development of physiologically relevant in vitro liver models. Various natural and synthetic polymeric biomaterials are currently available to construct biomimetic cell culture environments to investigate hepatic cell-matrix interactions, drug response assessment, toxicity, and disease mechanisms. One specific class of natural biomaterials consists of the decellularized liver extracellular matrix (dECM) derived from xenogeneic or allogeneic sources, which is rich in bioconstituents essential for the ultrastructural stability, function, repair, and regeneration of tissues/organs. Considering the significance of the key design blueprints of organ-specific acellular substrates for physiologically active graft reconstruction, herein we showcased the latest updates in the field of liver decellularization-recellularization technologies. Overall, this review highlights the potential of acellular matrix as a promising biomaterial in light of recent advances in the preparation of liver-specific whole organ scaffolds. The review concludes with a discussion of the challenges and future prospects of liver-specific decellularized materials in the direction of translational research.
生物材料模板在建立和生物指导三维细胞生长、增殖及空间形态发生过程中发挥着关键作用,这些过程最终促成生理相关的体外肝脏模型的发育。目前有各种天然和合成聚合物生物材料可用于构建仿生细胞培养环境,以研究肝细胞与基质的相互作用、药物反应评估、毒性及疾病机制。一类特定的天然生物材料由源自异种或同种异体来源的去细胞肝脏细胞外基质(dECM)组成,其富含对组织/器官的超微结构稳定性、功能、修复和再生至关重要的生物成分。鉴于器官特异性无细胞基质的关键设计蓝图对生理活性移植物重建的重要性,在此我们展示了肝脏去细胞化-再细胞化技术领域的最新进展。总体而言,鉴于肝脏特异性全器官支架制备方面的最新进展,本综述强调了无细胞基质作为一种有前景的生物材料的潜力。综述最后讨论了肝脏特异性去细胞材料在转化研究方向上的挑战和未来前景。