Ma Chuying, Kuzma Michelle L, Bai Xiaochun, Yang Jian
Department of Biomedical Engineering Materials Research Institute The Huck Institutes of the Life Sciences The Pennsylvania State University University Park PA 16802 USA.
Academy of Orthopedics Guangdong Province Provincial Key Laboratory of Bone and Joint Degenerative Diseases The Third Affiliated Hospital of Southern Medical University Guangzhou 510280 China.
Adv Sci (Weinh). 2019 Jul 28;6(19):1900819. doi: 10.1002/advs.201900819. eCollection 2019 Oct 2.
Recent advances in cell metabolism studies have deepened the appreciation of the role of metabolic regulation in influencing cell behavior during differentiation, angiogenesis, and immune response in the regenerative engineering scenarios. However, the understanding of whether the intracellular metabolic pathways could be influenced by material-derived cues remains limited, although it is now well appreciated that material cues modulate cell functions. Here, an overview of how the regulation of different aspect of cell metabolism, including energy homeostasis, oxygen homeostasis, and redox homeostasis could contribute to modulation of cell function is provided. Furthermore, recent evidence demonstrating how material cues, including the release of inherent metabolic factors (e.g., ions, regulatory metabolites, and oxygen), tuning of the biochemical cues (e.g., inherent antioxidant properties, cell adhesivity, and chemical composition of nanomaterials), and changing in biophysical cues (topography and surface stiffness), may impact cell metabolism toward modulated cell behavior are discussed. Based on the resurgence of interest in cell metabolism and metabolic regulation, further development of biomaterials enabling metabolic regulation toward dictating cell function is poised to have substantial implications for regenerative engineering.
细胞代谢研究的最新进展加深了人们对代谢调节在再生工程场景中影响细胞分化、血管生成和免疫反应过程中细胞行为所起作用的认识。然而,尽管现在人们已经充分认识到材料线索可调节细胞功能,但对于细胞内代谢途径是否会受到材料衍生线索的影响,相关认识仍然有限。在此,本文概述了细胞代谢不同方面的调节,包括能量稳态、氧稳态和氧化还原稳态如何有助于调节细胞功能。此外,还讨论了近期的证据,这些证据表明材料线索,包括固有代谢因子(如离子、调节性代谢物和氧)的释放、生化线索的调整(如固有抗氧化特性、细胞粘附性和纳米材料的化学成分)以及生物物理线索的变化(拓扑结构和表面硬度),可能如何影响细胞代谢以调节细胞行为。基于对细胞代谢和代谢调节兴趣的再度兴起,能够实现代谢调节以控制细胞功能的生物材料的进一步发展有望对再生工程产生重大影响。