Biomaterial-Based Metabolic Regulation in Regenerative Engineering

被引:45
|
作者
Ma, Chuying [1 ]
Kuzma, Michelle L. [1 ]
Bai, Xidochun [2 ,3 ]
Yang, Jian [1 ]
机构
[1] Penn State Univ, Huck Inst Life Sci, Mat Res Inst, Dept Biomed Engn, University Pk, PA 16802 USA
[2] Southern Med Univ, Affiliated Hosp 3, Acad Orthoped, Prov Key Lab Bone & Joint Degenerat Dis, Guangzhou 510280, Guangdong, Peoples R China
[3] Southern Med Univ, Sch Basic Med Sci, Dept Cell Biol, Key Lab Mental Hlth,Minist Educ, Guangzhou 510515, Guangdong, Peoples R China
关键词
biomaterials; energy metabolism; metabolic regulation; metabonegenic regulation; regenerative engineering; ENDOTHELIAL-CELL METABOLISM; OSTEOGENIC DIFFERENTIATION; ENERGY-METABOLISM; MITOCHONDRIAL BIOGENESIS; LACTIC-ACID; REDOX STATE; STEM-CELLS; HYPOXIA; ANGIOGENESIS; TISSUE;
D O I
10.1002/advs.201900819
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
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.
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页数:17
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