Bienek Diane R, Skrtic Drago
ADA Foundation, Volpe Research Center, Gaithersburg, MD 20899.
Biointerface Res Appl Chem. 2017;7(1):1989-1994. Epub 2017 Feb 15.
Calcium phosphate (CaP) materials are important inorganic constituents in biological hard tissue. CaPs, including amorphous calcium phosphate (ACP) have been widely applied in dental and biomedical applications, such as tissue engineering. Scaffold constructs are commonly used as templates to create a biomimetic environment. This review considers ACP scaffold fabrication techniques, including tissue-engineered constructs with intrinsic incorporation of ACP as well as scaffolds formed via precipitation of mineralized solutions on a substrate. Attention is given to the approaches used to assess cellular and molecular responses elicited by ACP scaffolds, such as biocompatibility, cell conductivity, cell adhesion, cell differentiation, phenotypic profiles, and gene expression. Bioactivity of composite ACP scaffolds can be enhanced by incorporating biomolecules to create multi-functional properties. Herein we summarize the use of antibiotics, growth factors, and gene delivery systems to create multi-functional ACP scaffolds. Inasmuch as CaP materials have been investigated as drug delivery systems for many years, we briefly consider the potential of integrating these systems with existing ACP scaffold constructs and the potential for precision medicine.
磷酸钙(CaP)材料是生物硬组织中的重要无机成分。包括无定形磷酸钙(ACP)在内的CaP已广泛应用于牙科和生物医学领域,如组织工程。支架构建物通常用作模板来创建仿生环境。本综述探讨了ACP支架的制造技术,包括将ACP固有掺入的组织工程构建物以及通过在基质上沉淀矿化溶液形成的支架。重点关注用于评估ACP支架引发的细胞和分子反应的方法,如生物相容性、细胞传导性、细胞粘附、细胞分化、表型谱和基因表达。通过掺入生物分子以创造多功能特性,可以增强复合ACP支架的生物活性。在此,我们总结了使用抗生素、生长因子和基因递送系统来创建多功能ACP支架的情况。鉴于CaP材料作为药物递送系统已被研究多年,我们简要考虑了将这些系统与现有的ACP支架构建物整合的潜力以及精准医学的潜力。