Bone & Joint Research Group, Centre for Human Development, Stem Cells & Regeneration, Institute of Developmental Sciences, University of Southampton, Southampton, SO16 6YD, United Kingdom.
Biomaterials. 2018 Mar;159:204-214. doi: 10.1016/j.biomaterials.2017.12.024. Epub 2018 Jan 3.
Clay nanoparticles, composites and hydrogels are emerging as a new class of biomaterial with exciting potential for tissue engineering and regenerative medicine applications. Clay particles have been extensively explored in polymeric nanocomposites for self-assembly and enhanced mechanical properties as well as for their potential as drug delivery modifiers. In recent years, a cluster of studies have explored cellular interactions with clay nanoparticles alone or in combination with polymeric matrices. These pioneering studies have suggested new and unforeseen utility for certain clays as bioactive additives able to enhance cellular functions including adhesion, proliferation and differentiation, most notably for osteogenesis. This review examines the recent literature describing the potential effects of clay-based nanomaterials on cell function and examines the potential role of key clay physicochemical properties in influencing such interactions and their exciting possibilities for regenerative medicine.
粘土纳米粒子、复合材料和水凝胶作为一类新兴的生物材料,具有组织工程和再生医学应用的巨大潜力。粘土颗粒在聚合物纳米复合材料中被广泛探索,用于自组装和增强机械性能,以及作为药物输送修饰剂。近年来,一系列研究探索了粘土纳米粒子单独或与聚合物基质结合时与细胞的相互作用。这些开创性的研究表明,某些粘土作为生物活性添加剂具有新的和意想不到的用途,能够增强细胞功能,包括粘附、增殖和分化,尤其是成骨作用。本综述考察了描述基于粘土的纳米材料对细胞功能的潜在影响的最新文献,并考察了关键粘土物理化学性质在影响这种相互作用及其在再生医学中的令人兴奋的可能性中的潜在作用。