Chen Jishizhan, Birchall Martin, MacRobert Alexander J, Song Wenhui
UCL Centre for Biomaterials in Surgical Reconstruction and Regeneration, Department of Surgical Biotechnology, Division of Surgery & Interventional Science, University College London, Rowland Hill Street, London, NW3 2PF, UK.
UCL Ear Institute, University College London, 332 Grays Inn Road, London, WC1X 8EE, UK.
Small. 2024 Dec;20(52):e2310024. doi: 10.1002/smll.202310024. Epub 2024 Aug 23.
Bone matrix exhibits exceptional mechanical properties due to its unique nanocomposite structure of type I collagen fibrils and hydroxyapatite (HAp) nanoparticles in hierarchical liquid crystalline (LC) order. However, the regeneration mechanism of this LC structure is elusive. This study investigates the role of the LC structure of HAp nanorods in guiding aligned mineralization and its underlying molecular mechanism. A unidirectionally oriented LC phase of HAp nanorods is developed through engineering-assisted self-assembling. This is used to study the growth direction of long-range aligned extracellular matrix (ECM) and calcium deposit formation during the osteogenic differentiation of human bone marrow-derived mesenchymal stem cells. It is found that 2 key regulatory genes, COL1A1 and COL4A6, lead to the formation of aligned ECM. Activation of the PI3K-Akt pathway enhances osteogenesis and promotes ordered calcium deposits. This study provides evidence for elucidating the mechanism of LC-induced ordered calcium deposition at hierarchical levels spanning from the molecular to macro-scale, as well as the switch from ordered to disordered mineralization. These findings illuminate bone regeneration, contribute to the development of biomimetic artificial bone with long-range ordered structures, and suggest a basis for therapeutic targeting of microstructure-affected bone disorders and the broader field of cell-ECM interactions.
由于其由I型胶原纤维和羟基磷灰石(HAp)纳米颗粒组成的独特纳米复合结构以分级液晶(LC)顺序排列,骨基质具有卓越的力学性能。然而,这种LC结构的再生机制尚不清楚。本研究调查了HAp纳米棒的LC结构在引导定向矿化中的作用及其潜在的分子机制。通过工程辅助自组装形成了HAp纳米棒的单向取向LC相。这被用于研究人骨髓间充质干细胞成骨分化过程中长程定向细胞外基质(ECM)的生长方向和钙沉积形成。研究发现,两个关键调控基因COL1A1和COL4A6导致了定向ECM的形成。PI3K-Akt途径的激活增强了成骨作用并促进了有序钙沉积。本研究为阐明从分子到宏观尺度的分级水平上LC诱导的有序钙沉积机制以及从有序矿化到无序矿化的转变提供了证据。这些发现为骨再生提供了启示,有助于开发具有长程有序结构的仿生人工骨,并为受微观结构影响的骨疾病以及更广泛的细胞-ECM相互作用领域的治疗靶点提供了依据。