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首页> 外文期刊>Journal of biomedical materials research, Part A >Natural Composite of Wood as Replacement Material for Ostechondral Bone Defects
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Natural Composite of Wood as Replacement Material for Ostechondral Bone Defects

机译:天然木材复合材料作为骨软骨缺损的替代材料

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摘要

Deciduous wood, birch, pretreated by a technique combining heat and water vapor was applied for the reconstruction of bone defects in the knee joint of rabbits. It was observed that wood showed characteristic properties to be incorporated by the host bone during observation time of 4,8, and 20 weeks. The natural channel structure of wood served as a porous scaffold, allowing host bone growth as small islets into the wood implants. The other properties of heat-treated wood, such as bioactivity, good handling properties, and sufficient biomechanical properties, might be additional favorable factors for the application of wood as a natural composite material for bone and cartilage repair. At the interface of the surfaces of wood and living bone, bonding occurred. The Chemical Interface Model for bonding bone to wood consists of the reactive ions, such as hydroxyl groups -OH, and covalent bonding as well as hydrogen bonding, which originate from both wood and bone. The bone tissue trauma, with its reactive Ca~(2+) and PO_4~(3-) ions, proteins, and collagen, available for interaction at ionic and nanolevel, are associated with the complicated chemistry in the cellular response of the early bone healing process. It was concluded that heat-treated wood acted like a porous biomaterial scaffold, allowing ongrowth and ingrowth of bone and cartilage differentiation on its surface, and demonstrating osteoconductive contact, bonding at the interface.
机译:桦木,桦木,通过加热和水蒸气结合的技术进行了预处理,被用于重建兔膝关节的骨缺损。观察到在4.8、20和20周的观察时间内,木材表现出特征性特征并被宿主骨吸收。木材的自然通道结构用作多孔支架,允许宿主骨骼像小岛一样生长到木材植入物中。热处理木材的其他性能,例如生物活性,良好的处理性能和足够的生物力学性能,可能是将木材用作天然复合材料修复骨骼和软骨的其他有利因素。在木材和活骨表面的界面处发生粘结。用于将骨骼粘合到木材的化学界面模型由反应离子(例如,羟基-OH),共价键以及氢键组成,它们源自木材和骨骼。骨组织创伤及其反应性Ca〜(2+)和PO_4〜(3-)离子,蛋白质和胶原蛋白,可在离子和纳米水平上相互作用,与早期骨骼细胞反应中复杂的化学反应有关康复过程。结论是,经过热处理的木材就像多孔生物材料支架一样,允许骨骼的向内生长和向内生长以及其表面的软骨分化,并表现出骨传导性接触,并在界面处粘合。

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