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用于蛋白质吸附的三维羟基磷灰石整体的简易合成。

Facile synthesis of a three-dimensional hydroxyapatite monolith for protein adsorption.

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

J Mater Chem B. 2021 Dec 8;9(47):9711-9719. doi: 10.1039/d1tb02021h.

Abstract

Hydroxyapatite (HA) shows promising applications in the clinical treatment of bone defects owing to its excellent physicochemical properties, such as biocompatibility, bioactivity, and osteoconductivity. However, it is difficult to maintain a porous structure in HA materials because of processing difficulties. In this study, a hard template method was developed to prepare a porous HA monolith with a hierarchical pore structure and high porosity. The cellulose monolith template was prepared from cellulose acetate using a thermally induced phase separation method. The cellulose monoliths were then immersed into the HA slurry to form a cellulose_HA composite monolith, which was converted to an HA monolith by burning in air to remove the cellulose monolith. Owing to the hierarchically porous structure of the cellulose monolith template, the obtained HA monolith demonstrated a hierarchically porous structure. Furthermore, the HA monolith was explored to study the adsorption and release properties of bovine serum albumin (BSA), which indicated that the HA monolith had a high adsorption capacity (388.6 mg g) and sustained release from the BSA-loaded HA monolith. Thus, HA monoliths have potential applications in the field of protein purification and biomaterials.

摘要

羟基磷灰石(HA)由于其优异的物理化学性能,如生物相容性、生物活性和骨传导性,在骨缺损的临床治疗中显示出有前景的应用。然而,由于加工困难,很难在 HA 材料中保持多孔结构。在本研究中,开发了一种硬模板法来制备具有分级孔结构和高孔隙率的多孔 HA 整体材料。纤维素整体模板是通过热致相分离法从醋酸纤维素制备的。然后将纤维素整体模板浸入 HA 浆料中形成纤维素-HA 复合整体材料,将其在空气中燃烧以除去纤维素整体模板,从而转化为 HA 整体材料。由于纤维素整体模板的分级多孔结构,所得到的 HA 整体材料表现出分级多孔结构。此外,还研究了 HA 整体材料对牛血清白蛋白(BSA)的吸附和释放性能,结果表明 HA 整体材料具有高吸附能力(388.6mg g),并且从负载 BSA 的 HA 整体材料中持续释放。因此,HA 整体材料在蛋白质纯化和生物材料领域具有潜在的应用。

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