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基于聚环氧乙烷/壳聚糖纤维结构增强的乌贼骨衍生纳米碳酸羟基磷灰石的多孔骨支架的制备及细胞相容性评价

Fabrication and cytocompatibility evaluation of porous bone scaffold based on cuttlefish bone-derived nano-carbonated hydroxyapatite reinforced with polyethylene oxide/chitosan fibrous structure.

作者信息

Habiburrohman Musyafa Riziq, Jamilludin Muhammad Amir, Cahyati Nilam, Herdianto Nendar, Yusuf Yusril

机构信息

Department of Physics, Faculty of Mathematics and Natural Sciences, Universitas Gadjah Mada Yogyakarta 55281 Indonesia

Research Centre for Advanced Material, National Research and Innovation Agency (BRIN) South Tangerang 15314 Indonesia.

出版信息

RSC Adv. 2025 Feb 17;15(7):5135-5150. doi: 10.1039/d4ra08457h. eCollection 2025 Feb 13.

Abstract

A novel porous bone scaffold based on nano-carbonated hydroxyapatite reinforced with fibrous-like structured polyethylene oxide/chitosan network (nCHA/PEO/CS) was introduced and fabricated freeze-drying. Prior to this, the nCHA was synthesized through a hydrothermal reaction based on cuttlefish bone (CFB, ). The raw cuttlefish bone (raw-CFB) was first decomposed to obtain cuttlefish bone-derived calcium oxide (CaO-CFB) by calcination at 1000 °C, which was used for synthesizing nCHA. The chemical composition analysis showed that the nCHA formed AB-type CHA with a high carbonate content of 7.38 wt%, which is in the range of carbonate content in native bone (2-9 wt%). The Ca/P molar ratio of nCHA was 1.712, very close to the Ca/P of biological apatite of 1.71. Morphological analysis revealed that nCHA consists of nanosized particles, potentially offering a large surface area to volume to promote ion exchange and cell interaction. The excellent physicochemical and morphological properties of nCHA proposed suitability as a bone scaffold precursor combined with PEO and CS. The nCHA/PEO/CS scaffolds were freeze-dried with varying PEO/CS concentrations. Physicochemical analysis indicated that increasing the PEO/CS concentration decreased the crystallinity of the scaffold, causing it to be lower than the nCHA crystallinity, which may be beneficial for cell growth. Morphological analysis revealed that the scaffold structure comprised nCHA cross-linked within a fibrous-like structured PEO/CS network, which appropriately mimics the fibrous structure of extracellular matrix (ECM) in natural bone. However, the nCHA/PEO/CS-11 scaffold formed more appropriate pores with suitable porosity for cell development, blood vessel formation, and nutrient perfusion. The nCHA/PEO/CS-11 scaffold also demonstrated sufficient compressive strength and good swelling behavior, which may favor bone regeneration. The nCHA/PEO/CS-11 scaffold demonstrated high cytocompatibility and facilitated the adherence of MC3T3E1 cells on the scaffold surface. The nCHA/PEO/CS-11 scaffold also promoted cell osteogenic differentiation. Owing to its desirable and suitable characteristics, the nCHA/PEO/CS-11 scaffold is promising in bone tissue engineering.

摘要

介绍并通过冷冻干燥法制备了一种新型的基于纳米碳酸羟基磷灰石(nCHA)的多孔骨支架,该支架由纤维状结构的聚环氧乙烷/壳聚糖网络(PEO/CS)增强。在此之前,通过基于墨鱼骨(CFB)的水热反应合成了nCHA。首先将生墨鱼骨(raw-CFB)在1000℃煅烧分解以获得墨鱼骨衍生的氧化钙(CaO-CFB),用于合成nCHA。化学成分分析表明,所形成的nCHA为AB型CHA,碳酸盐含量高达7.38 wt%,处于天然骨中碳酸盐含量范围(2-9 wt%)内。nCHA的Ca/P摩尔比为1.712,非常接近生物磷灰石的Ca/P值1.71。形态分析表明,nCHA由纳米级颗粒组成,可能提供较大的表面积与体积比,以促进离子交换和细胞相互作用。nCHA优异的物理化学和形态学性质表明其适合作为与PEO和CS结合的骨支架前体。采用不同的PEO/CS浓度对nCHA/PEO/CS支架进行冷冻干燥。物理化学分析表明,增加PEO/CS浓度会降低支架的结晶度,使其低于nCHA的结晶度,这可能有利于细胞生长。形态分析表明,支架结构由nCHA交联在纤维状结构的PEO/CS网络中组成,适当模拟了天然骨细胞外基质(ECM)的纤维结构。然而,nCHA/PEO/CS-11支架形成了更适合细胞发育、血管形成和营养物质灌注的具有合适孔隙率的孔隙。nCHA/PEO/CS-11支架还表现出足够的抗压强度和良好的溶胀行为,这可能有利于骨再生。nCHA/PEO/CS-11支架表现出高细胞相容性,并促进MC3T3E1细胞在支架表面的黏附。nCHA/PEO/CS-11支架还促进细胞成骨分化。由于其理想且合适的特性,nCHA/PEO/CS-11支架在骨组织工程中具有广阔前景。

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