Investigation of bacterial nanocellulose/calcium phosphates-based composite containing cerium for bone repair.

IF 5.4 2区 医学 Q1 BIOPHYSICS Colloids and Surfaces B: Biointerfaces Pub Date : 2025-04-01 Epub Date: 2024-12-24 DOI:10.1016/j.colsurfb.2024.114476
Ricardo Barbosa Sousa, Alessandra Cristina Dametto, Gabriela Fontana de Mesquita, Pedro Henrique Ricardo, Júlia Venturini Helaehil, Santiago Medina-Carrasco, Josy Anteveli Osajima Furtini, Guilherme Ferreira Caetano, Hernane S Barud, Edson C Silva-Filho
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Abstract

Bacterial nanocellulose (BNC) has attracted considerable attention in the field of biomedical engineering due to its potential for use in bone regeneration applications. The present study investigates the in vitro and in vivo efficacy of bacterial nanocellulose (BNC) combined with calcium and cerium ions (BNC-Ce:CaP) in bone regeneration applications. XRD analysis confirmed the presence of monetite and hydroxyapatite phases in BNC-CaP, while BNC-Ce:CaP revealed an additional brushite phase. Based on XPS analysis, cerium (III) is found in BNC-Ce:CaP at a concentration of 4.14 % (mol/mol). BNC revealed ultrafine 3D nanofibers with diameters ranging from 20.8 to 53.0 nm, while BNC-Ce:CaP composite, containing cerium, exhibited urchin-like structures with diameters around 1 µm and BNC-CaP composite presented phosphates covering the fiber surfaces, leading to significant thickness increases and pleat formation (70-180 nm). The composite materials demonstrated insignificant cytotoxicity. The results performed by histomorphometric analysis demonstrated that the BNC-Ce:CaP composites showed superior mineralized tissue formation after 60 days. Gene expression revealed a reduction in the inflammatory response and an increase in the expression of osteogenic markers, such as Bmp-2 and Osterix, in addition to an increase in the expression of angiogenic genes, such as Vegf. These findings highlight the potential of BNC-Ce:CaP composites as effective barriers to promote bone regeneration.

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含铈细菌纳米纤维素/磷酸钙复合材料骨修复研究。
细菌纳米纤维素(BNC)因其在骨再生方面的潜在应用而引起了生物医学工程领域的广泛关注。本研究探讨了细菌纳米纤维素(BNC)与钙铈离子(BNC- ce:CaP)在骨再生中的体外和体内应用效果。XRD分析证实BNC-CaP中存在铁云母相和羟基磷灰石相,而BNC-Ce:CaP中存在一个额外的刷石相。通过XPS分析,BNC-Ce:CaP中铈(III)的浓度为4.14 % (mol/mol)。BNC制备出直径为20.8 ~ 53.0 nm的超细三维纳米纤维,而BNC- ce:CaP复合材料制备出直径约为1 µm的海胆状结构,BNC-CaP复合材料表面出现磷酸盐,导致纤维厚度显著增加并形成褶皱(70 ~ 180 nm)。复合材料的细胞毒性不明显。组织形态学分析结果表明,BNC-Ce:CaP复合材料在60天后具有较好的矿化组织形成。基因表达显示炎症反应减少,成骨标志物(如Bmp-2和Osterix)表达增加,血管生成基因(如Vegf)表达增加。这些发现突出了BNC-Ce:CaP复合材料作为促进骨再生的有效屏障的潜力。
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来源期刊
Colloids and Surfaces B: Biointerfaces
Colloids and Surfaces B: Biointerfaces 生物-材料科学:生物材料
CiteScore
11.10
自引率
3.40%
发文量
730
审稿时长
42 days
期刊介绍: Colloids and Surfaces B: Biointerfaces is an international journal devoted to fundamental and applied research on colloid and interfacial phenomena in relation to systems of biological origin, having particular relevance to the medical, pharmaceutical, biotechnological, food and cosmetic fields. Submissions that: (1) deal solely with biological phenomena and do not describe the physico-chemical or colloid-chemical background and/or mechanism of the phenomena, and (2) deal solely with colloid/interfacial phenomena and do not have appropriate biological content or relevance, are outside the scope of the journal and will not be considered for publication. The journal publishes regular research papers, reviews, short communications and invited perspective articles, called BioInterface Perspectives. The BioInterface Perspective provide researchers the opportunity to review their own work, as well as provide insight into the work of others that inspired and influenced the author. Regular articles should have a maximum total length of 6,000 words. In addition, a (combined) maximum of 8 normal-sized figures and/or tables is allowed (so for instance 3 tables and 5 figures). For multiple-panel figures each set of two panels equates to one figure. Short communications should not exceed half of the above. It is required to give on the article cover page a short statistical summary of the article listing the total number of words and tables/figures.
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