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用于生物医学应用的一锅法合成纤维素-壳聚糖-纳米羟基磷灰石杂化复合材料

Cellulose-Chitosan-Nanohydroxyapatite Hybrid Composites by One-Pot Synthesis for Biomedical Applications.

作者信息

Jarquin-Yáñez Katia, Rubio-Rosas Efrain, Piñón-Zárate Gabriela, Castell-Rodríguez Andrés, Poisot Martha

机构信息

Departamento de Biología Celular y Tisular, Facultad de Medicina, Universidad Nacional Autónoma de México, Circuito Interior, Ciudad Universitaria, CdMx, C.P. 04510 Coyoacan, Mexico.

Dirección de Innovación y Transferencia de Tecnología, Benemérita Universidad Autónoma de Puebla, Prolongación de la 24 Sur y Av. San Claudio, Ciudad Universitaria, Col. San Manuel, C.P. 72570 Puebla, Mexico.

出版信息

Polymers (Basel). 2021 May 19;13(10):1655. doi: 10.3390/polym13101655.

Abstract

The development of organic-inorganic hybrid materials deserves special interest for bone tissue engineering applications, where materials must have properties that induce the survival and activation of cells derived from the mesenchyme. In this work, four bio-nanocomposites based on cellulose and variable content of chitosan, from 15 to 50 % based on cellulose, with nanohydroxyapatite and β-Glycerophosphate as cross-linking agent were synthesized by simplified and low-energy-demanding solvent exchange method to determine the best ratio of chitosan to cellulose matrix. This study analyzes the metabolic activity and survival of human dermal fibroblast cells cultivated in four bio-nanocomposites based on cellulose and the variable content of chitosan. The biocompatibility was tested by the in vitro cytotoxicity assays Live/Dead and PrestoBlue. In addition, the composites were characterized by FTIR, XRD and SEM. The results have shown that the vibration bands of β-Glycerophosphate have prevailed over the other components bands, while new diffraction planes have emerged from the interaction between the cross-linking agent and the biopolymers. The bio-nanocomposite micrographs have shown no surface porosity as purposely designed. On the other hand, cell death and detachment were observed when the composites of 1 and 0.1 /% were used. However, the composite containing 10 % chitosan, against the sum of cellulose and β-Glycerophosphate, has shown less cell death and detachment when used at 0.01 /%, making it suitable for more in vitro studies in bone tissue engineering, as a promising economical biomaterial.

摘要

有机-无机杂化材料的开发在骨组织工程应用中值得特别关注,在骨组织工程中,材料必须具备能够诱导间充质来源细胞存活和激活的特性。在这项工作中,通过简化且低能耗的溶剂交换法合成了四种基于纤维素和壳聚糖可变含量(基于纤维素为15%至50%)的生物纳米复合材料,其中纳米羟基磷灰石和β-甘油磷酸作为交联剂,以确定壳聚糖与纤维素基质的最佳比例。本研究分析了在四种基于纤维素和壳聚糖可变含量的生物纳米复合材料中培养的人真皮成纤维细胞的代谢活性和存活率。通过体外细胞毒性检测Live/Dead和PrestoBlue测试生物相容性。此外,通过傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)和扫描电子显微镜(SEM)对复合材料进行了表征。结果表明,β-甘油磷酸的振动带比其他组分的带更占优势,同时交联剂与生物聚合物之间的相互作用产生了新的衍射面。生物纳米复合材料的显微照片显示,正如特意设计的那样没有表面孔隙。另一方面,当使用1%和0.1%的复合材料时,观察到细胞死亡和脱落。然而,含有10%壳聚糖(相对于纤维素和β-甘油磷酸的总和)的复合材料在使用0.01%时显示出较少的细胞死亡和脱落,使其作为一种有前景的经济生物材料适用于更多骨组织工程的体外研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a36/8161035/0b1715efd20d/polymers-13-01655-g001.jpg

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