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首页> 外文期刊>Biomedical materials >An acid-free water-born quaternized chitosan/montmorillonite loaded into an innovative ultra-fine bead-free water-born nanocomposite nanofibrous scaffold; in vitro and in vivo approaches
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An acid-free water-born quaternized chitosan/montmorillonite loaded into an innovative ultra-fine bead-free water-born nanocomposite nanofibrous scaffold; in vitro and in vivo approaches

机译:无酸性水型季壳糖醛酸诺/蒙脱石装入创新的超细珠子出生的纳米复合纳米纤维支架; 体外和体内方法

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摘要

An acid-free water-born chitosan derivative/montmorillonite has been successfully synthesized. A natural-based biopolymer, N-(2-hydroxy) propyl-3-trimethyl ammonium chitosan chloride, was synthesized, and its structure confirmed by Fourier transform infrared microscopy and conductometric titration. It was applied to the cationic ion-exchange reaction of montmorillonite. Then, the synthesized materials were used to produce water-born composite scaffolds for tissue engineering applications and formed an ultra-fine bead-free multicomponent nanofibrous scaffold. The scaffold was subjected to in vitro and in vivo investigations. The effects of both acidic and neutral reaction media on the efficiency of the cationic ion-exchange reaction of montmorillonite were investigated. A mechanism has been suggested for the more efficient cationic ion-exchange reaction achieved in the absence of the acid. In in vitro studies, the modified montmorillonite showed synergistic biocompatibility and cell growth with enhanced bioactivity compared to unmodified clay and even chitosan and the chitosan derivative. Scanning electron microscopy showed ultra-fine bead-free nanocomposite nanofibers. Improved biocompatibility, cell attachment, and cell growth were observed for the nanofibrous scaffolds compared to the individual components. In vivo experiments showed complete restoration of a critical-sized full-thickness wound without infection in 21 d. The technique provides a guideline to achieve chitosan nanofibrous morphology for multifunctional biomedical applications.
机译:已成功合成无酸性水出生的壳聚糖衍生物/蒙脱石。合成天然基生物聚合物,N-(2-羟基)丙基-3-三甲基三甲基氯化铵,其结构通过傅里叶变换红外显微镜证实并进行滴定。它应用于蒙脱石的阳离子离子交换反应。然后,合成材料用于生产用于组织工程应用的水出生的复合支架,形成超细胎珠多组分纳米纤维支架。支架在体外和体内研究中进行。研究了酸性和中性反应介质对蒙脱石阳离子离子交换反应效率的影响。已经提出了在不存在酸的情况下实现的更有效的阳离子离子交换反应的机制。在体外研究中,与未修饰的粘土和壳聚糖和壳聚糖衍生物相比,改性的蒙脱石和细胞生物相容性和细胞生长,其具有增强的生物活性。扫描电子显微镜显示出超细胎珠纳米复合纳米纤维。与各个组分相比,观察到纳米纤维支架的改善的生物相容性,细胞连接和细胞生长。体内实验表明,在21天中没有感染的临界大小的全厚度伤口完全恢复。该技术提供了实现多功能生物医学应用的壳聚糖纳米纤维形态的指导。

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