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氟苯尼考水凝胶的可控缓释用于有效治疗肠道细菌感染

Manipulated Slow Release of Florfenicol Hydrogels for Effective Treatment of Anti-Intestinal Bacterial Infections.

作者信息

Luo Wanhe, Zhang Mengdi, Jiang Yongtao, Ma Guocai, Liu Jinhuan, Dawood Ali Sobhy, Xie Shuyu, Algharib Samah Attia

机构信息

College of Animal Science and Technology, Tarim University, Alar, Xinjiang, 843300, People's Republic of China.

Key Laboratory of Livestock and Forage Resources Utilization Around Tarim, Ministry of Agriculture and Rural Areas, Tarim University, Alar, Xinjiang, 843300, People's Republic of China.

出版信息

Int J Nanomedicine. 2025 Jan 13;20:541-555. doi: 10.2147/IJN.S484536. eCollection 2025.

Abstract

OBJECTIVE

The difficulty of establishing slow release at intestinal infection sites, weak antibacterial effects, as well as the limited broad use of florfenicol oral formulations are the main targets of the current study. Novel hydrogels derived from sodium alginate were developed using a complexation form for florfenicol delivery to achieve slow release at the site of intestinal infection and enhance its antibacterial activity against .

METHODS

The optimal formulation, physicochemical properties, stability, pH-responsive performance, antibacterial activity, and in vitro biosafety of the florfenicol hydrogels have been studied systematically.

RESULTS

The created hydrogels had a consistent spherical morphology, with an average diameter of 531.9±12.6 nm. Energy dispersive spectroscopy and Fourier transform infrared indicated that florfenicol hydrogels have been successfully prepared through complexation force. Furthermore, it is shown that florfenicol hydrogels hold outstanding stability, excellent sustained release, and faster swelling and release at intestinal pH due to pH-responsiveness. The florfenicol hydrogels had no obvious structural destruction in simulated gastric juice (pH=1.2) for 12 hrs and were highly stable. However, the hydrogels began to be destroyed after 5 minutes in simulated intestinal fluid (SIF), and this decomposition was continuous. With the decomposition of the structure of florfenicol hydrogels, the encapsulated florfenicol was also slowly released, and thus, it achieves the slow-release effect. Additionally, the florfenicol hydrogels showed a low hemolytic ratio and greater antibacterial activity compared with florfenicol.

CONCLUSION

The blended formulation creates a promising oral matrix intended for the slow-release of florfenicol along the gastrointestinal tract.

摘要

目的

目前研究的主要目标是在肠道感染部位建立缓释的困难、抗菌效果较弱以及氟苯尼考口服制剂广泛应用受限。使用一种络合形式开发了源自海藻酸钠的新型水凝胶用于氟苯尼考递送,以在肠道感染部位实现缓释并增强其抗菌活性。

方法

系统研究了氟苯尼考水凝胶的最佳配方、理化性质、稳定性、pH响应性能、抗菌活性和体外生物安全性。

结果

制备的水凝胶具有一致的球形形态,平均直径为531.9±12.6纳米。能量色散光谱和傅里叶变换红外光谱表明,氟苯尼考水凝胶已通过络合力成功制备。此外,结果表明氟苯尼考水凝胶具有出色的稳定性、优异的缓释性能,并且由于pH响应性,在肠道pH值下具有更快的溶胀和释放速度。氟苯尼考水凝胶在模拟胃液(pH=1.2)中12小时无明显结构破坏,稳定性高。然而,水凝胶在模拟肠液(SIF)中5分钟后开始被破坏,且这种分解是持续的。随着氟苯尼考水凝胶结构的分解,包裹的氟苯尼考也缓慢释放,从而实现缓释效果。此外,与氟苯尼考相比,氟苯尼考水凝胶显示出较低的溶血率和更强的抗菌活性。

结论

该混合制剂创建了一种有前景的口服基质,旨在沿胃肠道缓慢释放氟苯尼考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1f3/11740594/d9be16781143/IJN-20-541-g0001.jpg

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