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罗望子胶对相分离聚乙烯醇薄膜性能的影响。

Effect of Tamarind Gum on the Properties of Phase-Separated Poly(vinyl alcohol) Films.

作者信息

Rawooth Madhusmita, Habibullah S K, Qureshi Dilshad, Bharti Deepti, Pal Ankit, Mohanty Biswaranjan, Jarzębski Maciej, Smułek Wojciech, Pal Kunal

机构信息

Department of Biotechnology and Medical Engineering, National Institute of Technology, Rourkela 769008, Odisha, India.

Department of Pharmaceutics, Institute of Pharmacy and Technology, Salipur, Cuttack 754202, Odisha, India.

出版信息

Polymers (Basel). 2022 Jul 8;14(14):2793. doi: 10.3390/polym14142793.

Abstract

The current study aims to evaluate the effect of tamarind gum (TG) on the optical, mechanical, and drug release potential of poly(vinyl alcohol) (PVA)-based films. This involves preparing PVA-TG composite films with different concentrations of TG through a simple solvent casting method. The addition of TG has enhanced the phase separation and aggregation of PVA within the films, and it becomes greater with the increase in TG concentration. Brightfield and polarized light micrographs have revealed that aggregation is favored by forming crystalline domains at the PVA-TG interface. The interconnected network of PVA-TG aggregates influenced the swelling and drying properties of the films. Using Peleg's analysis, the mechanical behavior of films was determined by their stress relaxation profiles. The addition of TG has made no significant changes to the firmness and viscoelastic properties of films. However, long-durational relaxation times indicated that the interconnected network might break down in films with higher TG concentration, suggesting their brittleness. The controlled release of ciprofloxacin in HCl solution (0.5% (/)) appears to decrease with the increase in TG concentration. In fact, TG has inversely affected the impedance and altered the ionic conductivity within the films. This seems to have directly influenced the drug release from the films as the mechanism was found to be non-Fickian diffusion (based on Korsmeyer-Peepas and Peppas-Sahlin kinetic models). The antimicrobial study using was carried out to evaluate the activity of the drug-loaded films. The study proves that TG can modulate the properties of PVA films and has the potential to fine-tune the controlled release of drugs from composite films.

摘要

本研究旨在评估罗望子胶(TG)对基于聚乙烯醇(PVA)的薄膜的光学、机械性能及药物释放潜力的影响。这涉及通过简单的溶剂浇铸法制备具有不同TG浓度的PVA-TG复合薄膜。TG的添加增强了薄膜内PVA的相分离和聚集,且随着TG浓度的增加而变得更显著。明场和偏光显微镜照片显示,聚集通过在PVA-TG界面形成结晶域而受到促进。PVA-TG聚集体的相互连接网络影响了薄膜的溶胀和干燥性能。使用佩雷格分析,通过薄膜的应力松弛曲线确定其机械行为。TG的添加对薄膜的硬度和粘弹性性能没有显著影响。然而,长时间的松弛时间表明,在TG浓度较高的薄膜中,相互连接的网络可能会分解,表明其脆性。盐酸环丙沙星在HCl溶液(0.5%(/))中的控释似乎随着TG浓度的增加而降低。事实上,TG对薄膜内的阻抗产生了反向影响并改变了离子电导率。这似乎直接影响了药物从薄膜中的释放,因为发现其机制为非菲克扩散(基于科尔斯迈耶-皮帕斯和皮帕斯-萨林动力学模型)。使用进行了抗菌研究以评估载药薄膜的活性。该研究证明,TG可以调节PVA薄膜的性能,并具有微调复合薄膜中药物控释的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd7f/9318724/4359abfa76af/polymers-14-02793-g001.jpg

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