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首页> 外文期刊>International Journal of Polymer Science >Highly Porous pH-Responsive Carboxymethyl Chitosan-Grafted-Poly (Acrylic Acid) Based Smart Hydrogels for 5-Fluorouracil Controlled Delivery and Colon Targeting
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Highly Porous pH-Responsive Carboxymethyl Chitosan-Grafted-Poly (Acrylic Acid) Based Smart Hydrogels for 5-Fluorouracil Controlled Delivery and Colon Targeting

机译:高度多孔pH-响应羧甲基壳聚糖接枝 - 聚(丙烯酸)基于5氟尿嘧啶控制递送和结肠靶向的智能水凝胶

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In the present investigation, new formulations of CMCS/AA hydrogels with varying composition of Carboxymethyl chitosan, acrylic acid, and ethylene glycol dimethacrylate (EGDMA) were prepared by free radical polymerization technique using benzoyl peroxide as catalyst. The bioavailability of 5-FU through the oral route is very limited owing to its rapid metabolism and clearance from the general circulation. Current work was aimed at increasing the bioavailability of 5-FU via smart hydrogels and at investigating their potential in delivering 5-FU to target colon cancer. Swelling studies were carried out on dried hydrogel discs in different USP phosphate buffer solutions of various pH values. Porosity and gel fraction of all the samples were measured. 5-FU was used as a model drug and loaded in selected hydrogel samples. The amount of drug loaded and released was determined. Experimental data was fitted to various model equations, and corresponding parameters were calculated to study the release mechanism. Many structural parameters were calculated. The prepared hydrogels were also characterized by FTIR and SEM to study the structure, crystallinity, compatibility, and morphology of the smart hydrogels. The biocompatibility and cytotoxic potential blank and drug-loaded hydrogels were assessed through MTT assay. The prepared hydrogels were found to be an excellent carrier for 5-FU in targeting colon cancer.
机译:在本研究中,通过使用苯甲酰聚合技术使用苯甲酰聚合技术,通过使用苯甲酰聚合方法作为催化剂,制备具有不同组成的CMCS / AA水凝胶的新配方。由于其从一般循环的新陈代谢和许可,通过口腔路线的5-FU通过口腔途径的生物利用度非常有限。目前的工作旨在通过智能水凝胶增加5-FU的生物利用度,并在研究其递送5-FU靶向结肠癌的潜力。在不同USP磷酸盐缓冲溶液的各种pH值的不同USP磷酸盐缓冲溶液中进行肿胀研究。测量所有样品的孔隙率和凝胶分数。 5-FU被用作模型药物并在选定的水凝胶样品中装载。测定负载和释放的药物量。实验数据适用于各种模型方程,并计算相应的参数以研究释放机制。计算许多结构参数。制备的水凝胶还表征了FTIR和SEM,研究了智能水凝胶的结构,结晶度,相容性和形态。通过MTT测定评估生物相容性和细胞毒性潜在坯料和药物负载水凝胶。发现制备的水凝胶是靶向结肠癌5-FU的优异载体。

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