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首页> 外文期刊>Molecular pharmaceutics >Bacterial cellulose/acrylamide pH-sensitive smart hydrogel: Development, characterization, and toxicity studies in ICR mice model
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Bacterial cellulose/acrylamide pH-sensitive smart hydrogel: Development, characterization, and toxicity studies in ICR mice model

机译:细菌纤维素/丙烯酰胺pH敏感型智能水凝胶:ICR小鼠模型的开发,表征和毒性研究

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The objective of this study is to synthesize and evaluate acute toxicity of the bacterial cellulose (BC)/acrylamide (Am) hydrogels as noncytotoxic and biocompatible oral drug delivery vehicles. A novel series of solubilized BC/Am hydrogels were synthesized using a microwave irradiation method. The hydrogels were characterized by Fourier transform infrared spectroscopy (FTIR), swelling ratio, porosity, drug release, and in vitro and in vivo biocompatibility experiments. FTIR spectra revealed that the BC crystallinity and gel fraction decreased as the NaOH concentration increased from 2% to 10% w/v, whereas the optical transparency, pH sensitivity, and porosity were enhanced with increasing alkali concentration. Theophylline was used as a model drug for drug loading and release studies. The percentage of drug released was higher at pH 7.4 compared to pH 1.5. In vitro cytotoxicity and hemolytic tests indicated that the BC/Am hydrogel is noncytotoxic and hemocompatible. Results of acute oral toxicity tests on ICR mice suggested that the hydrogels are nontoxic up to 2000 mg/kg when administered orally, as no toxic response or histopathological changes were observed in comparison to control mice. The results of this study demonstrated that the pH-sensitive smart hydrogel makes it a possible safe carrier for oral drug delivery.
机译:这项研究的目的是合成和评估细菌纤维素(BC)/丙烯酰胺(Am)水凝胶作为无细胞毒性和生物相容性口服药物递送载体的急性毒性。使用微波辐射法合成了一系列新的增溶的BC / Am水凝胶。通过傅立叶变换红外光谱(FTIR),溶胀率,孔隙率,药物释放以及体外和体内生物相容性实验对水凝胶进行了表征。 FTIR光谱表明,随着NaOH浓度从2%增加到10%w / v,BC结晶度和凝胶分数降低,而光学透明性,pH敏感性和孔隙率随碱浓度的增加而增强。茶碱被用作药物加载和释放研究的模型药物。与pH 1.5相比,在pH 7.4时释放的药物百分比更高。体外细胞毒性和溶血试验表明,BC / Am水凝胶无细胞毒性且具有血液相容性。对ICR小鼠进行急性口服毒性试验的结果表明,口服2000毫克/千克以下水凝胶无毒,因为与对照小鼠相比,未观察到毒性反应或组织病理学变化。这项研究的结果表明,pH敏感型智能水凝胶使其成为口服药物递送的安全载体。

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