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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Use of Silk Protein, Sericin, as a Sustained-Release Material in the Form of a Gel, Sponge and Film
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Use of Silk Protein, Sericin, as a Sustained-Release Material in the Form of a Gel, Sponge and Film

机译:丝蛋白丝胶作为凝胶,海绵和薄膜形式的缓释材料的用途

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To evaluate the usability of silk protein (sericin, SC) as a sustained-release material, the physicochemical properties of SC and the release profiles of model drugs from SC gel, sponge and film were studied. Heat aids the dissolution of SC. The molecular weight of SC tended to decrease as the heating temperature and heating time increased. The gel and sponge formed by SC were moldable and consisted of high molecular weight SC polymers (250 kDa and about 400 kDa). SC film was easily broken and exhibited elastic distortion. The addition of moisture-retaining plasticizer (glycerin and sorbitol) improved the film-forming characteristics of SC. The results suggested that SC is practical as a moldable gel and sponge, and as a tensible film. To evaluate the release profiles of small molecules, fluorescein isothiocyanate-dextran ((1) FD4, 4 kDa and (2) FD70, 70 kDa) were used as two model drugs with significantly different molecular weights, and fluorescein isothiocyanate-albumin ((3) FA, 66 kDa) was used as a charged drug. Each was formulated in SC gel, sponge and film. In each preparation, the release rate of the model drugs tended to be FA
机译:为了评估丝蛋白(sericin,SC)作为持续释放材料的可用性,研究了SC的理化性质和模型药物从SC凝胶,海绵和薄膜中的释放曲线。加热有助于SC的溶解。 SC的分子量倾向于随着加热温度和加热时间的增加而降低。由SC形成的凝胶和海绵是可模塑的,并且由高分子量SC聚合物(250kDa和约400kDa)组成。 SC膜容易破裂并表现出弹性变形。添加保水增塑剂(甘油和山梨糖醇)改善了SC的成膜特性。结果表明,SC可作为可成型的凝胶和海绵,以及可拉伸的薄膜。为了评估小分子的释放曲线,将异硫氰酸荧光素(1)FD4,4 kDa和(2)FD70,70 kDa)用作两种分子量明显不同的模型药物,异硫氰酸荧光素-白蛋白((3 )FA,66 kDa)用作带电药物。每种均以SC凝胶,海绵和薄膜配制。在每种制剂中,模型药物的释放速率倾向于为FA

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