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首页> 外文期刊>Current drug delivery >Ionotropic Cross-linked Carbo-protein Micro Matrix System: An Approach for Improvement of Drug Release, Compaction and Tableting behavior of Losartan Potassium
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Ionotropic Cross-linked Carbo-protein Micro Matrix System: An Approach for Improvement of Drug Release, Compaction and Tableting behavior of Losartan Potassium

机译:离子交联的碳蛋白微基质系统:一种改善氯沙坦钾的释药,压实和压片行为的方法

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The aim of the present research work is to develop carbo-protein polymeric complex based sustain release microspheres of losartan potassium and investigate the ability of this dosage form to improve the flowability, compressibility and tableting properties of losartan potassium. The influence of silk sericin, alginate and its blend on various physicochemical parameters and in vitro drug release pattern were studied to optimize the concentration of polymeric blend required for 12 h. sustain release. Optimized batch was subjected to different flowability, compressibility and tableting properties studies to observe the effects of carbo-protein microspheres on flow properties. Results indicated that the concentration of sericin was found to be the main influential factor for prolonged drug release. Different micromeritic studies revealed that the poor flowability and compressibility properties of pure losartan potassium were significantly improved by this algino-sericin micro-spheric dosage form. Research findings also revealed that plasticity, die filling behavior and tableting properties of the pure drug were significantly improved by this microsphere formulation. So these prospective results concluded that carbo-protein polymeric microspheres helps to sustain the drug release for prolong hours as well as improve the flowability, compressibility and tableting properties of losartan potassium.
机译:本研究工作的目的是开发基于碳-蛋白质聚合物复合物的氯沙坦钾缓释微球,并研究该剂型改善氯沙坦钾的流动性,可压缩性和压片性质的能力。研究了丝胶,海藻酸盐及其混合物对各种理化参数和体外药物释放模式的影响,以优化12 h所需的聚合物混合物的浓度。持续释放。对优化的批次进行了不同的流动性,可压缩性和压片性能研究,以观察碳糖微球对流动性能的影响。结果表明,发现丝胶的浓度是延长药物释放的主要影响因素。不同的微胶束研究表明,这种氯代-丝胶微球剂型可明显改善纯氯沙坦钾的差的流动性和可压缩性。研究结果还表明,通过这种微球制剂,纯药物的可塑性,模具填充行为和压片性能得到了显着改善。因此,这些前瞻性结果得出的结论是,碳-蛋白质聚合物微球有助于长时间延长药物释放,并改善氯沙坦钾的流动性,可压缩性和压片性能。

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