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Formulation and Mathematical Optimization of Controlled Release Calcium Alginate Micro Pellets of Frusemide

机译:速尿海藻酸钙微丸的制备及数学优化

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摘要

Objective. Frusemide loaded calcium alginate micropellets, an oral microparticulate delivery system, was statistically optimized exhibiting prolonged therapeutic action minimizing its adverse effects. Methods. Ionotropic Gelation technique was adopted employing 32 Factorial designs and keeping the entire process free from organic solvents. Physicochemical and the release characteristics of the prepared formulations were studied, keeping variations only in sodium alginate (primary polymer) and Acrycoat E30D (copolymer) dispersion. Result. Sodium alginate was predominant over Acrycoat E30D in all batches. Nonadditives or interaction was observed to be insignificant. Multiple regressions produced second-order polynomial equation, and the predictive results obtained were validated with high degree of correlation. The in vivo study applauded that optimized calcium alginate micropellets of frusemide can produce a much greater diuretic effect over an extended period of 24 hours. Conclusion. This study reveals that the potential of a single dose of the mathematically optimized micro pellets of frusemide formulation is sufficient in the management of peripheral edema and ascites in congestive heart failure and as well in the treatment of chronic hypertension, leading to better patient compliance, and can be produced with minimum experimentation and time, proving far more cost-effective formulation than the conventional methods of formulating dosage forms.
机译:目的。统计上优化了装载有Frusemide的海藻酸钙微丸(口服微粒递送系统)的治疗效果,并具有延长的治疗作用,可将其不良影响降至最低。方法。采用3 2 因子设计的离子型凝胶化技术,使整个过程中没有有机溶剂。研究了所制备制剂的理化性质和释放特性,仅在藻酸钠(主要聚合物)和Acrycoat E30D(共聚物)分散体中保持变化。结果。在所有批次中,海藻酸钠均超过Acrycoat E30D。非添加剂或相互作用被认为是微不足道的。多元回归产生了二阶多项式方程,并且所获得的预测结果得到了高度相关性的验证。体内研究称赞,经过优化的海藻糖海藻酸钙微丸可在24小时内产生更大的利尿作用。结论。这项研究表明,单剂量的经过数学优化的氟塞米酯微丸剂的潜力足以治疗充血性心力衰竭的外周水肿和腹水以及治疗慢性高血压,从而改善患者依从性,并且可以用最少的实验和时间来制备,可以证明比传统的剂型方法更具成本效益。

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