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Design and evaluation of biodegradable, biosensitive in situ gelling system for pulsatile delivery of insulin.

机译:设计和评估可生物降解的,生物敏感的原位凝胶系统,用于脉冲式输送胰岛素。

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摘要

Biodegradable glucose-sensitive in situ gelling system based on chitosan for pulsatile delivery of insulin was developed. The sols/gels were thoroughly characterized for swelling properties, rheology, texture analysis and water content. The developed glucose-sensitive gels responded to varied glucose concentrations in vitro indicating their ability to function as environment-sensitive systems. Insulin load onto the gels was optimized and was found to affect the rheological behavior of these gels, the final preparation used for in vitro contained 1IU/200mul of the sol. These gels released the entrapped insulin in a pulsatile manner in response to the glucose concentration in vitro. Furthermore, the formulations when evaluated for their in vivo efficacy in streptozotocin-induced diabetic rats at a dose of 3IU/kg, demonstrated their ability to release insulin in response to glucose concentration and were preferred much better against subcutaneously given plain insulin formulation used as the control. Together, these preliminary results indicate that biosensitive chitosan in situ gelling systems have substantial potential as pulsatile delivery systems for insulin.
机译:开发了基于壳聚糖的可生物降解的葡萄糖敏感原位胶凝系统,用于胰岛素的脉动传递。溶胶/凝胶的溶胀特性,流变性,质地分析和水含量都得到了充分的表征。已开发的葡萄糖敏感性凝胶在体外对变化的葡萄糖浓度有反应,表明它们具有作为环境敏感性系统的功能。优化了凝胶上的胰岛素负载量,并发现它们会影响这些凝胶的流变行为,用于体外的最终制剂含有1IU / 200mul溶胶。这些凝胶响应体外葡萄糖浓度以脉冲方式释放被包裹的胰岛素。此外,当以3IU / kg的剂量评估在链脲佐菌素诱导的糖尿病大鼠中的体内功效时,该制剂表现出其对葡萄糖浓度的响应释放胰岛素的能力,并且与皮下给予的普通胰岛素制剂相比,其皮下给药效果要好得多。控制。总之,这些初步结果表明,生物敏感的壳聚糖原位胶凝系统具有作为胰岛素搏动性输送系统的巨大潜力。

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