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Formulation and evaluation of novel solid lipid microparticles as a sustained release system for the delivery of metformin hydrochloride

机译:新型固体脂质微粒的配制和评估,作为用于递送盐酸二甲双胍的缓释系统

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摘要

The low encapsulation efficiency of conventional solid lipid microparticles (SLMs) especially for hydrophilic drugs has remained a challenge to drug formulation experts. This work seeks to address the issue of inefficient delivery of metformin hydrochloride (MTH), a potent hydrophilic oral antihyperglycemic agent, using novel SLMs based on solidified reverse micellar solutions (SRMS) prepared by melt-emulsification using a lipid derived from Capra hircus and Phospholipon? 90H. Characterization based on size, morphology, zeta potential, polydispersity index, encapsulation efficiency (EE%), loading capacity (LC) and time-resolved stability were carried out on the SLMs. The in vitro release of MTH from the SLMs was performed in phosphate buffer (pH 7.4) while the in vivo antidiabetic properties were investigated in alloxan-induced diabetic rats. Stable, spherical and smooth SLMs were obtained. Loading of MTH into the SLMs had no effect on the surface charge of the particles. The SLMs with 1.0%w/w PEG 4000 resulted in significantly (p < 0.05) higher EE% while those with 2.0%w/w gave the least. The LC values ranged from 20.3 to 29.1 and 14.6 to 24.1 for SLMs containing 500 mg and 250 mg of MTH, respectively. The in vitro release studies revealed significant release of MTH from the SLMs whereas the in vivo antidiabetic studies indicated that novel SLMs containing 500 mg of MTH gave significantly (p < 0.05) higher glucose reduction than glucophage?. This research has shown that SLMs based on SRMS offer a new and better approach of delivering MTH, thus encouraging further development of this formulation.
机译:常规固体脂质微粒(SLM)的低包封效率,尤其是亲水性药物,仍然是药物制剂专家的挑战。这项工作旨在通过使用基于固态逆胶束溶液(SRMS)的新型SLM(使用Capra hircus和Phospholipon衍生的脂质通过熔融乳化制备的新型SLM)来解决有效递送亲水性口服降血糖药的盐酸二甲双胍(MTH)的效率低下的问题。 ? 90小时在SLM上进行了基于大小,形态,ζ电位,多分散指数,包封效率(EE%),负载量(LC)和时间分辨稳定性的表征。在磷酸盐缓冲液(pH 7.4)中从SLM体外释放MTH,同时在四氧嘧啶诱导的糖尿病大鼠中研究了其体内抗糖尿病特性。获得了稳定,球形和光滑的SLM。将MTH装载到SLM中对颗粒的表面电荷没有影响。 PEG 4000为1.0%w / w的SLM导致EE%显着(p <0.05)高,而wt%为2.0%的SLM的EE%最低。含有500 mg和250 mg MTH的SLM的LC值分别为20.3至29.1和14.6至24.1。体外释放研究表明,MTH从SLMs中大量释放,而体内抗糖尿病研究表明,含有500mg MTH的新型SLMs比葡萄糖噬菌体具有明显更高的(p <0.05)葡萄糖还原作用。这项研究表明,基于SRMS的SLM提供了一种新的更好的传递MTH的方法,从而鼓励了该配方的进一步开发。

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