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Nanoparticle formulation by Büchi B-90 Nano Spray Dryer for oral mucoadhesion

机译:BüchiB-90纳米喷雾干燥器制备的纳米颗粒可用于口腔粘膜粘连

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摘要

Diabetes is considered one of the main threats to global public health in this era. It is increasing rapidly in every part of the world; the prevalence of the disease will grow to the point where 366 million people will be affected by 2030. The prevalence of diabetes mellitus (DM) in the Saudi population is high, and the majority of patients suffer from type 2 DM. Marketed oral antidiabetic drugs have indicated poor tolerability during chronic treatments, and this contributes to the moderately large proportion of type 2 DM patients that remain inadequately managed. Vildagliptin nanospheres were prepared with aminated gelatin using a spray-drying method; narrow particle-size distribution was seen at 445 nm. The angle of repose was found to be θ <33.5°. The nanospheres appeared to be spherical with a smooth surface. The drug content and percentage yield of the nanospheres were found to be 76.2%±4.6% and 83%±2%, respectively. The nanosphere-swell profile was found to be 165%±7%. The pure drug was 100% dissolved in 30 minutes, and the nanosphere formulation took 12 hours to dissolve (97.5%±2%), and followed a Korsmeyer–Peppas kinetic model with an R2 of 0.9838. The wash-off test of nanospheres found that they exhibited an excellent mucoadhesive property at 86.7% for 8 hours. The stability-study data showed no changes in the physicochemical properties of the nanospheres, and suggested that the nanospheres be stored below room temperature. The amount of vildagliptin retained was 1.6% within 3 hours, and in comparison with the gelatin vildagliptin nanoparticles formulation, the percentage that was retained was much higher (98.2% in 12 hours).
机译:在这个时代,糖尿病被认为是对全球公共卫生的主要威胁之一。它在世界各地迅速增长;到2030年,该疾病的患病率将上升到3.66亿人受影响。沙特人群中的糖尿病(DM)患病率很高,大多数患者患有2型DM。市售的口服抗糖尿病药已表明在慢性治疗期间耐受性差,这造成了中度比例较大的2型DM患者,而这些患者仍未得到足够的管理。使用胺化明胶通过喷雾干燥法制备了维格列汀纳米球。在445nm处观察到窄的粒度分布。发现休止角为θ<33.5°。纳米球似乎是具有光滑表面的球形。纳米球的药物含量和百分产率分别为76.2%±4.6%和83%±2%。发现纳米球-膨胀曲线为165%±7%。纯药物在30分钟内溶解了100%,纳米球制剂的溶解时间为12小时(97.5%±2%),并遵循Korsmeyer-Peppas动力学模型,R 2 为0.9838。纳米球的冲刷试验发现,它们在88.6%的时间里表现出极好的粘膜粘附性能,为86.7%。稳定性研究数据表明,纳米球的理化特性没有变化,表明纳米球的储存温度低于室温。维格列汀的保留量在3小时内为1.6%,与明胶维格列汀纳米颗粒制剂相比,保留的百分比要高得多(12小时内为98.2%)。

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