首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Tracking of crystalline-amorphous transition of carvedilol in rotary spun microfibers and their formulation to orodispersible tablets for in vitro dissolution enhancement
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Tracking of crystalline-amorphous transition of carvedilol in rotary spun microfibers and their formulation to orodispersible tablets for in vitro dissolution enhancement

机译:追踪卡维地洛在旋转纺丝超细纤维中的结晶-无定形转变及其向口服分散片中的制剂的体外溶出度提高

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摘要

Physicochemical characterization of microfibers including powder X-ray diffraction, differential scanning calorimetry, attenuated total reflectance Fourier transform infrared spectroscopy, and positron annihilation spectroscopy were used to track the crystalline-amorphous transition of carvedilol during formulation and stability testing. The applied methods unanimously indicated the amorphous transition of carvedilol in the course of rotary spinning, furthermore a supramolecular ordering of chains of polymer matrix was revealed out by positron annihilation spectroscopy. The accelerated stability study (40 +/- 2 degrees C/75 +/- 5% RH, for 4 weeks) indicated a large stress tolerance capacity of fibers, since only a partial crystallization of the active compound was observable at the last sampling point. To demonstrate possible utilization of microfibers, orodispersible tablets containing 10 mg of carvedilol were successfully prepared by direct compression applying common tableting excipients. All of the investigated tablet parameters (hardness, friability, in vitro disintegration time) complied with the pharmacopoeial requirements. The performed dissolution (pH 1.0 and 6.8) study indicated that the drug dissolution from the microfiber based formula was rapid, complete and independent from the pH of the applied media, while the dissolution from the control tablets, containing crystalline carvedilol was incomplete and was strongly influenced by the pH of the applied media. (C) 2015 Elsevier B.V. All rights reserved.
机译:微纤维的理化特性包括粉末X射线衍射,差示扫描量热法,衰减全反射傅里叶变换红外光谱和正电子an没光谱,用于跟踪卡维地洛在配制和稳定性测试过程中的结晶-非晶态转变。所应用的方法一致表明卡维地洛在旋转纺丝过程中发生无定形转变,此外,通过正电子an没光谱法揭示了聚合物基质链的超分子有序性。加速稳定性研究(40 +/- 2摄氏度/ 75 +/- 5%RH,持续4周)表明纤维具有较大的应力承受能力,因为在最后一个采样点仅观察到了活性化合物的部分结晶。为了证明可能利用微纤维,通过直接压制常用片剂赋形剂成功地制备了含有10 mg卡维地洛的口腔分散片剂。所有研究的片剂参数(硬度,脆性,体外崩解时间)均符合药典要求。进行的溶出度(pH 1.0和6.8)研究表明,基于微纤维的配方的药物溶出迅速,完全且独立于所施加介质的pH,而含有结晶卡维地洛的对照片剂的溶出不完全且强烈受所用介质的pH值的影响。 (C)2015 Elsevier B.V.保留所有权利。

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