评估不同超分散剂对含酮洛芬口腔崩解片体外表征参数的影响

Q4 Pharmacology, Toxicology and Pharmaceutics Ankara Universitesi Eczacilik Fakultesi Dergisi Pub Date : 2024-03-19 DOI:10.33483/jfpau.1425266
Tansel Çomoğlu
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引用次数: 0

摘要

目的:口腔崩解片(ODT)彻底改变了药物的给药方式,为那些难以吞咽传统片剂的患者提供了一种方便的选择。本研究探讨了超级崩解剂(氯丙维酮、淀粉乙醇酸钠和卡莫司琼糖钠)对含酮洛芬口腔崩解片体外表征的影响。ODT 的设计目的是在口腔中迅速崩解而不含水分,从而提高患者的依从性,确保更快的起效时间,并提供方便:材料:对预压缩酮洛芬 ODT 混合物的微粒特性进行了评估,包括容积密度、敲击密度、豪斯纳比率和可压缩性指数。ODT 采用直接压缩法配制,以保持组分的均匀性。综合表征包括重量变化、片剂硬度、易碎性、润湿时间和体外崩解时间评估。通过对溶解的 ODT 进行紫外分光光度法测定药物含量,并使用 USP 仪器 XXIV 在 pH 值为 6.8 的磷酸盐缓冲液中进行溶解研究:结果显示,片剂质量均匀,粉末混合物流动性良好,确保了 ODT 的物理性质。片剂具有良好的机械耐受性,硬度稳定,易碎性低。所有配方的药物含量都很高且均匀。不同的超微崩解剂会影响润湿、崩解和溶解时间。克罗波酮的润湿时间最快,但崩解时间较长,原因是片剂硬度增加。溶出研究表明,与氨甲蝶呤钠和淀粉乙醇酸钠相比,含rospovidone 的 ODT 药物释放速度更快,这与文献研究结果一致。该研究强调了在全面评估 ODT 性能时同时考虑润湿和崩解时间的重要性。Croscarmellose sodium 和淀粉乙醇酸钠会阻碍药物的释放,形成凝胶状块状物阻碍溶解,而 Crospovidone 则会促进配制的 ODT 中药物的释放。总之,这项研究为药物开发和以患者为中心的给药解决方案提供了宝贵的见解,展示了超微崩解剂对 ODT 性能的影响,并强调了考虑各种参数进行综合评估的重要性。
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FARKLI SÜPER DAĞITICILARIN KETOPROFEN İÇEREN AĞIZDA DAĞILAN TABLETLERİN İN VİTRO KARAKTERİZASYON PARAMETRELERİ ÜZERİNDEKİ ETKİSİNİN DEĞERLENDİRİLMESİ
Objective: Orally Disintegrating Tablets (ODTs) have revolutionized pharmaceutical drug delivery, offering a patient-friendly alternative for those struggling with conventional tablet swallowing. This study delves into the impact of superdisintegrants (crospovidone, sodium starch glycolate, and croscarmellose sodium) on the in vitro characterization of Ketoprofen-containing ODTs. ODTs are designed to rapidly disintegrate in the oral cavity without water, enhancing patient compliance, ensuring faster therapeutic onset, and providing convenience. Material and Method: The micromeritic properties of pre-compression Ketoprofen ODT blends were assessed for bulk density, tapped density, Hausner ratio, and compressibility index. ODTs were formulated using a direct compression method to maintain component uniformity. Comprehensive characterization included weight variation, tablet hardness, friability, wetting time, and in vitro disintegration time assessments. The drug content was determined through UV spectrophotometry of dissolved ODTs, and dissolution studies were conducted in pH 6.8 phosphate buffer using USP apparatus XXIV. Result and Discussion: Results showed uniform tablet mass and favorable powder mixture flowability, ensuring ODT physical properties. Tablets exhibited excellent mechanical resistance with consistent hardness and low friability loss. All formulations demonstrated high and uniform drug content. Different superdisintegrants influenced wetting, disintegration, and dissolution times. Crospovidone exhibited the fastest wetting time but longer disintegration times, attributed to increased tablet hardness. Dissolution studies revealed that crospovidone-containing ODTs had faster drug release compared to croscarmellose sodium and sodium starch glycolate, aligning with literature findings. The study emphasized the importance of considering both wetting and disintegration times for a comprehensive evaluation of ODT performance. Croscarmellose sodium and sodium starch glycolate hindered drug release, forming gel-like masses impeding dissolution, while crospovidone enhanced drug release in formulated ODTs. In conclusion, the study provides valuable insights for pharmaceutical development and patient-centric drug delivery solutions, showcasing the influence of superdisintegrants on ODT performance and emphasizing the importance of considering various parameters for comprehensive evaluation.
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来源期刊
Ankara Universitesi Eczacilik Fakultesi Dergisi
Ankara Universitesi Eczacilik Fakultesi Dergisi Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
0.80
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0.00%
发文量
70
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