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虎奶菇-玉米淀粉复合材料作为直接压片多功能辅料的开发与评价

Development and evaluation of Pleurotus tuber-regium-cornstarch composite as a direct compression multifunctional excipient.

作者信息

Okoye Ebere I, Onyekweli Anthony O

机构信息

Department of Pharmaceutics and Pharmaceutical Technology, Nnamdi Azikiwe University, Awka, Anambra State, Nigeria.

Department of Pharmaceutics and Pharmaceutical Technology, University of Benin, Benin City, Edo State, Nigeria.

出版信息

Int J Pharm Investig. 2016 Jan-Mar;6(1):10-22. doi: 10.4103/2230-973X.176461.

Abstract

AIM

The aim was to develop a novel excipient from Pleurotus tuber-regium (PT)-cornstarch (CS) mixture and evaluate its multifunctional characteristics in tablet formulation.

MATERIALS AND METHODS

Composites were generated from dephytochemicalized PT and CS combined at 1:1 to 4:1 ratios and pregelatinized in a hot water bath at 65°C ± 2°C for 5 min. The paste was dried, pulverized, and screened through 150-μm sieve. PT-CS physical mixtures were prepared and their characteristics/functionalities in tableting chloroquine were compared to those of composites and microcrystalline cellulose (Avicel(®)).

RESULTS

PT ash value was 0.40 ± 0.09% and heavy metal contents were below official limits. PT's differential scanning calorimetric (DSC) thermogram depicted broad melting peak at 329.5°C; this peak was attenuated by the presence of CS. Fourier transform infrared (FTIR) spectra predicted compatibility between PT and CS. Composites consolidated better and also flowed better than physical mixtures and Avicel(®). Increasing PT content enhanced the excipients' swellabilities, and composites possessed significantly (P < 0.05) better swelling indices than Avicel(®). The composites underwent fragmentation before plastic deformation with yield pressures significantly (P < 0.05) higher than those of the physical mixtures, which exhibited only plastic deformation. The mechanical properties of chloroquine tablets were acceptable, with the 1:4 (PT:CS) imparting the best properties. Mean disintegration times for the commercial comparator and Avicel(®) -containing tablets were significantly higher (P < 0.05) than those of composites. Drug release from tablets formulated with composites were similar to the commercial comparator, but significantly higher (P < 0.05) than those of Avicel(®).

CONCLUSION

The novel composites are excellent multifunctional excipients, the best (PT:CS 1:4) one showcasing potentially better mechanical functionality than Avicel(®), a popular multifunctional excipient.

摘要

目的

旨在从虎奶菇(PT)-玉米淀粉(CS)混合物开发一种新型辅料,并评估其在片剂配方中的多功能特性。

材料与方法

将脱除植物化学成分的PT和CS按1:1至4:1的比例混合制成复合材料,并在65°C±2°C的热水浴中预胶化5分钟。将糊状物干燥、粉碎并通过150μm筛网筛分。制备PT-CS物理混合物,并将其在压制氯喹时的特性/功能与复合材料和微晶纤维素(Avicel®)的特性/功能进行比较。

结果

PT的灰分值为0.40±0.09%,重金属含量低于官方限值。PT的差示扫描量热法(DSC)热谱图在329.5°C处呈现出宽的熔融峰;CS的存在使该峰减弱。傅里叶变换红外(FTIR)光谱预测PT和CS之间具有相容性。复合材料比物理混合物和Avicel®固结性更好且流动性更佳。增加PT含量可提高辅料的溶胀性,复合材料的溶胀指数显著(P<0.05)优于Avicel®。复合材料在发生塑性变形前先经历破碎,其屈服压力显著(P<0.05)高于仅表现出塑性变形的物理混合物。氯喹片剂的机械性能良好,其中1:4(PT:CS)比例的片剂性能最佳。市售对照品和含Avicel®片剂的平均崩解时间显著高于(P<0.05)复合材料片剂。用复合材料制备的片剂的药物释放与市售对照品相似,但显著高于(P<0.05)含Avicel®的片剂。

结论

新型复合材料是优异的多功能辅料,最佳的(PT:CS 1:4)复合材料展现出比常用多功能辅料Avicel®潜在更好的机械功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9f2/4787058/5c81f06bf0ec/IJPI-6-10-g008.jpg

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