Biogenic Waste from Two Varieties of Plantain in Ghana Contain Pectin with Potential Binding Properties in Conventional Tablets.

Q2 Environmental Science The Scientific World Journal Pub Date : 2024-06-17 eCollection Date: 2024-01-01 DOI:10.1155/2024/5461358
Desmond Asamoah Bruce Otu, Frederick William Akuffo Owusu, Mariam El Boakye-Gyasi, Raphael Johnson, Prince George Jnr Acquah, Yayra Edzor-Agbo, Marcel Tunkumgnen Bayor, Mary-Ann Archer
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Abstract

Pharmaceutical formulations have traditionally relied on plants and their derivatives for various APIs and excipients. In Ghana, the widespread utilization of plantains, irrespective of their ripeness, generates significant waste at every stage of processing, posing disposal issues. Fascinatingly, these wastes, often discarded, possess significant economic potential and can be recycled into valuable raw materials or products. Pectin, a polysaccharide that occurs naturally, has seen a surge in interest in recent times. It has found widespread use in the pharmaceutical sector, particularly as a binding agent in tablet formulations. This study aimed to evaluate pectin from two popular plantain varieties, Apem (M) and Apantu (T) at different ripening stages, for pharmaceutical use as a binding agent in immediate-release tablets. The ripening stages selected were the matured-green (G), half-ripe (H), and full-ripe (R). Acid (D) and alkaline (L) mediums of extraction were employed for each ripening stage for both varieties. Wet granulation method was used to prepare the granules using paracetamol as a model drug, and their flow properties were subsequently assessed. Postcompression tests including, hardness, friability, weight uniformity, disintegration, assay, and in vitro dissolution were also assessed. Granules from all formulation batches had good flow properties indicated by their angle of repose (14.93 ± 1.41-21.80 ± 1.41), Hausner ratio (0.96 ± 0.27-1.22 ± 0.02), and compressibility (%) (7.69 ± 0.002-20.51 ± 0.002). All the tablets passed the uniformity of weight with none deviating by ±5%. The hardness of all the formulated tablets ranged between 3.96 ± 0.32 and 13.21 ± 0.36, while the friability for all tablets was below 1%. The drug content was between 100.1 ± 0.23% and 103.4 ± 0.01%. Tablets formulated with pectin as a binding agent at concentrations of 10% w/v and 15% w/v successfully met the disintegration test criteria for immediate release tablets. However, those prepared with a concentration of 20% w/v (MGL, MHD, MHL, MRD, MRL, TGL, THD, THL, and TRL) did not pass the disintegration test. Consequently, all batches of tablets successfully met the dissolution test requirement (Diss, Q > 75%), except for the batches that did not pass the disintegration test (Diss, Q < 75%). Ultimately, pectins extracted from the peels of Apem and Apantu at different ripening stages using acid and alkaline extraction can be commercially exploited as pharmaceutical binders at varying concentrations in immediate-release tablets.

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加纳两种车前草的生物废料含有果胶,在常规片剂中具有潜在的结合特性。
药物配方历来依赖植物及其衍生物作为各种原料药和辅料。在加纳,大蕉的广泛使用,无论其成熟度如何,在加工的每个阶段都会产生大量废物,造成处理问题。有趣的是,这些通常被丢弃的废物却具有巨大的经济潜力,可以回收利用成为有价值的原材料或产品。果胶是一种天然存在的多糖,近来备受关注。它已被广泛应用于制药领域,特别是作为片剂的粘合剂。本研究旨在评估两种常见车前草品种--Apem(M)和 Apantu(T)--在不同成熟阶段的果胶在药物中用作速释片剂粘合剂的情况。所选的成熟阶段分别为熟绿(G)、半熟(H)和全熟(R)。两个品种的每个成熟阶段都采用了酸性(D)和碱性(L)提取介质。以扑热息痛为模型药物,采用湿法制粒法制备颗粒,随后对其流动特性进行评估。此外,还评估了压缩后测试,包括硬度、易碎性、重量均匀性、崩解度、化验和体外溶解度。所有制剂批次的颗粒都具有良好的流动性,具体表现为:静止角(14.93 ± 1.41-21.80 ± 1.41)、豪斯纳比率(0.96 ± 0.27-1.22 ± 0.02)和可压缩性(%)(7.69 ± 0.002-20.51 ± 0.002)。所有片剂的重量均匀性均合格,偏差均不超过 ±5%。所有配制片剂的硬度介于 3.96 ± 0.32 和 13.21 ± 0.36 之间,所有片剂的易碎性均低于 1%。药物含量在 100.1 ± 0.23% 和 103.4 ± 0.01% 之间。用果胶作为结合剂配制的片剂在浓度为 10% w/v 和 15% w/v 时成功地达到了速释片剂的崩解测试标准。然而,浓度为 20% w/v 的片剂(MGL、MHD、MHL、MRD、MRL、TGL、THD、THL 和 TRL)没有通过崩解测试。因此,除了未通过崩解试验的批次(Diss, Q > 75%)外,所有批次的片剂都成功地达到了溶解试验的要求(Diss, Q > 75%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The Scientific World Journal
The Scientific World Journal 综合性期刊-综合性期刊
CiteScore
5.60
自引率
0.00%
发文量
170
审稿时长
3.7 months
期刊介绍: The Scientific World Journal is a peer-reviewed, Open Access journal that publishes original research, reviews, and clinical studies covering a wide range of subjects in science, technology, and medicine. The journal is divided into 81 subject areas.
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