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口服新型肽类 ghrelin 激动剂的缓释多颗粒制剂:配方设计与体外特性研究。

Sustained-release multiparticulates for oral delivery of a novel peptidic ghrelin agonist: Formulation design and in vitro characterization.

机构信息

School of Pharmacy, University College Cork, Cork, Ireland; Department of Anatomy & Neuroscience, University College Cork, Cork, Ireland; Food for Health Ireland, University College Cork, Cork, Ireland.

School of Pharmacy, University College Cork, Cork, Ireland.

出版信息

Int J Pharm. 2018 Jan 30;536(1):63-72. doi: 10.1016/j.ijpharm.2017.11.051. Epub 2017 Nov 23.

Abstract

There is an impetus to provide appropriate sustained release oral delivery vehicles to protect biofunctional peptide loads from gastric degradation in vivo. This study describes the generation of a high load capacity pellet formulation for sustained release of a freely water-soluble dairy-derived hydrolysate, FHI-2571. The activity of this novel peptidic ghrelin receptor agonist is reported using in vitro calcium mobilization assays. Conventional extrusion spheronization was then used to prepare peptide-loaded pellets which were subsequently coated with ethylcellulose (EC) film coats using a fluid bed coating system in bottom spray (Wurster) mode. Aqueous-based EC coating dispersions produced mechanically brittle coats which fractured due to osmotic pressure build-up within pellets in simulated media. In contrast, an ethanolic-based EC coating solution provided robust, near zero-order release in both USP Type 1 and Type 4 dissolution studies. Interestingly, the functionality of aqueous-based EC film coats was restored by first layering pellets with a methacrylic acid copolymer (MA) subcoat, thereby hindering pellet core swelling in acidic media. Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) was utilised as a complementary technique to confirm the results seen in USP dissolution studies. Retention of activity of the ghrelinergic peptide hydrolysate in the final encapsulated product was confirmed as being greater than 80%. The described pellet formulation is amenable to oral dosing in small animal studies in order to assess in vivo efficacy of the whey-derived ghrelinergic hydrolysate. In more general terms, it is also suitable as a delivery vehicle for peptide-based bioactives to special population groups e.g paediatric and geriatric.

摘要

有一种动力是为了保护体内生物功能性肽负荷免受胃降解,从而提供适当的持续释放口服给药载体。本研究描述了一种高载药量的微丸制剂的制备,用于持续释放一种水溶性好的乳制品衍生的水解物,FHI-2571。使用体外钙动员测定法报告了这种新型肽类促胃液素受体激动剂的活性。然后,采用常规的挤出滚圆技术制备载肽微丸,随后采用底部喷雾(Wurster)模式的流化床包衣系统用乙基纤维素(EC)薄膜包衣。水基 EC 包衣分散体产生机械脆性包衣,由于在模拟介质中微丸内渗透压的建立,包衣会破裂。相比之下,基于乙醇的 EC 包衣溶液在 USP 类型 1 和 4 溶出研究中均提供了稳健的、接近零级释放。有趣的是,首先用甲基丙烯酸共聚物(MA)亚涂层对微丸进行分层,从而阻碍了微丸在酸性介质中的溶胀,从而恢复了水基 EC 薄膜涂层的功能。宽带声共振溶出光谱法(BARDS)被用作一种补充技术,以确认 USP 溶出研究中所见的结果。证实最终包封产品中胃泌素肽水解物的活性保留大于 80%。所描述的微丸制剂适合于在小动物研究中进行口服给药,以评估乳源胃泌素肽水解物的体内功效。更一般地说,它也适合作为特殊人群(如儿科和老年人群)的基于肽的生物活性物质的给药载体。

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