A Perspective on the Permeability of Cocrystals/Organic Salts of Oral Drugs

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2024-09-16 DOI:10.1021/acs.molpharmaceut.4c00786
Ali Samie, Hoda Alavian
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Abstract

According to the BCS classification system, the differentiation of drugs is based on two essential parameters of solubility and permeability, meaning the latter is as pivotal as the former in creating marketable pharmaceutical products. Nevertheless, the indispensable role of permeability in pharmaceutical cocrystal profiles has not been sufficiently cherished, which can be most probably attributed to two principal reasons. First, responsibility may be on more user-friendly in vitro measurement procedures for solubility compared to permeability, implying the permeability measurement process seems unexpectedly difficult for researchers, whereas they have a complete understanding of solubility concepts and experiments. Besides, it may be ascribed to the undeniable attraction of introducing new crystal-based structures which mostly leaves the importance of improving the function of existing multicomponents behind. Bringing in new crystalline entities, to rephrase it, researchers have a fairly better chance of achieving high-class publications. Although the Food and Drug Administration (FDA) has provided a golden opportunity for pharmaceutical cocrystals to straightforwardly enter the market by simply considering them as derivatives of the existing active pharmaceutical ingredients, inattention to assessing and scaling up permeability which is intimately linked with solubility has resulted in limited numbers of them in the global pharmaceutical market. Casting a glance at the future, it is apprehended that further development in the field of permeability of pharmaceutical cocrystals and organic salts requires a meticulous perception of achievements to date and potentials to come. Thence, this perspective scrutinizes the pathway of permeation assessment making researchers confront their fear upfront through mapping the simplest way of permeability measurement for multicomponents of oral drugs.

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透视口服药物晶体/有机盐的渗透性
根据 BCS 分类系统,药物的区分基于两个基本参数,即溶解度和渗透性。然而,渗透性在药用共晶体剖面中不可或缺的作用却没有得到足够重视,这可能有两个主要原因。首先,与渗透性相比,溶解度的体外测量程序更易于操作,这意味着渗透性的测量过程对于研究人员来说似乎出乎意料地困难,尽管他们对溶解度的概念和实验有全面的了解。此外,这可能是由于引入新的晶体结构具有无可否认的吸引力,而将改善现有多组分功能的重要性抛在了脑后。换句话说,引入新的晶体实体,研究人员就更有机会发表高水平的论文。尽管美国食品药品管理局(FDA)已为药用共晶体提供了直接进入市场的良机,只需将其视为现有活性药物成分的衍生物即可,但由于不重视与溶解度密切相关的渗透性评估和放大,导致全球医药市场上的药用共晶体数量有限。展望未来,我们认识到,要想在药用共晶体和有机盐的渗透性领域取得进一步发展,就必须对迄今为止取得的成就和未来的潜力有一个细致的认识。因此,本视角仔细研究了渗透性评估的途径,通过绘制口服药物多组分渗透性测量的最简单方法,使研究人员直面他们的恐惧。
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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