Mechanistic Insights into Amorphous Solid Dispersions: Bridging Theory and Practice in Drug Delivery.

IF 4.3 3区 医学 Q2 CHEMISTRY, MULTIDISCIPLINARY Pharmaceutical Research Pub Date : 2025-01-01 Epub Date: 2025-01-23 DOI:10.1007/s11095-024-03808-w
Srividya B, Animesh Ghosh
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Abstract

Improving the bioavailability  of poorly water-soluble drugs presents a significant challenge in pharmaceutical development. Amorphous solid dispersions (ASDs) have garnered substantial attention for their capability to augment the solubility and dissolution rate of poorly water-soluble drugs, thereby markedly enhancing their bioavailability. ASDs, characterized by a metastable equilibrium where the active pharmaceutical ingredient (API) is molecularly dispersed, offer enhanced absorption compared to crystalline forms. This review explores recent research advancements in ASD, emphasizing dissolution mechanisms, phase separation phenomena, and the importance of drug loading and congruency limits on ASD performance. Principal occurrences such as liquid-liquid phase separation (LLPS) and supersaturation are discussed, highlighting their impact on drug solubility, absorption and subsequent bioavailability. Additionally, it addresses the role of polymers in controlling supersaturation, stabilizing drug-rich nanodroplets, and inhibiting recrystallization. Recent advancements and emerging technologies offer new avenues for ASD characterization and production and demonstrate the potential of ASDs to enhance bioavailability and reduce variability, making possible for more effective and patient-friendly pharmaceutical formulations. Future research directions are proposed, focusing on advanced computational models for predicting ASD stability, use of novel polymeric carriers, and methods for successful preparations.

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非晶固体分散体的机理:药物传递中的桥接理论与实践。
提高低水溶性药物的生物利用度是目前药物开发中的一个重大挑战。无定形固体分散体(ASDs)因其能够提高水溶性差药物的溶解度和溶解速度,从而显著提高其生物利用度而受到广泛关注。asd以亚稳态平衡为特征,其中活性药物成分(API)分子分散,与晶体形式相比,具有增强的吸收。本文综述了ASD的最新研究进展,重点介绍了ASD的溶解机制、相分离现象以及药物负荷和一致性限制对ASD表现的重要性。讨论了液-液相分离(LLPS)和过饱和等主要现象,强调了它们对药物溶解度、吸收和随后的生物利用度的影响。此外,它还解决了聚合物在控制过饱和、稳定富含药物的纳米液滴和抑制再结晶方面的作用。最近的进展和新兴技术为ASD的表征和生产提供了新的途径,并证明了ASD在提高生物利用度和减少变异性方面的潜力,使更有效和患者友好的药物配方成为可能。提出了未来的研究方向,重点是预测ASD稳定性的先进计算模型,新型聚合物载体的使用以及成功制备ASD的方法。
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
Pharmaceutical Research
Pharmaceutical Research 医学-化学综合
CiteScore
6.60
自引率
5.40%
发文量
276
审稿时长
3.4 months
期刊介绍: Pharmaceutical Research, an official journal of the American Association of Pharmaceutical Scientists, is committed to publishing novel research that is mechanism-based, hypothesis-driven and addresses significant issues in drug discovery, development and regulation. Current areas of interest include, but are not limited to: -(pre)formulation engineering and processing- computational biopharmaceutics- drug delivery and targeting- molecular biopharmaceutics and drug disposition (including cellular and molecular pharmacology)- pharmacokinetics, pharmacodynamics and pharmacogenetics. Research may involve nonclinical and clinical studies, and utilize both in vitro and in vivo approaches. Studies on small drug molecules, pharmaceutical solid materials (including biomaterials, polymers and nanoparticles) biotechnology products (including genes, peptides, proteins and vaccines), and genetically engineered cells are welcome.
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