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药物递送中纳米共晶体的SWOT分析:当前展望与未来前景

A SWOT analysis of nano co-crystals in drug delivery: present outlook and future perspectives.

作者信息

Witika Bwalya A, Choonara Yahya E, Demana Patrick H

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, Sefako Makgatho Health Sciences University Pretoria 0208 South Africa

Wits Advanced Drug Delivery Platform Research Unit, Department of Pharmacy and Pharmacology, School of Therapeutic Science, Faculty of Health Sciences University of the Witwatersrand 7 York Road, Parktown Johannesburg 2193 South Africa.

出版信息

RSC Adv. 2023 Mar 7;13(11):7339-7351. doi: 10.1039/d3ra00161j. eCollection 2023 Mar 1.

Abstract

The formulation of poorly soluble drugs is an intractable challenge in the field of drug design, development and delivery. This is particularly problematic for molecules that exhibit poor solubility in both organic and aqueous media. Usually, this is difficult to resolve using conventional formulation strategies and has resulted in many potential drug candidates not progressing beyond early stage development. Furthermore, some drug candidates are abandoned due to toxicity or have an undesirable biopharmaceutical profile. In many instances drug candidates do not exhibit desirable processing characteristics to be manufactured at scale. Nanocrystals and co-crystals, are progressive approaches in crystal engineering that can solve some of these limitations. While these techniques are relatively facile, they also require optimisation. Combining crystallography with nanoscience can yield nano co-crystals that feature the benefits of both fields, resulting in additive or synergistic effects to drug discovery and development. Nano co-crystals as drug delivery systems can potentially improve drug bioavailability and reduce the side-effects and pill burden of many drug candidates that require chronic dosing as part of treatment regimens. In addition, nano co-crystals are carrier-free colloidal drug delivery systems with particle sizes ranging between 100 and 1000 nm comprising a drug molecule, a co-former and a viable drug delivery strategy for poorly soluble drugs. They are simple to prepare and have broad applicability. In this article, the strengths, weaknesses, opportunities and threats to the use of nano co-crystals are reviewed and a concise incursion into the salient aspects of nano co-crystals is undertaken.

摘要

难溶性药物的制剂研发是药物设计、开发与递送领域一项棘手的挑战。对于在有机介质和水性介质中均表现出低溶解性的分子而言,这一问题尤为突出。通常,采用传统的制剂策略很难解决这一问题,这导致许多潜在的候选药物在早期研发阶段就停滞不前。此外,一些候选药物因毒性问题或具有不理想的生物药剂学特征而被放弃。在许多情况下,候选药物没有表现出适合大规模生产的加工特性。纳米晶体和共晶体是晶体工程学中的前沿方法,能够解决其中一些局限性。虽然这些技术相对简便,但也需要进行优化。将晶体学与纳米科学相结合可产生兼具两个领域优势的纳米共晶体,从而为药物发现和开发带来累加效应或协同效应。作为药物递送系统,纳米共晶体有可能提高药物的生物利用度,并减轻许多作为治疗方案一部分需要长期给药的候选药物的副作用和服药负担。此外,纳米共晶体是无载体的胶体药物递送系统,粒径在100至1000纳米之间,包含药物分子、共形成物以及针对难溶性药物的可行药物递送策略。它们制备简单,具有广泛的适用性。本文对使用纳米共晶体的优势、劣势、机遇和挑战进行了综述,并对纳米共晶体的突出方面进行了简要探讨。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e43d/9989744/22e146fdcf53/d3ra00161j-f1.jpg

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