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推进药物递送研究:创新与转化的可持续策略

Advancing drug delivery research: sustainable strategies for innovation and translation.

作者信息

Shahiwala Aliasgar

机构信息

Department of Pharmaceutical Sciences, Dubai Pharmacy College for Girls, Dubai, UAE.

出版信息

Drug Deliv Transl Res. 2025 May;15(5):1513-1524. doi: 10.1007/s13346-024-01767-8. Epub 2025 Jan 10.

DOI:10.1007/s13346-024-01767-8
PMID:39792336
Abstract

Sustainable systems are designed to promote lasting viability and resilience while reducing negative effects on the environment, society, and economy. Like many others, the drug delivery field is facing the challenges of the global environmental crisis. Despite its rapid growth and significant funding, there has been a noticeable slowdown in the rate of advancement, impacting the economy, society, and environment. This paper delves into sustainable strategies for drug delivery research, including reducing pill burden through controlled release systems, use of bio-degradable/absorbable polymers, reduction in excipient requirements and use of functional excipients, clinically viable drug delivery system designs, non-invasive/self-administration technologies, and use of relevant in vitro and in vivo tools and computational approaches. When adopted, these strategies can help researchers create widely available, reasonably priced, and ecologically friendly drug delivery systems, thereby advancing sustainable healthcare for all. The manuscript also advocates for funding policies that support sustainable drug delivery research. It underscores the need to integrate sustainability principles into drug delivery research to achieve the broader agenda of global sustainability and well-being, such as SDG 3 (Good Health and Well-being), SDG 7 (Affordable and Clean Energy), SDG 9 (Industry, Innovation, and Infrastructure), and SDG 12 (Responsible Consumption and Production).

摘要

可持续系统的设计旨在促进持久的生存能力和恢复力,同时减少对环境、社会和经济的负面影响。与许多其他领域一样,药物递送领域正面临全球环境危机的挑战。尽管其发展迅速且资金投入巨大,但进展速度明显放缓,对经济、社会和环境产生了影响。本文深入探讨了药物递送研究的可持续策略,包括通过控释系统减轻药丸负担、使用可生物降解/可吸收的聚合物、减少辅料需求并使用功能性辅料、设计临床上可行的药物递送系统、无创/自我给药技术,以及使用相关的体外和体内工具及计算方法。采用这些策略可以帮助研究人员创建广泛可用、价格合理且生态友好的药物递送系统,从而推动全民可持续医疗保健的发展。该手稿还倡导支持可持续药物递送研究的资助政策。它强调需要将可持续性原则纳入药物递送研究,以实现全球可持续发展和福祉的更广泛议程,如可持续发展目标3(良好健康与福祉)、可持续发展目标7( affordable and Clean Energy)、可持续发展目标9(产业、创新和基础设施)以及可持续发展目标12(负责任的消费和生产)。 (注:原文中“Affordable and Clean Energy”直译为“负担得起的清洁能源”,这里根据语境意译为“廉价和清洁能源”更合适,但按要求未做修改)

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