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纳米载体用于大麻素递药:增强治疗潜力。

Nanocarriers for Cannabinoid Delivery: Enhancing Therapeutic Potential.

机构信息

Department of Pharmaceutical Sciences, Guru Nanak Dev University, Amritsar, Punjab, 143005, India.

School of Pharmaceutical Sciences, Shoolini University, Solan, India.

出版信息

Recent Adv Drug Deliv Formul. 2024;18(4):247-261. doi: 10.2174/0126673878300347240718100814.

Abstract

Medical cannabis has potential therapeutic benefits in managing pain, anxiety, depression, and neurological and movement disorders. Phytocannabinoids derived from the cannabis plant are responsible for their pharmacological and therapeutic properties. However, the complexity of cannabis components, especially cannabinoids, poses a challenge to effective medicinal administration. Even with the increasing acceptance of cannabis-based medicines, achieving consistent bioavailability and targeted distribution remains difficult. Conventional administration methods are plagued by solubility and absorption problems requiring innovative solutions. After conducting a thorough review of research papers and patents, it has become evident that nanotechnology holds great promise as a solution. The comprehensive review of 36 research papers has yielded valuable insights, with 7 papers reporting enhanced bioavailability, while others have focused on improvements in release, solubility, and stability. Additionally, 19 patents have been analyzed, of which 7 specifically claim enhanced bioavailability, while the remaining patents describe various formulation methods. These patents outline effective techniques for encapsulating cannabis using nanocarriers, effectively addressing solubility and controlled release. Studies on the delivery of cannabis using nanocarriers focus on improving bioavailability, prolonging release, and targeting specific areas. This synthesis highlights the potential of nanotechnology to enhance cannabis therapies and pave the way for innovative interventions and precision medicine.

摘要

医用大麻在缓解疼痛、焦虑、抑郁以及神经和运动障碍方面具有潜在的治疗益处。源自大麻植物的植物大麻素是其发挥药理和治疗特性的原因。然而,大麻成分(尤其是大麻素)的复杂性给有效的药物管理带来了挑战。即使基于大麻的药物越来越被接受,实现一致的生物利用度和靶向分布仍然具有难度。传统的给药方法存在溶解度和吸收问题,需要创新性的解决方案。在对研究论文和专利进行全面审查后,很明显纳米技术具有很大的应用潜力。对 36 篇研究论文的综合审查提供了有价值的见解,其中 7 篇论文报告了生物利用度的提高,而其他论文则侧重于改善释放、溶解度和稳定性。此外,还分析了 19 项专利,其中 7 项专门声称提高了生物利用度,其余专利则描述了各种制剂方法。这些专利概述了使用纳米载体封装大麻的有效技术,有效地解决了溶解度和控制释放的问题。关于使用纳米载体传递大麻的研究侧重于提高生物利用度、延长释放时间和靶向特定区域。这项综合研究强调了纳米技术在增强大麻疗法方面的潜力,并为创新干预和精准医学铺平了道路。

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