Kustiawan Paula Mariana, Syaifie Putri Hawa, Al Khairy Siregar Khalish Arsy, Ibadillah Delfritama, Mardliyati Etik
Faculty of Pharmacy, Universitas Muhammadiyah Kalimantan Timur, Samarinda, East Kalimantan 75124, Indonesia.
Center of Excellence Life Sciences, Nano Center Indonesia, South Tangerang 15314, Indonesia.
ADMET DMPK. 2024 Jan 26;12(1):1-26. doi: 10.5599/admet.2128. eCollection 2024.
Scientific research is crucial to develop therapies for various disease severity levels, as modern drugs cause side effects and are difficult to predict. Researchers are exploring herbal alternatives with fewer side effects, particularly propolis, which has been validated through in vitro, in vivo, and clinical studies. This will focus on scientific evidence and its supporting technology for developing new bioactive compounds for chronic diseases. Nanotechnology can improve the delivery and absorption of herbal medicines, which often have poor bioavailability due to their high molecular weight and solubility in water, particularly in oral medicines. This technology can enhance propolis's effects through multi-target therapy and reduce side effects.
All publications related to each section of this review were discovered using the search engines Google Scholar, Scopus, and Pubmed. This was only available for publication between 2013 and 2023. The selected publications were used as references in this review after being thoroughly studied.
Evaluation of propolis active compounds, the classification of propolis nano formulations, design concepts, and mechanisms of action of propolis nano formulation. Additionally, the challenges and prospects for how these insights can be translated into clinical benefits are discussed.
In the last ten years, a list of nanoformulation propolis has been reported. This review concludes the difficulties encountered in developing large-scale nanoformulations. To commercialize them, improvements in nano carrier synthesis, standardized evaluation methodology within the framework of strategy process improvement, and Good Manufacturing Practices would be required.
科学研究对于开发针对各种疾病严重程度的治疗方法至关重要,因为现代药物会产生副作用且难以预测。研究人员正在探索副作用较少的草药替代品,特别是蜂胶,它已通过体外、体内和临床研究得到验证。本文将聚焦于开发用于慢性病的新型生物活性化合物的科学证据及其支持技术。纳米技术可以改善草药的递送和吸收,草药由于其高分子量和在水中的溶解性差,尤其是口服药物,往往具有较差的生物利用度。该技术可以通过多靶点治疗增强蜂胶的效果并减少副作用。
使用搜索引擎谷歌学术、Scopus和PubMed检索与本综述各部分相关的所有出版物。检索范围仅限于2013年至2023年期间发表的文献。经过深入研究后,所选出版物被用作本综述的参考文献。
对蜂胶活性化合物的评估、蜂胶纳米制剂的分类、设计概念以及蜂胶纳米制剂的作用机制。此外,还讨论了如何将这些见解转化为临床益处所面临的挑战和前景。
在过去十年中,已有一系列蜂胶纳米制剂被报道。本综述总结了大规模开发纳米制剂过程中遇到的困难。为了将它们商业化,需要在战略流程改进框架内改进纳米载体合成、标准化评估方法以及良好生产规范。