南京中医药大学药学院,南京 210046
国家自然科学基金(32000997)资助项目。
School of Pharmacy, Nanjing University of Chinese Medicine, Nanjing 210046, China
This work was supported by a grant from The National Natural Science Foundation of China (32000997).
孢子和花粉作为自然界中广泛存在的微小生物,具有天然的核壳结构和精细的表面形态。它们在尺寸均匀性、可持续利用、环境友好性、多孔性、两亲性和黏附性方面表现出色。此外,它们还具有良好的生物相容性和生物降解性,有效增强了药物的稳定性和靶向性。它们经酸性溶液、碱性溶液或酶处理等方法提取可得到孢粉素,去除了天然孢子和花粉中原有的生物活性物质,如细胞核、酶和DNA,从而获得了更强的载药能力和更高的安全性。基于以上特性,孢子和花粉被广泛应用于载药系统,包括靶向递送、持续给药、抑制毒性、风味掩蔽、疫苗递送、递送不稳定材料等。本文介绍了常见的用于载药的孢子和花粉及其处理方法。利用近期研发的新型处理方法,可使孢子和花粉具有更高的药物负载效率、稳定性和靶向性等。此外,本文综述了近年来孢子和花粉在载药领域的应用,并涉及部分创新研究内容。基于这些研究成果,进一步阐述了孢子、花粉及孢粉素在药物递送系统中的优势。例如,它们具有高稳定性、药物负载能力强、良好的黏附性、优秀的靶向性,且易于功能性修饰。目前,它们在药物递送领域展现出广阔前景。本文还强调了它们在应用时面临的一些挑战,包括大规模生产困难、需要改进提取和纯化过程,以及存在较低但仍需注意的过敏风险,克服这些挑战,将有助于更充分地发掘它们在药物递送应用中的潜力。根据当前研究,尽管孢子和花粉在临床药物递送中仍存在一些未解决的问题,但它们具有巨大潜力,有望成为新一代绿色药物递送平台。
Spores and pollen, as ubiquitous organisms found in nature, possess a remarkable core-shell structure and intricate surface morphology. These tiny particles are notable for their dimensional uniformity, sustainable utilization, environmental friendliness, porosity, amphiphilicity, and strong adhesive properties. In addition, they display excellent biocompatibility and biodegradability, which significantly enhances the stability and targeting of drugs within the body. Spores and pollen can be extracted using methods such as acidic solutions, alkaline solutions, or enzyme treatments to obtain sporopollenin, which is an extremely resilient and chemically inert complex biopolymer. The sporopollenin extracted through this process removes the original bioactive substances, such as cell nuclei, enzymes, and DNA, providing greater drug loading capacity and containing no potential allergens or immunogens, thus further enhancing its drug loading capacity and improving safety in therapeutic applications. Due to these beneficial attributes, spores, pollen and sporopollenin have gained widespread use in a variety of drug delivery systems, such as targeted delivery, sustained drug delivery, toxicity mitigation, flavor masking, vaccine delivery, delivery of labile substances, and other applications. This review introduces the types of natural spores and pollen commonly used in drug delivery systems, including their main components, common effects, and uses in drug delivery systems, and so on. It subsequently summarizes novel optimization methods in their processing, such as physical treatment, surface modification, and chemical modification, which enable higher drug loading efficiency, stability, and targeting, among other benefits. Additionally, this paper reviews the research progress and applications of natural spores, pollen, and sporopollenin in drug delivery systems, while also touching on some innovative research content, such as novel nanomotor microcarriers developed based on pollen. Based on these research findings, we further elaborate on the advantages of spores, pollen, and sporopollenin in drug delivery systems. For example, they have high stability and drug loading capacity, good adhesion, excellent targeting, and are easy to modify functionally. Currently, they show promising prospects in the fields of targeted drug delivery, sustained-release drug delivery, as well as the delivery of drugs that are effective but slightly toxic, and are often used in research on the treatment of diseases such as cancer and inflammation. We have also highlighted the challenges they face in various applications and identified some issues that need to be addressed, including difficulties in large-scale production, the need to improve extraction and purification processes, and the existence of a low but still noteworthy risk of allergies, in order to fully leverage their potential in drug delivery applications. According to current research, although spores, pollen, and sporopollenin face some unresolved issues in clinical drug delivery, they still have great potential overall and are expected to become a new generation of green drug delivery platforms. In the future, further research into their unique physical and chemical properties and structural characteristics will help develop more efficient and stable drug delivery systems to meet diverse treatment needs. We believe that continued exploration of natural spores, pollen, and sporopollenin will drive this emerging field to achieve continuous breakthroughs and progress, ultimately making an important contribution to the cause of human health.
袁晨曼,史秀艳,柳佳,王晶晶.天然孢子/花粉微载体的制备及其在新型药物递送系统中的应用[J].生物化学与生物物理进展,2025,52(11):2802-2819
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