刘艳玲, 罗晓健, 饶小勇, 付小明, 彭佩雨, 张尧, 刘微. 中药衍生孢粉素微胶囊: 载药机制、递药应用及其挑战J. 药学学报, 2025, 60(10): 3036-3044. DOI: 10.16438/j.0513-4870.2025-0512
引用本文: 刘艳玲, 罗晓健, 饶小勇, 付小明, 彭佩雨, 张尧, 刘微. 中药衍生孢粉素微胶囊: 载药机制、递药应用及其挑战J. 药学学报, 2025, 60(10): 3036-3044. DOI: 10.16438/j.0513-4870.2025-0512
LIU Yan-ling, LUO Xiao-jian, RAO Xiao-yong, FU Xiao-ming, PENG Pei-yu, ZHANG Yao, LIU Wei. Traditional Chinese medicine-derived sporopollenin microcapsules: drug-carrying mechanism, drug delivery applications and their challengesJ. Acta Pharmaceutica Sinica, 2025, 60(10): 3036-3044. DOI: 10.16438/j.0513-4870.2025-0512
Citation: LIU Yan-ling, LUO Xiao-jian, RAO Xiao-yong, FU Xiao-ming, PENG Pei-yu, ZHANG Yao, LIU Wei. Traditional Chinese medicine-derived sporopollenin microcapsules: drug-carrying mechanism, drug delivery applications and their challengesJ. Acta Pharmaceutica Sinica, 2025, 60(10): 3036-3044. DOI: 10.16438/j.0513-4870.2025-0512

中药衍生孢粉素微胶囊: 载药机制、递药应用及其挑战

Traditional Chinese medicine-derived sporopollenin microcapsules: drug-carrying mechanism, drug delivery applications and their challenges

  • 摘要: 孢粉作为经典的中草药之一, 具有悠久的药用价值, 不仅在疗效方面表现出色, 且通过脱脂与去除内容物能够构建孢粉素空腔结构, 可作为高效的药物载体。相较于合成载体, 孢粉素作为天然生物材料, 凭借其优异的生物相容性、理化稳定性和尺寸均一性, 在生物医学领域展现出多重应用价值, 已成功实现对抗肿瘤药物、蛋白质等活性成分的高效负载, 且通过表面修饰技术还可进一步开发智能给药系统。本文对中药来源孢粉素的制备工艺、载药机制、给药系统设计原理及其在靶向递送和响应性释放等智能给药系统的研究进展进行总结, 探讨其发展前景, 以期为推动中药衍生孢粉素微胶囊在生物医药领域的广泛应用提供理论参考与技术支撑。

     

    Abstract: As one of the classic Chinese herbs, spore powder has a long history of medicinal value, not only in terms of therapeutic efficacy, but also through the defatting and removal of the contents can be constructed sporopollenin (SP) cavity structure, which can be used as a highly efficient drug carrier. Compared with synthetic carriers, sporopollenin, as a natural biomaterial, has demonstrated multiple applications in biomedical fields by virtue of its excellent biocompatibility, physicochemical stability, and dimensional homogeneity, and has successfully achieved efficient loading of anti-tumour drugs, proteins, and other active ingredients, and can be further developed into a smart drug delivery system by surface modification technology. In this paper, we summarise the preparation process, loading mechanism, drug delivery system design principle of sporopollenin from traditional Chinese medicine, and its research progress on intelligent drug delivery system, such as targeted delivery and responsive release, and discuss its development prospect, with a view to providing theoretical references and technological support for the promotion of the wide application of traditional Chinese medicine-derived sporopollenin microcapsules in the field of biomedicine.

     

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