Advances in Drug Delivery Systems Utilizing Glycyrrhizic Acid and Its Aglycone Glycyrrhetinic Acid in Cancer Therapy

纳米载体 癌症治疗 药物输送 药理学 癌症治疗 苷元 药品 体内 顺铂 抗癌药 医学 翻译(生物学) 癌症 靶向给药 化学 纳米技术 联合疗法 输送系统 临床试验 癌细胞 前药
作者
Shanshan Liu,Dongyan Guo,Huan Tian,程江雪,Yajun Shi,Xiaofei Zhang,Junbo Zou,Bingtao Zhai
出处
期刊:International Journal of Nanomedicine [Dove Medical Press]
卷期号:Volume 21: 1-42
标识
DOI:10.2147/ijn.s622306
摘要

Abstract: Glycyrrhizic acid (GL) and glycyrrhetinic acid (GA) exhibit antitumor activity, favorable biocompatibility, receptor-targeting capabilities, and amphiphilicity. These properties make them promising multifunctional components for developing antitumor drug delivery systems. Unlike previous reviews that focus on individual applications, this review systematically categorizes GL/GA according to their three functional roles. First, as therapeutic agents, GL/GA can be incorporated into passively targeted, actively targeted, and stimuli-responsive nanocarriers. They can be combined with chemotherapeutic drugs, such as cisplatin and paclitaxel, to enhance therapeutic efficacy and reduce systemic toxicity. Second, as targeting ligands, GL/GA can be conjugated to the surfaces of nanocarriers to enable receptor-mediated tumor delivery. Finally, as self-assembling materials, GL/GA can co-assemble with other drugs to form carrier-free nanostructures. Alternatively, they can serve as building blocks for polymeric carriers. These strategies enable drug–carrier integration, simplify formulation processes, and enhance synergistic antitumor effects. Furthermore, this review analyzes the key challenges in the clinical translation of these formulations. These challenges include the complexity of large-scale production, insufficient in vivo stability, a lack of long-term safety data, and inconsistencies in quality evaluation systems. Future translational prospects are also outlined to guide the rational design and clinical development of natural product-based nanomedicines. Keywords: glycyrrhizic acid, glycyrrhetinic acid, drug delivery systems, cancer therapy, tumor targeting, review
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