Decoding Ginsenosides: The Structural and Therapeutic Core of Ginseng

Ginseng (Panax ginseng C.A. Meyer), a highly valued traditional herb in traditional medicine, exerts its major health benefits through ginsenosides — its core bioactive triterpenoid saponins. With a characteristic steroidal structure, ginsenosides interact with cell membranes, receptors, and signaling cascades to produce diverse pharmacological effects. This review summarizes the pharmacological properties, molecular mechanisms, structure-activity relationships, and advanced delivery strategies of key ginsenosides, including Rb1, Rg1, Rg3, Rh2, compound K (CK), and Rd. These compounds exhibit potent anti-oxidant, anti-inflammatory, cardioprotective, neuroprotective, antidiabetic, anti-obesity, anticancer, and anti-aging activities, acting through well-characterized pathways such as PI3K/Akt, Nrf2/ARE, AMPK, MAPK, and NF-[Formula: see text]B. Notably, their bioactivity is strongly governed by the number and position of sugar moieties: ginsenosides with fewer glycosyl groups (e.g., Rg3, Rh2, and CK) generally display higher potency in vitro and in vivo, whereas multi-glycosylated forms like Rb1 and Rc show milder effects. Despite their promising efficacy, poor oral bioavailability, rapid metabolism, and nonspecific tissue distribution remain major hurdles for clinical translation. To overcome these limitations, recent nanotechnology-based delivery systems have been developed, including liposomes, polymeric nanoparticles, inorganic nanocarriers, self-assembled micelles, and exosome-based platforms, to enhance solubility, prolong circulation, enable targeted delivery, and improve therapeutic outcomes. By integrating current knowledge on ginsenoside pharmacology and formulation engineering, this work supports their translational research and clinical application as multi-target agents for treating inflammatory, metabolic, cardiovascular, neurodegenerative, and malignant disorders.

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Journal
The American Journal of Chinese Medicine
Published
2026-10-07
DOI
https://doi.org/10.1142/s0192415x26500746
Primary Topic
Ginseng Biological Effects and Applications
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article
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article

Decoding Ginsenosides: The Structural and Therapeutic Core of Ginseng

Dianxin Cui, Sio In Chan, Milen I. Georgiev, Wenying Zheng et al.
The American Journal of Chinese Medicine
Ginseng Biological Effects and Applications
article

Decoding Ginsenosides: The Structural and Therapeutic Core of Ginseng

Dianxin Cui, Sio In Chan, Milen I. Georgiev, Wenying Zheng, Zhangfeng Zhong, 黎国栋, Xintong Han, Ka Iong Chan, Siyuan Chen, Wen Tan, Yu Fan, Lihua Shen, Wanyu Li, Simin Chen
article en

Abstract

Ginseng (Panax ginseng C.A. Meyer), a highly valued traditional herb in traditional medicine, exerts its major health benefits through ginsenosides — its core bioactive triterpenoid saponins. With a characteristic steroidal structure, ginsenosides interact with cell membranes, receptors, and signaling cascades to produce diverse pharmacological effects. This review summarizes the pharmacological properties, molecular mechanisms, structure-activity relationships, and advanced delivery strategies of key ginsenosides, including Rb1, Rg1, Rg3, Rh2, compound K (CK), and Rd. These compounds exhibit potent anti-oxidant, anti-inflammatory, cardioprotective, neuroprotective, antidiabetic, anti-obesity, anticancer, and anti-aging activities, acting through well-characterized pathways such as PI3K/Akt, Nrf2/ARE, AMPK, MAPK, and NF-[Formula: see text]B. Notably, their bioactivity is strongly governed by the number and position of sugar moieties: ginsenosides with fewer glycosyl groups (e.g., Rg3, Rh2, and CK) generally display higher potency in vitro and in vivo, whereas multi-glycosylated forms like Rb1 and Rc show milder effects. Despite their promising efficacy, poor oral bioavailability, rapid metabolism, and nonspecific tissue distribution remain major hurdles for clinical translation. To overcome these limitations, recent nanotechnology-based delivery systems have been developed, including liposomes, polymeric nanoparticles, inorganic nanocarriers, self-assembled micelles, and exosome-based platforms, to enhance solubility, prolong circulation, enable targeted delivery, and improve therapeutic outcomes. By integrating current knowledge on ginsenoside pharmacology and formulation engineering, this work supports their translational research and clinical application as multi-target agents for treating inflammatory, metabolic, cardiovascular, neurodegenerative, and malignant disorders.

The American Journal of Chinese Medicine
University of Macau (MO), Bulgarian Academy of Sciences (BG), City University of Macau (MO), Lanzhou University (CN)
Openalex Percentile: Top 22%
Ginseng Biological Effects and Applications
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