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Research Progress on the Antitumor Molecular Mechanism of Ginsenoside Rh2

Lan Yang, Jenny Jie Chen, Brian Sheng-Xian Teo, Jiong Zhang, Mingqiang Jiang

2024The American Journal of Chinese Medicine13 citationsDOI

Abstract

Cancer has evolved into a substantial public health concern as the second-leading cause of mortality globally. Radiotherapy and chemotherapy have been the two most widely used cancer therapies in recent years; however, both have drawbacks. Therefore, the focus has shifted to the creation of herbal medicines, the extraction of active ingredients, replacement therapy, and the adverse effects of these medications. Ginsenoside Rh2, which is extracted from ginseng, has been identified in many cancer cells. The immune system of the body is strengthened by ginsenoside Rh2, which can also cause the proliferation, death, and differentiation of tumor cells through various pathways. For instance, it inhibits the expression of the NF-[Formula: see text]B signaling pathway and induces cell apoptosis, affects the expression levels of mitochondrial apoptosis proteins Bcl-2 and Bax, and cooperates with the PD-1 blockade to reactivate T cells to promote an antitumor immune response. Furthermore, ginsenosides Rh2 has the effect of reversing the toxic effect of chemotherapy drugs on normal cells, reducing myocardial damage, and relieving bone marrow function suppression. For clinical applications, it is mainly used as an adjuvant drug for preoperative neoadjuvant chemotherapy, postoperative adjuvant chemotherapy, and rescue treatment of advanced cancer. This paper summarizes the pharmacological action and mechanism of ginsenosides Rh2 in all kinds of cancer and looks forward to its future development and application.

Topics & Concepts

GinsengMedicineImmune systemApoptosisChemotherapyCancerGinsenosideAdjuvantPharmacologyBone marrowCancer cellMechanism of actionCancer researchAdverse effectOncologyImmunologyInternal medicineBiologyPathologyIn vitroBiochemistryAlternative medicineGinseng Biological Effects and ApplicationsCancer-related molecular mechanisms researchImmune Cell Function and Interaction
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