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Chemotherapeutic Potential of Saikosaponin D: Experimental Evidence

期刊

JOURNAL OF XENOBIOTICS
卷 12, 期 4, 页码 378-405

出版社

MDPI
DOI: 10.3390/jox12040027

关键词

apoptosis; anticancer effects; chemotherapy; Radix bupleuri; Saikosaponin D

资金

  1. MHRD-Rashtriya Uchchatar Shiksha Abhiyan (RUSA) 2.0-Bharathiar Cancer and Theragnostic Research Centre (BCTRC), Bharathiar University, Coimbatore, India [BU./RUSA2.0/BCTRC/2020/BCTRC-CT06]

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Saikosaponin D (SSD), a compound derived from the traditional plant Radix bupleuri, shows potential in disease management due to its antioxidant, antipyretic, and anti-inflammatory properties. It exhibits antitumor effects on multiple targets and has a synergistic impact with chemo-preventive medicines. However, further research is needed on its bioavailability and its consideration in cancer prevention.
Saikosaponin D (SSD), an active compound derived from the traditional plant Radix bupleuri, showcases potential in disease management owing to its antioxidant, antipyretic, and anti-inflammatory properties. The toxicological effects of SSD mainly include hepatotoxicity, neurotoxicity, hemolysis, and cardiotoxicity. SSD exhibits antitumor effects on multiple targets and has been witnessed in diverse cancer types by articulating various cell signaling pathways. As a result, carcinogenic processes such as proliferation, invasion, metastasis, and angiogenesis are inhibited, whereas apoptosis, autophagy, and differentiation are induced in several cancer cells. Since it reduces side effects and strengthens anti-cancerous benefits, SSD has been shown to have an additive or synergistic impact with chemo-preventive medicines. Regardless of its efficacy and benefits, the considerations of SSD in cancer prevention are absolutely under-researched due to its penurious bioavailability. Diverse studies have overcome the impediments of inadequate bioavailability using nanotechnology-based methods such as nanoparticle encapsulation, liposomes, and several other formulations. In this review, we emphasize the association of SSD in cancer therapeutics and the discussion of the mechanisms of action with the significance of experimental evidence.

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