AI Article Synopsis

  • Radix Hook is a plant that can help with curing diseases, but it can also be really toxic to the liver and kidneys.
  • Scientists tested different herbs to see how they can make Radix Hook safer while still helping fight cancer in mice.
  • The study showed that processing the herbs made Radix Hook less harmful and helped it work better against tumors, suggesting that more research on its effects could be useful.

Article Abstract

Radix Hook. f. (Celastraceae) (LGT) has outstanding curative efficacy; however, side effects include high toxicity, particularly hepatotoxicity and nephrotoxicity. To investigate detoxification mechanisms of LGT through processing separately with each of these medicinal herbs including Flower Thunb. (Caprifoliaceae) (JYH), Radix Pall. (Ranunculaceae) (BS), Herba Hance (Primulaceae) (JQC), Radix et Rhizoma Fisch. (Fabaceae) (GC) and Seed L. (Fabaceae) (LD) in S180-bearing mice by involving nuclear factor (erythroid-derived 2)-like 2 (Nrf2). LGT raw and processed products were orally administered at 60 mg/kg to KM male mice inoculated with S180 tumour cells for 14 consecutive days, and blood, tumour, liver and kidney were taken to observe the detoxifying effects and biological mechanisms. Herbal-processing technology significantly weakened hepatotoxicity and nephrotoxicity evoked by LGT with ED of the converted triptolide in each processed-herb product for serum alanine transaminase, aspartate transaminase, creatinine and urea nitrogen of 9.3, 16.6, 2.5 and 4.2 μg/kg, for liver glutathione, glutathione -transferase, catalase, tumour necrosis factor-α and interleukin-10 of 114.9, 67.8, 134.1, 7.7, 4171.6 μg/kg, and for kidney 21.9, 20.5, 145.0, 529.7, 19.4 μg/kg, respectively. Moreover, herbal-processing technology promoted the accumulation of Nrf2 into the nucleus, and upregulated mRNA expression of and . Additionally, herbal-processing technology enhanced the tumour inhibition rate with ED 12.2 μg/kg. Herbal-processing technology improves the safety and effectiveness of LGT in cancer treatment, and future research may be focused on the Nrf2-related molecules.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6691819PMC
http://dx.doi.org/10.1080/13880209.2019.1634106DOI Listing

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