Patrinia villosa treat colorectal cancer by activating PI3K/Akt signaling pathway

败酱草通过激活 PI3K/Akt 信号通路治疗结直肠癌

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作者:Xiao-Chen Li, Shuai Wang, Xin-Xin Yang, Tian-Jiao Li, Jia-Xing Gu, Lin Zhao, Yong-Rui Bao, Xian-Sheng Meng

Aim of the study

To investigate P.V in treating CRC and clarify the underlying mechanism. Materials and

Conclusion

P.V is dependent on PI3K target and PI3K/Akt signaling pathway for CRC treatment.

Methods

This study was based on Azoxymethane (AOM) combined with the Dextran Sulfate Sodium Salt (DSS)-induced CRC mouse model to clarify the pharmacological effects of P.V. The mechanism of action was found by metabolites and metabolomics. The rationality of metabolomics

Results

The number and the diameter of tumors were decreased when mice were treated with P.V. P.V group section results showed newly generated cells which improved the degree of colon cell injury. Pathological indicators presented a trend of recovery to normal cells. Compared to the model group, P.V groups had significantly lower levels of the CRC biomarkers CEA, CA19-9, and CA72-4. Through the evaluation of metabolites and metabolomics, it was found that a total of 50 endogenous metabolites had significant changes. Most of these are modulated and recovered after P.V treatment. It alters glycerol phospholipid metabolites, which are closely related to PI3K target, suggesting that P.V can treat CRC though the PI3K target and PI3K/Akt signaling pathway. q-PCR and Western blot results also verified that the expression of VEGF, PI3K, Akt, P38, JNK, ERK1/2, TP53, IL-6, TNF-α and Caspase-3 were significantly decreased, whereas that of Caspase-9 was increased after treatment.

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