Patrinoside and Patrinoside A from Patrinia scabiosaefolia Improve Insulin Resistance by Inhibiting NF-κB, MAPK Pathways and Oxidative Stress in RAW264.7 and 3 T3-L1 Cells

Author:

Liu Zhenhua123ORCID,Wang Mengke1ORCID,Liu Yuhang1ORCID,Ren Mengjie1ORCID,Xi Xuefeng14ORCID,Li Shiming1ORCID,Kang Wenyi125ORCID

Affiliation:

1. National R & D Center for Edible Fungus Processing Technology, Henan University, Kaifeng 475004, China

2. Functional Food Engineering Technology Research Center, Henan, Kaifeng 475004, China

3. Joint International Research Laboratory of Food & Medicine Resource Function, Henan Province, Kaifeng 475004, China

4. College of Physical Education, Henan University, Henan, Kaifeng 475004, China

5. Shenzhen Research Institute of Henan University, Shenzhen 518000, China

Abstract

Patrinia scabiosaefolia, as traditional food and medicine plant, was used to treat appendicitis, enteritis, and hepatitis for thousand years in China. Patrinoside and patrinoside A isolated from P. scabiosaefolia could significantly improve insulin resistance (IR) by activating PI-3 K/AKT signaling pathway in our previous study. Since IR is closely related to inflammation, their anti-inflammatory activities in RAW264.7 inflammatory model induced by LPS and in 3 T3-L1 IR inflammatory model induced by TNF-α were evaluated to identify whether the effects on improving IR related to anti-inflammatory activity. In RAW264.7 cells, patrinoside and patrinoside A significantly inhibited the transcription and secretion of inflammatory mediators NO, TNF-α, and IL-6. Western blot analysis showed that the significant inhibition of phosphorylation of IκB and P65 and P38, ERK and JNK suggested that the effects were exerted through NF-κB pathway and MAPK pathway. In 3 T3-L1 cells, patrinoside and patrinoside A also inhibited the activation of NF-κB and MAPK pathways through inhibiting the transcriptions of inflammatory cytokines IL-6 and chemokines MCP-1 and MIP-1α. These events resulted in the inhibition of macrophages migration to adipocytes. In addition, patrinoside and patrinoside A ameliorated oxidative stress by inhibiting ROS release in LPS-stimulated RAW264.7 cells. In conclusion, patrinoside and patrinoside A could active PI-3 K/AKT pathway, inhibit NF-κB pathway, MAPK pathway, and improve oxidative stress, which showed multipathways on improving IR. These results provided the scientific basis for material basis and mechanism on improving IR of P. scabiosaefolia.

Funder

Research on Precision Nutrition and Healthy Food Development

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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