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A Microphysiological System to Study Leukocyte-Endothelial Cell Interaction during Inflammation
Published on: December 9, 2021
Mechanism of Lian Hua Qing Wen capsules regulates the inflammatory response caused by M1 macrophage based on cellular
Yong-Hua Zong1, Jun-Feng Cao2, Yinghua Zhao3
1University of Tibetan Medicine, Lhasa, PR China.
Purpose:
The polarization of macrophages with the resulting inflammatory response play a crucial part in tissue and organ damage due to inflammatory. Study has proved Lian Hua Qing Wen capsules (LHQW) can reduce activation of inflammatory response and damage of tissue derived from the inflammatory reactions. However, the mechanism of LHQW regulates the macrophage-induced inflammatory response is unclear. Therefore, we investigated the mechanism of LHQW regulated the inflammatory response of M1 macrophages by cellular experiments and computer simulations.
Methods:
This study has analysed the targets and mechanisms of macrophage regulating inflammatory response at gene and protein levels through bioinformatics. The monomeric components of LHQW were analyzed by High Performance Liquid Chromatography (HPLC). We established the in vitro cell model by M1 macrophages (Induction of THP-1 cells into M1 macrophages). RT-qPCR and immunofluorescence were used to detect changes in gene and protein levels of key targets after LHQW treatment. Computer simulations were utilized to verify the binding stability of monomeric components and protein targets.
Results:
Macrophages had 140,690 gene targets, inflammatory response had 12,192 gene targets, intersection gene targets were 11,772. Key monomeric components (including: Pinocembrin, Fargesone-A, Nodakenin and Bowdichione) of LHQW were screened by HPLC. The results of cellular experiments indicated that LHQW could significantly reduce the mRNA expression of CCR5, CSF2, IFNG and TNF, thereby alleviating the inflammatory response caused by M1 macrophage. The computer simulations further validated the binding stability and conformation of key monomeric components and key protein targets, and IFNG/Nodakenin was able to form the most stable binding conformation for its action.
Conclusion:
In this study, the mechanism of LHQW inhibits the polarization of macrophages and the resulting inflammatory response was investigated by computer simulations and cellular experiments. We found that LHQW may not only reduce cell damage and death by acting on TNF and CCR5, but also inhibit the immune recognition process and inflammatory response by regulating CSF2 and IFNG to prevent polarization of macrophages. Therefore, these results suggested that LHQW may act through multiple targets to inhibit the polarization of macrophages and the resulting inflammatory response.
Insights
Lian Hua Qing Wen capsules (LHQW) were investigated for their mechanism in regulating macrophage-induced inflammatory responses. LHQW demonstrated the ability to inhibit M1 macrophage polarization and reduce inflammatory markers like TNF and CCR5, suggesting a multi-target approach.
Area of Science:
- Immunology and Pharmacology
- Computational Biology and Bioinformatics
Background:
- Macrophage polarization drives inflammatory responses implicated in tissue damage.
- Lian Hua Qing Wen capsules (LHQW) are known to reduce inflammation but their precise mechanism on macrophages is unclear.
Purpose of the Study:
- To elucidate the mechanism by which LHQW regulates the inflammatory response of M1 macrophages.
- To investigate LHQW's effects using cellular experiments and computational simulations.
Main Methods:
- Bioinformatic analysis of gene and protein targets involved in macrophage-mediated inflammation.
- High-Performance Liquid Chromatography (HPLC) for identifying LHQW's active components.
- In vitro M1 macrophage model (THP-1 cells) with RT-qPCR and immunofluorescence assays.
- Computational simulations to assess binding stability between LHQW components and protein targets.
Main Results:
- Identified 11,772 intersecting gene targets between macrophages and inflammatory response.
- HPLC screened key LHQW components: Pinocembrin, Fargesone-A, Nodakenin, and Bowdichione.
- LHQW treatment significantly reduced mRNA expression of CCR5, CSF2, IFNG, and TNF in M1 macrophages.
- Computational simulations confirmed binding stability, with IFNG/Nodakenin showing the most stable interaction.
Conclusions:
- LHQW inhibits M1 macrophage polarization and associated inflammatory responses through multiple targets.
- LHQW may reduce cell damage by acting on TNF and CCR5.
- LHQW could inhibit immune recognition and inflammation by regulating CSF2 and IFNG.
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