4.7 Article

CTH/H2S Regulates LPS-Induced Inflammation through IL-8 Signaling in MAC-T Cells

Journal

Publisher

MDPI
DOI: 10.3390/ijms231911822

Keywords

clinical mastitis; H2S; CTH; inflammation; IL-8 signaling

Funding

  1. National Natural Science Foundation of China [U21A20262]
  2. Central Guidance for Local Science and Technology Development Projects [22ZY1QA004]
  3. Gansu Province Key Research and Development Program Agriculture [18YF1NA074]
  4. Gansu Key Laboratory of Animal Generational Physiology and Reproductive Regulation [20JR10RA563]

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In this study, a cell model of inflammatory mammary cells was established and it was found that Cystathionine-gamma-lyase (CTH) and hydrogen sulfide (H2S) play important roles in the progression of Clinical Mastitis (CM) in Holstein cows. Inhibition of CTH/H2S promoted inflammation, but H2S protected cells from inflammatory damage. The interleukin-8 (IL-8) signaling was identified to mediate the anti-inflammatory effects of CTH/H2S.
Hydrogen sulfide (H2S), as an endogenous gaseous signaling molecule, plays an important role in the inflammatory process. Our previous study found that Cystathionine-gamma-lyase (CTH) and H2S are correlated with the occurrence and development of Clinical Mastitis (CM) in Holstein cows. However, the functions and regulatory mechanisms of CTH/H2S are still unknown. In this study, the inflammatory mammary cell model based on the MAC-T cell line was established by Lipopolysaccharide (LPS)-induced manner to further explore the function and regulatory mechanism of CTH/H2S in cows with CM. In the inflammatory MAC-T cell, the CTH expression and H2S production were both repressed in an LPS-dose dependent manner, which demonstrated that CTH/H2S is related to the progression of inflammation. The inhibition of CTH/H2S using a selective CTH inhibitor, beta-cyano-l-Alanine (BCA), promoted LPS-induced inflammation response and the expression of inflammatory cytokines. However, this was reversed by the H2S donor NaHS, demonstrating that H2S can protect cells from inflammatory damage. Intriguingly, interleukin-8 (IL-8) showed an inverse expression pattern correlated with the H2S-mediated cell protection effect during the inflammation process, and the inhibition test using a selective IL-8 receptor antagonist, SB225002, showed that IL-8 signaling plays a critical role in mediating endogenous H2S synthesis, and CTH/H2S exerts its anti-inflammation via IL-8-mediated signaling. This study provided support for the prevention and treatment of CM and the development of a novel anti-inflammatory strategy.

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