Royal Jelly Proteins Inhibit Macrophage Proliferation: Interactions with Native- and Oxidized-Low Density Lipoprotein

Akira Sato1,2, Hiroto Unuma3, Keiichi Ebina3,4

  • 1Faculty of Pharmacy, Iryo Sosei University, 5-5-1, Chuodai-Iino, Iwaki, Fukushima, 970-8551, Japan. a-sato@isu.ac.jp.

The Protein Journal
|May 19, 2021
PubMed

Insights

Royal jelly (RJ) proteins, including royalisin, inhibit macrophage proliferation, suggesting potential therapeutic benefits for atherosclerosis by reducing plaque inflammation. Further research may uncover novel anti-atherosclerotic drugs from these RJ components.

Area of Science:

  • Biochemistry
  • Immunology
  • Pharmacology

Background:

  • Macrophage proliferation correlates with accumulation in atherosclerotic plaques, indicating its inhibition could be therapeutically beneficial.
  • Royal jelly (RJ) contains royalisin, a peptide that binds to oxidized LDL (Ox-LDL), a key component of atherosclerotic lesions.

Purpose of the Study:

  • To investigate the interaction of RJ proteins, including royalisin, with LDL and Ox-LDL.
  • To determine the effect of RJ proteins on macrophage proliferation and lipid accumulation.

Main Methods:

  • LDL oxidation was measured using thiobarbituric acid reactive substances and conjugated dienes assays.
  • Protein-LDL/Ox-LDL interactions were analyzed using surface plasmon resonance.
  • Macrophage proliferation and lipid accumulation were assessed in cultured J774A.1 cells.

Main Results:

  • RJ proteins, royalisin, and MRJP1/MRJP3 degradation products induced LDL and Ox-LDL oxidation.
  • These RJ proteins exhibited higher binding affinity to LDL than Ox-LDL.
  • RJ proteins significantly inhibited macrophage proliferation in a concentration-dependent manner, independent of LDL/Ox-LDL presence, with minimal effect on lipid accumulation.

Conclusions:

  • RJ proteins, including royalisin and MRJP1/MRJP3 degradation products, may offer therapeutic benefits for atherosclerosis by reducing plaque inflammation through macrophage proliferation inhibition.
  • Further investigation of these RJ proteins could lead to the development of novel anti-atherosclerotic drugs.

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