Although the natural interleukin-1 receptor antagonist (IL-1Ra) has been shown to be produced by microglial cells in response to immune stimuli, nothing was known about the ability of these cells in primary culture to produce the different isoforms of IL-1Ra. Using RT-PCR, we first confirmed that mixed glial cell cultures from newborn rats respond to the cytokine inducer, lipopolysaccharide, by synthesizing IL-1Ra mRNA. Using double immunostaining, we showed that IL-1Ra was detected in microglia but not in astrocytes. Using Western blotting, we finally demonstrated that the IL-1Ra1 isoform was secreted in the supernatant of mixed glial cell cultures, and its production increased in response to lipopolysaccharide. The three different IL-1Ra isoforms were constitutively expressed in cell lysates and their levels increased after lipopolysaccharide treatment, except for IL-1Ra3. These results point to the ability of microglial cells in primary culture to produce the different isoforms of IL-1Ra.
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J Med Chem
January 2025
School of Pharmacy, Hangzhou Medical College, Hangzhou 310014, China.
Interleukin-1 receptor-associated kinase 4 (IRAK4) is involved in various inflammation-related diseases. Both the kinase and scaffolding functions of IRAK4 initiate pro-inflammatory factor transcription and expression. The scaffolding function of IRAK4 is essential for Myddosome assembly and NF-κB activation.
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Department of Pediatric Rheumatology, İstanbul University-Cerrahpaşa, Cerrahpaşa Faculty of Medicine, İstanbul, Türkiye.
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View Article and Find Full Text PDFBiomed Pharmacother
January 2025
Department of Molecular Science and Technology, Ajou University, Suwon 16499, Republic of Korea; S&K Therapeutics, Ajou University Campus Plaza 418, Worldcup-ro 199, Yeongton-gu, Suwon 16502, Republic of Korea. Electronic address:
Myeloid differentiation primary-response 88 (MyD88) is a crucial adaptor protein for initiating immune responses via Toll-like receptors (TLRs). This study employed a rational peptide design approach to develop MyD88 inhibitory peptides targeting the MyD88 interaction interface. The designed peptide, MyDIP2-4, was evaluated for its efficacy in inhibiting MyD88-dependent signaling in human and mouse cell lines.
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Dermatology Department Imam Muhammed Bin Saud University, Riyadh, Saudi Arabia.
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