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April 19, 2026Pharmaceuticals0 citationsOpen Access

(5R)-5-Hydroxytriptolide (LLDT-8) Ameliorates Experimental Autoimmune Myositis via Suppression of the NLRC5/MHC-I Signaling Pathway

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THTingting HaoChinese Academy of SciencesQQQing QiShanxi Medical UniversityCXCancan XieCentral South University

Key Points

  • This research investigates the therapeutic effect and mechanism of LLDT-8 on experimental autoimmune myositis.
  • Used a mouse model of experimental autoimmune myositis (EAM) with 40 female BALB/c mice.
  • Divided mice into five treatment groups: normal, vehicle, methylprednisolone, and two doses of LLDT-8.
  • Conducted cellular experiments and molecular docking to explore the mechanism of action.
  • LLDT-8 significantly improved muscle weakness and reduced pain sensitivity in EAM mice.
  • It lowered serum levels of aspartate aminotransferase and lactate dehydrogenase.
  • Histological analysis showed decreased inflammatory cell infiltration and reduced CD4+ and CD8+ T cells in muscle tissues.
  • LLDT-8 inhibited the expression of NLRC5, affecting MHC-I related processes.
  • Molecular docking confirmed LLDT-8 has high binding affinity to NLRC5 and MHC-I.

Abstract

Background: Idiopathic inflammatory myopathies (IIMs), characterized by muscle weakness and chronic inflammation, currently lack highly effective therapies. This study investigated the therapeutic potential and underlying mechanism of (5R)-5-hydroxytriptolide (LLDT-8), a triptolide derivative with reduced toxicity, using an experimental autoimmune myositis (EAM) mouse model and in vitro assays. Methods: Forty female BALB/c mice were randomly assigned to five groups: normal, vehicle, methylprednisolone (MP), LLDT-8 (0.0625 mg/kg), and LLDT-8 (0.125 mg/kg). EAM mice were treated with LLDT-8 (0.0625 or 0.125 mg/kg) or methylprednisolone as a positive control. Cellular experiments and molecular docking were performed to investigate potential mechanisms of LLDT-8. Results: LLDT-8 significantly attenuated clinicopathological features, including muscle weakness and pain sensitivity, while reducing serum levels of aspartate aminotransferase and lactate dehydrogenase. Histological analysis revealed that LLDT-8 reduced inflammatory cell infiltration and the presence of CD4+ and CD8+ T cells in muscle tissues. Mechanistically, LLDT-8 inhibited the expression of nucleotide-binding oligomerization domain receptor caspase recruitment domain 5 (NLRC5), a key transcriptional regulator of major histocompatibility complex-I (MHC-I). This suppression extended to downstream antigen presentation-related molecules, including the transporter associated with antigen processing and proteasome 20S subunit beta. Molecular docking further confirmed the high binding affinity of LLDT-8 to both NLRC5 and MHC-I. Conclusions: LLDT-8 alleviates inflammatory muscle injury by targeting the NLRC5/MHC-I signaling axis, suggesting it may be a promising therapeutic candidate for IIMs.

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Cite This Study

Hao et al. (2026) studied this question.

synapsesocial.com/papers/69e4739a010ef96374d8f668https://doi.org/10.3390/ph19040631
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