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Evaluation of the effects of ivermectin and Moringa oleifera nanoparticles on muscular trichinellosis in a murine model

  • Magda Said Ahmed Abdeltawab
  • , Mona Said El-Sherbini
  • , Shimaa Saad El-Din
  • , Engy Medhat
  • , Mai Samir
  • , Amal M. Mahfoz
  • , Abdel Wahab M. Mahmoud
  • , Basma Emad Aboulhoda
  • , Hend Ahmed Abdallah
  • , Hanaa S. Sallam
  • , Alshaimaa M.R. Hamed

Research output: Contribution to journalArticlepeer-review

Abstract

The parasitic nematode Trichinella spiralis (T. spiralis) offers a rich experimental model in the study of muscle inflammation and regeneration. The larval stage of the parasite is a particularly challenging drug target due to its encystation inside the sophisticated nurse cell complex. Non-conventional pharmacological approaches such as herbal remedies and nanoformulations have garnered special research attention in the management of T. spiralis-induced myositis. The current study investigated the effects of Moringa oleifera nanoparticles (MON) and Ivermectin nanoparticles (IVN) on T. spiralis muscle larvae and their potential effect on signaling molecules involved in cellular regeneration and proinflammatory immune response inside infected muscle fibers. Thirty Swiss albino mice were divided into five groups, each containing 6 mice: Uninfected untreated (negative) control group; T. spiralis-infected untreated group; T. spiralis-infected group treated with IVN; T. spiralis-infected group treated with MON; T. spiralis-infected group treated with both IVN and MON. Assessment of the parasitic burden and histopathological examination of skeletal muscles were performed. In addition, the local immunohistochemical expression of nuclear factor-kappa B (NF-κB) in skeletal muscles was evaluated. Moreover, the local gene expression of insulin-like growth factor (IGF) and its downstream anabolic switch phosphatidyl inositol 3-kinase (PI3K) was analyzed. The combined treatment regimen demonstrated superior efficacy compared to monotherapies. It resulted in the most significant reduction in parasitic burden, restoration of muscle tissue histological architecture, and the most pronounced downregulation of the transcription regulator NF-κB. Moreover, the gene expression of IGF and PI3K was modulated by both the single and combined therapy of IVN and MON.These findings suggest that nanoformulations of ivermectin and Moringa oleifera may represent potential antiparasitic adjuvants against T. spiralis larvae. Furthermore, the observed improvements in muscle tissue repair appear to correlate with a modulation of the local inflammatory environment and the potential upregulation of markers involved in cellular regeneration and anabolic processes.

Original languageEnglish (US)
Article number105951
JournalInfection, Genetics and Evolution
Volume141
DOIs
StatePublished - Jul 2026

Keywords

  • IGF
  • Ivermectin
  • Moringa oleifera
  • NF-κB
  • PI3K
  • Trichinella spiralis

ASJC Scopus subject areas

  • Microbiology
  • Ecology, Evolution, Behavior and Systematics
  • Molecular Biology
  • Genetics
  • Microbiology (medical)
  • Infectious Diseases

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