INTRODUCTION
Parasitic infections remain a major global health challenge involving complex interactions between pathogens and host immunity. Emerging evidence indicates that epigenetic mechanisms, including DNA methylation, histone modifications, chromatin remodeling, and non-coding RNAs, critically regulate immune responses and influence host susceptibility, resistance, and disease progression.
METHODS
This review synthesizes current evidence on epigenetic regulation of host immunity during parasitic infections, focusing on mechanisms underlying immune activation, immune evasion, host susceptibility, and parasite persistence. Emerging epigenetic biomarkers and therapeutic strategies targeting epigenetic pathways are also considered.
RESULTS
Parasites can manipulate host epigenetic machinery to evade immune surveillance, suppress protective responses, and establish persistent infections. Conversely, epigenetic regulation in immune cells modulates cytokine production, macrophage polarization, T-cell differentiation, and immune memory, thereby influencing infection outcomes. Parasite-derived epigenetic factors and non-coding RNAs may additionally contribute to immune modulation and immunopathology. Epigenetic signatures associated with disease severity and treatment response show potential as biomarkers, while targeting epigenetic pathways may enhance antiparasitic immunity.
DISCUSSION
Epigenetic regulation represents a central mechanism governing host-parasite interactions. Integrating advanced approaches, including single-cell epigenomics and spatial transcriptomics, may clarify cell-specific mechanisms and identify novel biomarkers and therapeutic targets. These advances could support personalized strategies to improve antiparasitic treatment and disease outcomes.
H. Alzaylaee, Walaa A. Elkholy, Marwa A. Elkholy et al.· Immunological Investigations· 0 citations
Herbal plants are traditionally used in Saudi Arabia to treat various illnesses. This study aimed to evaluate the in vitrocytotoxic activity of methanol extracts of two medicinal plants against the human epithelial cell line Caco-2. The selectivity index (SI) of each extract was then determined by the IC50ratio of normal to cancer cells. L. nobilisshowed the highest cytotoxic effect, and the least cytotoxicity was found in C. verum. Antioxidantactivity was assessed through the DPPH radical scavenging assay. Notably, C. verumand L. nobilisexhibited the highest concentrations of total phenolics (54.33 ± 0.198 mg GAE/g and 57.4 ± 6.053 mg QE/g, respectively). Both extracts demonstrated strong antioxidant activity against DPPH radicals, with IC50values ranging from 0.55 to 49.43 μg/mL. In addition, the extracts showed significant anticoccidial effects. The findings suggest that medicinal plant extracts could serve as valuable antioxidant agents for drug development.
M. Murshed, H. Alzaylaee, J. Al-Tamimi et al.· Boletin Latinoamericano y de...· 0 citations
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