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Shiva Ahmadishoar

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Open access Aug 2026

Expression of herpes simplex virus-related genes in peripheral blood leukocytes of patients with behçet’s disease: a case-control study

Behçet’s disease is a chronic, relapsing multisystem inflammatory disorder characterized by recurrent oral and genital ulcerations, ocular inflammation, cutaneous lesions, and variable involvement of the vascular, neurological, and gastrointestinal systems. Although its precise etiology remains incompletely understood, accumulating evidence indicates that the disease arises from a complex interplay between genetic susceptibility, immune dysregulation, and environmental triggers. Among the proposed infectious agents, herpes simplex virus (HSV) has attracted considerable attention because of its capacity to induce persistent immune activation, molecular mimicry, and chronic inflammatory responses. Accordingly, the present study aimed to evaluate the expression profiles of HSV-related genes (UL29, UL18, UL46, and UL47) in peripheral blood leukocytes of patients with Behçet’s disease to clarify the potential contribution of HSV infection to disease pathogenesis and immune-mediated inflammatory mechanisms. In this case-control study, 40 patients with BD and 40 healthy individuals were included as the control group. Blood samples were collected from all participants. Total RNA was extracted from peripheral blood leukocytes, followed by cDNA synthesis. The expression levels of UL29, UL18, UL46, and UL47 genes were quantified using RT-qPCR. Receiver operating characteristic (ROC) curve analysis was performed to assess the diagnostic potential of the studied genes. Statistical analyses were conducted using GraphPad Prism and SPSS software (P-value ≤ 0.05). The expression of HSV-related genes was significantly higher in BD patients compared to healthy controls. After Bonferroni correction for multiple comparisons, UL29 remained significantly upregulated (4.5-fold, adjusted p  = 0.012), while UL46 (3.7-fold, adjusted p  = 0.060), UL18 (2.0-fold, adjusted p  = 0.152), and UL47 (2.25-fold, p  = 0.12) did not reach statistical significance. ROC curve analysis demonstrated strong diagnostic potential for UL29 (AUC = 0.90, sensitivity 80%, specificity 92.5%), UL46 (AUC = 0.86, sensitivity 87%, specificity 77.5%), and UL18 (AUC = 0.80, sensitivity 85%, specificity 72.5%). Overall, UL29, UL46, and UL18 showed promising potential as biomarkers for distinguishing BD patients from healthy individuals. Increased expression of UL29, UL46, and UL18 is associated with BD, and these genes, particularly UL29, show promising potential as diagnostic biomarkers. Further validation studies are needed.

Seyyedeh Maryam Rezvan Leilan, Shiva Ahmadishoar, M. Pashazadeh · 0 citations
Open access Jul 2026

Synthesis of zinc oxide nanoparticles and their effect on biofilm of methicillin-resistant Staphylococcus aureus isolates.

BACKGROUND Methicillin-resistant Staphylococcus aureus (MRSA) poses a growing threat in Iranian healthcare settings, and biofilm formation exacerbates treatment challenges. This study assessed the antibacterial and anti-biofilm potential of zinc oxide nanoparticles ZnONPs against 58 clinical MRSA isolates collected from hospitals in Iran. METHODS Isolates were identified via microbial and biochemical tests and confirmed by PCR targeting nuc (279 bp) and mecA (310 bp) genes. Antimicrobial susceptibility was evaluated using CLSI disk diffusion guidelines. The ZnONPs were synthesized by chemical precipitation. Minimum inhibitory concentrations (MICs) of ZnONPs were determined by broth microdilution, and biofilm formation/inhibition was quantified using crystal violet staining. RESULTS Of 131 S. aureus isolates, 58 (44.3%) were MRSA, exhibiting high resistance to Penicillin (100%), Erythromycin (91.4%), and Ciprofloxacin (74.1%), but full susceptibility to Trimethoprim-Sulfamethoxazole. ZnONPs displayed potent activity, with MICs ranging from 8 to 1024 µg/mL (MIC₅₀ = 64 µg/mL; MIC₉₀ = 512 µg/mL); 27.6% of isolates were inhibited at ≤ 16 µg/mL. Among MRSA, 15.5% were strong biofilm producers, and sub-MIC (½ MIC) concentrations of ZnONPs reduced biofilm by 82.3 ± 7.6% (P  < 0.001). Dynamic light scattering confirmed nanoparticle stability (size: 29.4 ± 4.2 nm; PDI: 0.19). CONCLUSIONS These findings highlight ZnONPs as a promising, low-cost alternative for managing MRSA infections, particularly in biofilm-associated cases, warranting further clinical exploration in resource-limited settings.

Aytan Marandi Moghaddam, Shiva Ahmadishoar, S. Aval · 0 citations