Search bioRxiv⌕ Search

Biology subjects

Tasnim, J.

Publications and source records attributed to Tasnim, J..

2 recordsLinked to original sources

Genotype-Dependent Dysregulation of the MDM2-p53 Axis and Breast Cancer Susceptibility in Bangladeshi Women: A Cas-Control Study

BackgroundThe MDM2-p53 signaling pathway plays a central role in tumor suppression, and genetic variants that disrupt this pathway may influence breast cancer (BC) susceptibility. However, data from South Asian populations, particularly Bangladesh, remain limited. MethodsA case-control study was conducted in Bangladeshi women, including BC patients and healthy controls (HCs). Genotyping of MDM2 polymorphisms was performed using PCR-based methods. Circulating MDM2 and p53 protein levels were measured using enzyme-linked immunosorbent assays (ELISA). Associations between genotype, protein levels, BC status, and clinicopathological features were evaluated using appropriate statistical models. ResultsA strong and genotype-specific association was observed for MDM2 rs2279744. Women carrying the heterozygous TG genotype had a markedly increased risk of BC across additive, dominant, and over-dominant models, whereas the GG genotype showed a protective effect under the recessive model. In contrast, rs937282 did not show a significant association with BC risk. Circulating MDM2 levels were significantly elevated in patients compared with controls and varied by rs2279744 genotype, while circulating p53 levels showed an opposite trend. A strong inverse correlation was observed between serum MDM2 and p53 levels, supporting dysregulation of the MDM2-p53 feedback loop. Elevated MDM2 levels were also noted in HER2-positive and triple-positive BC subtypes. ConclusionTogether, these findings indicate that the MDM2 rs2279744 polymorphism contributes to BC susceptibility in a genotype-specific manner, likely through disruption of the MDM2-p53 regulatory balance. However, the absence of functional validation limits direct causal inference.

cancer biology↗

A Comprehensive epidemiological and molecular study of gastrointestinal helminths of Companion Animals in Northeastern Bangladesh: A neglected zoonotic threat

BackgroundGastrointestinal helminths of companion animals are neglected sources of zoonotic infection in low and middle-income countries. In Bangladesh, close humananimal contact and large free-roaming dog and cat populations may facilitate parasite transmission, yet region-specific data remain limited. This study assessed the prevalence, species diversity, and zoonotic potential of gastrointestinal helminths in companion animals in northeastern Bangladesh. MethodsA cross-sectional study was conducted between January and December 2025 across urban and rural areas of the Sylhet Division. Fecal samples from 900 animals (600 dogs and 300 cats; owned and stray) were examined using standard coproscopic techniques. Molecular confirmation of selected positive samples was performed using PCR targeting ITS-2, 18S rRNA, and mitochondrial cox1 genes, followed by sequencing. Risk factors associated with infection were evaluated using multivariable logistic regression. ResultsOverall, 45.9% (95% CI: 42.6-49.2) of animals were infected with at least one gastrointestinal helminth, with mixed infections detected in 18.4%. Prevalence was similar in dogs (45.7%) and cats (46.3%) but significantly higher in stray animals (65.7%) than in owned animals (36.6%). Predominant zoonotic helminths included Ancylostoma spp., Toxocara canis, Toxocara cati, Dipylidium caninum, and Taenia/Echinococcus spp. Molecular analysis confirmed 93% of morphologically identified infections and revealed high genetic similarity to zoonotic reference strains. Stray status, lack of deworming, young age, and outdoor roaming were significant risk factors for infection (p < 0.05). ConclusionsCompanion dogs and cats in northeastern Bangladesh harbor a high burden of zoonotic gastrointestinal helminths and represent important reservoirs for human exposure. Strengthening One Health-based surveillance, routine deworming, and stray animal management is essential to reduce zoonotic transmission.

microbiology↗