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Background: Bangladesh is facing a formidable challenge in mitigating waterborne diseases risk exacerbated by climate change. However, a comprehensive understanding of the spatio-temporal dynamics of these diseases at the district level remains elusive. Therefore, this study aimed to fill this gap by investigating the spatio-temporal pattern and identifying the best tree-based ML models for determining the meteorological factors associated with waterborne diseases in Bangladesh.

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Introduction: Considerable evidence suggests a pathophysiological role of neuroinflammation in psychiatric disorders. Lumbar puncture and positron emission tomography (PET) show increased levels of inflammation in psychiatric disorders. However, the invasive nature of these techniques, as well as their expense, make them undesirable for routine use in patients.

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Due to consumer demand, many conventional poultry farms are now growing poultry without antibiotics or synthetic chemicals. In addition to this, pasture/organic poultry farms have increased significantly in the USA, and they are also antibiotic- and chemical-free. According to recent reports, both antibiotic-free conventional and pasture poultry farmers are facing the re-emergence of bacterial diseases.

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Enteric fever is one of the important causes of tropical fever with a prevalence of 11-21 million cases worldwide annually. It encompasses both typhoid and paratyphoid fever. Typhi is the causative organism for typhoid fever, manifesting as an uncomplicated febrile illness to life-threatening sepsis with multiorgan dysfunction.

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Screening and identification of multiple antibiotic- resistant genes containing Typhi from drinking water: A severe public health concern in Bangladesh.

Heliyon

November 2024

Laboratory of Microbial and Cancer Genomics, Department of Genetic Engineering and Biotechnology, Faculty of Biological Sciences, University of Chittagong, Chittagong, 4331, Bangladesh.

Article Synopsis
  • * Out of 150 water samples, 8 isolates of Typhi were confirmed, revealing a troubling finding of antibiotic-resistant genes in all these isolates, which poses a threat to effective treatment.
  • * Multidrug resistance (MDR) was confirmed in 87.5% of the isolates, indicating a widespread issue of antibiotic resistance, necessitating urgent action to prevent further transmission through contaminated water.
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