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Office of Undergraduate Research Home » 2019 Undergraduate Research Symposium Schedules

Found 2 projects

Poster Presentation 2

1:00 PM to 2:30 PM
Analysis of Oral Swabs for Universal Bacterial 16s rDNA to Optimize Diagnostic Application
Presenter
  • Divya Naidoo, Senior, Public Health-Global Health
Mentors
  • Gerard Cangelosi, Environmental & Occupational Health Sciences
  • Rachel Wood, Environmental & Occupational Health Sciences
  • Alaina Olson, Environmental & Occupational Health Sciences
Session
    Poster Session 2
  • Commons West
  • Easel #8
  • 1:00 PM to 2:30 PM

  • Other students mentored by Gerard Cangelosi (1)
  • Other students mentored by Rachel Wood (1)
Analysis of Oral Swabs for Universal Bacterial 16s rDNA to Optimize Diagnostic Applicationclose

Oral swab analysis (OSA) is a possible alternative sample type for tuberculosis diagnostics. It has been observed that tongue swabs contain greater amounts of Mycobacterium tuberculosis DNA than cheek swabs (p<0.0001) from tuberculosis patients. After determining that oral microbiota follows this same pattern, several factors including time-of-day swabbed and health status were analyzed to understand factors affecting the amount of bacteria on the tongue. This project aims to optimize the oral swab sampling methods in order to facilitate more sensitive diagnostic tests, using universal bacterial 16s rDNA as a proxy for Mtb DNA. Previously tested samples from South Africa were further analyzed to investigate amount of oral microbiota by day collected, HIV status, health status, and other demographic factors. To evaluate whether collecting multiple swabs per sample yielded more universal bacterial DNA, tongue swabs were taken from healthy volunteers in Seattle. Each subject provided a 1-swab sample and a 3-swab sample, which was then extracted and analyzed by a previously optimized universal bacterial PCR. Additionally, tongue scrapers are being assessed as an alternative to oral swabs. Swabs collected early in the morning had more bacterial DNA than swabs collected later (p<0.03). 3-swab samples yielded an average of 2-fold greater amounts of bacterial DNA than 1-swab samples. Bacterial biomass correlated with M. tuberculosis signal in most comparisons. Bacterial biomass may serve as a useful proxy when developing better oral swab sampling strategies for TB diagnosis.


Poster Presentation 4

4:00 PM to 6:00 PM
Optimizing Oral Swab Analysis for Tuberculosis Diagnosis
Presenter
  • Rita Noor Olson, Senior, Microbiology
Mentors
  • Rachel Wood, Environmental & Occupational Health Sciences
  • Gerard Cangelosi, Environmental & Occupational Health Sciences
Session
    Poster Session 4
  • Commons West
  • Easel #4
  • 4:00 PM to 6:00 PM

  • Other students mentored by Rachel Wood (1)
  • Other students mentored by Gerard Cangelosi (1)
Optimizing Oral Swab Analysis for Tuberculosis Diagnosisclose

Tuberculosis (TB) remains a major international health concern and one of the top 10 causes of death worldwide, according to the World Health Organization. Previous clinical work in our lab demonstrated that oral swab analysis (OSA) can successfully diagnose tuberculosis by detecting Mycobacterium tuberculosis DNA in the mouths of infected patients. In order to strengthen OSA against traditional but more invasive methods, such as sputum sampling, improvements to DNA extraction and swab type must be investigated. I am comparing different degrees of automation with MolBio’s Trueprep, the AudioLyse, and ThermoFisher’s KingFisher against our previously validated manual Qiagen extraction protocol—with the comparison lying in sensitivity and efficiency. In order to increase the versatility and sensitivity of OSA, I am also investigating boil preparations and dissolvable swabs. Boil preparation of swabs is a relatively simple extraction procedure, and early results have demonstrated its comparability against the Qiagen extraction. Meanwhile, dissolvable swabs have a hypothetical 100% yield of sample material. I have successfully dissolved calcium alginate swabs from Puritan in acidic sodium citrate solutions, and Luna swabs were dissolved in chaotropic agents. DNA yields are compared to non-dissolvable, previously validated swabs.


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