Publications by authors named "Stephanie Thiede"

Article Synopsis
  • - The study analyzed genomic data from 131 SARS-CoV-2 isolates collected from detainees at Cook County Jail in Chicago between March and May 2020 to understand transmission patterns during the early COVID-19 pandemic.
  • - Researchers found 29 genetic clusters among the detainees, with 17 clusters showing that individuals had overlapped in the jail during potential transmission periods, particularly within two specific buildings.
  • - The results indicate that SARS-CoV-2 was spreading in the jail despite infection control measures, highlighting the need for genomic analysis to enhance infection control strategies in correctional facilities.
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Purpose: Homologous recombination deficiency (HRD) is a well-described phenotype of some prostate cancers; however, current biomarkers for HRD are imperfect and rely on detection of single gene alterations in the homologous recombination repair (HRR) pathway, which may not capture the complexity of HRD biology. RNA signature-based methods of HRD identification present a potentially dynamic assessment of the HRD phenotype; however, its relationship with HRR gene alterations is not well characterized in prostate cancer.

Methods: A HRD assay on the basis of an RNA signature associated with biallelic loss was applied to a retrospective cohort study of 985 men with prostate cancer analyzed on the Tempus xT platform.

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  • A study conducted at Cook County Jail examined the prevalence of MRSA colonization among incarcerated females, enrolling 250 women shortly after intake.
  • The research found that 20% of participants were colonized with MRSA, with significant associations to high-risk behaviors such as drug use, unstable housing, and sexual activity.
  • The findings challenge previous beliefs about lower MRSA risk in women, indicating that targeted interventions may be needed for high-risk populations.
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  • * Over three years, we created an engaging curriculum using Jupyter notebooks to teach introductory Python for data science, inspired by The Carpentries' method of bite-sized lessons and hands-on practice.
  • * We aim to share our open curriculum with the education community, encouraging educators to utilize and enhance our resources available on GitHub.
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  • MRSA is a major cause of both healthcare and community infections, with USA300 being the community strain and USA100 being the healthcare strain.
  • Researchers used whole-genome sequencing (WGS) to refine an antibiotic prediction rule that distinguishes between these strains based on their resistance patterns, collecting MRSA isolates from 2007 to 2017.
  • The study found that lower resistance (≤2 antibiotic classes) predicted USA300 with good accuracy, and higher resistance was linked to individuals with a history of incarceration, indicating a more resistant strain circulating in at-risk communities.
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  • A study on incarceration at Cook County Jail revealed that a significant 19% of the 800 males were already colonized with methicillin-resistant Staphylococcus aureus (MRSA) upon intake.
  • The research identified predictors for MRSA acquisition during incarceration, notably prior heroin use and sharing personal items, with 12 out of 184 detainees acquiring MRSA by Day 30.
  • Genomic analysis indicated that MRSA strains were closely related among detainees, suggesting transmission within the jail, especially among individuals who shared living spaces or personal items.
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While variant identification pipelines are becoming increasingly standardized, less attention has been paid to the pre-processing of variants prior to their use in bacterial genome-wide association studies (bGWAS). Three nuances of variant pre-processing that impact downstream identification of genetic associations include the separation of variants at multiallelic sites, separation of variants in overlapping genes, and referencing of variants relative to ancestral alleles. Here we demonstrate the importance of these variant pre-processing steps on diverse bacterial genomic datasets and present prewas, an R package, that standardizes the pre-processing of multiallelic sites, overlapping genes, and reference alleles before bGWAS.

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Background: Jails may facilitate spread of methicillin-resistant Staphylococcus aureus (MRSA) in urban areas. We examined MRSA colonization upon entrance to a large urban jail to determine if there are MRSA transmission networks preceding incarceration.

Methods: Males incarcerated in Cook County Jail (Chicago) were enrolled, with enrichment for people living with human immunodeficiency virus (PLHIV), within 72 hours of intake.

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Immune tolerance to self-antigens can limit robust anti-tumor immune responses in the use of tumor vaccines. Expression of novel tumor associated antigens can improve immune recognition and lysis of tumor cells. The cancer-testis antigen (CTA) family of proteins has been hypothesized to be an ideal class of antigens due to tumor-restricted expression, a subset of which have been found to induce antibody responses in patients with prostate disease.

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Purpose: There is a critical clinical need for new predictive and pharmacodynamic biomarkers that evaluate pathway activity in patients treated with targeted therapies. A microscale platform known as VERSA (versatile exclusion-based rare sample analysis) was developed to integrate readouts across protein, mRNA, and DNA in circulating tumor cells (CTC) for a comprehensive analysis of the androgen receptor (AR) signaling pathway.

Experimental Design: Utilizing exclusion-based sample preparation principles, a handheld chip was developed to perform CTC capture, enumeration, quantification, and subcellular localization of proteins and extraction of mRNA and DNA.

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A significant challenge facing tissue engineers is the design and development of complex multitissue systems, including vascularized tissue-tissue interfaces. While conventional in vitro models focus on either vasculogenesis (de novo formation of blood vessels) or angiogenesis (vessels sprouting from existing vessels or endothelial monolayers), successful therapeutic vascularization strategies will likely rely on coordinated integration of both processes. To address this challenge, we developed a novel in vitro multitissue interface model in which human endothelial colony forming cell (ECFC)-encapsulated tissue spheres are embedded within a surrounding tissue microenvironment.

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Lung cancer is the leading cause of cancer-related deaths in the United States and worldwide. This has led to major research initiatives focusing on improving early diagnosis rate, as well as the development of pharmacodynamic biomarkers. However, broad clinical integration of these approaches is limited due to the invasive nature of lung biopsies, needle aspirates and resections.

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