Found 2 projects
Poster Presentation 1
11:00 AM to 1:00 PM
- Presenter
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- Lauryn Stafford, Senior, Public Health-Global Health UW Honors Program
- Mentor
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- Azim Khan, Global Health, School for International Training
- Session
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Poster Session 1
- Commons West
- Easel #6
- 11:00 AM to 1:00 PM
The research question this study addresses is: How do community-based promoters contribute to the delivery and utilization of health insurance among marginalized populations in India? The subject of investigation for this study is the insurance delivery model of VimoSEWA, an organization based in Ahmedabad, India that provides health and other social insurance services to self-employed women with limited prior access to financial protection. To address the research question, I investigated the successes and difficulties experienced by VimoSEWA community-based insurance promoters, called aagewans, through field visits and personal interviews in Ahmedabad and nearby rural districts in Gujarat. Both aagewans and insurance members were interviewed during this study to develop a comprehensive understanding of the importance of community-based promoters in health insurance delivery and the various factors that impact their role. The role of VimoSEWA aagewans in promoting and delivering health insurance to self-employed women in Guarat is significant because insurance improves the financial stability of these women and their families. Furthermore, health insurance is effective in decreasing high out-of-pocket healthcare expenses and improving access to quality healthcare services. However, the findings of this study indicate that the benefits of health insurance can only be attained by marginalized populations if insurance is made accessible to these communities through proper delivery methods and sufficient social support systems. VimoSEWA aagewans perform a fundamental role in establishing trust between the community and the insurance provider, making health insurance accessible, and adapting services to the community's needs.
Poster Presentation 3
2:30 PM to 4:00 PM
- Presenter
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- Carolyn Brager, Senior, Biology (Molecular, Cellular & Developmental) UW Honors Program
- Mentors
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- Stefan Kappe, Global Health
- Debashree Goswami, Global Health, Seattle Childrens Research Institute
- Session
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Poster Session 3
- Commons West
- Easel #38
- 2:30 PM to 4:00 PM
Malaria affects close to half of the world’s population and kills nearly 3,000 children every day. Due to the rapid rise in drug-resistant parasites and insecticide-resistant mosquitoes, we need a vaccine now more than ever before. Malaria is caused when a mosquito infected with the parasite, Plasmodium, bites and injects thousands of sporozoites that infect the liver and replicate without causing symptoms for 7-10 days. After egressing out of the liver, the parasites infect red blood cells and can get taken up by another mosquito during a bite perpetuating disease transmission. In the blood stage, the population of parasites in circulation can reach the billions, symptoms occur, and disease complications can result in death. Our strategy is to develop a pre-erythrocytic malaria vaccine by creating a genetically attenuated parasite (GAP) strain. If infection could be stopped before the parasites break through into the proliferative blood stage, both the disease and transmission could be prevented. Our goal is to make a late-liver stage arresting Plasmodium falciparum GAP conferring a broad antigenic diversity. Based on late-liver stage transcriptomics, we identified genes that could be candidates for knockout. One of these genes is mei2 of which my team already generated a CRISPR/Cas9-mediated knockout. We conducted an analysis of invasion kinetics via a growth competition assay between wild-type and mei2- parasites to ensure the gene deletion did not reduce viability. We proceeded by exposing our human-liver chimeric mice to infectious mei2- sporozoites, tracked liver stage development, and looked for breakthrough into the blood stage as an indication of incomplete attenuation. We then built on the previously established role of mei2 as an RNA binding protein by studying the subcellular localization of Pf mei2 to better understand the effect it has on liver-stage development.