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Jeffrey Bailey graduated from Saint Olaf College (Northfield Minnesota) in 1989 with a B.A. in Biology Suma Cum Laude. He then pursued volunteer work as a science and math teacher in Liberia and Botswana with the United States Peace Corps. He returned to the United States and entered the Medical Scientist Training Program at Case Western Reserve University. He received his PhD in Genetics characterizing and studying segmental duplications within the human genome in the laboratory of Dr. Evan Eichler. His postdoctoral research has focused on the detection and analysis of copy number variation—particularly in relationship to segmental duplications. After receiving his MD in 2005, he completed a residency in Clinical Pathology at Case Medical Center in Cleveland and the Cleveland City-wide Transfusion Medicine Fellowship. In August of 2009, Dr. Bailey joined the faculty as a tenure-track assistant professor in the Program in Bioinformatics and Integrative Biology. He continues to pursue clinical medicine in the Division of Transfusion Medicine. He is Board certified in Clinical Pathology.

Our overall research focus involves understanding the role of segmental duplication and copy number variation in human infectious disease resistance and immunity. Segmental duplications, blocks of transposed genomic DNA within or between chromosomes, have long been recognized as an important substrate for the evolution of novel genes. As a result of the human genome project, they are now generally recognized as a significant source of copy number variation (variation between normal individuals) that can impact human disease. We are optimizing both experimental and computational approaches for the assessment of copy number variation within the context of several specific diseases. Utilizing technologies such as array comparative genomic hybridization and massively-parallel sequencing we hope to gain novel insight into etiologic and pathogenic mechanisms.

Major projects in the lab include studies of human variation related to severe malaria, parasite variation in terms of virulence and drug resistance, and endemic Burkitt lymphoma a malaria-related B cell maligancies found at high-prevleance in sub-Saharan Africa. 

One or more keywords matched the following items that are connected to Bailey, Jeffrey
Item TypeName
Academic Article Ahead of the curve: next generation estimators of drug resistance in malaria infections.
Concept Drug Resistance, Multiple
Concept Drug Resistance
Academic Article Longitudinal Pooled Deep Sequencing of the Plasmodium vivax K12 Kelch Gene in Cambodia Reveals a Lack of Selection by Artemisinin.
Academic Article Selective sweep suggests transcriptional regulation may underlie Plasmodium vivax resilience to malaria control measures in Cambodia.
Academic Article Surveillance for sulfadoxine-pyrimethamine resistant malaria parasites in the Lake and Southern Zones, Tanzania, using pooling and next-generation sequencing.
Academic Article Drug-Resistance and Population Structure of Plasmodium falciparum Across the Democratic Republic of Congo Using High-Throughput Molecular Inversion Probes.
Academic Article Partner-Drug Resistance and Population Substructuring of Artemisinin-Resistant Plasmodium falciparum in Cambodia.
Academic Article Antimalarial Drug Resistance Profiling of Plasmodium falciparum Infections in Ghana Using Molecular Inversion Probes and Next-Generation Sequencing.
Academic Article The impact of antimalarial resistance on the genetic structure of Plasmodium falciparum in the DRC.
Academic Article The changing landscape of Plasmodium falciparum drug resistance in the Democratic Republic of Congo.
Academic Article Therapeutic Efficacy of Artemether-Lumefantrine for Uncomplicated Falciparum Malaria in Northern Zambia.
Academic Article Changing Prevalence of Potential Mediators of Aminoquinoline, Antifolate, and Artemisinin Resistance Across Uganda.
Academic Article Describing the current status of Plasmodium falciparum population structure and drug resistance within mainland Tanzania using molecular inversion probes.
Academic Article Associations between Varied Susceptibilities to PfATP4 Inhibitors and Genotypes in Ugandan Plasmodium falciparum Isolates.
Academic Article Decreased Susceptibility to Dihydrofolate Reductase Inhibitors Associated With Genetic Polymorphisms in Ugandan Plasmodium falciparum Isolates.
Academic Article Immediate pools of malaria infections at diagnosis combined with targeted deep sequencing accurately quantifies frequency of drug resistance mutations.
Academic Article Susceptibility of Ugandan Plasmodium falciparum Isolates to the Antimalarial Drug Pipeline.
Academic Article Ex vivo susceptibilities to ganaplacide and diversity in potential resistance mediators in Ugandan Plasmodium falciparum isolates.
Academic Article The emergence of artemisinin partial resistance in Africa: how do we respond?
Academic Article Changes in susceptibility of Plasmodium falciparum to antimalarial drugs in Uganda over time: 2019-2024.
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  • Drug Resistance