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Biomedical subjects

John F Anderson

Publications and source records attributed to John F Anderson.

8 recordsLinked to original sources

Evolutionary history of Jamestown Canyon virus reveals complex multi-vector ecology.

Jamestown Canyon virus (JCV) is a historically understudied mosquito-borne virus of increasing concern in North America. We generated 658 whole-genome JCV sequences from northeast United States, including 84% (500/597) of all JCV-positive mosquitoes detected in Connecticut from 1997 to 2022. Then, we applied phylodynamic methods to demonstrate how mosquito phenology structures the maintenance and evolution of JCV. Our phylogenetic analyses estimate that JCV was introduced in the Northeast by at least the early 1700s, and the primary introductions of lineages A and B into Connecticut occurred during the mid-1800s to mid-1900s. Further, we estimate that JCV evolves at a rate of ∼3 × 10-5 substitutions per site per year (s/s/y), making it one of the slowest-evolving known RNA viruses, because the virus spends ∼10 months per year in evolutionary stasis while overwintering in mosquito eggs. To investigate ecological drivers of JCV spread in Connecticut, we paired discrete trait and continuous phylogeographic reconstructions with mosquito surveillance data. We estimate that JCV has a low diffusion rate of ∼30-60 km2/year, which is more similar to slow-moving tick-borne viruses than to other mosquito-borne viruses. We found that univoltine Aedes mosquitoes were likely to maintain the virus across years through overwintering in eggs, accounting for its slow evolution and dispersal, while multivoltine mosquitoes contributed to periodic bursts of spatial diffusion and amplification within seasons. We demonstrate the utility of dense sequencing and phylodynamics to disentangle complex transmission cycles, offering a framework for rapidly advancing our evolutionary and ecological knowledge of understudied viruses.

Animals↗

IFN-gamma-producing gamma delta T cells help control murine West Nile virus infection.

West Nile (WN) virus causes fatal meningoencephalitis in laboratory mice, thereby partially mimicking human disease. Using this model, we have demonstrated that mice deficient in gammadelta T cells are more susceptible to WN virus infection. TCRdelta(-/-) mice have elevated viral loads and greater dissemination of the pathogen to the CNS. In wild-type mice, gammadelta T cells expanded significantly during WN virus infection, produced IFN-gamma in ex vivo assays, and enhanced perforin expression by splenic T cells. Adoptive transfer of gammadelta T cells to TCRdelta(-/-) mice reduced the susceptibility of these mice to WN virus, and this effect was primarily due to IFN-gamma-producing gammadelta T cells. These data demonstrate a distinct role for gammadelta T cells in the control of and prevention of mortality from murine WN virus infection.

Adoptive Transfer↗

Drug treatment courts are popular but do they work and are they ethical and appropriate for Canada?

Currently Canada is experimenting with the implementation of drug treatment courts. Pilot projects are underway in both Toronto and Vancouver. In the U.S., drug courts emerged as a response to the overcrowding of the prison system, the end product of the revolving door of substance dependent people moving through the court system. However, this expansion was not accompanied by any rigorous evaluation or critical reflection as to whether drug treatment courts can achieve their desired outcomes or if they are appropriate for dealing with substance dependent offenders. The purpose of this article is to take a critical look at this phenomenon and to discuss whether the drug court model is suitable for Canada.

Canada↗

The natural history of ticks.

Ticks have evolved to become one of the most important groups of arthropod vectors of human pathogens. One or more of the approximately 840 known species of ticks are found in most terrestrial regions of the earth. Ticks are a highly specialized group of obligate, bloodsucking, nonpermanent ectoparasitic arthropods that feed on mammals, birds, and reptiles. They are classified into two major families, Ixodidae (hard-bodies ticks) and Argasidae (soft-bodied ticks). The Ixodidae is the largest and most important family. There are many taxonomic keys for identifying ticks to assist the serious investigator. Their life cycles are often complex, and even though ticks are associated with their parasitic habits, ticks spend most of their life off hosts and in vegetation or soil. Maintenance of water balance during periods of overhydration while feeding and periods of dehydration while fasting is significant in the distribution, survival, activity, and transmission of disease-causing pathogens to humans and animals. Ticks attach to skin of the host by using their hypostome as an anchor and create a feeding lesion to ingest blood or tissue fluids. Soft-bodied ticks feed relatively rapidly (hours or less) and ingest only blood. Hard-bodied ticks take days to complete feeding and feed on blood, lymph, and lysed tissues from a pool that forms around the mouthparts. Feeding causes direct damage to the skin of the host. Disease-causing organisms may be ingested or expelled during feeding. Ingestion of relatively enormous quantities of blood is characteristic of ticks.

Animals↗

A recombinant envelope protein-based enzyme-linked immunosorbent assay for West Nile virus serodiagnosis.

Recombinant West Nile virus envelope (E) protein was examined in enzyme-linked immunosorbent assay (ELISA) to detect antibodies elicited during West Nile virus infection. Horses (nine of 10) and humans (six of six) with confirmed West Nile virus infection had IgG and/or IgM antibodies to the E protein. Antibodies to the recombinant West Nile virus membrane and nonstructural 1 proteins were not detected in any of these sera. An E protein-based ELISA may aid in the serological diagnosis of West Nile virus infection.

Animals↗

Examination of the Borrelia burgdorferi transcriptome in Ixodes scapularis during feeding.

Borrelia burgdorferi gene expression within the guts of engorging Ixodes scapularis ticks was examined by use of differential immunoscreening and differential expression with a customized amplified library. Fourteen chromosomal genes involved in energy metabolism, substrate transport, and signal transduction and 10 (4 chromosomal and 6 plasmid) genes encoding putative lipoproteins and periplasmic proteins were preferentially expressed in engorging ticks. These data demonstrate a new approach to the global analysis of B. burgdorferi genes that are preferentially expressed within the vector during feeding.

Animals↗

A systems approach to improving error reporting.

The reporting of medical errors or near misses within a healthcare organization is one process that has been long overlooked. With strong leadership as its foundation, Baylor Health Care System addressed multiple systems and processes of technology, education, communication, learning, feedback, rewards, and recognition to demonstrate significant improvements in cost reduction, employee satisfaction, and the number of errors reported.

Hospital Information Systems↗