Publications by authors named "Sara Hamilton"

Tissue-resident memory CD8 T (Trm) cells control infections and cancer and are defined by their lack of recirculation. Because migration is difficult to assess, residence is usually inferred by putative residence-defining phenotypic and gene signature proxies. We assessed the validity and universality of residence proxies by integrating mouse parabiosis, multi-organ sampling, intravascular staining, acute and chronic infection models, dirty mice, and single-cell multi-omics.

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Fundamental discoveries in many aspects of mammalian physiology have been made using laboratory mice as research models. These studies have been facilitated by the genetic tractability and inbreeding of such mice, the large set of immunological reagents that are available, and the establishment of environmentally controlled, high-throughput facilities. Such facilities typically include barriers to keep the mouse colonies free of pathogens and the frequent re-derivation of the mice severely limits their commensal flora.

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Integrating CO capture and electrochemical conversion has been proposed as a strategy to reduce the net energy required for CO regeneration in traditional CO capture and conversion schemes and can be coupled with carbon-free renewable electricity. Polyethylenimine (PEI)-based materials have been previously studied as CO capture materials and can be integrated in these reactive capture processes. PEI-based electrolytes have been found to significantly increase the CO loading, and impact selectivity and rate of product formation when compared to the conventional aqueous electrolytes.

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KLRG1 CD8 T cells persist for months after clearance of acute infections and maintain high levels of effector molecules, contributing protective immunity against systemic pathogens. Upon secondary infection, these long-lived effector cells (LLECs) are incapable of forming other circulating KLRG1 memory subsets such as central and effector memory T cells. Thus, KLRG1 memory T cells are frequently referred to as a terminally differentiated population that is relatively short lived.

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The melanoma tumor microenvironment is a complex milieu of cancer, inflammatory, and stromal cells. In this context, chemokines play a pivotal role in recruiting inflammatory cells and influence the tumor, exerting both pro-tumorigenic and anti-tumoral roles. Interactions between these cells is what ultimately hold together and transform the tumor into an efficient machine.

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infection can trigger high levels of inflammation that lead to fever and sometimes severe disease. People living in malaria-endemic areas gradually develop resistance to symptomatic malaria and control both parasite numbers and the inflammatory response. We previously found that adaptive natural killer (NK) cells correlate with reduced parasite load and protection from symptoms.

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The National Institute of Allergy and Infectious Diseases (NIAID) hosted a two-day virtual workshop on leveraging microbial exposure to improve mouse models of human immune status and disease. The workshop’s objective was to evaluate the current state of knowledge in the field and to identify gaps, challenges and future directions.

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By 2030, individuals 65 years of age or older will make up approximately 20% of the world's population. Older individuals are at the highest risk for mortality from infections, largely due to the pro-inflammatory, dysfunctional immune response, which is collectively known as immunosenescence. During aging, CD8 T cells acquire an exhausted phenotype, including increased expression of inhibitory receptors, such as programmed cell death 1 (PD1), a decline in effector function and elevated expression of inflammatory factors.

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Nanoparticle organic hybrid materials (NOHMs) have been proposed as excellent electrolytes for combined CO capture and electrochemical conversion due to their conductive nature and chemical tunability. However, CO capture behavior and transport properties of these electrolytes after CO capture have not yet been studied. Here, we use a variety of nuclear magnetic resonance (NMR) techniques to explore the carbon speciation and transport properties of branched polyethylenimine (PEI) and PEI-grafted silica nanoparticles (denoted as NOHM-I-PEI) after CO capture.

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A critical concern regarding electrolyte formulation in an electrochemical environment is the impact of the interaction of the multiple components (, supporting electrolyte or additive) with the electrode surface. Recently, liquid-like neat Nanoparticle Organic Hybrid Materials (NOHMs) have been considered as an electrolyte component to improve the transport of redox-active species to the electrode surface. However, the structure and assembly of the NOHMs near the electrode surface is unknown and could significantly impact the electrode-electrolyte interface.

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To establish a patient-centered agenda for research that will lead to effective, widespread availability, adoption, and utilization of evidence-based behavioral treatment of Tourette syndrome and other tic disorders (TDs), we planned and executed a multistage, collaborative "Treating Tourette Together" research planning project with researchers, clinicians, patients, families, and other interested parties. Priorities for future behavioral treatment research were solicited from these parties via anonymous community surveys, a 2-day research planning summit with 46 individuals representing key stakeholder groups, and community response to summit reports. Four high-priority research domains were identified: (a) expanding treatment access, (b) improving treatment outcomes, (c) optimizing treatment within a broader care model, and (d) evaluating outcomes beyond tic severity.

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Malaria, which results from infection with Plasmodium parasites, remains a major public health problem. Although humans do not develop long-lived, sterilizing immunity, protection against symptomatic disease develops after repeated exposure to Plasmodium parasites and correlates with the acquisition of humoral immunity. Despite the established role Abs play in protection from malaria disease, dysregulated inflammation is thought to contribute to the suboptimal immune response to Plasmodium infection.

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Objectives: To investigate the etiology of cerebellar ataxia in an adult male patient.

Methods: We performed standard neurologic assessment and genome sequencing of a 62-year-old man with rapidly progressive balance and gait abnormalities.

Results: The propositus exhibited cognitive dysfunction, mild appendicular bradykinesia, prominent appendicular ataxia, dysarthria, and hypomimia with minimal dysautonomic symptoms.

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The skeletal and immune systems are intricately intertwined within the bone marrow microenvironment, a field of study termed osteoimmunology. Osteoimmune interactions are key players in bone homeostasis and remodeling. Despite the critical role of the immune system in bone health, virtually all animal research in osteoimmunology, and more broadly bone biology, relies on organisms with naïve immune systems.

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Microbial experience fundamentally shapes immunity, particularly during the perinatal period when the immune system is underdeveloped, and novel microbial encounters are common. Most animal models are raised in specific pathogen-free (SPF) conditions with relatively uniform microbial communities. How SPF housing conditions alter early-life immune development relative to natural microbial exposure (NME) has not been thoroughly investigated.

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CMV infection alters NK cell phenotype and function toward a more memory-like immune state. These cells, termed adaptive NK cells, typically express CD57 and NKG2C but lack expression of the FcRγ-chain (gene: FCER1G, FcRγ), PLZF, and SYK. Functionally, adaptive NK cells display enhanced Ab-dependent cellular cytotoxicity (ADCC) and cytokine production.

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Genomic medicine, an emerging medical discipline, applies the principles of evolution, developmental biology, functional genomics, and structural genomics within clinical care. Enabling widespread adoption and integration of genomic medicine into clinical practice is key to achieving precision medicine. We delineate a biological framework defining diagnostic utility of genomic testing and map the process of genomic medicine to inform integration into clinical practice.

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Successful vaccination strategies offer the potential for lifelong immunity against infectious diseases and cancer. There has been increased attention regarding the limited translation of some preclinical findings generated using specific pathogen-free (SPF) laboratory mice to humans. One potential reason for the difference between preclinical and clinical findings lies in maturation status of the immune system at the time of challenge.

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Interleukin-15 (IL-15) is often considered a central regulator of memory CD8 T cells, based primarily on studies of recirculating subsets. However, recent work identified IL-15-independent CD8 T cell memory populations, including tissue-resident memory CD8 T cells (T) in some nonlymphoid tissues (NLTs). Whether this reflects the existence of IL-15-insensitive memory CD8 T cells is unclear.

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Lymphocytic choriomeningitis virus (LCMV) is the prototypic arenavirus and a natural mouse pathogen. LCMV-Armstrong, an acutely resolved strain, and LCMV-clone 13, a mutant that establishes chronic infection, have provided contrasting infection models that continue to inform the fundamental biology of T cell differentiation, regulation of exhaustion, and response to checkpoint blockade. In this study, we report the isolation and characterization of LCMV-Minnesota (LCMV-MN), which was naturally transmitted to laboratory mice upon cohousing with pet shop mice and shares 80-95% amino acid homology with previously characterized LCMV strains.

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Article Synopsis
  • Genome-wide sequencing (GWS) is commonly used for diagnosing genetic disorders, but the success rate in identifying harmful variants can vary widely, from under 30% to over 60%.
  • A study involving 500 families showed that a multidisciplinary team can effectively interpret genetic data, leading to initial diagnoses in 43% of cases, and additional findings in 17.2% through follow-up.
  • Continuous collaboration and reinterpretation of GWS results are crucial for enhancing diagnostic accuracy and clinical value over time.
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Nanoparticle organic hybrid materials (NOHMs) are liquid-like materials composed of an inorganic core to which a polymeric canopy is ionically tethered. NOHMs have unique properties including negligible vapor pressure, high oxidative thermal stability, and the ability to bind to reactive species of interest due to the tunability of their polymeric canopy. This makes them promising multifunctional materials for a wide range of energy and environmental technologies, including electrolyte additives for electrochemical energy storage (e.

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The Ottawa Ankle Rule and Canadian C-Spine Rule were created to guide the utility of radiographic studies. There are no guidelines to guide X-rays within trauma. Our objective was to evaluate which findings have the highest yield for determining fractures on skeletal x-ray.

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