12 results match your criteria: "College of Veterinary Medicine. Purdue University[Affiliation]"

Temporal differential effects of post-injury alcohol consumption in a mouse model of blast-induced traumatic brain injury.

Neuroscience

December 2024

Department of Basic Medical Sciences, College of Veterinary Medicine Purdue University, West Lafayette, IN, United States; Center for Paralysis Research, Purdue University, West Lafayette, IN, United States; Weldon School of Biomedical Engineering, College of Engineering, Purdue University, West Lafayette, IN, United States; Purdue Institute for Integrative Neuroscience, Purdue University, West Lafayette, IN, United States. Electronic address:

Article Synopsis
  • Traumatic brain injury (TBI) is a widespread issue globally, particularly among military personnel, with a lack of effective treatments and understanding.
  • Post-injury alcohol consumption has been shown to impair memory and may exacerbate brain damage, but this link hasn't been thoroughly investigated.
  • In a study combining mild TBI and alcohol drinking, early alcohol intake improved short-term memory, while prolonged drinking worsened long-term memory and increased oxidative stress, suggesting that alcohol could complicate recovery from brain injuries.
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Introduction: Understanding a tumor's immune context is paramount in the fight against cancer. Oral melanoma in dogs serves as an excellent translational model for human immunotherapy. However, additional study is necessary to comprehend the immune landscape of dog oral melanomas, including their similarity to human melanomas in this context.

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Since the development of the first vaccine against smallpox over two centuries ago, vaccination strategies have been at the forefront of significantly impacting the incidences of infectious diseases globally. However, the increase in the human population, deforestation and climate change, and the rise in worldwide travel have favored the emergence of new viruses with the potential to cause pandemics. The ongoing severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) pandemic is a cruel reminder of the impact of novel pathogens and the suboptimal capabilities of conventional vaccines.

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Investigation of exophthalmos and blood-colored discharge from the left ventral punctum in a dog was consistent with a conjunctival cyst in the orbit. 3-D prints of the cyst and surrounding facial bones identified a successful transconjunctival approach without an orbitotomy and patency of the left lacrimal duct was reestablished.

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Confronted with the rapid evolution and dissemination of antibiotic resistance, there is an urgent need to develop alternative treatment strategies for drug-resistant pathogens. Here, an unconventional approach is presented to restore the susceptibility of methicillin-resistant (MRSA) to a broad spectrum of conventional antibiotics via photo-disassembly of functional membrane microdomains. The photo-disassembly of microdomains is based on effective photolysis of staphyloxanthin, the golden carotenoid pigment that gives its name.

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The NC229 research consortium was created in 1999 in response to the emergence of porcine reproductive and respiratory syndrome virus (PRRSV), a viral agent responsible for devastating economic losses to the swine industry. The project follows the traditional "consortium" approach for Multistate Agricultural Research driven through the US State Agricultural Experiment Stations (SAES), wherein stakeholder-driven needs to combat swine infectious diseases are identified and scientific solutions pursued by combining funds from federal, state, commodity groups, and the animal health industry. The NC229 consortium was the main driving force in successfully competing for a USDA multi-station Coordinated Agricultural Project (PRRS CAP-I) in 2004-2008, immediately followed by a renewal for 2010-2014 (PRRS CAP-II)-, resulting in an overall record achievement of almost $10 million dollars.

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Confronted with the severe situation that the pace of resistance acquisition is faster than the clinical introduction of new antibiotics, health organizations are calling for effective approaches to combat methicillin-resistant (MRSA) infections. Here, an approach to treat MRSA through photolysis of staphyloxanthin, an antioxidant residing in the microdomain of membrane, is reported. This photochemistry process is uncovered through transient absorption imaging and quantitated by absorption spectroscopy, Raman spectroscopy, and mass spectrometry.

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Biodynamic digital holography of chemoresistance in a pre-clinical trial of canine B-cell lymphoma.

Biomed Opt Express

May 2018

Department of Physics and Astronomy, Purdue University, 525 Northwestern Ave, West Lafayette, IN 47907, USA.

Biodynamic digital holography was used to obtain phenotypic profiles of canine non-Hodgkin B-cell lymphoma biopsies treated with standard-of-care chemotherapy. Biodynamic signatures from the living 3D tissues were extracted using fluctuation spectroscopy from intracellular Doppler light scattering in response to the molecular mechanisms of action of therapeutic drugs that modify a range of internal cellular motions. The standard-of-care to treat B-cell lymphoma in both humans and dogs is a combination CHOP therapy that consists of doxorubicin, prednisolone, cyclophosphamide and vincristine.

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A 19-year-old castrated Arabian male horse presented for evaluation of a firm mass at the dorsal cervical region. Ultrasonography and computed tomography revealed multiple well defined fusiform structures within the atlantal bursa. Multiple glossy smooth, white to yellowish, flattened fusiform structures were removed surgically.

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There is a pressing need for novel and innovative therapeutic strategies to address infections caused by intracellular pathogens. Peptide nucleic acids (PNAs) present a novel method to target intracellular pathogens due to their unique mechanism of action and their ability to be conjugated to cell penetrating peptides (CPP) to overcome challenging delivery barriers. In this study, we targeted the RNA polymerase α subunit (rpoA) using a PNA that was covalently conjugated to five different CPPs.

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Extracellular Matrix Properties Regulate the Migratory Response of Glioblastoma Stem Cells in Three-Dimensional Culture.

Tissue Eng Part A

October 2015

1 Department of Agricultural and Biological Engineering, College of Engineering, Purdue University, West Lafayette, Indiana.

Diffuse infiltration across brain tissue is a hallmark of glioblastoma and the main cause of unsuccessful total resection that leads to tumor reappearance. A subpopulation termed glioblastoma stem cells (GSCs) has been directly related to aggressive invasion; nonetheless, their migratory characteristics and regulation by the microenvironment are still unknown. In this study, we developed a composite matrix of hyaluronan (HA) structurally supported by a collagen-oligomer fibril network to simulate the brain tumor extracellular matrix (ECM) composition.

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β-Catenin-regulated ALDH1A1 is a target in ovarian cancer spheroids.

Oncogene

April 2015

1] Department of Medicine, Indianapolis, IN, USA [2] Department of Biochemistry and Molecular Biology, Indianapolis, IN, USA [3] Indiana University Melvin and Bren Simon Cancer Center, Indianapolis, IN, USA [4] VA Roudebush Hospital, Indiana University School of Medicine, Indianapolis, IN, USA.

Cancer cells form three-dimensional (3D) multicellular aggregates (or spheroids) under non-adherent culture conditions. In ovarian cancer (OC), spheroids serve as a vehicle for cancer cell dissemination in the peritoneal cavity, protecting cells from environmental stress-induced anoikis. To identify new targetable molecules in OC spheroids, we investigated gene expression profiles and networks upregulated in 3D vs traditional monolayer culture conditions.

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