Publications by authors named "E P Schmidt"

Sporotrichosis is a worldwide zoonotic disease that is spreading and causing epidemics in large urban centers. Cats are the most susceptible species to develop the disease, which could cause significant systemic lesions. The aim was to investigate and to identify predictive indicators of disease progression by correlations between the blood profile (hematological and biochemical analytes) and cutaneous lesion patterns of 70 cats diagnosed with .

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Dirofilariosis, a mosquito-borne disease caused by and , affects canids, felids and occasionally humans. Recent evidence suggests that prevalence is rising in the canine populations in several areas of Brazil, even those historically considered to be non-endemic, highlighting the need for ongoing surveillance. However, prevalence studies are frequently based on inference from single diagnostic methods, and it is acknowledged that this may lead to biases and an underestimation of the disease situation.

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Carbohydrate sulfation plays a pivotal role in modulating the strength of Siglec-glycan interactions. Recently, new aspects of Siglec binding to sulfated cell surface carbohydrates have been discovered, but the class of glycan presenting these sulfated Siglec ligands has not been fully elucidated. In this study, the contribution of different classes of glycans to and Siglec ligands was investigated within cells expressing the carbohydrate sulfotransferase 1 (CHST1) or CHST2.

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Importance: Evaluation of racial and ethnic differences in apical suspension during prolapse repair is crucial for equitable gynecological care.

Objective: The objective was to assess racial and ethnic disparities in apical suspension during native tissue prolapse repair.

Study Design: We analyzed data from the 2019 Healthcare Cost and Utilization Project National Inpatient Sample and Nationwide Ambulatory Surgery Sample, using Current Procedural Terminology and International Classification of Diseases, Tenth Revision, codes.

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Soft corals are prolific producers of terpenoids, such as pseudopterosins. The exact biosynthetic pathway of these anti-inflammatory diterpene glycosides has eluded the scientific community for decades. Using a forward genetic approach, we have identified, cloned, and expressed the key genes involved in pseudopterosin biosynthesis.

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