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Introduction: The ingestion of nanomaterials (NMs) may impair the intestinal barrier, but the underlying mechanisms remain evasive, and evidence has not been systematically gathered or produced. A mechanistic-based approach would be instrumental in assessing whether relevant NMs disrupt the intestinal barrier, thereby supporting the NM risk assessment in the food sector.

Methods: In this study, we developed an adverse outcome pathway (AOP) based on biological plausibility and by leveraging information from an existing NM-relevant AOP that leads to hepatic outcomes.

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Objective: This scoping review aims to identify and map the use of the Fundamentals of Care Framework in nursing education to provide insights into curriculum development that can benefit educators, health care professionals, and policy makers in educational contexts.

Introduction: The Fundamentals of Care Framework offers a comprehensive approach for conceptualizing and delivering high-quality, person-centered fundamental care. Use of the framework in education is shown to enhance critical thinking, establish a shared language for nursing care, and increase understanding of person-centered care.

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The aim of this article is to comprehensively review the multimodal imaging (MMI) features that define perifoveal vascular anomalous complex (PVAC) and to update the optimal treatment strategies for this disorder with a focus also on the underlying pathogenetic mechanisms. This systematic review was performed based on a search of the PubMed and Embase databases of relevant papers on the subject of PVAC. PVAC is characterized by well-defined MMI findings, including remarkable morphological features with optical coherence tomography (OCT) and OCT angiography (OCTA).

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This work aimed to propose the reuse of processing waste from the Sicilian almond ( Batsch.) cultivar Tuono for the formulation of a new functional baked product (muffin) that is gluten- and lactose-free. Muffins were prepared using orange juice, rice flour, extra virgin olive oil, and enriched almond skin (3% and 6% /).

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Atomically intimate assembly of dual metal-oxide interfaces for tandem conversion of syngas to ethanol.

Nat Nanotechnol

November 2024

Key Laboratory of Precision and Intelligent Chemistry, School of Chemistry and Materials Science, University of Science and Technology of China, Hefei, China.

Selective conversion of syngas to value-added higher alcohols (containing two or more carbon atoms), particularly to a specific alcohol, is of great interest but remains challenging. Here we show that atomically intimate assembly of FeO-Rh-ZrO dual interfaces by selectively architecting highly dispersed FeO on ultrafine raft-like Rh clusters supported on tetragonal zirconia enables highly efficient tandem conversion of syngas to ethanol. The ethanol selectivity in oxygenates reached ~90% at CO conversion up to 51%, along with a markedly high space-time yield of ethanol of 668.

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