Publications by authors named "Weber J"

Tissue fluidification and collective motility are pivotal in regulating embryonic morphogenesis, wound healing, and tumor metastasis. These processes frequently require that each cell constituent of a tissue coordinates its migration activity and directed motion through the oriented extension of lamellipodium cell protrusions, promoted by RAC1 activity. While the upstream RAC1 regulators in individual migratory cells or leader cells during invasion or wound healing are well characterized, how RAC1 is controlled in follower cells remains unknown.

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Background: The free functional muscle gracilis transfer is an established approach in facial reanimation surgery; however, the significance of its neurotization and the patient's age is still inconclusive. Several donor nerves are available for facial reanimation using the free functional gracilis muscle transfer.

Objective: This retrospective cohort study investigates whether the masseteric nerve is an equally reliable donor nerve in both older and younger patients.

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Objective: To delineate the use of gender-biased language in letters of recommendation for Obstetrics and Gynecology fellowships and its impact on applicants.

Design: Fellowship letters of recommendation from 4 Obstetrics and Gynecology specialties at a single institution in 2020 were included.

Primary Outcome: frequency of agentic and communal language in letters of recommendation using Linguistics Inquiry Word Count software.

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Article Synopsis
  • The article provides updated guidelines for clinicians on systemic therapy options for melanoma, based on a systematic review by the American Society of Clinical Oncology Expert Panel.
  • New recommendations include using neoadjuvant pembrolizumab for resectable stage IIIB to IV melanoma, and adjuvant nivolumab or pembrolizumab for stage IIB-C disease.
  • Additionally, certain older treatments are no longer recommended for specific melanoma types, and new options are suggested for unresectable or metastatic cases.
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The origin and early evolution of life is generally studied under two different paradigms: bottom up and top down. Prebiotic chemistry and early Earth geochemistry allow researchers to explore possible origin of life scenarios. But for these "bottom-up" approaches, even successful experiments only amount to a proof of principle.

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The search for new drugs against COVID-19 and its causative agent, SARS-CoV-2, is one of the major trends in the current medicinal chemistry. Targeting capping machinery could be one of the therapeutic concepts based on a unique mechanism of action. Viral RNA cap synthesis involves two methylation steps, the first of which is mediated by the nsp14 protein.

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Aims: Click Chemistry is providing valuable tools to biomedical research, but its direct use in therapies remains nearly unexplored. For cancer treatment, nucleoside analogues (NA) such as 5-vinyl-2'-deoxyuridine (VdU) can be metabolically incorporated into cancer cell DNA and subsequently "clicked" to form a toxic product. The inverse electron-demand Diels-Alder (IEDDA) reaction between VdU and an acridine-tetrazine conjugate (PINK) has previously been used to label cell nuclei of cultured cells.

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A non-traditional approach for the synthesis of pyrrole carboxamides from pyrrole carboxaldehyde and formamides or amines with catalytic amounts of BuNI and TBHP as oxidants is reported herein. The method is operationally simple providing straightforward access to primary, secondary, and tertiary pyrrole carboxamides in good to excellent yields utilizing inexpensive reagents under mild conditions. Unlike traditional amidations that involve ionic reactions, a mechanistic study of our current method unveils the involvement of 2- or 3-pyrrole acyl radicals that are otherwise rarely postulated.

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Molybdenum (Mo) as essential micronutrient for plants, acts as active component of molybdenum cofactor (Moco). Core metabolic processes like nitrate assimilation or abscisic-acid biosynthesis rely on Moco-dependent enzymes. Although a family of molybdate transport proteins (MOT1) is known to date in Arabidopsis, molybdate homeostasis remained unclear.

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Outcomes for patients with melanoma have improved over the past decade with the clinical development and approval of immunotherapies targeting immune checkpoint receptors such as programmed death-1 (PD-1), programmed death ligand 1 (PD-L1) or cytotoxic T lymphocyte antigen-4 (CTLA-4). Combinations of these checkpoint therapies with other agents are now being explored to improve outcomes and enhance benefit-risk profiles of treatment. Alternative inhibitory receptors have been identified that may be targeted for anti-tumor immune therapy, such as lymphocyte-activation gene-3 (LAG-3), as have several potential target oncogenes for molecularly targeted therapy, such as tyrosine kinase inhibitors.

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Purpose: We previously showed that elevated frequencies of peripheral blood CD3+CD4+CD127-GARP-CD38+CD39+ T cells were associated with checkpoint immunotherapy resistance in patients with metastatic melanoma. In the present study, we sought to further investigate this population of ectoenzyme-expressing T cells (Teee).

Experimental Design: Teee derived from the peripheral blood of patients with metastatic melanoma were evaluated by bulk RNA-sequencing (RNA-seq) and flow cytometry.

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An automated accelerated salting-out assisted solvent extraction (A-ASASE) was developed. This approach made full use of the advantages of both the accelerated solvent extraction (ASE) technique and salting-out assisted liquid-liquid extraction (SALLE), without any modifications at the level of the ASE machine. The A-ASASE combined an automated extraction at high temperature/pressure and an enrichment step using eco-friendly solvents (e.

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Introduction: Intravenous thrombolysis (IVT) and mechanical thrombectomy (MT) are well-established, evidence-based, time-critical therapies that reduce morbidity and mortality in acute ischemic stroke (AIS) patients. The exclusion of intracerebral hemorrhage (ICH) is mandatory and has been performed by cerebral imaging to date. Mobile stroke units (MSUs) have been shown to improve functional outcomes by bringing cerebral imaging and IVT directly to the patient, but they have limited coverage.

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Article Synopsis
  • Coralsnakes from the genus Micrurus are venomous and found from the southern U.S. to southern South America, but there is still uncertainty about their diversity and classification.
  • The study specifically focuses on Micrurus nigrocinctus, which is distributed from Mexico to Colombia and has several subspecies.
  • Through genetic analysis of samples from Central America, researchers found that M. nigrocinctus consists of at least three distinct species that originated in the Pliocene, suggesting changes in how certain subspecies might be classified.
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Tumor-infiltrating lymphocyte (TIL) adoptive cell therapy is effective in treating malignant melanoma, but its success relies on the adequate ex vivo expansion of TIL. To assess correlates of TIL expansion, CD4+ and CD8+ TIL were analyzed by RNA sequencing (RNA-seq) and chromatin immunoprecipitation sequencing of acetylated histone 3. Patients were grouped into "TIL high" and "TIL low" based on division at the median number of TIL infused.

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Unilateral lung agenesis is a rare congenital abnormality that typically presents with respiratory distress after birth. Prognostic factors include the side of the lung affected along with the presence or absence of other congenital abnormalities. Prenatal imaging can make the diagnosis that can assist the healthcare team in preparing to care for the neonate, as well as set expectations for the family.

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  • The study validated the accuracy of an open-source AI algorithm for diagnosing melanoma, assessing its sensitivity and specificity based on skin lesion images from 435 participants.
  • The AI showed a sensitivity of 96.8% at a threshold of 95%, while dermatologists' accuracy in assessing melanoma risk improved after reviewing the AI's findings.
  • The results indicate the AI's potential to enhance decision-making in dermatology, though further larger trials are necessary to integrate it into clinical practice.
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  • The SARS-CoV-2 pandemic continues to pose significant health challenges globally, necessitating further investigation into its long-term effects and mechanisms.
  • NAPKON-HAP is a comprehensive, multi-centered study designed to follow patients for up to 36 months post-infection, focusing on understanding the acute and chronic impacts of COVID-19 across different severity levels.
  • This study aims to collect high-quality data and biospecimens to support ongoing research into COVID-19's pathophysiology and to improve patient outcomes.
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Triggered, indistinguishable single photons are crucial in various quantum photonic implementations. Here, we realize a novel n-i-n diode structure embedding semiconductor quantum dots: the gated device enables spectral tuning of the transitions and deterministic control of the charged states. Blinking-free single-photon emission and high two-photon indistinguishability are observed.

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Aggregation of the RNA-binding protein TAR DNA-binding protein 43 (TDP-43) is the key neuropathological feature of neurodegenerative diseases, including amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD). In physiological conditions, TDP-43 is predominantly nuclear, forms oligomers, and is contained in biomolecular condensates assembled by liquid-liquid phase separation (LLPS). In disease, TDP-43 forms cytoplasmic or intranuclear inclusions.

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  • The study aimed to determine the most important radiographic images for classifying degenerative spondylolisthesis and detecting instability.
  • Multiple imaging views were assessed, including neutral upright, standing flexion, seated lateral x-rays, and MRIs, due to the complexity of DS.
  • Among the imaging modalities, seated lateral and standing flexion radiographs produced the highest slip percentages and kyphosis, while MRI had the lowest measurements, yet both seated lateral and standing flexion effectively detected instability.
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The human prefrontal cortex (PFC) constitutes the structural basis underlying flexible cognitive control, where mixed-selective neural populations encode multiple task features to guide subsequent behavior. The mechanisms by which the brain simultaneously encodes multiple task-relevant variables while minimizing interference from task-irrelevant features remain unknown. Leveraging intracranial recordings from the human PFC, we first demonstrate that competition between coexisting representations of past and present task variables incurs a behavioral switch cost.

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Background And Objectives: Hepatitis E virus (HEV) is an underrecognized and emerging infectious disease that may threaten the safety of donor blood supply in many parts of the world. We sought to elucidate whether our local community blood supply is at increased susceptibility for transmission of transfusion-associated HEV infections.

Materials And Methods: We screened 10,002 randomly selected donations over an 8-month period between 2017 and 2018 at the Stanford Blood Center for markers of HEV infection using commercial IgM/IgG serological tests and reverse transcriptase quantitative polymerase chain reaction assays (RT-qPCR).

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  • Sleep helps our memories get stronger, and there are special brain waves that help with this process.
  • One type of brain wave called "ripples" happens in two areas of the brain that work together to store memories.
  • Scientists found that these ripples have different jobs: some help send information smoothly while others help avoid confusion, keeping our memories clear.
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