167 results match your criteria: "SUNY-University at Buffalo[Affiliation]"

The development of disease-modifying therapies (DMTs) for the treatment of multiple sclerosis (MS) has been highly successful in recent decades. It is now widely accepted that early initiation of DMTs after disease onset is associated with a better long-term prognosis. However, the question of when and how to de-escalate or discontinue DMTs remains open and critical.

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  • * By analyzing data from the Million Veteran Program and other cohorts, the study identifies 63 genetic loci linked to AMD, including 30 that were previously unknown, highlighting significant differences in risk among various ancestries.
  • * The findings reveal that certain genetic risk factors, like those found in the CFH locus, have varying effects based on ancestry, suggesting that targeted therapies could be developed by considering these genetic differences.
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  • Bulk deconvolution using single-cell RNA-seq is important for analyzing complex biological samples, but differences in sequencing technology can lead to inaccuracies.
  • The researchers created a new framework called DeMixSC that improves deconvolution by utilizing well-matched benchmark datasets to account for these technological discrepancies.
  • DeMixSC was tested on datasets from healthy retinas and ovarian cancer tissues, showing improved accuracy and the ability to reveal significant biological differences in patient groups, highlighting its usefulness in clinical applications.
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Our large, two campus (one urban and one suburban) and two track (RN-BSN and Entry-level BSN) program has revised our BSN curriculum to reflect the new Level One American Association of Colleges of Nursing (AACN) The Essentials: Core Competencies for Professional Nursing Education (AACN, 2021). This article describes the work to revise the curriculum to meet the demands of contemporary nursing education with increased elective choices for Generation Z learners, professional role courses on wellness and resiliency, a course on palliative care and symptom management, increased clinical hours to include virtual simulation and more community and public health experiences, and increased innovative student experiences with our clinical partners. A revised clinical evaluation tool (CET) was also developed to evaluate students in competency-based education and to reflect our new program outcomes.

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The genome has a gene cluster for the synthesis of galactosaminogalactan (GAG). The gene cluster includes the following: (1) UDP-glucose-4-epimerase to convert UDP-glucose and UDP--acetylglucosamine to UDP-galactose and UDP--acetylgalactosamine (NCU05133), (2) GAG synthase for the synthesis of an acetylated GAG (NCU05132), (3) GAG deacetylase (/NCW-1/NCU05137), (4) GH135-1, a GAG hydrolase with specificity for -acetylgalactosamine-containing GAG (NCU05135), and (5) GH114-1, a galactosaminidase with specificity for galactosamine-containing GAG (NCU05136). The deacetylase was previously shown to be a major cell wall glycoprotein and given the name of NCW-1 (non-GPI anchored cell wall protein-1).

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The chirality transfer phenomenon is attractive for enhancing the optical functionality of nanomaterials by inducing sensitivity to the circular polarization states of photons. An underexplored aspect is how material properties of the achiral semiconductor impact the induced chiroptical signatures. Here we apply atomistic time-dependent density functional theory simulations to investigate the material properties that influence the chiroptical signatures of a lead halide perovskite nanocrystal with a chiral molecule bound to the surface.

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Background: Prostate cancer is a significant health concern, particularly among African American (AA) men who exhibit higher incidence and mortality compared to European American (EA) men. Understanding the molecular mechanisms underlying these disparities is imperative for enhancing clinical management and achieving better outcomes.

Methods: Employing a multi-omics approach, we analyzed prostate cancer in both AA and EA men.

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Enhancing Deep Edge Detection through Normalized Hadamard-Product Fusion.

J Imaging

February 2024

Center for Computational Research, SUNY University at Buffalo, Buffalo, NY 14203, USA.

Deep edge detection is challenging, especially with the existing methods, like HED (holistic edge detection). These methods combine multiple feature side outputs (SOs) to create the final edge map, but they neglect diverse edge importance within one output. This creates a problem: to include desired edges, unwanted noise must also be accepted.

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Fitting high-resolution electron density maps from atomic models to solution scattering data.

Biophys J

December 2023

Department of Structural Biology, Jacobs School of Medicine and Biomedical Sciences, SUNY University at Buffalo, Buffalo, New York. Electronic address:

Solution scattering techniques, such as small- and wide-angle X-ray scattering (SWAXS), provide valuable insights into the structure and dynamics of biological macromolecules in solution. In this study, we present an approach to accurately predict solution X-ray scattering profiles at wide angles from atomic models by generating high-resolution electron density maps. Our method accounts for the excluded volume of bulk solvent by calculating unique adjusted atomic volumes directly from the atomic coordinates.

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Ecological Momentary Assessment (EMA) methods are increasingly used by translational scientists to study real-world behavior and experience. The ability to draw meaningful conclusions from EMA research depends upon participant compliance with assessment completion. Most EMA studies provide financial compensation for compliance, but little empirical evidence addresses the impact of reinforcement parameters on the level of compliance.

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Bulk deconvolution with single-cell/nucleus RNA-seq data is critical for understanding heterogeneity in complex biological samples, yet the technological discrepancy across sequencing platforms limits deconvolution accuracy. To address this, we introduce an experimental design to match inter-platform biological signals, hence revealing the technological discrepancy, and then develop a deconvolution framework called DeMixSC using the better-matched, i.e.

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  • Fungal glycosphingolipids (GSLs) are crucial for membrane function and vesicle trafficking in fungi, impacting their life cycle significantly.
  • Mutant studies reveal that the acidic GSL biosynthetic pathway is vital for fungal viability, with specific deletion mutations leading to lethal consequences.
  • The neutral GSL biosynthetic pathway is also essential, as its disruption affects various growth and developmental processes in the fungus.
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Galactofuranose is a constituent of the cell walls of filamentous fungi. The galactofuranose can be found as a component of N-linked oligosaccharides, in O-linked oligosaccharides, in GPI-anchored galactomannan, and in free galactomannan. The Neurospora genome contains a single UDP-galactose mutase gene (ugm-1/NCU01824) and two UDP-galactofuranose translocases used to import UDP-galactofuranose into the lumen of the Golgi apparatus (ugt-1/NCU01826 and ugt-2/NCU01456).

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MAP4Ks inhibition promotes retinal neuron regeneration from Müller glia in adult mice.

NPJ Regen Med

July 2023

Department of Ophthalmology, Xiang'an Hospital of Xiamen University; Fujian Provincial Key Laboratory of Ophthalmology and Visual Science; Fujian Engineering and Research Center of Eye Regenerative Medicine; Eye Institute of Xiamen University; School of Medicine, Xiamen University, Xiamen, Fujian, 361005, China.

Mammalian Müller glia (MG) possess limited regenerative capacities. However, the intrinsic capacity of mammalian MG to transdifferentiate to generate mature neurons without transgenic manipulations remains speculative. Here we show that MAP4K4, MAP4K6 and MAP4K7, which are conserved Misshapen subfamily of ste20 kinases homologs, repress YAP activity in mammalian MG and therefore restrict their ability to be reprogrammed.

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Fitting high-resolution electron density maps from atomic models to solution scattering data.

bioRxiv

June 2023

Department of Structural Biology, Jacobs School of Medicine and Biomedical Sciences, SUNY University at Buffalo, Buffalo, NY, USA.

Article Synopsis
  • Solution scattering techniques, like SWAXS, help analyze the structure of biological macromolecules in solution by generating accurate scattering profiles from atomic models.
  • The proposed method improves accuracy by eliminating free fitting parameters and adjusting for excluded solvent volume, resulting in high-quality fits to eight existing SWAXS profiles with minimal parameter changes needed.
  • This computationally efficient algorithm, available as open source software, enhances the comparison between atomic models and experimental data, while reducing overfitting risks in modeling.
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Droplet injection strategies are a promising tool to reduce the large amount of sample consumed in serial femtosecond crystallography (SFX) measurements at X-ray free electron lasers (XFELs) with continuous injection approaches. Here, we demonstrate a new modular microfluidic droplet injector (MDI) design that was successfully applied to deliver microcrystals of the human NAD(P)H:quinone oxidoreductase 1 (NQO1) and phycocyanin. We investigated droplet generation conditions through electrical stimulation for both protein samples and implemented hardware and software components for optimized crystal injection at the Macromolecular Femtosecond Crystallography (MFX) instrument at the Stanford Linac Coherent Light Source (LCLS).

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We conducted a genome-wide association study (GWAS) in a multiethnic cohort of 920 at-risk infants for retinopathy of prematurity (ROP), a major cause of childhood blindness, identifying 2 loci at genome-wide significance level (p<5×10-8) and 7 at suggestive significance (p<5×10-6) for ROP ≥ stage 3. The most significant locus, rs2058019, reached genome-wide significance within the full multiethnic cohort (p=4.96×10-9); Hispanic and Caucasian infants driving the association.

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Reconstruction of 3D density from solution scattering.

Methods Enzymol

January 2023

Department of Structural Biology, Jacobs School of Medicine and Biomedical Sciences, SUNY University at Buffalo, Buffalo, NY, United States. Electronic address:

Ab initio modeling methods have proven to be powerful means of interpreting solution scattering data. In the absence of atomic models, or complementary to them, ab initio modeling approaches can be used for generating low-resolution particle envelopes using only solution scattering profiles. Recently, a new ab initio reconstruction algorithm has been introduced to the scientific community, called DENSS.

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Room-temperature structural studies of SARS-CoV-2 protein NendoU with an X-ray free-electron laser.

Structure

February 2023

Biodesign Center for Applied Structural Discovery, Arizona State University, Tempe, AZ 85287-5001, USA; School of Molecular Sciences, Arizona State University, Tempe, AZ 85287-1604, USA. Electronic address:

NendoU from SARS-CoV-2 is responsible for the virus's ability to evade the innate immune system by cleaving the polyuridine leader sequence of antisense viral RNA. Here we report the room-temperature structure of NendoU, solved by serial femtosecond crystallography at an X-ray free-electron laser to 2.6 Å resolution.

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Methylphenidate (MP) is frequently prescribed to treat Attention-Deficit/Hyperactivity Disorder (ADHD); however, many patients with ADHD experience depression and anxiety. As such, concomitant administration of selective serotonin reuptake inhibitors such as fluoxetine (FLX) is common. Our laboratory and others have shown that MP impairs skeletal development in preclinical and clinical settings, and FLX has also been linked to skeletal deficits.

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With advances in X-ray free-electron lasers (XFELs), serial femtosecond crystallography (SFX) has enabled the static and dynamic structure determination for challenging proteins such as membrane protein complexes. In SFX with XFELs, the crystals are typically destroyed after interacting with a single XFEL pulse. Therefore, thousands of new crystals must be sequentially introduced into the X-ray beam to collect full data sets.

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Background: Chronic active antibody-mediated rejection (CAAMR) constitutes a dominant form of late allograft failure. Several treatment strategies directed at CAAMR have been attempted but proven ineffective at delaying kidney function decline or reducing donor-specific antibodies (DSA). We describe our single-center experience using tocilizumab in patients with CAAMR.

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This paper defines and analyzes the processes of "othering" as they manifest in the practice and praxis of nursing education. Othering is bound up in the establishment and reinforcement of norms, and shores up power inequities that negatively impact faculty, students, and patients. While previous analyses have addressed othering in nursing more broadly, this paper adds a consideration of the multiple processes of othering that operate within the context of nursing education spaces.

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