Publications by authors named "Jared Moon"

Study Objective: Fellowship program directors (FPDs) play an important role in the development of fellows and learners, but little is known about their demographics. This cross-sectional study aims to examine the characteristics of minimally invasive gynecologic surgery (MIGS) FPDs.

Design: A retrospective cross-sectional study.

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S-Adenosyl methionine (SAM) is a critical metabolite involved in numerous cellular processes, including DNA methylation and gene expression regulation. Understanding the spatiotemporal dynamics of SAM within living cells is essential for deciphering its roles in maintaining cell homeostasis and in disease development. Here, we describe a protocol based on a recently reported SAM sensor exploiting a fluorogenic RNA and an RNA three-way junction for visualizing SAM dynamics in cultured mammalian cells.

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Purpose: Papilledema is a very rare complication of leukemia therapies, and particularly tyrosine kinase inhibitor (TKI) therapy. Targeted oncologic therapies are becoming increasingly popular, so it is increasingly important to report rare adverse effects. We present a case of probable papilledema in the setting of ponatinib therapy for acute lymphoblastic leukemia.

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Background: Ophthalmology residency programs are highly competitive and each year there are many unmatched reapplicants who must make time-sensitive decisions on how to prepare for their reapplication. Our analysis of reapplication factors will be the first evidence-based guide to reapplying ophthalmology.

Objective: To determine the components of a reapplicants application that contribute and that do not contribute to ophthalmology residency match success.

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Numerous studies have shown how RNA molecules can adopt elaborate three-dimensional (3D) architectures. By contrast, whether DNA can self-assemble into complex 3D folds capable of sophisticated biochemistry, independent of protein or RNA partners, has remained mysterious. Lettuce is an in vitro-evolved DNA molecule that binds and activates conditional fluorophores derived from GFP.

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Purpose: This study assesses readability, suitability, and accountability of online uveitis patient education materials (PEMs).

Methods: Two uveitis specialists reviewed the top 10 websites on Google for keyword "uveitis," with a PubMed review control. Readability was assessed using an online calculator, suitability using the Suitability Assessment of Materials (SAM) tool, and accountability using JAMA benchmarks.

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Purpose: To examine the characteristics of pediatric ophthalmology fellowship program directors (FPDs) through cross-sectional analysis.

Methods: All pediatric ophthalmology FPDs whose programs participated in the San Francisco Match in January 2020 were included. Information was collected through publicly available sources.

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Numerous processes contribute to the regulation of G protein-coupled receptors (GPCRs), but relatively little is known about rapid mechanisms that control signaling on the seconds time scale or regulate cross-talk between receptors. Here, we reveal that the ability of some GPCR kinases (GRKs) to bind Gα both drives acute signaling desensitization and regulates functional interactions between GPCRs. GRK2/3-mediated acute desensitization occurs within seconds, is rapidly reversible, and can occur upon local, subcellular activation.

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RNA detection is important in diverse diagnostic and analytical applications. RNAs can be rapidly detected using molecular beacons, which fluoresce upon hybridizing to a target RNA but require oligonucleotides with complex fluorescent dye and quencher conjugations. Here, we describe a simplified method for rapid fluorescence detection of a target RNA using simple unmodified DNA oligonucleotides.

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A 40-year-old woman was referred for the assessment of bilateral corneal opacities with gradual visual decline over the course of the past decade. Her past ocular history is significant for bilateral amblyopia and strabismus surgery in both eyes before age 5. The patient's parents were told by her childhood ophthalmologist that she had a hereditary disorder.

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Article Synopsis
  • Scientists can use special pieces of RNA to detect tiny molecules in living cells, but making these RNA devices can be tricky.
  • They created a new way to design these RNA sensors using stable "three-way junction" structures that can glow when they find the right small molecule.
  • This method helps them measure important substances in cells, like S-adenosylmethionine, in real-time and can work with different types of RNA sensors.
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Obese patients are at higher risk for surgical complications and consist of a large portion of podiatric patients. Obese patients are additionally at increased risk of developing specific podiatric conditions, and it is important to be able to identify and appropriately treat these conditions accordingly. Initially, conservative treatment is adequate for a variety of pathologic conditions related to obesity.

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Quantitative measurement of transcription rates in live cells is important for revealing mechanisms of transcriptional regulation. This is particularly challenging when measuring the activity of RNA polymerase III (Pol III), which transcribes growth-promoting small RNAs. To address this issue, we developed Corn, a genetically encoded fluorescent RNA reporter suitable for quantifying RNA transcription in cells.

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Genetically encoded fluorescent ribonucleic acids (RNAs) have diverse applications, including imaging RNA trafficking and as a component of RNA-based sensors that exhibit fluorescence upon binding small molecules in live cells. These RNAs include the Spinach and Spinach2 aptamers, which bind and activate the fluorescence of fluorophores similar to that found in green fluorescent protein. Although additional highly fluorescent RNA-fluorophore complexes would extend the utility of this technology, the identification of novel RNA-fluorophore complexes is difficult.

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First metatarsophalangeal joint arthrodesis is a useful procedure for various first ray pathologic entities. Multiple constructs for fixation have provided successful fusion. A retrospective study of 21 feet (18 patients) was performed after first metatarsophalangeal joint fusion using crossed Kirschner wires or compression fixation with cannulated screws followed by the application of a 2-hole low-profile partially locking titanium plate.

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Several hammertoe implant devices have recently been introduced in an attempt to provide optimal fixation for proximal interphalangeal joint arthrodesis. This article reviews these implants individually, and discusses their advantages and disadvantages. There is a lack of research with long-term follow-up available for these devices.

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This article reviews the current literature on first metatarsophalangeal joint arthrodesis rates using various forms of fixation, as well as reviewing biomechanical studies comparing the strengths of the different fixation options that are available.

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