Publications by authors named "Jihae Lee"

Background: Osteoporosis is a bone remodeling disease characterized by an imbalance between bone formation and resorption, leading to bone fragility. Current treatments focus on bone resorption suppression but often have adverse effects. This study aimed to explore the potential of sericin, a silkworm-derived protein, as a dual-action therapeutic agent that enhances bone formation through its component L-serine and inhibits bone resorption via D-serine, which is derived from L-serine by the action of serine racemase.

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This study presents an advanced food detection platform that integrates filter-assisted sample preparation (FASP) with a bifunctional linker-based biosensor for on-site detection of Escherichia coli O157:H7 as a model case. FASP isolates bacteria from food samples through multi-filter preprocessing, significantly enhancing the specificity, sensitivity, and reproducibility of the subsequent biosensor analysis. This platform can detect E.

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Monolayer transition metal dichalcogenides are promising materials that not only are atomically thin but also have direct bandgaps, making them highly regarded in optics and optoelectronics. However, their photoluminescence exhibits almost random polarization at room temperature. The emission is also omnidirectional and weak due to the low quantum yield.

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Single-cell technologies have enhanced comprehensive knowledge regarding the human brain by facilitating an extensive transcriptomic census across diverse brain regions. Nevertheless, understanding the cellular and temporal specificity of neurological disorders remains ambiguous due to developmental variations. To address this gap, we illustrated the dynamics of disorder risk gene expression under development by integrating multiple single-cell RNA sequencing datasets.

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Accurately predicting the distance an object will travel to its destination is very important in various sports. Acceleration sensors as a means of real-time monitoring are gaining increasing attention in sports. Due to the low energy output and power density of Triboelectric Nanogenerators (TENGs), recent efforts have focused on developing various acceleration sensors.

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In this study, we investigated the anti-hypertensive properties of mulberry products by modulating the renin-angiotensin system (RAS). Comparative analysis showed that the ethyl acetate fractions, particularly from the Cheongil and Daeshim cultivars, contained the highest levels of polyphenols and flavonoids, with concentrations reaching 110 mg gallic acid equivalent (GE)/g and 471 mg catechin equivalent (CE)/g of extract, respectively. The ethyl acetate fraction showed superior angiotensin-converting enzyme (ACE) inhibitory activity, mainly because of the presence of the prenylated flavonoids kuwanon G and H.

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Nanoimprint lithography is gaining popularity as a cost-efficient way to reproduce nanostructures in large quantities. Recent advances in nanoimprinting lithography using high-index nanoparticles have demonstrated replication of photonic devices, but it is difficult to confer special properties on nanostructures beyond general metasurfaces. Here, we introduce a novel method for fabricating light-emitting metasurfaces using nanoimprinting lithography.

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Purpose: To assess radiation-induced fibrosis (RIF) using shear-wave elastography (SWE) in patients with breast cancer who received radiotherapy (RT) after breast conserving surgery.

Methods: Forty-one patients were enrolled in a prospective study before RT. SWE and B-mode ultrasonography were performed to measure elasticity.

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Objectives: This study aimed to compare the oncological outcomes of partial versus superficial or total parotidectomy for superficial T1 or T2 primary parotid cancers and investigate their prognostic factors and recurrence patterns.

Methods: The medical records of 77 patients with T1-2 primary parotid malignancies between May 2003 and March 2022 were retrospectively reviewed. Univariate and multivariate analyses were performed to evaluate the prognostic factors associated with overall survival, disease-free survival, and local and distant recurrence.

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Purpose: This study aimed to gain a broader understanding of the clinical practice experience of Doctor of Philosophy nurses working in nursing positions.

Method: Participants were 15 full-time nurses who are current Doctor of Philosophy candidates or have acquired a Doctor of Philosophy in nursing. Data were collected through face-to-face interviews and the participants' diaries, which were analysed using a descriptive qualitative method.

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Low-dimensional light-emitting materials have been actively investigated due to their unprecedented optical and optoelectronic properties that are not observed in their bulk forms. However, the emission from low-dimensional light-emitting materials is generally weak and difficult to use in nanophotonic devices without being amplified and engineered by optical cavities. Along with studies on various planar optical cavities over the last decade, the physics of cavity-emitter interactions as well as various integration methods are investigated deeply.

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Article Synopsis
  • - Secure packaging and transportation of light-sensitive chemical and biomedical materials are essential for protecting the environment and public health, which is where optical metasurfaces can play a significant role.
  • - The proposed metasurface utilizes TiO resin-based nanoresonators to create a flexible, broad-band, and polarization-insensitive design that is efficient in the visible light range.
  • - Using an innovative UV nanoimprint lithographic technique allows for quick and efficient production of these flexible structures, making them ideal for applications in bendable displays, wearable tech, and holographic labeling.
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Article Synopsis
  • A study tested the effects of a green tea extract (GTB1) on individuals with diarrhea-predominant irritable bowel syndrome (IBS-D) over a 4-week period, comparing it to a placebo.
  • Participants who took GTB1 reported significantly better relief from symptoms like abdominal pain and bloating, with a marked decrease in diarrhea frequency compared to those on placebo.
  • The results suggest that GTB1 not only improved IBS-D symptoms but also enhanced overall quality of life and beneficial gut microbiota among participants.
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The holographic display, one of the most realistic ways to reconstruct optical images in three-dimensional (3D) space, has gained a lot of attention as a next-generation display platform for providing deeper immersive experiences to users. So far, diffractive optical elements (DOEs) and spatial light modulators (SLMs) have been used to generate holographic images by modulating electromagnetic waves at each pixel. However, such architectures suffer from limitations in terms of having a resolution of only a few microns and the bulkiness of the entire optical system.

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Hypertriglyceridemia, a symptom of elevated triglyceride level in the blood, is a potent risk factor for cardiovascular and metabolic disorders. Among the numerous treatments to regulate circulating triglyceride levels, fibrates are widely used to treat hypertriglyceridemia, although they also have side effects such as hepatotoxicity and gallstone formation. In the present study, we aimed to investigate the blood triglyceride-lowering effects of a naturally fermented green tea extract (NFGT) and the underlying mechanisms on hypertriglyceridemia in vitro and in vivo models.

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Vectorial holography has gained a lot of attention due to the promise of versatile polarization control of structured light for enhanced optical security and multi-channel optical communication. Here, we propose a bifunctional metasurface which combines both structural color printing and vectorial holography with eight polarization channels towards advanced encryption applications. The structural colour prints are observed under white light while the polarization encoded holograms are reconstructed under laser illumination.

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The sudden outbreak of novel coronavirus 2019 (COVID-19) increased the diagnostic burden of radiologists. In the time of an epidemic crisis, we hope artificial intelligence (AI) to reduce physician workload in regions with the outbreak, and improve the diagnosis accuracy for physicians before they could acquire enough experience with the new disease. In this paper, we present our experience in building and deploying an AI system that automatically analyzes CT images and provides the probability of infection to rapidly detect COVID-19 pneumonia.

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Purpose: We performed breast-conserving surgery (BCS) using periareolar incisions for cancers located far from the nipple-areolar complex (NAC) and examined if BCS via a periareolar incision maximized cosmesis and maintained oncologic safety. One of the most important goals of BCS is to improve cosmesis after surgery and quality of life, but the skin incision can affect cosmesis based on the tumor location.

Methods: Fifty-five patients with breast cancers located far from the NAC underwent BCS via periareolar incisions between January 2017 and April 2018.

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Background: Coronavirus-2 (COVID-19) is a global pandemic. As of August 21, mortality from COVID-19 has reached almost 200,000 people, with the United States leading the globe in levels of morbidity and mortality. Large volumes of high-acuity patients, particularly those of advanced age and with chronic comorbidities, have significantly increased the need for palliative care resources beyond usual capacity.

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Trillions of microorganisms reside in the hosts' gut. Since diverse activities of gut microbiota affect the hosts' health status, maintenance of gut microbiota is important for maintaining human health. Green tea (GT) has multiple beneficial effects on energy metabolism with antiobesity, antidiabetic, and hypolipidemic properties.

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This case series examines the clinical characteristics and outcomes of patients who received intervention by a novel coronavirus disease 2019 palliative care response team, focused on providing high-quality goals-of-care conversations in time-critical situations.

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PAC-14028 (Asivatrep: CHFNOS) cream is a novel, topical nonsteroidal, anti-inflammatory, and TRPV1 (transient receptor potential vanilloid subfamily, member 1) antagonist for the treatment of mild to moderate atopic dermatitis. Concerns about the risk of tumor development by TRPV1 blockade in the skin have been prompted, but these findings were proved to be indirect or are still controversial. This study was tested to determine whether TRPV1 selective antagonist, PAC-14028 cream is safe from the promotion of skin tumorigenesis in the two-stage carcinogenesis model.

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