Publications by authors named "Chiachin Lee"

Article Synopsis
  • - LX9211 showed significant pain reduction in diabetic peripheral neuropathy (DPN) patients during a multicenter trial, with noticeable relief reported by the first week at a 10 mg dose.
  • - Higher doses of LX9211 were less effective, but side effects like dizziness and nausea were mostly mild.
  • - The results underscore the need to investigate both drug-based and natural treatment options, like flavonoids, for managing DPN.
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Precise regulation of Type I interferon signaling is crucial for combating infection and cancer while avoiding autoimmunity. Type I interferon signaling is negatively regulated by USP18. USP18 cleaves ISG15, an interferon-induced ubiquitin-like modification, via its canonical catalytic function, and inhibits Type I interferon receptor activity through its scaffold role.

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In nanostructure assemblies, the superposition of current paths forms microscopic electric circuits, and different circuit networks produce varying results, particularly when utilized as transistor channels for computing applications. However, the intricate nature of assembly networks and the winding paths of commensurate currents hinder standard circuit modeling. Inspired by the quantum collapse of superposition states for information decoding in quantum circuits, the implementation of analogous current path collapse to facilitate the detection of microscopic circuits by modifying their network topology is explored.

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Article Synopsis
  • - Conducting polymers are unique because they have π-electrons that allow them to be engineered for various electrical properties, ranging from semi-conductive to metallic, which makes them ideal for applications in sensors.
  • - These materials excel in sensor applications, providing benefits such as increased sensitivity, wider sensing ranges, and better mechanical durability, particularly when crafted into ultra-long fibers through electrospinning.
  • - The review discusses the fundamentals of conducting polymers, sensor design and operation, and highlights recent advancements in creating more efficient sensory devices, particularly focusing on nanofibers for wearable technology.
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The NLRP3 inflammasome is a complex multimeric signaling apparatus that regulates production of the pro-inflammatory cytokine IL-1β. To overcome both the variability among primary immune cells and the limitations of genetic manipulation of differentiated human or murine macrophages, we developed a simplified, reliable and relevant cell-based model for studying the NLRP3 inflammasome using the undifferentiated human myelomonocytic cell line THP1. Undifferentiated THP1 cells constitutively express NLRP3, and NLRP3 inflammasome activation occurred in response to canonical NLRP3 activation stimuli including nigericin, ATP, and urea crystals, culminating in pro-IL-1β cleavage, extracellular release of mature IL-1β, and pyroptosis.

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Promyelocytic leukemia nuclear bodies (PML-NBs) are PML-based nuclear structures that regulate various cellular processes. SUMOylation, the process of covalently conjugating small ubiquitin-like modifiers (SUMOs), is required for both the formation and the disruption of PML-NBs. However, detailed mechanisms of how SUMOylation regulates these processes remain unknown.

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