Publications by authors named "Kuan C"

Microglia and the border-associated macrophages contribute to the modulation of cerebral blood flow, but the mechanisms have remained uncertain. Here, we show that microglia regulate the cerebral blood flow baseline and the responses to whisker stimulation or intra-cisternal magna injection of adenosine triphosphate, but not intra-cisternal magna injection of adenosine in mice model. Notably, microglia repopulation corrects these cerebral blood flow anomalies.

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Three new bithiophene imide (BTI)-based organic small molecules, (), (), and (), with varied alkyl side chains, were developed and employed as self-assembled monolayers (SAMs) applied to NiOx films in tin perovskite solar cells (TPSCs). The NiOx layer has the effect of modifying the hydrophilicity and the surface roughness of ITO for SAM to uniformly deposit on it. The side chains of the SAM molecules play a vital role in the formation of a high-quality perovskite layer in TPSCs.

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Flexible and wearable electronics are experiencing rapid growth due to the increasing demand for multifunctional, lightweight, and portable devices. However, the growing demands of interactive applications driven by the rise of AI reveal the inadequate connectivity of current connection technologies. In this work, we successfully leverage memristive technology to develop a flexible radio frequency (RF) switch, optimized for 6G-compatible communication systems and adaptable to flexible applications.

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Background: Stroke is a critical complication of cardiac surgery that results in increased mortality and morbidity. Limited treatment options are available for patients with severe neurological deficits, such as impaired consciousness. Acupuncture is a well-known integrative management method for stroke patients.

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  • - Microglia play a key role in regulating cerebral blood flow (CBF), particularly during activities like whisker stimulation or ATP injection, affecting both baseline levels and increases in blood flow.
  • - Depleting microglia reduces activity-dependent blood flow responses, but the body still responds normally to other stimuli like adenosine, indicating a specific function for microglia in this process.
  • - The regulation of CBF by microglia involves the ATP-sensing receptor P2ry12 and the enzyme CD39, which converts extracellular ATP into adenosine, crucial for neurovascular coupling and maintaining healthy blood flow responses.
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  • - The development of Sn-based perovskite solar cells (PSCs) shows promise for eco-friendly solar technology, but challenges remain due to expensive hole transport layers (HTL) and inefficient interface interactions.
  • - Researchers introduced a halogen radical chemical bridging strategy that eliminates the need for HTLs and improves the interface between perovskites and substrates, leading to significant enhancements in performance.
  • - This innovative approach increased the efficiency of HTL-free Sn-based PSCs from 6.79% to 14.20%, achieved record stability for 2000 hours, and can also be applied to Pb-based PSCs, resulting in efficiencies of up to 22.27%.
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  • The study focuses on the synthesis of triphenylamine-based Y-shaped organic sensitizers (TPA-MN, TPA-CA, TPAT-MN, TPAT-CA) to create self-assembled monolayers (SAMs) for improving the efficiency of tin-based perovskite solar cells (TPSCs).
  • A thorough analysis of these SAMs revealed differences in their crystalline and optoelectronic properties, with the device performance ranking showing TPAT-CA achieving the highest power conversion efficiency (PCE) at 8.1%, outperforming the other SAMs.
  • The TPAT-CA SAM exhibited superior characteristics, such as enhanced hole extraction and mobility,
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  • This study aimed to evaluate the effects of bitter melon extract on blood sugar levels in adults with prediabetes over 12 weeks.
  • Participants were divided into groups receiving low-dose (300 mg) or high-dose (600 mg) bitter melon extract, or a placebo.
  • Results showed that both bitter melon groups had smaller increases in blood glucose compared to the control group, suggesting that bitter melon may be beneficial for managing glucose levels in individuals with prediabetes.
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  • * A custom bioreactor was developed to create optimal culture conditions by using brief mechanical rotation to foster better aggregate sizes and improve cell viability, achieving a notable 144-fold increase in cell proliferation.
  • * After 14 days, the NK-92MI cells retained their characteristics and displayed increased IFN-γ expression following IL-18 activation, enhancing their ability to target cancer cells effectively, indicating a valuable method for advancing immunocellular therapies.
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  • The study examines the link between cervical lymph node dissection in head and neck cancer patients and an increased risk of dementia.
  • Among 251 patients analyzed, a small number developed dementia post-surgery, suggesting a correlation with the extent of lymphatic surgery performed.
  • Findings emphasize the need to consider the impact of lymphatic drainage on brain health when planning surgical approaches for head and neck cancer.
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Successful resistance to disease-causing pathogens is underpinned by properly regulated immune signalling and defence responses in plants. The plant immune system is controlled at multiple levels of gene and protein regulation-from chromatin-associated epigenetic processes to protein post-translational modifications. Optimal fine-tuning of plant immune signalling and responses is important to prevent plant disease development, which is being exacerbated by a globally changing climate.

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  • * A 22-year-old female experienced chronic abdominal pain and was found to have a large mass during surgery, initially suspected to be related to ovarian issues.
  • * The mass was successfully removed through laparotomy with no complications, and histopathology confirmed it as E-LAM; this case highlights effective management of E-LAM with positive patient outcomes.
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  • Chronic wounds can take a long time to heal because of too much swelling and not enough new blood vessels forming.
  • Researchers created a special gel that releases healing substances in two stages: first, to reduce inflammation, followed by nutrients that help new blood vessels grow.
  • Tests in the lab and in mice showed that this gel helps wounds heal faster by controlling swelling and encouraging healing cells to do their job better.
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Background: Chronic venous leg ulcers (VLUs) are a common manifestation of chronic venous insufficiency, accounting for up to 70% of all chronic leg ulcers. Patients sustained refractory ulcers and persistent phleboedema even with a combination of different treatment methods. Lymphovenous bypass (LVB) has shown promising results in patients with lymphedema.

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  • Achieving high cell transfection efficiency is crucial for medical applications, especially with natural killer (NK) cells, which pose challenges in gene delivery.
  • This study introduces a modified non-viral gene transfection method using calcium phosphate/DNA nanoparticles (pDNA-CaP NPs) combined with low-voltage pulse electroporation to enhance gene introduction into NK-92 cells.
  • The results showed that the pDNA-CaP NPs had a favorable size and DNA entrapment efficiency, leading to improved transfection efficiency and cell viability three days after treatment compared to traditional methods.
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Strain Lactiplantibacillus plantarum D1 with bacteriocin producing ability was found in the intestine of Gambusia affinis. The bacteriocin was found to have high inhibitory activity against multiple Streptococcus species and several other Gram-positive and Gram-negative bacteria. Bacteriocin was purified from culture supernatant by ion-exchange chromatography, Sep-Pak C cartridge, and reverse-phase high-performance liquid chromatography (RP-HPLC).

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Tin perovskite solar cells (TPSCs) were developed by adding the co-cations acetamidinium (AC) and rubidium (Rb) in varied proportions based on the FASnI structure (E1). We found that adding 10% AC and 3% Rb can optimize the device (E1AC10Rb3) to attain an efficiency of power conversion of 14.5% with great shelf- and light-soaking stability.

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Three functionalized thienopyrazines (TPs), TP-MN (1), TP-CA (2), and TPT-MN (3) were designed and synthesized as self-assembled monolayers (SAMs) deposited on the NiOx film for tin-perovskite solar cells (TPSCs). Thermal, optical, electrochemical, morphological, crystallinity, hole mobility, and charge recombination properties, as well as DFT-derived energy levels with electrostatic surface potential mapping of these SAMs, have been thoroughly investigated and discussed. The structure of the TP-MN (1) single crystal was successfully grown and analyzed to support the uniform SAM produced on the ITO/NiOx substrate.

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Postoperative tissue adhesion and poor tendon healing are major clinical problems associated with tendon surgery. To avoid postoperative adhesion and promote tendon healing, we developed and synthesized a membrane to wrap the surgical site after tendon suturing. The bilayer-structured porous membrane comprised an outer layer [1,4-butanediol diglycidyl ether cross-linked with carboxymethyl cellulose (CX)] and an inner layer [1,4-butanediol diglycidyl ether cross-linked with polysaccharides and carboxymethyl cellulose (CXB)].

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Objectives: To explore the correlation between mitochondrial quantity and the blastocyst development timeline as well as their respective contributions to early pregnancy.

Methods: A retrospective study was conducted using a dataset comprising 2,633 embryos that underwent preimplantation genetic testing for aneuploidy (PGT-A) between January 2016 and December 2023. The study was divided into three subsets to address distinct aspects: the representativeness of a single trophectoderm (TE) biopsy for mitochondrial quantity (n=43), the correlation between morphokinetic features and mitochondrial quantity (n=307), and the association analysis among mitochondrial quantity, blastocyst timeline factor, and reproductive outcomes (n=2,283).

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High-entropy alloys (HEAs) provide new research avenues for alloy combinations in the periodic table, opening numerous possibilities in novel-alloy applications. However, their electrical characteristics have been relatively underexplored. The challenge in establishing an HEA electrical conductivity model lies in the changes in electronic characteristics caused by lattice distortion and complexity of nanostructures.

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Posterior capsule opacification (PCO) is a predominant postoperative complication, often leading to visual impairment due to the aberrant proliferation and adhesion of lens epithelial cells (LECs) and protein precipitates subsequent to intraocular lens (IOL) implantation. To address this clinical issue, a foldable and antifouling sharp-edged IOL implant based on naturally-derived cellulose hydrogel is synthesized. The mechanical strength and transparency of the hydrogel is enhanced via repeated freeze-thaw (FT) cycles.

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  • - Olmesartan, a medication for high blood pressure, can lead to a rare gastrointestinal issue called enteropathy that develops over time, often causing severe malabsorption problems and complications like poor blood flow to organs.
  • - A case study describes a 43-year-old woman who experienced severe diarrhea and liver problems after taking olmesartan for two weeks, highlighting the seriousness of this complication.
  • - The case underscores the importance for doctors to be vigilant about potential enteropathy and liver issues in patients using olmesartan, as stopping the medication led to quick recovery from diarrhea and liver function normalization.
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Border-associated macrophages (BAMs) are tissue-resident macrophages that reside at the border of the central nervous system (CNS). Since BAMs originate from yolk sac progenitors that do not persist after birth, the means by which this population of cells is maintained is not well understood. Using two-photon microscopy and multiple lineage-tracing strategies, we determine that CCR2 monocytes are significant contributors to BAM populations following disruptions of CNS homeostasis in adult mice.

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Current synthetic grafts for ligament rupture repair often fail to integrate well with the surrounding biological tissue, leading to complications such as graft wear, fatigue, and subsequent re-rupture. To address this medical challenge, this study aims at advancing the development of a biological ligament through the integration of physiologically-inspired principles and tissue engineering strategies. In this study, interfacial polyelectrolyte complexation (IPC) spinning technique, along with a custom-designed collection system, to fabricate a hierarchical scaffold mimicking native ligament structure, is utilized.

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