Publications by authors named "Tin-Yi Chu"

Aims: While systemic management of high risk colon cancer is well addressed, advances in local management remain incremental. This study aims to identify a group of colon cancer patients where local management remains a challenge, and where intensifying local treatment with radiotherapy is potentially beneficial to minimise the risk of an R1 resection.

Materials And Methods: The patients with select cT4 locally advanced primary colon (LAPC) (n = 40) and locally recurrent colon (LRC) (n = 48) adenocarcinomas who received neoadjuvant radiotherapy from 2005 to 2020 were studied.

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  • Lung cancer is common, but understanding how normal lung cells transform into cancer cells is still a challenge.
  • Researchers created a model to analyze the structural dynamics of chromosomes in both normal lung cells and lung cancer A549 cells, highlighting differences in their structural characteristics.
  • The findings indicate that lung cancer cells exhibit greater fluctuations and phase separation in chromosome structure, along with a higher occurrence of certain conformational changes that contribute to cancer development, revealing potential mechanisms that could aid in cancer prevention and treatment.
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  • A study was conducted to evaluate if enhanced recovery after surgery (ERAS) improves overall survival and disease-free survival for patients undergoing laparoscopic distal gastrectomy for gastric cancer compared to conventional care.
  • 527 patients participated in the multicenter trial, which assessed outcomes like complications, recovery time, and medical expenses, with a follow-up of about 42 months.
  • Results showed that ERAS patients had a significantly higher 3-year overall survival (86.56%) and disease-free survival (79.57%), and experienced fewer complications and shorter hospital stays than those receiving conventional care.
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  • Metal halide perovskites (MHPs) are popular for their low cost and performance, aided by their unique defect dynamics.
  • Research focused on how defects like grain boundaries and lead interstitials create new chemical species that destabilize material properties, preventing recovery to their original structure.
  • Long-lasting defects at grain boundaries negatively affect charge mobility and lifetime, emphasizing the need for effective strategies to manage these defects for improved performance.
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Purpose: To investigate the osteogenic potential of human embryonic stem cell-derived exosomes (hESC-Exos) and their effects on the differentiation of human umbilical cord mesenchymal stem cells (hUCMSCs).

Methods: hESC-Exos were isolated and characterized using transmission electron microscopy (TEM), nanoparticle tracking analysis (NTA), and Western blotting. hUCMSCs were cultured with hESC-Exos to assess osteogenic differentiation through alizarin red staining, quantitative PCR (qPCR), and Western blotting.

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Background: It remains unclear whether the current recommended ablation index (AI) value is suitable for individualized catheter ablation. Prior research has established that the elimination of the negative component of the unipolar electrogram (UP-EGM) applications reflects the formation of transmural lesion during radiofrequency ablation. The aim of this study was to explore the relationship between AI values when UP-EGM turns positive during pulmonary vein isolation and recommended AI values.

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Background: The prognostic value of the uric acid to albumin ratio (UAR) in heart failure (HF) remains underexplored. The objective of this research was to investigate the link between UAR and short-term outcomes in Chinese HF patients.

Methods: We analyzed data from 1893 HF patients, out of an initial cohort of 2008, who had available UAR measurements.

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Rechargeable aqueous alkaline Zn-Ni batteries (AZNBs) are considered a potential contender for energy storage fields and portable devices due to their inherent safety, high output voltage, high theoretical capacity and environmental friendliness. Despite the facilitated development of AZNBs by many investigations, its practical application is still restricted by inadequate energy density, sluggish kinetics, and poor stability. Therefore, Ni-based cathodes with boosted redox chemistry and enhanced structural integrity is essential for the high-performance AZNBs.

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Background: T-cell-redirecting therapies, such as bispecific antibodies and chimeric antigen receptor T-cells, exploit the cytotoxic capabilities of the immune system to destroy cells expressing specific surface antigens, including malignant cells. These therapies have demonstrated unprecedented rates, depth, and duration of responses in relapsed and refractory multiple myeloma. However, there are significant challenges in implementing these therapies into practice, which require multidisciplinary and multicenter coordination and significant healthcare resources to effectively manage these patients.

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The electrochemical reduction of oxygen is pivotal for advancing emerging energy technologies. Precise control over morphology and electronic structure is essential for enhancing catalytic activity and stability in the oxygen reduction reaction (ORR). In this study, a freestanding carbon electrode is developed by in-situ growth of carbon nanotube (CNT)-encapsulated bimetallic CoM (M = Ni, Fe, Mn, Cu) nanoparticles (NPs) within a hierarchical carbonized wood matrix (CoM@NWCC).

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Triple arterial access is sometimes necessary for complete visualization of the collateral circulation and distal vessel anatomy, and to facilitate the retrograde approach in complex chronic total occlusion (CTO) percutaneous coronary intervention (PCI) in patients with prior coronary artery bypass surgery (CABG) and multiple sources of collaterals. We present two CTO PCI cases in prior CABG patients with complex occlusions supplied by multiple sources of collaterals for which a "sequential dual guide technique" was used, reducing the number of necessary arterial access points from three to two.

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A copper catalyzed enantioselective formal aza-Diels-Alder reaction of formed 1,2-diaza-1,3-dienes from α-halohydrazones and vinyl diazo compounds was described. The protocol provides a variety of optically enriched diazo-containing tetrahydropyridazines in moderate yields and with up to excellent enantioselectivities. The present methodologies utilize chiral oxazolines as the chiral ligands for asymmetric catalysis and feature mild reaction conditions, readily available substrates, and broad substrate scope.

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Purpose: This Hydrocephalus Clinical Research Network (HCRN) study had two aims: (1) to compare the predictive performance of the original ETV Success Score (ETVSS) using logistic regression modeling with other newer machine learning models and (2) to assess whether inclusion of imaging variables improves prediction performance using machine learning models.

Methods: We identified children undergoing first-time ETV for hydrocephalus that were enrolled prospectively at HCRN sites between 200 and 2020. The primary outcome was ETV success 6 months after index surgery.

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Objective: To determine the epidemiological cut-off (ECOFF) values of etimicin against Escherichia coli, Klebsiella pneumoniae, Proteus mirabilis, Pseudomonas aeruginosa, Acinetobacter baumannii and Staphylococcus aureus.

Methods: We selected 1500 isolates from five hospitals throughout five cities in China spanning from January 2018 to December 2021 in the study. Minimal inhibit concentrations (MICs) of etimicin were determined using the broth microdilution method.

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Research on transition metal-triggered advanced oxidation processes (TM-AOPs) has primarily focused on the regulation of catalysts and oxidants, but the alternative route that involves utilizing pollutant-derived electrons to enhance TM-AOPs has been largely overlooked. This study presents a case of selective degradation using fluoroquinolone antibiotics, with ofloxacin (OFX) selected as the model pollutant. Under the presence of PDS and trace Cu(II) (10 μM or 0.

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Parental living environment significantly impacts on offspring, yet related studies are lacking in livestock and poultry production. The present study found that lipopolysaccharide (LPS, Escherichia coli, 0.2 mg/kg) stimulation in F0 hens led to growth retardation and a decrease in egg-laying rate in the unchallenged F1 hens.

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Objective: To evaluate the therapeutic effects of microwave ablation (MWA) versus surgery in treating low-risk papillary thyroid microcarcinoma (PTMC) and to assess recurrence-free survival (RFS) in patients with and without the BRAFV600E mutation.

Methods: Between August 2016 and September 2022, 158 patients diagnosed with low-risk PTMC treated with MWA and 288 patients who underwent surgical treatment were retrospectively analyzed. All patients were followed-up for over a year.

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Background: Patients with chronic kidney disease who require maintenance dialysis suffer excess morbidity and mortality for reasons that are not clearly elucidated. There are few targets for intervention to improve their outcomes. The authors hypothesized that perioperative hypotension is more common in patients receiving dialysis.

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The integration of nanomaterials with DNA-based systems has emerged as a transformative approach in biosensing and therapeutic applications. Unique features of DNA, like its programmability and specificity, complement the diverse functions of nanomaterials, leading to the creation of advanced systems for detecting biomarkers and delivering treatments. Here, we review the developments in DNA-nanomaterial conjugates, emphasizing their enhanced functionalities and potential across various biomedical applications.

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  • The study investigated the relationship between natural killer (NK) cell levels and recurrence rates in myasthenia gravis (MG), a condition with a high relapse rate.
  • Data was analyzed from 265 MG patients, focusing on their NK cell counts and the rates of recurrence over one year.
  • Results indicated a specific NK cell count threshold (5.38), below which higher counts were linked to lower recurrence risk, while no significant association was found above this level, suggesting implications for personalized treatment approaches.
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Purpose: To systematically investigate the factorial and criterion validity of the Chinese version of the Rosenberg Self-Esteem Scale (RSES) among undergraduate students.

Methods: Altogether 1415 undergraduates completed the RSES, the Short Form of Mood and Anxiety Symptoms Questionnaire, the Perceived Stress Scale and the Quality of Life Enjoyment and Satisfaction Questionnaire. Confirmatory factor analysis was conducted to examine the factorial structure, gender invariance, and latent mean invariance of RSES.

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Introduction: The increasing prevalence of systemic fungal infections, especially among immunocompromised individuals, highlights the need for advancements in targeted and effective antifungal treatments. This study presents a novel nanomaterial, CFW-phosphatidylethanolamine conjugate (CFW-PEc), designed to enhance the delivery and efficacy of antifungal agents by targeting fungal cell walls through specific chitin binding. Ethosomes, lipid-based nanocarriers known for their ability to improve drug delivery across skin and cell membranes, were utilized in this study.

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The Quorum sensing (QS) system is a widely existing communication mechanism, which regulates bacterial community behaviors and the expression of specific genes. The most common pathogenic bacteria in clinical infections are gram-negative bacteria, and QS plays an important regulatory role in the production of virulence factors and development of antibiotic resistance. This article reviews the QS systems of gram-negative bacteria and provides an overview of how they regulate their physiological functions.

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