Publications by authors named "Minh T H Nguyen"

Background: Traf2 and Nck-interacting kinase (TNIK) is known for its regulatory role in various processes within cancer cells. However, its role within endothelial cells (ECs) has remained relatively unexplored.

Methods: Leveraging RNA-seq data and Ingenuity Pathway Analysis (IPA), we probed the potential impact of TNIK depletion on ECs.

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Article Synopsis
  • * CVD risk may increase for cancer survivors due to long-term complications from cancer and its treatments, with cellular senescence playing a significant role in this relationship.
  • * The article seeks to explore the mechanisms connecting premature cellular aging to CVD in cancer survivors and suggests future research directions for a deeper understanding of this complex issue.
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Article Synopsis
  • SENP2 is a crucial protein that helps protect against atherosclerosis; however, when phosphorylated at T368 under disturbed flow, it loses its function and leads to endothelial cell activation.
  • Researchers developed a specific antibody and used CRISPR/Cas9 to create mice with a mutation at the S344 phosphorylation site of SENP2 and studied its effects on endothelial cell behavior under different flow conditions.
  • The study found that normal flow (L-flow) causes phosphorylation of SENP2 at S344, which inhibits harmful endothelial cell activation, while mutations in this site lead to increased inflammation, migration, and cell proliferation, making atherosclerosis worse, especially in female mice.
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Cancer survivors undergone treatment face an increased risk of developing atherosclerotic cardiovascular disease (CVD), yet the underlying mechanisms remain elusive. Recent studies have revealed that chemotherapy can drive senescent cancer cells to acquire a proliferative phenotype known as senescence-associated stemness (SAS). These SAS cells exhibit enhanced growth and resistance to cancer treatment, thereby contributing to disease progression.

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β-sitosterol derived from Clinacanthus nutans Lindau was tested for its in vitro osteogenic activity using MC3T3-E1 pre-osteoblasts. Our results indicated that β-sitosterol was non-toxic to the cells cultured at a concentration <20 µg/mL. Treatment of the cells with β-sitosterol significantly enhanced the alkaline phosphatase activity up to 210 and 204.

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We have shown that membrane-associated guanylate kinase with inverted domain structure-1 (MAGI1), a scaffold protein with six PSD95/DiscLarge/ZO-1 (PDZ) domains, is involved in the regulation of endothelial cell (EC) activation and atherogenesis in mice. In addition to causing acute respiratory disease, influenza A virus (IAV) infection plays an important role in atherogenesis and triggers acute coronary syndromes and fatal myocardial infarction. Therefore, the aim of this study is to investigate the function and regulation of MAGI1 in IAV-induced EC activation.

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Purpose Of Review: As both a cholesterol acceptor and carrier in the reverse cholesterol transport (RCT) pathway, high-density lipoprotein (HDL) is putatively atheroprotective. However, current pharmacological therapies to increase plasma HDL cholesterol (HDL-c) concentration have paradoxically failed to prevent or reduce atherosclerosis and cardiovascular disease (CVD). Given that free cholesterol (FC) transfer between surfaces of lipoproteins and cells is reversible, excess plasma FC can be transferred to the cells of peripheral tissue sites resulting in atherosclerosis.

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Background: Neorautanenia mitis, Hydnora abyssinica, and Senna surattensis are medicinal plants with a variety of traditional uses. In this study, we sought to isolate the bioactive compounds responsible for some of these activities, and to uncover their other potential medicinal properties.

Methods: The DCM and ethanol extracts of the roots of N.

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Osteoporosis, one of the most serious public health concerns caused by an imbalance between bone resorption and bone formation, has a major impact on the population. Therefore, finding the effective osteogenic compounds for the treatment of osteoporosis is a promising research approach. In our study, tamarind ( L.

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Background: For the safety monitoring of vaccinations postlicensure, reports of adverse events after immunization (AEFIs) are crucial. New technologies such as digital mobile apps can be used as an active approach to capture these events. We therefore conducted a feasibility study among recipients of the influenza vaccination using an app for assessment of the reporting of AEFIs.

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This study aimed to investigate the antibiofilm activity of alpha-mangostin (AMG) loaded nanoparticles (nanoAMG) against , including the methicillin-resistant strain MRSA252. The results indicated that treatment with 24 μmol/L nanoAMG inhibited the formation of biofilm biomass by 53-62%, compared to 40-44% for free AMG (p < 0.05).

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Objectives: This research was carried out to investigate the hypoglycemic activity of the ethyl acetate (EtOAc) extract from the roots of Roxb, which strongly exhibit inhibitory activity against α-glucosidase and α-amylase on type 2 diabetic model.

Materials And Methods: Column chromatography combined with crystallization was used to isolate the active fraction and compounds. Chemical structures of the compounds were determined based on the analysis of the spectroscopic data and comparison with the literature data.

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Background: In a previous pilot study, one-time application of anti-Porphyromonas gingivalis gingipain egg yolk immunoglobulin (IgY) into scaling and root planing (SRP)-treated periodontal pockets showed profound improvement of clinical and bacteriological parameters in patients with chronic periodontitis. The present study aims to evaluate the efficacy of daily use of lozenges fortified with the antibody as an adjunct to non-surgical therapy in patients with periodontitis.

Methods: Sixty-four patients with periodontitis were divided randomly into a test and a placebo group.

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