Publications by authors named "Kexin Mu"

Copper is an essential enzyme cofactor in bacteria, but excess copper is highly toxic. Bacteria can cope with copper stress by increasing copper resistance and initiating chemorepellent response. However, it remains unclear how bacteria coordinate chemotaxis and resistance to copper.

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The overuse and wanton discharge of antibiotics produces a threat to bacteria in the environment, which, in turn, stimulates the more rapid emergence of antibiotic-resistant bacteria. actively forms biofilms to protect the population under tetracycline stress, but the molecular mechanism remains unclear. This study found that tetracycline at sub-minimal inhibitory concentrations increased cyclic diguanylate (c-di-GMP), a second messenger that positively regulates biofilm formation.

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Article Synopsis
  • Researchers developed a new type of infrared (IR) transparent polymer using inverse vulcanization with a high boiling point compound (DMMD) and sulfur, aiming to overcome the limitations of traditional organic materials in IR optics.
  • The resulting polymer (Poly (S-r-DMMD)) showcases adjustable thermal properties (with a temperature range of 98.3-119.8 °C) and good IR transmittance (ranging from 1.5-52.6% for different IR regions), making it a suitable alternative to inorganic materials.
  • Additionally, this polymer can be easily shaped into large Fresnel lenses for IR imaging, offering potential applications in optical device production while enhancing the understanding of achieving a
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Raising the charging voltage and employing high-capacity cathodes like lithium cobalt oxide (LCO) are efficient strategies to expand battery capacity. High voltage, however, will reveal major issues such as the electrolyte's low interface stability and weak electrochemical stability. Designing high-performance solid electrolytes from the standpoint of substance genetic engineering design is consequently vital.

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The ubiquitous bacterial second messenger cyclic diguanylate (c-di-GMP) coordinates diverse cellular processes through its downstream receptors. However, whether c-di-GMP participates in regulating nitrate assimilation is unclear. Here, we found that NasT, an antiterminator involved in nitrate assimilation in Pseudomonas putida, specifically bound c-di-GMP.

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Intestinal fibrosis is a prevalent complication of Crohn's disease (CD), characterized by excessive deposition of extracellular matrix (ECM), and no approved drugs are currently available for its treatment. Sirtuin 4 (SIRT4), a potent anti-fibrosis factor in mitochondria, has an unclear role in intestinal fibrosis. In this study, fibroblasts isolated from biopsies of stenotic ileal mucosa in CD patients were analyzed to identify the most down-regulated protein among SIRT1-7, and SIRT4 was found to be the most affected.

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Article Synopsis
  • Solid-state lithium-metal batteries using in-situ solidification show promise for next-gen batteries, but face issues with stability and interfacial reactions due to linear polyethers.* -
  • A new method called in-situ ring-opening hybrid crosslinked polymerization creates a hybrid polymer electrolyte that boasts high ionic conductivity, an impressive Li transference number, and a wide electrochemical stability window.* -
  • This innovative electrolyte leads to stable lithium cycling for over 1000 hours and allows batteries to maintain excellent performance over 600 cycles, making it a significant advancement for safer and more efficient solid-state batteries.*
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Scope: The purpose of this research is to investigate the specific role of HSP90 paralogs in ulcerative colitis (UC), and to explore the mechanisms behind the inhibitory effects of galangin (Gal) on UC by inhibiting HSP90β in vivo.

Methods And Results: In order to achieve this, publicly available gene expression data and molecular biology techniques are used. The results show that the expression of HSP90β is significantly increased in the mucosal biopsies of UC patients and in the colons of colitis mice, and that there is a significant correlation between HSP90β levels and disease severity.

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Solid-state lithium-metal batteries are considered as the next generation of high-energy-density batteries. However, their solid electrolytes suffer from low ionic conductivity, poor interface performance, and high production costs, restricting their commercial application. Herein, a low-cost cellulose acetate-based quasi-solid composite polymer electrolyte (C-CLA QPE) was developed with a high Li transference number ( ) of 0.

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