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The properties of nanopipettes largely rely on the materials introduced onto their inner walls, which allow for a vast extension of their sensing capabilities. The challenge of simultaneously enhancing the sensitivity and selectivity of nanopipettes for pH sensing remains, hindering their practical applications. Herein, we report insulin-modified nanopipettes with excellent pH response performances, which were prepared by introducing insulin onto their inner walls via a two-step reaction involving silanization and amidation. The pH response intensity based on ion current rectification was significantly enhanced by approximately 4.29 times when utilizing insulin-modified nanopipettes compared with bare ones, demonstrating a linear response within the pH range of 2.50 to 7.80. In addition, insulin-modified nanopipettes featured good reversibility and selectivity. The modification processes were monitored using the I-V curves, and the relevant mechanisms were discussed. The effects of solution pH and insulin concentration on the modification results were investigated to achieve optimal insulin introduction. This study showed that the pH response behavior of nanopipettes can be greatly improved by introducing versatile molecules onto the inner walls, thereby contributing to the development and utilization of pH-responsive nanopipettes.
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http://dx.doi.org/10.3390/s24134264 | DOI Listing |
PLoS One
September 2025
Department of Mechanical Engineering, Faculty of Engineering and Natural Sciences, Samsun University, Samsun, Turkiye.
Electrochemical (EC) grooving minimises tool wear and residual stress when machining hard-to-cut tube materials. This study examines how the number of passes and tool feed direction affect material removal rate (MRR) and removed area (RA) in Stellite 21 tubes. Two feed strategies were tested: Unidirectional Electrolyte Flow (UEF), where the tool moves entirely opposite to the electrolyte flow; and Hybrid Electrolyte Flow (HEF), where the tool first moves against and then with the flow direction.
View Article and Find Full Text PDFRSC Adv
August 2025
School of Instrumentation and Optoelectronic Engineering, Beihang University Beijing 100191 China
To investigate the anti-relaxation performance of FOTS-modified OTS coatings on the inner walls of cesium (Cs) atomic cell, this study employs molecular dynamics (MD) simulations to explore the self-assembly process of FOTS-modified OTS molecular chains on the SiO (001) surface and evaluates the effects of FOTS chain amounts, water molecule content, and temperature on the diffusion behavior of Cs atoms. Results show that the optimized interface model of the FOTS-modified OTS coating and SiO substrate achieves thermodynamic and energetic equilibrium under the conditions of 25 °C and 2000 ps. The film formation process of FOTS-modified OTS chains on SiO surfaces involves three distinct stages: initial anchoring, conformational rearrangement, and structural relaxation and equilibrium configuration.
View Article and Find Full Text PDFGenome Biol
August 2025
Plant Molecular and Cellular Biology Program, University of Florida, Gainesville, FL, USA.
Background: Single-cell genomics is revolutionizing plant developmental biology, enabling the transcriptome profiling of individual cells and their lineage relationships. However, plant cell walls polymers hamper the dissociation and analysis of intact cells. This rigid structure can conceal cell types embedded in complex, lignified, multi-cell layered tissues such as those undergoing secondary growth.
View Article and Find Full Text PDFInt J Ophthalmol
September 2025
Tianjin Key Laboratory of Retinal Functions and Diseases, Tianjin Branch of National Clinical Research Center for Ocular Disease, Eye Institute and School of Optometry, Tianjin Medical University Eye Hospital, Tianjin 300380, China.
Aim: To investigate the prevalence and clinical implications of hyperreflective walls (HRW) in foveal cystoid spaces in patients with cystoid macular edema (CME) caused by retinal diseases and noninfectious uveitis (NIU).
Methods: This retrospective cross-sectional study included 443 eyes with CME secondary to diabetic macular edema (DME), retinal vein occlusion (RVO), retinitis pigmentosa (RP), neovascular age-related macular degeneration (nAMD), and NIU. Demographic data, HRW features, and other spectral domain optical coherence tomography (SD-OCT) biomarkers were analyzed.
Biosens Bioelectron
December 2025
Engineering Research Center of Nano-Geomaterials of Ministry of Education, Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan, 430074, PR China.
Solid-state nanochannel sensors have emerged as a promising platform for next-generation disease marker detection. However, significant challenges remain in detecting low-abundance miRNAs in biological systems. This study presents an ultra-sensitive electrochemical sensing system based on interfacial charge density modulation and signal synergistic amplification within nanochannel for precise detection of microRNA-155 (miR-155).
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